Synrg cDNA ORF clone, Nannospalax galili(Upper Galilee mountains blind mole rat)

The following Synrg gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Synrg cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
ONa135066 XM_029553551.1
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
ONa135067 XM_029553552.1
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
ONa135068 XM_029553553.1
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X7, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
ONa135069 XM_029553554.1
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X9, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ONa135070 XM_029553555.1
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X11, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ONa135071 XM_029553556.1
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X14, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ONa135072 XM_029553557.1
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X15, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ONa30859 XM_008848103.2
Latest version!
Nannospalax galili synergin, gamma (Synrg), transcript variant X9, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa30851 XM_008848095.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
ONa30852 XM_008848096.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
ONa30853 XM_008848097.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
ONa30854 XM_008848098.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X6, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
ONa30855 XM_008848099.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X8, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30856 XM_008848100.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X10, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30857 XM_008848101.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X12, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30858 XM_008848102.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X13, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30860 XM_008848106.3
Latest version!
Nannospalax galili synergin gamma (Synrg), transcript variant X16, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
View Old Accession Versions >>
ONa30858 XM_008848102.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X8, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30852 XM_008848096.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
ONa30851 XM_008848095.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
ONa30853 XM_008848097.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
ONa30856 XM_008848100.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X6, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30855 XM_008848099.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30857 XM_008848101.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X7, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30860 XM_008848106.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X10, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ONa30854 XM_008848098.2 Nannospalax galili synergin, gamma (Synrg), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
Hide Old Accession Versions >>

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID ONa135066
    Clone ID Related Accession (Same CDS sequence) XM_029553551.1
    Accession Version XM_029553551.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4215bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGAT TGTCCCACAT CATCTCATCT CATTTCCCCA
    TCACCTGCCT TTCTTGATGA AGATGAATTC AGTGACTTTA TGCAGGGGCC TGTGGAGGTT
    CCTATTTGTG TGCCATCTTC TGCGGCCCAG CCCTTTCAGT CTTTCCTTCC CACCACCCCA
    TTTGGCCAGT TGCATGCACA GAAGGCTGGG GTACAGCCTC TCCCTCCAGG TCAGATTCCA
    GTGTCTTTTG CCTTACATGG TGGCCCTGGG CAAATGCCTT ATTTCTCTTC TGCTTCAACT
    TCACACAGTG TGCAGAAAGC AGGCCCTTCC TTGGAGGAGA AGCTCCTAGT ATCTTGTGAT
    ATAAGTACAT CTGGGCATGA ACAAATTAAA TTAAGTACTC CTGAAGCTGG GCACAAAGCT
    CTAGTCCCAG ATTCCAGTGA GAACCATCCC ACTTTAACGG CCAGTCATGG GGGTGCTGTA
    GATGGATGTG TAAATGGTCC CACCACTGCA GAGGCAGAAA AGACTTCAGA CCAAAACCTG
    TCAAATGAAG AGAGTGGTGT GGGTGTGTTT CCCTCGCAGG ATCCTGTTCC ACCCAGAATG
    CCTCCTTGGA TTTACAATGA AAGTTTGGTC CCAGATACCT ATAAGAAAAT TTTAGAAACC
    ACAGTGACTC CAACTGGAAT AGATACTGCT AAACTTTATC CCATTCTGAT GTCATCTGGA
    CTTCCCAGGG AAACTCTTGG ACAGATATGG GCCTTGGCCA ATCGAACTAC ACCTGGCAAA
    CTCACTAAAG AAGAGCTTTA CACTGTTCTC GCCATGATAG CAGTAACGCA GAGGGGTGTT
    CCTGCCATGA GTCCTGATGC TTTGAATCAG TTCCCAGCAG CTCCCATTCC AACGTTAAGT
    GGCTTTTCTA TGACTCTGCC TACCCCAGTG AGCCAGCCGA CTGTGATGCC CTCTGGCCCT
    TCAGGGTCCA TGCCCCTCAG CCTTGGACAG CCAGTCATGG GCATTAACCT TGTTGGACCA
    GTGGGTGGAG CTGCAGCCCC AGCTTCCAGT GGCTTCATGC CATCTTACCC AGCAAAACAG
    GTGGGAAAGA CAGAAGAGGA TGACTTCCAG GAATTTCAAG ATGCTTCTAA GTCAGGATCC
    CTTGATGACT CGTTCACTGA CTTCCAAGAG GTGCCTCCTT CCTCAAAAAC AAATAATTCC
    CAGCATGGAA ACAGTGCTCC ATCTTTGTTG ATACCACTTC CTGGAACTAA AGCTTCAAAG
    GATAAATATG CAGTGTTTAA AGGAATTTCA GCTGACAAAC CCTCTGAAAA TGCTGTTCCA
    TTTGGAGAGT CTGCTGATAA ATACAGTGCT TTCCGGGAAC TTGAGCAGAC CACAGAGAAT
    AAACCTTTAG GAGAGAGCTT CACAGAATTC AGATCTGCAG GAACTGATGA TGGTTTCACC
    GACTTTAAGA CAGCCGACAG TATATCACCT CTAGAGCCAC CAACGACAAA AGACACTTTC
    CCAACATCCT TCCCCTCAGG ACCTATACAG CAGAAACAGC AAACACAAGT GAAAACTCCT
    CTGAACTTAG CAGACCTGGA TATGTTTTCC TCAGTTAATT GCAGCAATGA GAAACCATTG
    CCCTTTTCAG CAGCATTTAG CACATCTAAG TCAGTTTCTA CAAGACCTCA GCCAGGGGGA
    TCTACTACAA GCCCAGCAGC ACTGGCATCC ACTAAAACTT CTAGTCTGGC TGATGATTTT
    GGAGAATTCA ACCTCTTTGG GGAATATTCT AGTCCTGCAT CAGTTGGGGA GCAGGATGAC
    TTTGCAGATT TTATGGCTTT CAGTAACAGC TCTATTTCTT CTGAGCAAAA AGCAGATGAC
    AAATATGATG TCCTCAGAGA GGAACCAAGT CCCGTTCCTC TGACCAGCAA CTCAGGCAGT
    GAGGGAAAGA GTACACCTGC TACATCCACC AAGTATGATG TCTTCAAACA GCTTTCCCTA
    GAAGGAGCTG GACTAGGTGT CGAAGAGTTA AAAGATAACA CTCCTTTTGG AAAAGGTGAT
    GATGATTTTG CTGATTTTCA CTCCAATAAA TTTTCATCCA TGAATTCGGA GAAATCCCTG
    GGAGAGAAAG CAGTAGCTTT CAGACACACC AAAGAAGACT CTGCTTCAGT GAAGTCCCTA
    GATCTCCCTT CTATTGGTGG CAGCAGCATT GGCAAGGAGG ACTCAGAAGA TGCGCTTTCT
    GTTCAGTTTG ACATGAAACT GGCTGATGTG GGAGGAGATC TTAAGCATGT CATGTCTGAT
    AGCTCTTTGG ATTTACCAAC AGTTAGTGGC CAGCATCCTC CTGCTGCAGA TATAGAGGAC
    TTAAAATATG CTACTTTTGG AAGCTACAGT AGCAGTTTTA CAGTGAGCAC ACTTACAAGC
    TATGACTGGT CAGACAGGGA TGATGCATCT CAGGGCAGAA AACTCTCTCC ATTTGTCCTC
    TCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGAAA GAAGAGAAGC CTACAGAAGA ACATCCTAAA
    AAAGCATTCA ACGCAGAAAC AGACAGTTTC AAGCTGGCCT ATGGAGGGCA CCAATATCAC
    GCCAGCTGTG CCAACTTCTG GATCAACTGT GTTGAGCCCA AGCCTCCTGG CCTCATCCTG
    CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_029409411.1
    CDS32..4246
    Translation

    Target ORF information:

    RefSeq Version XM_029553551.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029553551.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGAT TGTCCCACAT CATCTCATCT CATTTCCCCA
    TCACCTGCCT TTCTTGATGA AGATGAATTC AGTGACTTTA TGCAGGGGCC TGTGGAGGTT
    CCTATTTGTG TGCCATCTTC TGCGGCCCAG CCCTTTCAGT CTTTCCTTCC CACCACCCCA
    TTTGGCCAGT TGCATGCACA GAAGGCTGGG GTACAGCCTC TCCCTCCAGG TCAGATTCCA
    GTGTCTTTTG CCTTACATGG TGGCCCTGGG CAAATGCCTT ATTTCTCTTC TGCTTCAACT
    TCACACAGTG TGCAGAAAGC AGGCCCTTCC TTGGAGGAGA AGCTCCTAGT ATCTTGTGAT
    ATAAGTACAT CTGGGCATGA ACAAATTAAA TTAAGTACTC CTGAAGCTGG GCACAAAGCT
    CTAGTCCCAG ATTCCAGTGA GAACCATCCC ACTTTAACGG CCAGTCATGG GGGTGCTGTA
    GATGGATGTG TAAATGGTCC CACCACTGCA GAGGCAGAAA AGACTTCAGA CCAAAACCTG
    TCAAATGAAG AGAGTGGTGT GGGTGTGTTT CCCTCGCAGG ATCCTGTTCC ACCCAGAATG
    CCTCCTTGGA TTTACAATGA AAGTTTGGTC CCAGATACCT ATAAGAAAAT TTTAGAAACC
    ACAGTGACTC CAACTGGAAT AGATACTGCT AAACTTTATC CCATTCTGAT GTCATCTGGA
    CTTCCCAGGG AAACTCTTGG ACAGATATGG GCCTTGGCCA ATCGAACTAC ACCTGGCAAA
    CTCACTAAAG AAGAGCTTTA CACTGTTCTC GCCATGATAG CAGTAACGCA GAGGGGTGTT
    CCTGCCATGA GTCCTGATGC TTTGAATCAG TTCCCAGCAG CTCCCATTCC AACGTTAAGT
    GGCTTTTCTA TGACTCTGCC TACCCCAGTG AGCCAGCCGA CTGTGATGCC CTCTGGCCCT
    TCAGGGTCCA TGCCCCTCAG CCTTGGACAG CCAGTCATGG GCATTAACCT TGTTGGACCA
    GTGGGTGGAG CTGCAGCCCC AGCTTCCAGT GGCTTCATGC CATCTTACCC AGCAAAACAG
    GTGGGAAAGA CAGAAGAGGA TGACTTCCAG GAATTTCAAG ATGCTTCTAA GTCAGGATCC
    CTTGATGACT CGTTCACTGA CTTCCAAGAG GTGCCTCCTT CCTCAAAAAC AAATAATTCC
    CAGCATGGAA ACAGTGCTCC ATCTTTGTTG ATACCACTTC CTGGAACTAA AGCTTCAAAG
    GATAAATATG CAGTGTTTAA AGGAATTTCA GCTGACAAAC CCTCTGAAAA TGCTGTTCCA
    TTTGGAGAGT CTGCTGATAA ATACAGTGCT TTCCGGGAAC TTGAGCAGAC CACAGAGAAT
    AAACCTTTAG GAGAGAGCTT CACAGAATTC AGATCTGCAG GAACTGATGA TGGTTTCACC
    GACTTTAAGA CAGCCGACAG TATATCACCT CTAGAGCCAC CAACGACAAA AGACACTTTC
    CCAACATCCT TCCCCTCAGG ACCTATACAG CAGAAACAGC AAACACAAGT GAAAACTCCT
    CTGAACTTAG CAGACCTGGA TATGTTTTCC TCAGTTAATT GCAGCAATGA GAAACCATTG
    CCCTTTTCAG CAGCATTTAG CACATCTAAG TCAGTTTCTA CAAGACCTCA GCCAGGGGGA
    TCTACTACAA GCCCAGCAGC ACTGGCATCC ACTAAAACTT CTAGTCTGGC TGATGATTTT
    GGAGAATTCA ACCTCTTTGG GGAATATTCT AGTCCTGCAT CAGTTGGGGA GCAGGATGAC
    TTTGCAGATT TTATGGCTTT CAGTAACAGC TCTATTTCTT CTGAGCAAAA AGCAGATGAC
    AAATATGATG TCCTCAGAGA GGAACCAAGT CCCGTTCCTC TGACCAGCAA CTCAGGCAGT
    GAGGGAAAGA GTACACCTGC TACATCCACC AAGTATGATG TCTTCAAACA GCTTTCCCTA
    GAAGGAGCTG GACTAGGTGT CGAAGAGTTA AAAGATAACA CTCCTTTTGG AAAAGGTGAT
    GATGATTTTG CTGATTTTCA CTCCAATAAA TTTTCATCCA TGAATTCGGA GAAATCCCTG
    GGAGAGAAAG CAGTAGCTTT CAGACACACC AAAGAAGACT CTGCTTCAGT GAAGTCCCTA
    GATCTCCCTT CTATTGGTGG CAGCAGCATT GGCAAGGAGG ACTCAGAAGA TGCGCTTTCT
    GTTCAGTTTG ACATGAAACT GGCTGATGTG GGAGGAGATC TTAAGCATGT CATGTCTGAT
    AGCTCTTTGG ATTTACCAAC AGTTAGTGGC CAGCATCCTC CTGCTGCAGA TATAGAGGAC
    TTAAAATATG CTACTTTTGG AAGCTACAGT AGCAGTTTTA CAGTGAGCAC ACTTACAAGC
    TATGACTGGT CAGACAGGGA TGATGCATCT CAGGGCAGAA AACTCTCTCC ATTTGTCCTC
    TCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGAAA GAAGAGAAGC CTACAGAAGA ACATCCTAAA
    AAAGCATTCA ACGCAGAAAC AGACAGTTTC AAGCTGGCCT ATGGAGGGCA CCAATATCAC
    GCCAGCTGTG CCAACTTCTG GATCAACTGT GTTGAGCCCA AGCCTCCTGG CCTCATCCTG
    CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa135067
    Clone ID Related Accession (Same CDS sequence) XM_029553552.1
    Accession Version XM_029553552.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4122bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGAT TGTCCCACAT CATCTCATCT CATTTCCCCA
    TCACCTGCCT TTCTTGATGA AGATGAATTC AGTGACTTTA TGCAGGGGCC TGTGGAGGTT
    CCTATTTGTG TGCCATCTTC TGCGGCCCAG CCCTTTCAGT CTTTCCTTCC CACCACCCCA
    TTTGGCCAGT TGCATGCACA GAAGGCTGGG GTACAGCCTC TCCCTCCAGG CCCTTCCTTG
    GAGGAGAAGC TCCTAGTATC TTGTGATATA AGTACATCTG GGCATGAACA AATTAAATTA
    AGTACTCCTG AAGCTGGGCA CAAAGCTCTA GTCCCAGATT CCAGTGAGAA CCATCCCACT
    TTAACGGCCA GTCATGGGGG TGCTGTAGAT GGATGTGTAA ATGGTCCCAC CACTGCAGAG
    GCAGAAAAGA CTTCAGACCA AAACCTGTCA AATGAAGAGA GTGGTGTGGG TGTGTTTCCC
    TCGCAGGATC CTGTTCCACC CAGAATGCCT CCTTGGATTT ACAATGAAAG TTTGGTCCCA
    GATACCTATA AGAAAATTTT AGAAACCACA GTGACTCCAA CTGGAATAGA TACTGCTAAA
    CTTTATCCCA TTCTGATGTC ATCTGGACTT CCCAGGGAAA CTCTTGGACA GATATGGGCC
    TTGGCCAATC GAACTACACC TGGCAAACTC ACTAAAGAAG AGCTTTACAC TGTTCTCGCC
    ATGATAGCAG TAACGCAGAG GGGTGTTCCT GCCATGAGTC CTGATGCTTT GAATCAGTTC
    CCAGCAGCTC CCATTCCAAC GTTAAGTGGC TTTTCTATGA CTCTGCCTAC CCCAGTGAGC
    CAGCCGACTG TGATGCCCTC TGGCCCTTCA GGGTCCATGC CCCTCAGCCT TGGACAGCCA
    GTCATGGGCA TTAACCTTGT TGGACCAGTG GGTGGAGCTG CAGCCCCAGC TTCCAGTGGC
    TTCATGCCAT CTTACCCAGC AAAACAGGTG GGAAAGACAG AAGAGGATGA CTTCCAGGAA
    TTTCAAGATG CTTCTAAGTC AGGATCCCTT GATGACTCGT TCACTGACTT CCAAGAGGTG
    CCTCCTTCCT CAAAAACAAA TAATTCCCAG CATGGAAACA GTGCTCCATC TTTGTTGATA
    CCACTTCCTG GAACTAAAGC TTCAAAGGAT AAATATGCAG TGTTTAAAGG AATTTCAGCT
    GACAAACCCT CTGAAAATGC TGTTCCATTT GGAGAGTCTG CTGATAAATA CAGTGCTTTC
    CGGGAACTTG AGCAGACCAC AGAGAATAAA CCTTTAGGAG AGAGCTTCAC AGAATTCAGA
    TCTGCAGGAA CTGATGATGG TTTCACCGAC TTTAAGACAG CCGACAGTAT ATCACCTCTA
    GAGCCACCAA CGACAAAAGA CACTTTCCCA ACATCCTTCC CCTCAGGACC TATACAGCAG
    AAACAGCAAA CACAAGTGAA AACTCCTCTG AACTTAGCAG ACCTGGATAT GTTTTCCTCA
    GTTAATTGCA GCAATGAGAA ACCATTGCCC TTTTCAGCAG CATTTAGCAC ATCTAAGTCA
    GTTTCTACAA GACCTCAGCC AGGGGGATCT ACTACAAGCC CAGCAGCACT GGCATCCACT
    AAAACTTCTA GTCTGGCTGA TGATTTTGGA GAATTCAACC TCTTTGGGGA ATATTCTAGT
    CCTGCATCAG TTGGGGAGCA GGATGACTTT GCAGATTTTA TGGCTTTCAG TAACAGCTCT
    ATTTCTTCTG AGCAAAAAGC AGATGACAAA TATGATGTCC TCAGAGAGGA ACCAAGTCCC
    GTTCCTCTGA CCAGCAACTC AGGCAGTGAG GGAAAGAGTA CACCTGCTAC ATCCACCAAG
    TATGATGTCT TCAAACAGCT TTCCCTAGAA GGAGCTGGAC TAGGTGTCGA AGAGTTAAAA
    GATAACACTC CTTTTGGAAA AGGTGATGAT GATTTTGCTG ATTTTCACTC CAATAAATTT
    TCATCCATGA ATTCGGAGAA ATCCCTGGGA GAGAAAGCAG TAGCTTTCAG ACACACCAAA
    GAAGACTCTG CTTCAGTGAA GTCCCTAGAT CTCCCTTCTA TTGGTGGCAG CAGCATTGGC
    AAGGAGGACT CAGAAGATGC GCTTTCTGTT CAGTTTGACA TGAAACTGGC TGATGTGGGA
    GGAGATCTTA AGCATGTCAT GTCTGATAGC TCTTTGGATT TACCAACAGT TAGTGGCCAG
    CATCCTCCTG CTGCAGATAT AGAGGACTTA AAATATGCTA CTTTTGGAAG CTACAGTAGC
    AGTTTTACAG TGAGCACACT TACAAGCTAT GACTGGTCAG ACAGGGATGA TGCATCTCAG
    GGCAGAAAAC TCTCTCCATT TGTCCTCTCA GCAGGAAGTG GGTCCTCCTC AGCCACCTCA
    GTTCTTCAAA AGAAAGAGAC CTCATTTGGT AGCTCTGAAA ACAGCACCAT GTCATCGCTC
    TCCAAAGTAA CAACCTTTGC AAGTGAGGAT GCTCTTCCAG AGACTCCCTT CCCGGCCTTT
    GCCAGCTTTA AAGACATCAT GCCTCAGACC AGTGAACAAA AGGAATATGA AAAATATGGA
    AGTGGGGACT ACCAGGATTT CCCAAGGCAG GATCTGTCCG CAGCTGAACA GAGCCAGGAG
    ATCATGTGTC CAAGCCCAGC ATCCAGTGGT GCCTCTCATG AAACCCCCAA AGAATGTGCT
    GATGACTTTG GGGAGTTTCA GAGTGAAAAG CCCAAAATCA GCAAATTTGA CTTTTTAGTA
    GCCAATTCAC AAAGCAAAAT GAAATCCAGT GAAGAAATGA TCAAAAGTGA GCTGGCAACC
    TTTGACCTTT CTGTTCAAGG ATCACACAAG AGAAGCTTGA GCCTTGGGGA TAAAGAAATA
    AGCCGGTCCT CTCCTTCTCC AGCCCTTGAG CAGCCTTTCA GGGATCGTTC CAACACTCTG
    AGTGAGAAGC CTGCTCTGCC TGTCATCCGT GACAAGTACA AAGATCTGAC AGGCGAGGTG
    GAGGAAAATG AGAGATATGC GTATGAATGG CAGAGGTGCC TGGGGAGCGC CTTGGATGTC
    ATTAAGAAGG CAAATGACAC CTTAAATGGA ATTAGTAGCA GTGCTGTTTG TACAGAAGTT
    ATTCAGTCAG CCCAAGGCAT GGAATATTTA TTAGGTGTCG TGGAAGTGTA CCGAGTAACC
    AAACGTGTGG AGCTGGGGAT AAAAGCTACT GCTGTGTGCA GTGAGAAACT CCAGCAGTTG
    CTGAAGGACA TTGATAAAGT GTGGAACAAC CTAATCGGCT TCATGTCACT CGCTACACTC
    ACACCAGATG AAAATTCACT GGATTTTTCC TCCTGTATGC TACGGCCTGG GATTAAAAAC
    GCTCAGGAAC TGGCTTGCGG GGTGTGCCTC TTAAATGTGG ATTCTAGGAG CCGGAAAGAA
    GAGAAGCCTA CAGAAGAACA TCCTAAAAAA GCATTCAACG CAGAAACAGA CAGTTTCAAG
    CTGGCCTATG GAGGGCACCA ATATCACGCC AGCTGTGCCA ACTTCTGGAT CAACTGTGTT
    GAGCCCAAGC CTCCTGGCCT CATCCTGCCA GATCTGCTCT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_029409412.1
    CDS32..4153
    Translation

    Target ORF information:

    RefSeq Version XM_029553552.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029553552.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGAT TGTCCCACAT CATCTCATCT CATTTCCCCA
    TCACCTGCCT TTCTTGATGA AGATGAATTC AGTGACTTTA TGCAGGGGCC TGTGGAGGTT
    CCTATTTGTG TGCCATCTTC TGCGGCCCAG CCCTTTCAGT CTTTCCTTCC CACCACCCCA
    TTTGGCCAGT TGCATGCACA GAAGGCTGGG GTACAGCCTC TCCCTCCAGG CCCTTCCTTG
    GAGGAGAAGC TCCTAGTATC TTGTGATATA AGTACATCTG GGCATGAACA AATTAAATTA
    AGTACTCCTG AAGCTGGGCA CAAAGCTCTA GTCCCAGATT CCAGTGAGAA CCATCCCACT
    TTAACGGCCA GTCATGGGGG TGCTGTAGAT GGATGTGTAA ATGGTCCCAC CACTGCAGAG
    GCAGAAAAGA CTTCAGACCA AAACCTGTCA AATGAAGAGA GTGGTGTGGG TGTGTTTCCC
    TCGCAGGATC CTGTTCCACC CAGAATGCCT CCTTGGATTT ACAATGAAAG TTTGGTCCCA
    GATACCTATA AGAAAATTTT AGAAACCACA GTGACTCCAA CTGGAATAGA TACTGCTAAA
    CTTTATCCCA TTCTGATGTC ATCTGGACTT CCCAGGGAAA CTCTTGGACA GATATGGGCC
    TTGGCCAATC GAACTACACC TGGCAAACTC ACTAAAGAAG AGCTTTACAC TGTTCTCGCC
    ATGATAGCAG TAACGCAGAG GGGTGTTCCT GCCATGAGTC CTGATGCTTT GAATCAGTTC
    CCAGCAGCTC CCATTCCAAC GTTAAGTGGC TTTTCTATGA CTCTGCCTAC CCCAGTGAGC
    CAGCCGACTG TGATGCCCTC TGGCCCTTCA GGGTCCATGC CCCTCAGCCT TGGACAGCCA
    GTCATGGGCA TTAACCTTGT TGGACCAGTG GGTGGAGCTG CAGCCCCAGC TTCCAGTGGC
    TTCATGCCAT CTTACCCAGC AAAACAGGTG GGAAAGACAG AAGAGGATGA CTTCCAGGAA
    TTTCAAGATG CTTCTAAGTC AGGATCCCTT GATGACTCGT TCACTGACTT CCAAGAGGTG
    CCTCCTTCCT CAAAAACAAA TAATTCCCAG CATGGAAACA GTGCTCCATC TTTGTTGATA
    CCACTTCCTG GAACTAAAGC TTCAAAGGAT AAATATGCAG TGTTTAAAGG AATTTCAGCT
    GACAAACCCT CTGAAAATGC TGTTCCATTT GGAGAGTCTG CTGATAAATA CAGTGCTTTC
    CGGGAACTTG AGCAGACCAC AGAGAATAAA CCTTTAGGAG AGAGCTTCAC AGAATTCAGA
    TCTGCAGGAA CTGATGATGG TTTCACCGAC TTTAAGACAG CCGACAGTAT ATCACCTCTA
    GAGCCACCAA CGACAAAAGA CACTTTCCCA ACATCCTTCC CCTCAGGACC TATACAGCAG
    AAACAGCAAA CACAAGTGAA AACTCCTCTG AACTTAGCAG ACCTGGATAT GTTTTCCTCA
    GTTAATTGCA GCAATGAGAA ACCATTGCCC TTTTCAGCAG CATTTAGCAC ATCTAAGTCA
    GTTTCTACAA GACCTCAGCC AGGGGGATCT ACTACAAGCC CAGCAGCACT GGCATCCACT
    AAAACTTCTA GTCTGGCTGA TGATTTTGGA GAATTCAACC TCTTTGGGGA ATATTCTAGT
    CCTGCATCAG TTGGGGAGCA GGATGACTTT GCAGATTTTA TGGCTTTCAG TAACAGCTCT
    ATTTCTTCTG AGCAAAAAGC AGATGACAAA TATGATGTCC TCAGAGAGGA ACCAAGTCCC
    GTTCCTCTGA CCAGCAACTC AGGCAGTGAG GGAAAGAGTA CACCTGCTAC ATCCACCAAG
    TATGATGTCT TCAAACAGCT TTCCCTAGAA GGAGCTGGAC TAGGTGTCGA AGAGTTAAAA
    GATAACACTC CTTTTGGAAA AGGTGATGAT GATTTTGCTG ATTTTCACTC CAATAAATTT
    TCATCCATGA ATTCGGAGAA ATCCCTGGGA GAGAAAGCAG TAGCTTTCAG ACACACCAAA
    GAAGACTCTG CTTCAGTGAA GTCCCTAGAT CTCCCTTCTA TTGGTGGCAG CAGCATTGGC
    AAGGAGGACT CAGAAGATGC GCTTTCTGTT CAGTTTGACA TGAAACTGGC TGATGTGGGA
    GGAGATCTTA AGCATGTCAT GTCTGATAGC TCTTTGGATT TACCAACAGT TAGTGGCCAG
    CATCCTCCTG CTGCAGATAT AGAGGACTTA AAATATGCTA CTTTTGGAAG CTACAGTAGC
    AGTTTTACAG TGAGCACACT TACAAGCTAT GACTGGTCAG ACAGGGATGA TGCATCTCAG
    GGCAGAAAAC TCTCTCCATT TGTCCTCTCA GCAGGAAGTG GGTCCTCCTC AGCCACCTCA
    GTTCTTCAAA AGAAAGAGAC CTCATTTGGT AGCTCTGAAA ACAGCACCAT GTCATCGCTC
    TCCAAAGTAA CAACCTTTGC AAGTGAGGAT GCTCTTCCAG AGACTCCCTT CCCGGCCTTT
    GCCAGCTTTA AAGACATCAT GCCTCAGACC AGTGAACAAA AGGAATATGA AAAATATGGA
    AGTGGGGACT ACCAGGATTT CCCAAGGCAG GATCTGTCCG CAGCTGAACA GAGCCAGGAG
    ATCATGTGTC CAAGCCCAGC ATCCAGTGGT GCCTCTCATG AAACCCCCAA AGAATGTGCT
    GATGACTTTG GGGAGTTTCA GAGTGAAAAG CCCAAAATCA GCAAATTTGA CTTTTTAGTA
    GCCAATTCAC AAAGCAAAAT GAAATCCAGT GAAGAAATGA TCAAAAGTGA GCTGGCAACC
    TTTGACCTTT CTGTTCAAGG ATCACACAAG AGAAGCTTGA GCCTTGGGGA TAAAGAAATA
    AGCCGGTCCT CTCCTTCTCC AGCCCTTGAG CAGCCTTTCA GGGATCGTTC CAACACTCTG
    AGTGAGAAGC CTGCTCTGCC TGTCATCCGT GACAAGTACA AAGATCTGAC AGGCGAGGTG
    GAGGAAAATG AGAGATATGC GTATGAATGG CAGAGGTGCC TGGGGAGCGC CTTGGATGTC
    ATTAAGAAGG CAAATGACAC CTTAAATGGA ATTAGTAGCA GTGCTGTTTG TACAGAAGTT
    ATTCAGTCAG CCCAAGGCAT GGAATATTTA TTAGGTGTCG TGGAAGTGTA CCGAGTAACC
    AAACGTGTGG AGCTGGGGAT AAAAGCTACT GCTGTGTGCA GTGAGAAACT CCAGCAGTTG
    CTGAAGGACA TTGATAAAGT GTGGAACAAC CTAATCGGCT TCATGTCACT CGCTACACTC
    ACACCAGATG AAAATTCACT GGATTTTTCC TCCTGTATGC TACGGCCTGG GATTAAAAAC
    GCTCAGGAAC TGGCTTGCGG GGTGTGCCTC TTAAATGTGG ATTCTAGGAG CCGGAAAGAA
    GAGAAGCCTA CAGAAGAACA TCCTAAAAAA GCATTCAACG CAGAAACAGA CAGTTTCAAG
    CTGGCCTATG GAGGGCACCA ATATCACGCC AGCTGTGCCA ACTTCTGGAT CAACTGTGTT
    GAGCCCAAGC CTCCTGGCCT CATCCTGCCA GATCTGCTCT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa135068
    Clone ID Related Accession (Same CDS sequence) XM_029553553.1
    Accession Version XM_029553553.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4080bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X7
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGGAAGTGGG
    TCCTCCTCAG CCACCTCAGT TCTTCAAAAG AAAGAGACCT CATTTGGTAG CTCTGAAAAC
    AGCACCATGT CATCGCTCTC CAAAGTAACA ACCTTTGCAA GTGAGGATGC TCTTCCAGAG
    ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA GACATCATGC CTCAGACCAG TGAACAAAAG
    GAATATGAAA AATATGGAAG TGGGGACTAC CAGGATTTCC CAAGGCAGGA TCTGTCCGCA
    GCTGAACAGA GCCAGGAGAT CATGTGTCCA AGCCCAGCAT CCAGTGGTGC CTCTCATGAA
    ACCCCCAAAG AATGTGCTGA TGACTTTGGG GAGTTTCAGA GTGAAAAGCC CAAAATCAGC
    AAATTTGACT TTTTAGTAGC CAATTCACAA AGCAAAATGA AATCCAGTGA AGAAATGATC
    AAAAGTGAGC TGGCAACCTT TGACCTTTCT GTTCAAGGAT CACACAAGAG AAGCTTGAGC
    CTTGGGGATA AAGAAATAAG CCGGTCCTCT CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG
    GATCGTTCCA ACACTCTGAG TGAGAAGCCT GCTCTGCCTG TCATCCGTGA CAAGTACAAA
    GATCTGACAG GCGAGGTGGA GGAAAATGAG AGATATGCGT ATGAATGGCA GAGGTGCCTG
    GGGAGCGCCT TGGATGTCAT TAAGAAGGCA AATGACACCT TAAATGGAAT TAGTAGCAGT
    GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC CAAGGCATGG AATATTTATT AGGTGTCGTG
    GAAGTGTACC GAGTAACCAA ACGTGTGGAG CTGGGGATAA AAGCTACTGC TGTGTGCAGT
    GAGAAACTCC AGCAGTTGCT GAAGGACATT GATAAAGTGT GGAACAACCT AATCGGCTTC
    ATGTCACTCG CTACACTCAC ACCAGATGAA AATTCACTGG ATTTTTCCTC CTGTATGCTA
    CGGCCTGGGA TTAAAAACGC TCAGGAACTG GCTTGCGGGG TGTGCCTCTT AAATGTGGAT
    TCTAGGAGCC GGAAAGAAGA GAAGCCTACA GAAGAACATC CTAAAAAAGC ATTCAACGCA
    GAAACAGACA GTTTCAAGCT GGCCTATGGA GGGCACCAAT ATCACGCCAG CTGTGCCAAC
    TTCTGGATCA ACTGTGTTGA GCCCAAGCCT CCTGGCCTCA TCCTGCCAGA TCTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_029409413.1
    CDS41..4120
    Translation

    Target ORF information:

    RefSeq Version XM_029553553.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X7, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029553553.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGGAAGTGGG
    TCCTCCTCAG CCACCTCAGT TCTTCAAAAG AAAGAGACCT CATTTGGTAG CTCTGAAAAC
    AGCACCATGT CATCGCTCTC CAAAGTAACA ACCTTTGCAA GTGAGGATGC TCTTCCAGAG
    ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA GACATCATGC CTCAGACCAG TGAACAAAAG
    GAATATGAAA AATATGGAAG TGGGGACTAC CAGGATTTCC CAAGGCAGGA TCTGTCCGCA
    GCTGAACAGA GCCAGGAGAT CATGTGTCCA AGCCCAGCAT CCAGTGGTGC CTCTCATGAA
    ACCCCCAAAG AATGTGCTGA TGACTTTGGG GAGTTTCAGA GTGAAAAGCC CAAAATCAGC
    AAATTTGACT TTTTAGTAGC CAATTCACAA AGCAAAATGA AATCCAGTGA AGAAATGATC
    AAAAGTGAGC TGGCAACCTT TGACCTTTCT GTTCAAGGAT CACACAAGAG AAGCTTGAGC
    CTTGGGGATA AAGAAATAAG CCGGTCCTCT CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG
    GATCGTTCCA ACACTCTGAG TGAGAAGCCT GCTCTGCCTG TCATCCGTGA CAAGTACAAA
    GATCTGACAG GCGAGGTGGA GGAAAATGAG AGATATGCGT ATGAATGGCA GAGGTGCCTG
    GGGAGCGCCT TGGATGTCAT TAAGAAGGCA AATGACACCT TAAATGGAAT TAGTAGCAGT
    GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC CAAGGCATGG AATATTTATT AGGTGTCGTG
    GAAGTGTACC GAGTAACCAA ACGTGTGGAG CTGGGGATAA AAGCTACTGC TGTGTGCAGT
    GAGAAACTCC AGCAGTTGCT GAAGGACATT GATAAAGTGT GGAACAACCT AATCGGCTTC
    ATGTCACTCG CTACACTCAC ACCAGATGAA AATTCACTGG ATTTTTCCTC CTGTATGCTA
    CGGCCTGGGA TTAAAAACGC TCAGGAACTG GCTTGCGGGG TGTGCCTCTT AAATGTGGAT
    TCTAGGAGCC GGAAAGAAGA GAAGCCTACA GAAGAACATC CTAAAAAAGC ATTCAACGCA
    GAAACAGACA GTTTCAAGCT GGCCTATGGA GGGCACCAAT ATCACGCCAG CTGTGCCAAC
    TTCTGGATCA ACTGTGTTGA GCCCAAGCCT CCTGGCCTCA TCCTGCCAGA TCTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa135069
    Clone ID Related Accession (Same CDS sequence) XM_029553554.1
    Accession Version XM_029553554.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3921bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X9
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGGC CCTTCCTTGG AGGAGAAGCT CCTAGTATCT
    TGTGATATAA GTACATCTGG GCATGAACAA ATTAAATTAA GTACTCCTGA AGCTGGGCAC
    AAAGCTCTAG TCCCAGATTC CAGTGAGAAC CATCCCACTT TAACGGCCAG TCATGGGGGT
    GCTGTAGATG GATGTGTAAA TGGTCCCACC ACTGCAGAGG CAGAAAAGAC TTCAGACCAA
    AACCTGTCAA ATGAAGAGAG TGGTGTGGGT GTGTTTCCCT CGCAGGATCC TGTTCCACCC
    AGAATGCCTC CTTGGATTTA CAATGAAAGT TTGGTCCCAG ATACCTATAA GAAAATTTTA
    GAAACCACAG TGACTCCAAC TGGAATAGAT ACTGCTAAAC TTTATCCCAT TCTGATGTCA
    TCTGGACTTC CCAGGGAAAC TCTTGGACAG ATATGGGCCT TGGCCAATCG AACTACACCT
    GGCAAACTCA CTAAAGAAGA GCTTTACACT GTTCTCGCCA TGATAGCAGT AACGCAGAGG
    GGTGTTCCTG CCATGAGTCC TGATGCTTTG AATCAGTTCC CAGCAGCTCC CATTCCAACG
    TTAAGTGGCT TTTCTATGAC TCTGCCTACC CCAGTGAGCC AGCCGACTGT GATGCCCTCT
    GGCCCTTCAG GGTCCATGCC CCTCAGCCTT GGACAGCCAG TCATGGGCAT TAACCTTGTT
    GGACCAGTGG GTGGAGCTGC AGCCCCAGCT TCCAGTGGCT TCATGCCATC TTACCCAGCA
    AAACAGGTGG GAAAGACAGA AGAGGATGAC TTCCAGGAAT TTCAAGATGC TTCTAAGTCA
    GGATCCCTTG ATGACTCGTT CACTGACTTC CAAGAGGTGC CTCCTTCCTC AAAAACAAAT
    AATTCCCAGC ATGGAAACAG TGCTCCATCT TTGTTGATAC CACTTCCTGG AACTAAAGCT
    TCAAAGGATA AATATGCAGT GTTTAAAGGA ATTTCAGCTG ACAAACCCTC TGAAAATGCT
    GTTCCATTTG GAGAGTCTGC TGATAAATAC AGTGCTTTCC GGGAACTTGA GCAGACCACA
    GAGAATAAAC CTTTAGGAGA GAGCTTCACA GAATTCAGAT CTGCAGGAAC TGATGATGGT
    TTCACCGACT TTAAGACAGC CGACAGTATA TCACCTCTAG AGCCACCAAC GACAAAAGAC
    ACTTTCCCAA CATCCTTCCC CTCAGGACCT ATACAGCAGA AACAGCAAAC ACAAGTGAAA
    ACTCCTCTGA ACTTAGCAGA CCTGGATATG TTTTCCTCAG TTAATTGCAG CAATGAGAAA
    CCATTGCCCT TTTCAGCAGC ATTTAGCACA TCTAAGTCAG TTTCTACAAG ACCTCAGCCA
    GGGGGATCTA CTACAAGCCC AGCAGCACTG GCATCCACTA AAACTTCTAG TCTGGCTGAT
    GATTTTGGAG AATTCAACCT CTTTGGGGAA TATTCTAGTC CTGCATCAGT TGGGGAGCAG
    GATGACTTTG CAGATTTTAT GGCTTTCAGT AACAGCTCTA TTTCTTCTGA GCAAAAAGCA
    GATGACAAAT ATGATGTCCT CAGAGAGGAA CCAAGTCCCG TTCCTCTGAC CAGCAACTCA
    GGCAGTGAGG GAAAGAGTAC ACCTGCTACA TCCACCAAGT ATGATGTCTT CAAACAGCTT
    TCCCTAGAAG GAGCTGGACT AGGTGTCGAA GAGTTAAAAG ATAACACTCC TTTTGGAAAA
    GGTGATGATG ATTTTGCTGA TTTTCACTCC AATAAATTTT CATCCATGAA TTCGGAGAAA
    TCCCTGGGAG AGAAAGCAGT AGCTTTCAGA CACACCAAAG AAGACTCTGC TTCAGTGAAG
    TCCCTAGATC TCCCTTCTAT TGGTGGCAGC AGCATTGGCA AGGAGGACTC AGAAGATGCG
    CTTTCTGTTC AGTTTGACAT GAAACTGGCT GATGTGGGAG GAGATCTTAA GCATGTCATG
    TCTGATAGCT CTTTGGATTT ACCAACAGTT AGTGGCCAGC ATCCTCCTGC TGCAGATATA
    GAGGACTTAA AATATGCTAC TTTTGGAAGC TACAGTAGCA GTTTTACAGT GAGCACACTT
    ACAAGCTATG ACTGGTCAGA CAGGGATGAT GCATCTCAGG GCAGAAAACT CTCTCCATTT
    GTCCTCTCAG CAGGAAGTGG GTCCTCCTCA GCCACCTCAG TTCTTCAAAA GAAAGAGACC
    TCATTTGGTA GCTCTGAAAA CAGCACCATG TCATCGCTCT CCAAAGTAAC AACCTTTGCA
    AGTGAGGATG CTCTTCCAGA GACTCCCTTC CCGGCCTTTG CCAGCTTTAA AGACATCATG
    CCTCAGACCA GTGAACAAAA GGAATATGAA AAATATGGAA GTGGGGACTA CCAGGATTTC
    CCAAGGCAGG ATCTGTCCGC AGCTGAACAG AGCCAGGAGA TCATGTGTCC AAGCCCAGCA
    TCCAGTGGTG CCTCTCATGA AACCCCCAAA GAATGTGCTG ATGACTTTGG GGAGTTTCAG
    AGTGAAAAGC CCAAAATCAG CAAATTTGAC TTTTTAGTAG CCAATTCACA AAGCAAAATG
    AAATCCAGTG AAGAAATGAT CAAAAGTGAG CTGGCAACCT TTGACCTTTC TGTTCAAGGA
    TCACACAAGA GAAGCTTGAG CCTTGGGGAT AAAGAAATAA GCCGGTCCTC TCCTTCTCCA
    GCCCTTGAGC AGCCTTTCAG GGATCGTTCC AACACTCTGA GTGAGAAGCC TGCTCTGCCT
    GTCATCCGTG ACAAGTACAA AGATCTGACA GGCGAGGTGG AGGAAAATGA GAGATATGCG
    TATGAATGGC AGAGGTGCCT GGGGAGCGCC TTGGATGTCA TTAAGAAGGC AAATGACACC
    TTAAATGGAA TTAGTAGCAG TGCTGTTTGT ACAGAAGTTA TTCAGTCAGC CCAAGGCATG
    GAATATTTAT TAGGTGTCGT GGAAGTGTAC CGAGTAACCA AACGTGTGGA GCTGGGGATA
    AAAGCTACTG CTGTGTGCAG TGAGAAACTC CAGCAGTTGC TGAAGGACAT TGATAAAGTG
    TGGAACAACC TAATCGGCTT CATGTCACTC GCTACACTCA CACCAGATGA AAATTCACTG
    GATTTTTCCT CCTGTATGCT ACGGCCTGGG ATTAAAAACG CTCAGGAACT GGCTTGCGGG
    GTGTGCCTCT TAAATGTGGA TTCTAGGAGC CGGAAAGAAG AGAAGCCTAC AGAAGAACAT
    CCTAAAAAAG CATTCAACGC AGAAACAGAC AGTTTCAAGC TGGCCTATGG AGGGCACCAA
    TATCACGCCA GCTGTGCCAA CTTCTGGATC AACTGTGTTG AGCCCAAGCC TCCTGGCCTC
    ATCCTGCCAG ATCTGCTCTG A

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_029409414.1
    CDS32..3952
    Translation

    Target ORF information:

    RefSeq Version XM_029553554.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X9, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029553554.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGGC CCTTCCTTGG AGGAGAAGCT CCTAGTATCT
    TGTGATATAA GTACATCTGG GCATGAACAA ATTAAATTAA GTACTCCTGA AGCTGGGCAC
    AAAGCTCTAG TCCCAGATTC CAGTGAGAAC CATCCCACTT TAACGGCCAG TCATGGGGGT
    GCTGTAGATG GATGTGTAAA TGGTCCCACC ACTGCAGAGG CAGAAAAGAC TTCAGACCAA
    AACCTGTCAA ATGAAGAGAG TGGTGTGGGT GTGTTTCCCT CGCAGGATCC TGTTCCACCC
    AGAATGCCTC CTTGGATTTA CAATGAAAGT TTGGTCCCAG ATACCTATAA GAAAATTTTA
    GAAACCACAG TGACTCCAAC TGGAATAGAT ACTGCTAAAC TTTATCCCAT TCTGATGTCA
    TCTGGACTTC CCAGGGAAAC TCTTGGACAG ATATGGGCCT TGGCCAATCG AACTACACCT
    GGCAAACTCA CTAAAGAAGA GCTTTACACT GTTCTCGCCA TGATAGCAGT AACGCAGAGG
    GGTGTTCCTG CCATGAGTCC TGATGCTTTG AATCAGTTCC CAGCAGCTCC CATTCCAACG
    TTAAGTGGCT TTTCTATGAC TCTGCCTACC CCAGTGAGCC AGCCGACTGT GATGCCCTCT
    GGCCCTTCAG GGTCCATGCC CCTCAGCCTT GGACAGCCAG TCATGGGCAT TAACCTTGTT
    GGACCAGTGG GTGGAGCTGC AGCCCCAGCT TCCAGTGGCT TCATGCCATC TTACCCAGCA
    AAACAGGTGG GAAAGACAGA AGAGGATGAC TTCCAGGAAT TTCAAGATGC TTCTAAGTCA
    GGATCCCTTG ATGACTCGTT CACTGACTTC CAAGAGGTGC CTCCTTCCTC AAAAACAAAT
    AATTCCCAGC ATGGAAACAG TGCTCCATCT TTGTTGATAC CACTTCCTGG AACTAAAGCT
    TCAAAGGATA AATATGCAGT GTTTAAAGGA ATTTCAGCTG ACAAACCCTC TGAAAATGCT
    GTTCCATTTG GAGAGTCTGC TGATAAATAC AGTGCTTTCC GGGAACTTGA GCAGACCACA
    GAGAATAAAC CTTTAGGAGA GAGCTTCACA GAATTCAGAT CTGCAGGAAC TGATGATGGT
    TTCACCGACT TTAAGACAGC CGACAGTATA TCACCTCTAG AGCCACCAAC GACAAAAGAC
    ACTTTCCCAA CATCCTTCCC CTCAGGACCT ATACAGCAGA AACAGCAAAC ACAAGTGAAA
    ACTCCTCTGA ACTTAGCAGA CCTGGATATG TTTTCCTCAG TTAATTGCAG CAATGAGAAA
    CCATTGCCCT TTTCAGCAGC ATTTAGCACA TCTAAGTCAG TTTCTACAAG ACCTCAGCCA
    GGGGGATCTA CTACAAGCCC AGCAGCACTG GCATCCACTA AAACTTCTAG TCTGGCTGAT
    GATTTTGGAG AATTCAACCT CTTTGGGGAA TATTCTAGTC CTGCATCAGT TGGGGAGCAG
    GATGACTTTG CAGATTTTAT GGCTTTCAGT AACAGCTCTA TTTCTTCTGA GCAAAAAGCA
    GATGACAAAT ATGATGTCCT CAGAGAGGAA CCAAGTCCCG TTCCTCTGAC CAGCAACTCA
    GGCAGTGAGG GAAAGAGTAC ACCTGCTACA TCCACCAAGT ATGATGTCTT CAAACAGCTT
    TCCCTAGAAG GAGCTGGACT AGGTGTCGAA GAGTTAAAAG ATAACACTCC TTTTGGAAAA
    GGTGATGATG ATTTTGCTGA TTTTCACTCC AATAAATTTT CATCCATGAA TTCGGAGAAA
    TCCCTGGGAG AGAAAGCAGT AGCTTTCAGA CACACCAAAG AAGACTCTGC TTCAGTGAAG
    TCCCTAGATC TCCCTTCTAT TGGTGGCAGC AGCATTGGCA AGGAGGACTC AGAAGATGCG
    CTTTCTGTTC AGTTTGACAT GAAACTGGCT GATGTGGGAG GAGATCTTAA GCATGTCATG
    TCTGATAGCT CTTTGGATTT ACCAACAGTT AGTGGCCAGC ATCCTCCTGC TGCAGATATA
    GAGGACTTAA AATATGCTAC TTTTGGAAGC TACAGTAGCA GTTTTACAGT GAGCACACTT
    ACAAGCTATG ACTGGTCAGA CAGGGATGAT GCATCTCAGG GCAGAAAACT CTCTCCATTT
    GTCCTCTCAG CAGGAAGTGG GTCCTCCTCA GCCACCTCAG TTCTTCAAAA GAAAGAGACC
    TCATTTGGTA GCTCTGAAAA CAGCACCATG TCATCGCTCT CCAAAGTAAC AACCTTTGCA
    AGTGAGGATG CTCTTCCAGA GACTCCCTTC CCGGCCTTTG CCAGCTTTAA AGACATCATG
    CCTCAGACCA GTGAACAAAA GGAATATGAA AAATATGGAA GTGGGGACTA CCAGGATTTC
    CCAAGGCAGG ATCTGTCCGC AGCTGAACAG AGCCAGGAGA TCATGTGTCC AAGCCCAGCA
    TCCAGTGGTG CCTCTCATGA AACCCCCAAA GAATGTGCTG ATGACTTTGG GGAGTTTCAG
    AGTGAAAAGC CCAAAATCAG CAAATTTGAC TTTTTAGTAG CCAATTCACA AAGCAAAATG
    AAATCCAGTG AAGAAATGAT CAAAAGTGAG CTGGCAACCT TTGACCTTTC TGTTCAAGGA
    TCACACAAGA GAAGCTTGAG CCTTGGGGAT AAAGAAATAA GCCGGTCCTC TCCTTCTCCA
    GCCCTTGAGC AGCCTTTCAG GGATCGTTCC AACACTCTGA GTGAGAAGCC TGCTCTGCCT
    GTCATCCGTG ACAAGTACAA AGATCTGACA GGCGAGGTGG AGGAAAATGA GAGATATGCG
    TATGAATGGC AGAGGTGCCT GGGGAGCGCC TTGGATGTCA TTAAGAAGGC AAATGACACC
    TTAAATGGAA TTAGTAGCAG TGCTGTTTGT ACAGAAGTTA TTCAGTCAGC CCAAGGCATG
    GAATATTTAT TAGGTGTCGT GGAAGTGTAC CGAGTAACCA AACGTGTGGA GCTGGGGATA
    AAAGCTACTG CTGTGTGCAG TGAGAAACTC CAGCAGTTGC TGAAGGACAT TGATAAAGTG
    TGGAACAACC TAATCGGCTT CATGTCACTC GCTACACTCA CACCAGATGA AAATTCACTG
    GATTTTTCCT CCTGTATGCT ACGGCCTGGG ATTAAAAACG CTCAGGAACT GGCTTGCGGG
    GTGTGCCTCT TAAATGTGGA TTCTAGGAGC CGGAAAGAAG AGAAGCCTAC AGAAGAACAT
    CCTAAAAAAG CATTCAACGC AGAAACAGAC AGTTTCAAGC TGGCCTATGG AGGGCACCAA
    TATCACGCCA GCTGTGCCAA CTTCTGGATC AACTGTGTTG AGCCCAAGCC TCCTGGCCTC
    ATCCTGCCAG ATCTGCTCTG A

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa135070
    Clone ID Related Accession (Same CDS sequence) XM_029553555.1
    Accession Version XM_029553555.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3687bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X11
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGGT GTGGGTGTGT TTCCCTCGCA GGATCCTGTT
    CCACCCAGAA TGCCTCCTTG GATTTACAAT GAAAGTTTGG TCCCAGATAC CTATAAGAAA
    ATTTTAGAAA CCACAGTGAC TCCAACTGGA ATAGATACTG CTAAACTTTA TCCCATTCTG
    ATGTCATCTG GACTTCCCAG GGAAACTCTT GGACAGATAT GGGCCTTGGC CAATCGAACT
    ACACCTGGCA AACTCACTAA AGAAGAGCTT TACACTGTTC TCGCCATGAT AGCAGTAACG
    CAGAGGGGTG TTCCTGCCAT GAGTCCTGAT GCTTTGAATC AGTTCCCAGC AGCTCCCATT
    CCAACGTTAA GTGGCTTTTC TATGACTCTG CCTACCCCAG TGAGCCAGCC GACTGTGATG
    CCCTCTGGCC CTTCAGGGTC CATGCCCCTC AGCCTTGGAC AGCCAGTCAT GGGCATTAAC
    CTTGTTGGAC CAGTGGGTGG AGCTGCAGCC CCAGCTTCCA GTGGCTTCAT GCCATCTTAC
    CCAGCAAAAC AGGTGGGAAA GACAGAAGAG GATGACTTCC AGGAATTTCA AGATGCTTCT
    AAGTCAGGAT CCCTTGATGA CTCGTTCACT GACTTCCAAG AGGTGCCTCC TTCCTCAAAA
    ACAAATAATT CCCAGCATGG AAACAGTGCT CCATCTTTGT TGATACCACT TCCTGGAACT
    AAAGCTTCAA AGGATAAATA TGCAGTGTTT AAAGGAATTT CAGCTGACAA ACCCTCTGAA
    AATGCTGTTC CATTTGGAGA GTCTGCTGAT AAATACAGTG CTTTCCGGGA ACTTGAGCAG
    ACCACAGAGA ATAAACCTTT AGGAGAGAGC TTCACAGAAT TCAGATCTGC AGGAACTGAT
    GATGGTTTCA CCGACTTTAA GACAGCCGAC AGTATATCAC CTCTAGAGCC ACCAACGACA
    AAAGACACTT TCCCAACATC CTTCCCCTCA GGACCTATAC AGCAGAAACA GCAAACACAA
    GTGAAAACTC CTCTGAACTT AGCAGACCTG GATATGTTTT CCTCAGTTAA TTGCAGCAAT
    GAGAAACCAT TGCCCTTTTC AGCAGCATTT AGCACATCTA AGTCAGTTTC TACAAGACCT
    CAGCCAGGGG GATCTACTAC AAGCCCAGCA GCACTGGCAT CCACTAAAAC TTCTAGTCTG
    GCTGATGATT TTGGAGAATT CAACCTCTTT GGGGAATATT CTAGTCCTGC ATCAGTTGGG
    GAGCAGGATG ACTTTGCAGA TTTTATGGCT TTCAGTAACA GCTCTATTTC TTCTGAGCAA
    AAAGCAGATG ACAAATATGA TGTCCTCAGA GAGGAACCAA GTCCCGTTCC TCTGACCAGC
    AACTCAGGCA GTGAGGGAAA GAGTACACCT GCTACATCCA CCAAGTATGA TGTCTTCAAA
    CAGCTTTCCC TAGAAGGAGC TGGACTAGGT GTCGAAGAGT TAAAAGATAA CACTCCTTTT
    GGAAAAGGTG ATGATGATTT TGCTGATTTT CACTCCAATA AATTTTCATC CATGAATTCG
    GAGAAATCCC TGGGAGAGAA AGCAGTAGCT TTCAGACACA CCAAAGAAGA CTCTGCTTCA
    GTGAAGTCCC TAGATCTCCC TTCTATTGGT GGCAGCAGCA TTGGCAAGGA GGACTCAGAA
    GATGCGCTTT CTGTTCAGTT TGACATGAAA CTGGCTGATG TGGGAGGAGA TCTTAAGCAT
    GTCATGTCTG ATAGCTCTTT GGATTTACCA ACAGTTAGTG GCCAGCATCC TCCTGCTGCA
    GATATAGAGG ACTTAAAATA TGCTACTTTT GGAAGCTACA GTAGCAGTTT TACAGTGAGC
    ACACTTACAA GCTATGACTG GTCAGACAGG GATGATGCAT CTCAGGGCAG AAAACTCTCT
    CCATTTGTCC TCTCAGCAGG AAGTGGGTCC TCCTCAGCCA CCTCAGTTCT TCAAAAGAAA
    GAGACCTCAT TTGGTAGCTC TGAAAACAGC ACCATGTCAT CGCTCTCCAA AGTAACAACC
    TTTGCAAGTG AGGATGCTCT TCCAGAGACT CCCTTCCCGG CCTTTGCCAG CTTTAAAGAC
    ATCATGCCTC AGACCAGTGA ACAAAAGGAA TATGAAAAAT ATGGAAGTGG GGACTACCAG
    GATTTCCCAA GGCAGGATCT GTCCGCAGCT GAACAGAGCC AGGAGATCAT GTGTCCAAGC
    CCAGCATCCA GTGGTGCCTC TCATGAAACC CCCAAAGAAT GTGCTGATGA CTTTGGGGAG
    TTTCAGAGTG AAAAGCCCAA AATCAGCAAA TTTGACTTTT TAGTAGCCAA TTCACAAAGC
    AAAATGAAAT CCAGTGAAGA AATGATCAAA AGTGAGCTGG CAACCTTTGA CCTTTCTGTT
    CAAGGATCAC ACAAGAGAAG CTTGAGCCTT GGGGATAAAG AAATAAGCCG GTCCTCTCCT
    TCTCCAGCCC TTGAGCAGCC TTTCAGGGAT CGTTCCAACA CTCTGAGTGA GAAGCCTGCT
    CTGCCTGTCA TCCGTGACAA GTACAAAGAT CTGACAGGCG AGGTGGAGGA AAATGAGAGA
    TATGCGTATG AATGGCAGAG GTGCCTGGGG AGCGCCTTGG ATGTCATTAA GAAGGCAAAT
    GACACCTTAA ATGGAATTAG TAGCAGTGCT GTTTGTACAG AAGTTATTCA GTCAGCCCAA
    GGCATGGAAT ATTTATTAGG TGTCGTGGAA GTGTACCGAG TAACCAAACG TGTGGAGCTG
    GGGATAAAAG CTACTGCTGT GTGCAGTGAG AAACTCCAGC AGTTGCTGAA GGACATTGAT
    AAAGTGTGGA ACAACCTAAT CGGCTTCATG TCACTCGCTA CACTCACACC AGATGAAAAT
    TCACTGGATT TTTCCTCCTG TATGCTACGG CCTGGGATTA AAAACGCTCA GGAACTGGCT
    TGCGGGGTGT GCCTCTTAAA TGTGGATTCT AGGAGCCGGA AAGAAGAGAA GCCTACAGAA
    GAACATCCTA AAAAAGCATT CAACGCAGAA ACAGACAGTT TCAAGCTGGC CTATGGAGGG
    CACCAATATC ACGCCAGCTG TGCCAACTTC TGGATCAACT GTGTTGAGCC CAAGCCTCCT
    GGCCTCATCC TGCCAGATCT GCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_029409415.1
    CDS32..3718
    Translation

    Target ORF information:

    RefSeq Version XM_029553555.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X11, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029553555.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGGT GTGGGTGTGT TTCCCTCGCA GGATCCTGTT
    CCACCCAGAA TGCCTCCTTG GATTTACAAT GAAAGTTTGG TCCCAGATAC CTATAAGAAA
    ATTTTAGAAA CCACAGTGAC TCCAACTGGA ATAGATACTG CTAAACTTTA TCCCATTCTG
    ATGTCATCTG GACTTCCCAG GGAAACTCTT GGACAGATAT GGGCCTTGGC CAATCGAACT
    ACACCTGGCA AACTCACTAA AGAAGAGCTT TACACTGTTC TCGCCATGAT AGCAGTAACG
    CAGAGGGGTG TTCCTGCCAT GAGTCCTGAT GCTTTGAATC AGTTCCCAGC AGCTCCCATT
    CCAACGTTAA GTGGCTTTTC TATGACTCTG CCTACCCCAG TGAGCCAGCC GACTGTGATG
    CCCTCTGGCC CTTCAGGGTC CATGCCCCTC AGCCTTGGAC AGCCAGTCAT GGGCATTAAC
    CTTGTTGGAC CAGTGGGTGG AGCTGCAGCC CCAGCTTCCA GTGGCTTCAT GCCATCTTAC
    CCAGCAAAAC AGGTGGGAAA GACAGAAGAG GATGACTTCC AGGAATTTCA AGATGCTTCT
    AAGTCAGGAT CCCTTGATGA CTCGTTCACT GACTTCCAAG AGGTGCCTCC TTCCTCAAAA
    ACAAATAATT CCCAGCATGG AAACAGTGCT CCATCTTTGT TGATACCACT TCCTGGAACT
    AAAGCTTCAA AGGATAAATA TGCAGTGTTT AAAGGAATTT CAGCTGACAA ACCCTCTGAA
    AATGCTGTTC CATTTGGAGA GTCTGCTGAT AAATACAGTG CTTTCCGGGA ACTTGAGCAG
    ACCACAGAGA ATAAACCTTT AGGAGAGAGC TTCACAGAAT TCAGATCTGC AGGAACTGAT
    GATGGTTTCA CCGACTTTAA GACAGCCGAC AGTATATCAC CTCTAGAGCC ACCAACGACA
    AAAGACACTT TCCCAACATC CTTCCCCTCA GGACCTATAC AGCAGAAACA GCAAACACAA
    GTGAAAACTC CTCTGAACTT AGCAGACCTG GATATGTTTT CCTCAGTTAA TTGCAGCAAT
    GAGAAACCAT TGCCCTTTTC AGCAGCATTT AGCACATCTA AGTCAGTTTC TACAAGACCT
    CAGCCAGGGG GATCTACTAC AAGCCCAGCA GCACTGGCAT CCACTAAAAC TTCTAGTCTG
    GCTGATGATT TTGGAGAATT CAACCTCTTT GGGGAATATT CTAGTCCTGC ATCAGTTGGG
    GAGCAGGATG ACTTTGCAGA TTTTATGGCT TTCAGTAACA GCTCTATTTC TTCTGAGCAA
    AAAGCAGATG ACAAATATGA TGTCCTCAGA GAGGAACCAA GTCCCGTTCC TCTGACCAGC
    AACTCAGGCA GTGAGGGAAA GAGTACACCT GCTACATCCA CCAAGTATGA TGTCTTCAAA
    CAGCTTTCCC TAGAAGGAGC TGGACTAGGT GTCGAAGAGT TAAAAGATAA CACTCCTTTT
    GGAAAAGGTG ATGATGATTT TGCTGATTTT CACTCCAATA AATTTTCATC CATGAATTCG
    GAGAAATCCC TGGGAGAGAA AGCAGTAGCT TTCAGACACA CCAAAGAAGA CTCTGCTTCA
    GTGAAGTCCC TAGATCTCCC TTCTATTGGT GGCAGCAGCA TTGGCAAGGA GGACTCAGAA
    GATGCGCTTT CTGTTCAGTT TGACATGAAA CTGGCTGATG TGGGAGGAGA TCTTAAGCAT
    GTCATGTCTG ATAGCTCTTT GGATTTACCA ACAGTTAGTG GCCAGCATCC TCCTGCTGCA
    GATATAGAGG ACTTAAAATA TGCTACTTTT GGAAGCTACA GTAGCAGTTT TACAGTGAGC
    ACACTTACAA GCTATGACTG GTCAGACAGG GATGATGCAT CTCAGGGCAG AAAACTCTCT
    CCATTTGTCC TCTCAGCAGG AAGTGGGTCC TCCTCAGCCA CCTCAGTTCT TCAAAAGAAA
    GAGACCTCAT TTGGTAGCTC TGAAAACAGC ACCATGTCAT CGCTCTCCAA AGTAACAACC
    TTTGCAAGTG AGGATGCTCT TCCAGAGACT CCCTTCCCGG CCTTTGCCAG CTTTAAAGAC
    ATCATGCCTC AGACCAGTGA ACAAAAGGAA TATGAAAAAT ATGGAAGTGG GGACTACCAG
    GATTTCCCAA GGCAGGATCT GTCCGCAGCT GAACAGAGCC AGGAGATCAT GTGTCCAAGC
    CCAGCATCCA GTGGTGCCTC TCATGAAACC CCCAAAGAAT GTGCTGATGA CTTTGGGGAG
    TTTCAGAGTG AAAAGCCCAA AATCAGCAAA TTTGACTTTT TAGTAGCCAA TTCACAAAGC
    AAAATGAAAT CCAGTGAAGA AATGATCAAA AGTGAGCTGG CAACCTTTGA CCTTTCTGTT
    CAAGGATCAC ACAAGAGAAG CTTGAGCCTT GGGGATAAAG AAATAAGCCG GTCCTCTCCT
    TCTCCAGCCC TTGAGCAGCC TTTCAGGGAT CGTTCCAACA CTCTGAGTGA GAAGCCTGCT
    CTGCCTGTCA TCCGTGACAA GTACAAAGAT CTGACAGGCG AGGTGGAGGA AAATGAGAGA
    TATGCGTATG AATGGCAGAG GTGCCTGGGG AGCGCCTTGG ATGTCATTAA GAAGGCAAAT
    GACACCTTAA ATGGAATTAG TAGCAGTGCT GTTTGTACAG AAGTTATTCA GTCAGCCCAA
    GGCATGGAAT ATTTATTAGG TGTCGTGGAA GTGTACCGAG TAACCAAACG TGTGGAGCTG
    GGGATAAAAG CTACTGCTGT GTGCAGTGAG AAACTCCAGC AGTTGCTGAA GGACATTGAT
    AAAGTGTGGA ACAACCTAAT CGGCTTCATG TCACTCGCTA CACTCACACC AGATGAAAAT
    TCACTGGATT TTTCCTCCTG TATGCTACGG CCTGGGATTA AAAACGCTCA GGAACTGGCT
    TGCGGGGTGT GCCTCTTAAA TGTGGATTCT AGGAGCCGGA AAGAAGAGAA GCCTACAGAA
    GAACATCCTA AAAAAGCATT CAACGCAGAA ACAGACAGTT TCAAGCTGGC CTATGGAGGG
    CACCAATATC ACGCCAGCTG TGCCAACTTC TGGATCAACT GTGTTGAGCC CAAGCCTCCT
    GGCCTCATCC TGCCAGATCT GCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa135071
    Clone ID Related Accession (Same CDS sequence) XM_029553556.1
    Accession Version XM_029553556.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3885bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X14
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGGC CCTTCCTTGG AGGAGAAGCT CCTAGTATCT
    TGTGATATAA GTACATCTGG GCATGAACAA ATTAAATTAA GTACTCCTGA AGCTGGGCAC
    AAAGCTCTAG TCCCAGATTC CAGTGAGAAC CATCCCACTT TAACGGCCAG TCATGGGGGT
    GCTGTAGATG GATGTGTAAA TGGTCCCACC ACTGCAGAGG CAGAAAAGAC TTCAGACCAA
    AACCTGTCAA ATGAAGAGAG TGGTGTGGGT GTGTTTCCCT CGCAGGATCC TGTTCCACCC
    AGAATGCCTC CTTGGATTTA CAATGAAAGT TTGGTCCCAG ATACCTATAA GAAAATTTTA
    GAAACCACAG TGACTCCAAC TGGAATAGAT ACTGCTAAAC TTTATCCCAT TCTGATGTCA
    TCTGGACTTC CCAGGGAAAC TCTTGGACAG ATATGGGCCT TGGCCAATCG AACTACACCT
    GGCAAACTCA CTAAAGAAGA GCTTTACACT GTTCTCGCCA TGATAGCAGT AACGCAGAGG
    GGTGTTCCTG CCATGAGTCC TGATGCTTTG AATCAGTTCC CAGCAGCTCC CATTCCAACG
    TTAAGTGGCT TTTCTATGAC TCTGCCTACC CCAGTGAGCC AGCCGACTGT GATGCCCTCT
    GGCCCTTCAG GGTCCATGCC CCTCAGCCTT GGACAGCCAG TCATGGGCAT TAACCTTGTT
    GGACCAGTGG GTGGAGCTGC AGCCCCAGCT TCCAGTGGCT TCATGCCATC TTACCCAGCA
    AAACAGGTGG GAAAGACAGA AGAGGATGAC TTCCAGGAAT TTCAAGATGC TTCTAAGTCA
    GGATCCCTTG ATGACTCGTT CACTGACTTC CAAGAGGTGC CTCCTTCCTC AAAAACAAAT
    AATTCCCAGC ATGGAAACAG TGCTCCATCT TTGTTGATAC CACTTCCTGG AACTAAAGCT
    TCAAAGGATA AATATGCAGT GTTTAAAGGA ATTTCAGCTG ACAAACCCTC TGAAAATGCT
    GTTCCATTTG GAGAGTCTGC TGATAAATAC AGTGCTTTCC GGGAACTTGA GCAGACCACA
    GAGAATAAAC CTTTAGGAGA GAGCTTCACA GAATTCAGAT CTGCAGGAAC TGATGATGGT
    TTCACCGACT TTAAGACAGC CGACAGTATA TCACCTCTAG AGCCACCAAC GACAAAAGAC
    ACTTTCCCAA CATCCTTCCC CTCAGGACCT ATACAGCAGA AACAGCAAAC ACAAGTGAAA
    ACTCCTCTGA ACTTAGCAGA CCTGGATATG TTTTCCTCAG TTAATTGCAG CAATGAGAAA
    CCATTGCCCT TTTCAGCAGC ATTTAGCACA TCTAAGTCAG TTTCTACAAG ACCTCAGCCA
    GGGGGATCTA CTACAAGCCC AGCAGCACTG GCATCCACTA AAACTTCTAG TCTGGCTGAT
    GATTTTGGAG AATTCAACCT CTTTGGGGAA TATTCTAGTC CTGCATCAGT TGGGGAGCAG
    GATGACTTTG CAGATTTTAT GGCTTTCAGT AACAGCTCTA TTTCTTCTGA GCAAAAAGCA
    GATGACAAAT ATGATGTCCT CAGAGAGGAA CCAAGTCCCG TTCCTCTGAC CAGCAACTCA
    GGCAGTGAGG GAAAGAGTAC ACCTGCTACA TCCACCAAGT ATGATGTCTT CAAACAGCTT
    TCCCTAGAAG GAGCTGGACT AGGTGTCGAA GAGTTAAAAG ATAACACTCC TTTTGGAAAA
    GGTGATGATG ATTTTGCTGA TTTTCACTCC AATAAATTTT CATCCATGAA TTCGGAGAAA
    TCCCTGGGAG AGAAAGCAGT AGCTTTCAGA CACACCAAAG AAGACTCTGC TTCAGTGAAG
    TCCCTAGATC TCCCTTCTAT TGGTGGCAGC AGCATTGGCA AGGAGGACTC AGAAGATGCG
    CTTTCTGTTC AGTTTGACAT GAAACTGGCT GATGTGGGAG GAGATCTTAA GCATGTCATG
    TCTGATAGCT CTTTGGATTT ACCAACAGTT AGTGGCCAGC ATCCTCCTGC TGCAGATATA
    GAGGACTTAA AATATGCTAC TTTTGGAAGC TACAGTAGCA GTTTTACAGT GAGCACACTT
    ACAAGCTATG ACTGGTCAGA CAGGGATGAT GCATCTCAGG GCAGAAAACT CTCTCCATTT
    GTCCTCTCAG CAGGAAGTGG GTCCTCCTCA GCCACCTCAG TTCTTCAAAA GAAAGAGACC
    TCATTTGGTA GCTCTGAAAA CAGCACCATG TCATCGCTCT CCAAAGTAAC AACCTTTGCA
    AGTGAGGATG CTCTTCCAGA GACTCCCTTC CCGGCCTTTG CCAGCTTTAA AGACATCATG
    CCTCAGACCA GTGAACAAAA GGAATATGAA AAATATGGAA GTGGGGACTA CCAGGATTTC
    CCAAGGCAGG ATCTGTCCGC AGCTGAACAG AGCCAGGAGA TCATGTGTCC AAGCCCAGCA
    TCCAGTGGTG CCTCTCATGA AACCCCCAAA GAATGTGCTG ATGACTTTGG GGAGTTTCAG
    AGTGAAAAGC CCAAAATCAG CAAATTTGAC TTTTTAGTAG CCAATTCACA AAGCAAAATG
    AAATCCAGTG AAGAAATGAT CAAAAGTGAG CTGGCAACCT TTGACCTTTC TGTTCAAGGA
    TCACACAAGA GAAGCTTGAG CCTTGGGGAT AAAGAAATAA GCCGGTCCTC TCCTTCTCCA
    GCCCTTGAGC AGCCTTTCAG GGATCGTTCC AACACTCTGA GTGAGAAGCC TGCTCTGCCT
    GTCATCCGTG ACAAGTACAA AGATCTGACA GGCGAGGTGG AGGAAAATGA GAGATATGCG
    TATGAATGGC AGAGGTGCCT GGGGAGCGCC TTGGATGTCA TTAAGAAGGC AAATGACACC
    TTAAATGGAA TTAGTAGCAG TGCTGTTTGT ACAGAAGTTA TTCAGTCAGC CCAAGGCATG
    GAATATTTAT TAGGTGTCGT GGAAGTGTAC CGAGTAACCA AACGTGTGGA GCTGGGGATA
    AAAGCTACTG CTGTGTGCAG TGAGAAACTC CAGCAGTTGC TGAAGGACAT TGATAAAGTG
    TGGAACAACC TAATCGGCTT CATGTCACTC GCTACACTCA CACCAGATGA AAATTCACTG
    GATTTTTCCT CCTGTATGCT ACGGCCTGGG ATTAAAAACG CTCAGGAACT GGCTTGCGGG
    GTGTGCCTCT TAAATGTGGA TTCTAGGAGC CGGGCATTCA ACGCAGAAAC AGACAGTTTC
    AAGCTGGCCT ATGGAGGGCA CCAATATCAC GCCAGCTGTG CCAACTTCTG GATCAACTGT
    GTTGAGCCCA AGCCTCCTGG CCTCATCCTG CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_029409416.1
    CDS33..3917
    Translation

    Target ORF information:

    RefSeq Version XM_029553556.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X14, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029553556.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGGC CCTTCCTTGG AGGAGAAGCT CCTAGTATCT
    TGTGATATAA GTACATCTGG GCATGAACAA ATTAAATTAA GTACTCCTGA AGCTGGGCAC
    AAAGCTCTAG TCCCAGATTC CAGTGAGAAC CATCCCACTT TAACGGCCAG TCATGGGGGT
    GCTGTAGATG GATGTGTAAA TGGTCCCACC ACTGCAGAGG CAGAAAAGAC TTCAGACCAA
    AACCTGTCAA ATGAAGAGAG TGGTGTGGGT GTGTTTCCCT CGCAGGATCC TGTTCCACCC
    AGAATGCCTC CTTGGATTTA CAATGAAAGT TTGGTCCCAG ATACCTATAA GAAAATTTTA
    GAAACCACAG TGACTCCAAC TGGAATAGAT ACTGCTAAAC TTTATCCCAT TCTGATGTCA
    TCTGGACTTC CCAGGGAAAC TCTTGGACAG ATATGGGCCT TGGCCAATCG AACTACACCT
    GGCAAACTCA CTAAAGAAGA GCTTTACACT GTTCTCGCCA TGATAGCAGT AACGCAGAGG
    GGTGTTCCTG CCATGAGTCC TGATGCTTTG AATCAGTTCC CAGCAGCTCC CATTCCAACG
    TTAAGTGGCT TTTCTATGAC TCTGCCTACC CCAGTGAGCC AGCCGACTGT GATGCCCTCT
    GGCCCTTCAG GGTCCATGCC CCTCAGCCTT GGACAGCCAG TCATGGGCAT TAACCTTGTT
    GGACCAGTGG GTGGAGCTGC AGCCCCAGCT TCCAGTGGCT TCATGCCATC TTACCCAGCA
    AAACAGGTGG GAAAGACAGA AGAGGATGAC TTCCAGGAAT TTCAAGATGC TTCTAAGTCA
    GGATCCCTTG ATGACTCGTT CACTGACTTC CAAGAGGTGC CTCCTTCCTC AAAAACAAAT
    AATTCCCAGC ATGGAAACAG TGCTCCATCT TTGTTGATAC CACTTCCTGG AACTAAAGCT
    TCAAAGGATA AATATGCAGT GTTTAAAGGA ATTTCAGCTG ACAAACCCTC TGAAAATGCT
    GTTCCATTTG GAGAGTCTGC TGATAAATAC AGTGCTTTCC GGGAACTTGA GCAGACCACA
    GAGAATAAAC CTTTAGGAGA GAGCTTCACA GAATTCAGAT CTGCAGGAAC TGATGATGGT
    TTCACCGACT TTAAGACAGC CGACAGTATA TCACCTCTAG AGCCACCAAC GACAAAAGAC
    ACTTTCCCAA CATCCTTCCC CTCAGGACCT ATACAGCAGA AACAGCAAAC ACAAGTGAAA
    ACTCCTCTGA ACTTAGCAGA CCTGGATATG TTTTCCTCAG TTAATTGCAG CAATGAGAAA
    CCATTGCCCT TTTCAGCAGC ATTTAGCACA TCTAAGTCAG TTTCTACAAG ACCTCAGCCA
    GGGGGATCTA CTACAAGCCC AGCAGCACTG GCATCCACTA AAACTTCTAG TCTGGCTGAT
    GATTTTGGAG AATTCAACCT CTTTGGGGAA TATTCTAGTC CTGCATCAGT TGGGGAGCAG
    GATGACTTTG CAGATTTTAT GGCTTTCAGT AACAGCTCTA TTTCTTCTGA GCAAAAAGCA
    GATGACAAAT ATGATGTCCT CAGAGAGGAA CCAAGTCCCG TTCCTCTGAC CAGCAACTCA
    GGCAGTGAGG GAAAGAGTAC ACCTGCTACA TCCACCAAGT ATGATGTCTT CAAACAGCTT
    TCCCTAGAAG GAGCTGGACT AGGTGTCGAA GAGTTAAAAG ATAACACTCC TTTTGGAAAA
    GGTGATGATG ATTTTGCTGA TTTTCACTCC AATAAATTTT CATCCATGAA TTCGGAGAAA
    TCCCTGGGAG AGAAAGCAGT AGCTTTCAGA CACACCAAAG AAGACTCTGC TTCAGTGAAG
    TCCCTAGATC TCCCTTCTAT TGGTGGCAGC AGCATTGGCA AGGAGGACTC AGAAGATGCG
    CTTTCTGTTC AGTTTGACAT GAAACTGGCT GATGTGGGAG GAGATCTTAA GCATGTCATG
    TCTGATAGCT CTTTGGATTT ACCAACAGTT AGTGGCCAGC ATCCTCCTGC TGCAGATATA
    GAGGACTTAA AATATGCTAC TTTTGGAAGC TACAGTAGCA GTTTTACAGT GAGCACACTT
    ACAAGCTATG ACTGGTCAGA CAGGGATGAT GCATCTCAGG GCAGAAAACT CTCTCCATTT
    GTCCTCTCAG CAGGAAGTGG GTCCTCCTCA GCCACCTCAG TTCTTCAAAA GAAAGAGACC
    TCATTTGGTA GCTCTGAAAA CAGCACCATG TCATCGCTCT CCAAAGTAAC AACCTTTGCA
    AGTGAGGATG CTCTTCCAGA GACTCCCTTC CCGGCCTTTG CCAGCTTTAA AGACATCATG
    CCTCAGACCA GTGAACAAAA GGAATATGAA AAATATGGAA GTGGGGACTA CCAGGATTTC
    CCAAGGCAGG ATCTGTCCGC AGCTGAACAG AGCCAGGAGA TCATGTGTCC AAGCCCAGCA
    TCCAGTGGTG CCTCTCATGA AACCCCCAAA GAATGTGCTG ATGACTTTGG GGAGTTTCAG
    AGTGAAAAGC CCAAAATCAG CAAATTTGAC TTTTTAGTAG CCAATTCACA AAGCAAAATG
    AAATCCAGTG AAGAAATGAT CAAAAGTGAG CTGGCAACCT TTGACCTTTC TGTTCAAGGA
    TCACACAAGA GAAGCTTGAG CCTTGGGGAT AAAGAAATAA GCCGGTCCTC TCCTTCTCCA
    GCCCTTGAGC AGCCTTTCAG GGATCGTTCC AACACTCTGA GTGAGAAGCC TGCTCTGCCT
    GTCATCCGTG ACAAGTACAA AGATCTGACA GGCGAGGTGG AGGAAAATGA GAGATATGCG
    TATGAATGGC AGAGGTGCCT GGGGAGCGCC TTGGATGTCA TTAAGAAGGC AAATGACACC
    TTAAATGGAA TTAGTAGCAG TGCTGTTTGT ACAGAAGTTA TTCAGTCAGC CCAAGGCATG
    GAATATTTAT TAGGTGTCGT GGAAGTGTAC CGAGTAACCA AACGTGTGGA GCTGGGGATA
    AAAGCTACTG CTGTGTGCAG TGAGAAACTC CAGCAGTTGC TGAAGGACAT TGATAAAGTG
    TGGAACAACC TAATCGGCTT CATGTCACTC GCTACACTCA CACCAGATGA AAATTCACTG
    GATTTTTCCT CCTGTATGCT ACGGCCTGGG ATTAAAAACG CTCAGGAACT GGCTTGCGGG
    GTGTGCCTCT TAAATGTGGA TTCTAGGAGC CGGGCATTCA ACGCAGAAAC AGACAGTTTC
    AAGCTGGCCT ATGGAGGGCA CCAATATCAC GCCAGCTGTG CCAACTTCTG GATCAACTGT
    GTTGAGCCCA AGCCTCCTGG CCTCATCCTG CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa135072
    Clone ID Related Accession (Same CDS sequence) XM_029553557.1
    Accession Version XM_029553557.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3651bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X15
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGGT GTGGGTGTGT TTCCCTCGCA GGATCCTGTT
    CCACCCAGAA TGCCTCCTTG GATTTACAAT GAAAGTTTGG TCCCAGATAC CTATAAGAAA
    ATTTTAGAAA CCACAGTGAC TCCAACTGGA ATAGATACTG CTAAACTTTA TCCCATTCTG
    ATGTCATCTG GACTTCCCAG GGAAACTCTT GGACAGATAT GGGCCTTGGC CAATCGAACT
    ACACCTGGCA AACTCACTAA AGAAGAGCTT TACACTGTTC TCGCCATGAT AGCAGTAACG
    CAGAGGGGTG TTCCTGCCAT GAGTCCTGAT GCTTTGAATC AGTTCCCAGC AGCTCCCATT
    CCAACGTTAA GTGGCTTTTC TATGACTCTG CCTACCCCAG TGAGCCAGCC GACTGTGATG
    CCCTCTGGCC CTTCAGGGTC CATGCCCCTC AGCCTTGGAC AGCCAGTCAT GGGCATTAAC
    CTTGTTGGAC CAGTGGGTGG AGCTGCAGCC CCAGCTTCCA GTGGCTTCAT GCCATCTTAC
    CCAGCAAAAC AGGTGGGAAA GACAGAAGAG GATGACTTCC AGGAATTTCA AGATGCTTCT
    AAGTCAGGAT CCCTTGATGA CTCGTTCACT GACTTCCAAG AGGTGCCTCC TTCCTCAAAA
    ACAAATAATT CCCAGCATGG AAACAGTGCT CCATCTTTGT TGATACCACT TCCTGGAACT
    AAAGCTTCAA AGGATAAATA TGCAGTGTTT AAAGGAATTT CAGCTGACAA ACCCTCTGAA
    AATGCTGTTC CATTTGGAGA GTCTGCTGAT AAATACAGTG CTTTCCGGGA ACTTGAGCAG
    ACCACAGAGA ATAAACCTTT AGGAGAGAGC TTCACAGAAT TCAGATCTGC AGGAACTGAT
    GATGGTTTCA CCGACTTTAA GACAGCCGAC AGTATATCAC CTCTAGAGCC ACCAACGACA
    AAAGACACTT TCCCAACATC CTTCCCCTCA GGACCTATAC AGCAGAAACA GCAAACACAA
    GTGAAAACTC CTCTGAACTT AGCAGACCTG GATATGTTTT CCTCAGTTAA TTGCAGCAAT
    GAGAAACCAT TGCCCTTTTC AGCAGCATTT AGCACATCTA AGTCAGTTTC TACAAGACCT
    CAGCCAGGGG GATCTACTAC AAGCCCAGCA GCACTGGCAT CCACTAAAAC TTCTAGTCTG
    GCTGATGATT TTGGAGAATT CAACCTCTTT GGGGAATATT CTAGTCCTGC ATCAGTTGGG
    GAGCAGGATG ACTTTGCAGA TTTTATGGCT TTCAGTAACA GCTCTATTTC TTCTGAGCAA
    AAAGCAGATG ACAAATATGA TGTCCTCAGA GAGGAACCAA GTCCCGTTCC TCTGACCAGC
    AACTCAGGCA GTGAGGGAAA GAGTACACCT GCTACATCCA CCAAGTATGA TGTCTTCAAA
    CAGCTTTCCC TAGAAGGAGC TGGACTAGGT GTCGAAGAGT TAAAAGATAA CACTCCTTTT
    GGAAAAGGTG ATGATGATTT TGCTGATTTT CACTCCAATA AATTTTCATC CATGAATTCG
    GAGAAATCCC TGGGAGAGAA AGCAGTAGCT TTCAGACACA CCAAAGAAGA CTCTGCTTCA
    GTGAAGTCCC TAGATCTCCC TTCTATTGGT GGCAGCAGCA TTGGCAAGGA GGACTCAGAA
    GATGCGCTTT CTGTTCAGTT TGACATGAAA CTGGCTGATG TGGGAGGAGA TCTTAAGCAT
    GTCATGTCTG ATAGCTCTTT GGATTTACCA ACAGTTAGTG GCCAGCATCC TCCTGCTGCA
    GATATAGAGG ACTTAAAATA TGCTACTTTT GGAAGCTACA GTAGCAGTTT TACAGTGAGC
    ACACTTACAA GCTATGACTG GTCAGACAGG GATGATGCAT CTCAGGGCAG AAAACTCTCT
    CCATTTGTCC TCTCAGCAGG AAGTGGGTCC TCCTCAGCCA CCTCAGTTCT TCAAAAGAAA
    GAGACCTCAT TTGGTAGCTC TGAAAACAGC ACCATGTCAT CGCTCTCCAA AGTAACAACC
    TTTGCAAGTG AGGATGCTCT TCCAGAGACT CCCTTCCCGG CCTTTGCCAG CTTTAAAGAC
    ATCATGCCTC AGACCAGTGA ACAAAAGGAA TATGAAAAAT ATGGAAGTGG GGACTACCAG
    GATTTCCCAA GGCAGGATCT GTCCGCAGCT GAACAGAGCC AGGAGATCAT GTGTCCAAGC
    CCAGCATCCA GTGGTGCCTC TCATGAAACC CCCAAAGAAT GTGCTGATGA CTTTGGGGAG
    TTTCAGAGTG AAAAGCCCAA AATCAGCAAA TTTGACTTTT TAGTAGCCAA TTCACAAAGC
    AAAATGAAAT CCAGTGAAGA AATGATCAAA AGTGAGCTGG CAACCTTTGA CCTTTCTGTT
    CAAGGATCAC ACAAGAGAAG CTTGAGCCTT GGGGATAAAG AAATAAGCCG GTCCTCTCCT
    TCTCCAGCCC TTGAGCAGCC TTTCAGGGAT CGTTCCAACA CTCTGAGTGA GAAGCCTGCT
    CTGCCTGTCA TCCGTGACAA GTACAAAGAT CTGACAGGCG AGGTGGAGGA AAATGAGAGA
    TATGCGTATG AATGGCAGAG GTGCCTGGGG AGCGCCTTGG ATGTCATTAA GAAGGCAAAT
    GACACCTTAA ATGGAATTAG TAGCAGTGCT GTTTGTACAG AAGTTATTCA GTCAGCCCAA
    GGCATGGAAT ATTTATTAGG TGTCGTGGAA GTGTACCGAG TAACCAAACG TGTGGAGCTG
    GGGATAAAAG CTACTGCTGT GTGCAGTGAG AAACTCCAGC AGTTGCTGAA GGACATTGAT
    AAAGTGTGGA ACAACCTAAT CGGCTTCATG TCACTCGCTA CACTCACACC AGATGAAAAT
    TCACTGGATT TTTCCTCCTG TATGCTACGG CCTGGGATTA AAAACGCTCA GGAACTGGCT
    TGCGGGGTGT GCCTCTTAAA TGTGGATTCT AGGAGCCGGG CATTCAACGC AGAAACAGAC
    AGTTTCAAGC TGGCCTATGG AGGGCACCAA TATCACGCCA GCTGTGCCAA CTTCTGGATC
    AACTGTGTTG AGCCCAAGCC TCCTGGCCTC ATCCTGCCAG ATCTGCTCTG A

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_029409417.1
    CDS32..3682
    Translation

    Target ORF information:

    RefSeq Version XM_029553557.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X15, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029553557.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG GCCTGATGCC AATGCAGCAG
    CAAGGATTTC CTATGGTCTC TGTCATGCAG CCCAATATGC AAGGCATGAT GGGAATGAAT
    TACAGCTCTC AAATGTCCCA AGGACCCATT GCGATGCAGG CAGGGTTACC GATGGCGCCA
    ATGCCGGCAG CAGGCATGCC TTACCTGGGG CAGGCACCAT TCCTGGGCAT GCGTCCTCCA
    GGCCCACAGT ACACTCCAGA CATGCAGAAG CAGTTTGCTG AAGAGCAACA AAAACGATTT
    GAACAGCAAC AAAAACTCTT AGAAGAAGAA AGAAAAAGAC GCCAGTTTGA AGAGCAAAAG
    CAAAAGCTCA GACTTCTGAG TAGCGTGAAA CCCAAGACAG GAGAGAAGAA CAGAGACGAT
    GCTTTGGAAG CCATAAAAGG AAACTTGGAT GGGTTTTCCA GAGATGCTAA GATGCATCCT
    ACTCCAGCAT CGCACCCCAA GAAACCAGGT GTGGGTGTGT TTCCCTCGCA GGATCCTGTT
    CCACCCAGAA TGCCTCCTTG GATTTACAAT GAAAGTTTGG TCCCAGATAC CTATAAGAAA
    ATTTTAGAAA CCACAGTGAC TCCAACTGGA ATAGATACTG CTAAACTTTA TCCCATTCTG
    ATGTCATCTG GACTTCCCAG GGAAACTCTT GGACAGATAT GGGCCTTGGC CAATCGAACT
    ACACCTGGCA AACTCACTAA AGAAGAGCTT TACACTGTTC TCGCCATGAT AGCAGTAACG
    CAGAGGGGTG TTCCTGCCAT GAGTCCTGAT GCTTTGAATC AGTTCCCAGC AGCTCCCATT
    CCAACGTTAA GTGGCTTTTC TATGACTCTG CCTACCCCAG TGAGCCAGCC GACTGTGATG
    CCCTCTGGCC CTTCAGGGTC CATGCCCCTC AGCCTTGGAC AGCCAGTCAT GGGCATTAAC
    CTTGTTGGAC CAGTGGGTGG AGCTGCAGCC CCAGCTTCCA GTGGCTTCAT GCCATCTTAC
    CCAGCAAAAC AGGTGGGAAA GACAGAAGAG GATGACTTCC AGGAATTTCA AGATGCTTCT
    AAGTCAGGAT CCCTTGATGA CTCGTTCACT GACTTCCAAG AGGTGCCTCC TTCCTCAAAA
    ACAAATAATT CCCAGCATGG AAACAGTGCT CCATCTTTGT TGATACCACT TCCTGGAACT
    AAAGCTTCAA AGGATAAATA TGCAGTGTTT AAAGGAATTT CAGCTGACAA ACCCTCTGAA
    AATGCTGTTC CATTTGGAGA GTCTGCTGAT AAATACAGTG CTTTCCGGGA ACTTGAGCAG
    ACCACAGAGA ATAAACCTTT AGGAGAGAGC TTCACAGAAT TCAGATCTGC AGGAACTGAT
    GATGGTTTCA CCGACTTTAA GACAGCCGAC AGTATATCAC CTCTAGAGCC ACCAACGACA
    AAAGACACTT TCCCAACATC CTTCCCCTCA GGACCTATAC AGCAGAAACA GCAAACACAA
    GTGAAAACTC CTCTGAACTT AGCAGACCTG GATATGTTTT CCTCAGTTAA TTGCAGCAAT
    GAGAAACCAT TGCCCTTTTC AGCAGCATTT AGCACATCTA AGTCAGTTTC TACAAGACCT
    CAGCCAGGGG GATCTACTAC AAGCCCAGCA GCACTGGCAT CCACTAAAAC TTCTAGTCTG
    GCTGATGATT TTGGAGAATT CAACCTCTTT GGGGAATATT CTAGTCCTGC ATCAGTTGGG
    GAGCAGGATG ACTTTGCAGA TTTTATGGCT TTCAGTAACA GCTCTATTTC TTCTGAGCAA
    AAAGCAGATG ACAAATATGA TGTCCTCAGA GAGGAACCAA GTCCCGTTCC TCTGACCAGC
    AACTCAGGCA GTGAGGGAAA GAGTACACCT GCTACATCCA CCAAGTATGA TGTCTTCAAA
    CAGCTTTCCC TAGAAGGAGC TGGACTAGGT GTCGAAGAGT TAAAAGATAA CACTCCTTTT
    GGAAAAGGTG ATGATGATTT TGCTGATTTT CACTCCAATA AATTTTCATC CATGAATTCG
    GAGAAATCCC TGGGAGAGAA AGCAGTAGCT TTCAGACACA CCAAAGAAGA CTCTGCTTCA
    GTGAAGTCCC TAGATCTCCC TTCTATTGGT GGCAGCAGCA TTGGCAAGGA GGACTCAGAA
    GATGCGCTTT CTGTTCAGTT TGACATGAAA CTGGCTGATG TGGGAGGAGA TCTTAAGCAT
    GTCATGTCTG ATAGCTCTTT GGATTTACCA ACAGTTAGTG GCCAGCATCC TCCTGCTGCA
    GATATAGAGG ACTTAAAATA TGCTACTTTT GGAAGCTACA GTAGCAGTTT TACAGTGAGC
    ACACTTACAA GCTATGACTG GTCAGACAGG GATGATGCAT CTCAGGGCAG AAAACTCTCT
    CCATTTGTCC TCTCAGCAGG AAGTGGGTCC TCCTCAGCCA CCTCAGTTCT TCAAAAGAAA
    GAGACCTCAT TTGGTAGCTC TGAAAACAGC ACCATGTCAT CGCTCTCCAA AGTAACAACC
    TTTGCAAGTG AGGATGCTCT TCCAGAGACT CCCTTCCCGG CCTTTGCCAG CTTTAAAGAC
    ATCATGCCTC AGACCAGTGA ACAAAAGGAA TATGAAAAAT ATGGAAGTGG GGACTACCAG
    GATTTCCCAA GGCAGGATCT GTCCGCAGCT GAACAGAGCC AGGAGATCAT GTGTCCAAGC
    CCAGCATCCA GTGGTGCCTC TCATGAAACC CCCAAAGAAT GTGCTGATGA CTTTGGGGAG
    TTTCAGAGTG AAAAGCCCAA AATCAGCAAA TTTGACTTTT TAGTAGCCAA TTCACAAAGC
    AAAATGAAAT CCAGTGAAGA AATGATCAAA AGTGAGCTGG CAACCTTTGA CCTTTCTGTT
    CAAGGATCAC ACAAGAGAAG CTTGAGCCTT GGGGATAAAG AAATAAGCCG GTCCTCTCCT
    TCTCCAGCCC TTGAGCAGCC TTTCAGGGAT CGTTCCAACA CTCTGAGTGA GAAGCCTGCT
    CTGCCTGTCA TCCGTGACAA GTACAAAGAT CTGACAGGCG AGGTGGAGGA AAATGAGAGA
    TATGCGTATG AATGGCAGAG GTGCCTGGGG AGCGCCTTGG ATGTCATTAA GAAGGCAAAT
    GACACCTTAA ATGGAATTAG TAGCAGTGCT GTTTGTACAG AAGTTATTCA GTCAGCCCAA
    GGCATGGAAT ATTTATTAGG TGTCGTGGAA GTGTACCGAG TAACCAAACG TGTGGAGCTG
    GGGATAAAAG CTACTGCTGT GTGCAGTGAG AAACTCCAGC AGTTGCTGAA GGACATTGAT
    AAAGTGTGGA ACAACCTAAT CGGCTTCATG TCACTCGCTA CACTCACACC AGATGAAAAT
    TCACTGGATT TTTCCTCCTG TATGCTACGG CCTGGGATTA AAAACGCTCA GGAACTGGCT
    TGCGGGGTGT GCCTCTTAAA TGTGGATTCT AGGAGCCGGG CATTCAACGC AGAAACAGAC
    AGTTTCAAGC TGGCCTATGG AGGGCACCAA TATCACGCCA GCTGTGCCAA CTTCTGGATC
    AACTGTGTTG AGCCCAAGCC TCCTGGCCTC ATCCTGCCAG ATCTGCTCTG A

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30859
    Clone ID Related Accession (Same CDS sequence) XM_008848103.2
    Accession Version XM_008848103.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3462bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X9
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848103.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGGTACTCT ACGTGAGATC GTCTCAGAAA CAGGCACTCC TTCTAAGCTG GACATGGTGG 
    TGCATGCCTA TAATTGCAGC AATTGGAAGA ATGAGGCAGA AGGATTGCTG CCCTTCCTTG
    GAGGAGAAGC TCCTAGTATC TTGTGATATA AGTACATCTG GGCATGAACA AATTAAATTA
    AGTACTCCTG AAGCTGGGCA CAAAGCTCTA GTCCCAGATT CCAGTGAGAA CCATCCCACT
    TTAACGGCCA GTCATGGGGG TGCTGTAGAT GGATGTGTAA ATGGTCCCAC CACTGCAGAG
    GCAGAAAAGA CTTCAGACCA AAACCTGTCA AATGAAGAGA GTGGTGTGGG TGTGTTTCCC
    TCGCAGGATC CTGTTCCACC CAGAATGCCT CCTTGGATTT ACAATGAAAG TTTGGTCCCA
    GATACCTATA AGAAAATTTT AGAAACCACA GTGACTCCAA CTGGAATAGA TACTGCTAAA
    CTTTATCCCA TTCTGATGTC ATCTGGACTT CCCAGGGAAA CTCTTGGACA GATATGGGCC
    TTGGCCAATC GAACTACACC TGGCAAACTC ACTAAAGAAG AGCTTTACAC TGTTCTCGCC
    ATGATAGCAG TAACGCAGAG GGGTGTTCCT GCCATGAGTC CTGATGCTTT GAATCAGTTC
    CCAGCAGCTC CCATTCCAAC GTTAAGTGGC TTTTCTATGA CTCTGCCTAC CCCAGTGAGC
    CAGCCGACTG TGATGCCCTC TGGCCCTTCA GGGTCCATGC CCCTCAGCCT TGGACAGCCA
    GTCATGGGCA TTAACCTTGT TGGACCAGTG GGTGGAGCTG CAGCCCCAGC TTCCAGTGGC
    TTCATGCCAT CTTACCCAGC AAAACAGGTG GGAAAGACAG AAGAGGATGA CTTCCAGGAA
    TTTCAAGATG CTTCTAAGTC AGGATCCCTT GATGACTCGT TCACTGACTT CCAAGAGGTG
    CCTCCTTCCT CAAAAACAAA TAATTCCCAG CATGGAAACA GTGCTCCATC TTTGTTGATA
    CCACTTCCTG GAACTAAAGC TTCAAAGGAT AAATATGCAG TGTTTAAAGG AATTTCAGCT
    GACAAACCCT CTGAAAATGC TGTTCCATTT GGAGAGTCTG CTGATAAATA CAGTGCTTTC
    CGGGAACTTG AGCAGACCAC AGAGAATAAA CCTTTAGGAG AGAGCTTCAC AGAATTCAGA
    TCTGCAGGAA CTGATGATGG TTTCACCGAC TTTAAGACAG CCGACAGTAT ATCACCTCTA
    GAGCCACCAA CGACAAAAGA CACTTTCCCA ACATCCTTCC CCTCAGGACC TATACAGCAG
    AAACAGCAAA CACAAGTGAA AACTCCTCTG AACTTAGCAG ACCTGGATAT GTTTTCCTCA
    GTTAATTGCA GCAATGAGAA ACCATTGCCC TTTTCAGCAG CATTTAGCAC ATCTAAGTCA
    GTTTCTACAA GACCTCAGCC AGGGGGATCT ACTACAAGCC CAGCAGCACT GGCATCCACT
    AAAACTTCTA GTCTGGCTGA TGATTTTGGA GAATTCAACC TCTTTGGGGA ATATTCTAGT
    CCTGCATCAG TTGGGGAGCA GGATGACTTT GCAGATTTTA TGGCTTTCAG TAACAGCTCT
    ATTTCTTCTG AGCAAAAAGC AGATGACAAA TATGATGTCC TCAGAGAGGA ACCAAGTCCC
    GTTCCTCTGA CCAGCAACTC AGGCAGTGAG GGAAAGAGTA CACCTGCTAC ATCCACCAAG
    TATGATGTCT TCAAACAGCT TTCCCTAGAA GGAGCTGGAC TAGGTGTCGA AGAGTTAAAA
    GATAACACTC CTTTTGGAAA AGGTGATGAT GATTTTGCTG ATTTTCACTC CAATAAATTT
    TCATCCATGA ATTCGGAGAA ATCCCTGGGA GAGAAAGCAG TAGCTTTCAG ACACACCAAA
    GAAGACTCTG CTTCAGTGAA GTCCCTAGAT CTCCCTTCTA TTGGTGGCAG CAGCATTGGC
    AAGGAGGACT CAGAAGATGC GCTTTCTGTT CAGTTTGACA TGAAACTGGC TGATGTGGGA
    GGAGATCTTA AGCATGTCAT GTCTGATAGC TCTTTGGATT TACCAACAGT TAGTGGCCAG
    CATCCTCCTG CTGCAGATAT AGAGGACTTA AAATATGCTA CTTTTGGAAG CTACAGTAGC
    AGTTTTACAG TGAGCACACT TACAAGCTAT GACTGGTCAG ACAGGGATGA TGCATCTCAG
    GGCAGAAAAC TCTCTCCATT TGTCCTCTCA GCAGGAAGTG GGTCCTCCTC AGCCACCTCA
    GTTCTTCAAA AGAAAGAGAC CTCATTTGGT AGCTCTGAAA ACAGCACCAT GTCATCGCTC
    TCCAAAGTAA CAACCTTTGC AAGTGAGGAT GCTCTTCCAG AGACTCCCTT CCCGGCCTTT
    GCCAGCTTTA AAGACATCAT GCCTCAGACC AGTGAACAAA AGGAATATGA AAAATATGGA
    AGTGGGGACT ACCAGGATTT CCCAAGGCAG GATCTGTCCG CAGCTGAACA GAGCCAGGAG
    ATCATGTGTC CAAGCCCAGC ATCCAGTGGT GCCTCTCATG AAACCCCCAA AGAATGTGCT
    GATGACTTTG GGGAGTTTCA GAGTGAAAAG CCCAAAATCA GCAAATTTGA CTTTTTAGTA
    GCCAATTCAC AAAGCAAAAT GAAATCCAGT GAAGAAATGA TCAAAAGTGA GCTGGCAACC
    TTTGACCTTT CTGTTCAAGG ATCACACAAG AGAAGCTTGA GCCTTGGGGA TAAAGAAATA
    AGCCGGTCCT CTCCTTCTCC AGCCCTTGAG CAGCCTTTCA GGGATCGTTC CAACACTCTG
    AGTGAGAAGC CTGCTCTGCC TGTCATCCGT GACAAGTACA AAGATCTGAC AGGCGAGGTG
    GAGGAAAATG AGAGATATGC GTATGAATGG CAGAGGTGCC TGGGGAGCGC CTTGGATGTC
    ATTAAGAAGG CAAATGACAC CTTAAATGGA ATTAGTAGCA GTGCTGTTTG TACAGAAGTT
    ATTCAGTCAG CCCAAGGCAT GGAATATTTA TTAGGTGTCG TGGAAGTGTA CCGAGTAACC
    AAACGTGTGG AGCTGGGGAT AAAAGCTACT GCTGTGTGCA GTGAGAAACT CCAGCAGTTG
    CTGAAGGACA TTGATAAAGT GTGGAACAAC CTAATCGGCT TCATGTCACT CGCTACACTC
    ACACCAGATG AAAATTCACT GGATTTTTCC TCCTGTATGC TACGGCCTGG GATTAAAAAC
    GCTCAGGAAC TGGCTTGCGG GGTGTGCCTC TTAAATGTGG ATTCTAGGAG CCGGAAAGAA
    GAGAAGCCTA CAGAAGAACA TCCTAAAAAA GCATTCAACG CAGAAACAGA CAGTTTCAAG
    CTGGCCTATG GAGGGCACCA ATATCACGCC AGCTGTGCCA ACTTCTGGAT CAACTGTGTT
    GAGCCCAAGC CTCCTGGCCT CATCCTGCCA GATCTGCTCT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846325.1
    CDS60..3521
    Translation

    Target ORF information:

    RefSeq Version XM_008848103.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X9, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848103.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGGTACTCT ACGTGAGATC GTCTCAGAAA CAGGCACTCC TTCTAAGCTG GACATGGTGG 
    TGCATGCCTA TAATTGCAGC AATTGGAAGA ATGAGGCAGA AGGATTGCTG CCCTTCCTTG
    GAGGAGAAGC TCCTAGTATC TTGTGATATA AGTACATCTG GGCATGAACA AATTAAATTA
    AGTACTCCTG AAGCTGGGCA CAAAGCTCTA GTCCCAGATT CCAGTGAGAA CCATCCCACT
    TTAACGGCCA GTCATGGGGG TGCTGTAGAT GGATGTGTAA ATGGTCCCAC CACTGCAGAG
    GCAGAAAAGA CTTCAGACCA AAACCTGTCA AATGAAGAGA GTGGTGTGGG TGTGTTTCCC
    TCGCAGGATC CTGTTCCACC CAGAATGCCT CCTTGGATTT ACAATGAAAG TTTGGTCCCA
    GATACCTATA AGAAAATTTT AGAAACCACA GTGACTCCAA CTGGAATAGA TACTGCTAAA
    CTTTATCCCA TTCTGATGTC ATCTGGACTT CCCAGGGAAA CTCTTGGACA GATATGGGCC
    TTGGCCAATC GAACTACACC TGGCAAACTC ACTAAAGAAG AGCTTTACAC TGTTCTCGCC
    ATGATAGCAG TAACGCAGAG GGGTGTTCCT GCCATGAGTC CTGATGCTTT GAATCAGTTC
    CCAGCAGCTC CCATTCCAAC GTTAAGTGGC TTTTCTATGA CTCTGCCTAC CCCAGTGAGC
    CAGCCGACTG TGATGCCCTC TGGCCCTTCA GGGTCCATGC CCCTCAGCCT TGGACAGCCA
    GTCATGGGCA TTAACCTTGT TGGACCAGTG GGTGGAGCTG CAGCCCCAGC TTCCAGTGGC
    TTCATGCCAT CTTACCCAGC AAAACAGGTG GGAAAGACAG AAGAGGATGA CTTCCAGGAA
    TTTCAAGATG CTTCTAAGTC AGGATCCCTT GATGACTCGT TCACTGACTT CCAAGAGGTG
    CCTCCTTCCT CAAAAACAAA TAATTCCCAG CATGGAAACA GTGCTCCATC TTTGTTGATA
    CCACTTCCTG GAACTAAAGC TTCAAAGGAT AAATATGCAG TGTTTAAAGG AATTTCAGCT
    GACAAACCCT CTGAAAATGC TGTTCCATTT GGAGAGTCTG CTGATAAATA CAGTGCTTTC
    CGGGAACTTG AGCAGACCAC AGAGAATAAA CCTTTAGGAG AGAGCTTCAC AGAATTCAGA
    TCTGCAGGAA CTGATGATGG TTTCACCGAC TTTAAGACAG CCGACAGTAT ATCACCTCTA
    GAGCCACCAA CGACAAAAGA CACTTTCCCA ACATCCTTCC CCTCAGGACC TATACAGCAG
    AAACAGCAAA CACAAGTGAA AACTCCTCTG AACTTAGCAG ACCTGGATAT GTTTTCCTCA
    GTTAATTGCA GCAATGAGAA ACCATTGCCC TTTTCAGCAG CATTTAGCAC ATCTAAGTCA
    GTTTCTACAA GACCTCAGCC AGGGGGATCT ACTACAAGCC CAGCAGCACT GGCATCCACT
    AAAACTTCTA GTCTGGCTGA TGATTTTGGA GAATTCAACC TCTTTGGGGA ATATTCTAGT
    CCTGCATCAG TTGGGGAGCA GGATGACTTT GCAGATTTTA TGGCTTTCAG TAACAGCTCT
    ATTTCTTCTG AGCAAAAAGC AGATGACAAA TATGATGTCC TCAGAGAGGA ACCAAGTCCC
    GTTCCTCTGA CCAGCAACTC AGGCAGTGAG GGAAAGAGTA CACCTGCTAC ATCCACCAAG
    TATGATGTCT TCAAACAGCT TTCCCTAGAA GGAGCTGGAC TAGGTGTCGA AGAGTTAAAA
    GATAACACTC CTTTTGGAAA AGGTGATGAT GATTTTGCTG ATTTTCACTC CAATAAATTT
    TCATCCATGA ATTCGGAGAA ATCCCTGGGA GAGAAAGCAG TAGCTTTCAG ACACACCAAA
    GAAGACTCTG CTTCAGTGAA GTCCCTAGAT CTCCCTTCTA TTGGTGGCAG CAGCATTGGC
    AAGGAGGACT CAGAAGATGC GCTTTCTGTT CAGTTTGACA TGAAACTGGC TGATGTGGGA
    GGAGATCTTA AGCATGTCAT GTCTGATAGC TCTTTGGATT TACCAACAGT TAGTGGCCAG
    CATCCTCCTG CTGCAGATAT AGAGGACTTA AAATATGCTA CTTTTGGAAG CTACAGTAGC
    AGTTTTACAG TGAGCACACT TACAAGCTAT GACTGGTCAG ACAGGGATGA TGCATCTCAG
    GGCAGAAAAC TCTCTCCATT TGTCCTCTCA GCAGGAAGTG GGTCCTCCTC AGCCACCTCA
    GTTCTTCAAA AGAAAGAGAC CTCATTTGGT AGCTCTGAAA ACAGCACCAT GTCATCGCTC
    TCCAAAGTAA CAACCTTTGC AAGTGAGGAT GCTCTTCCAG AGACTCCCTT CCCGGCCTTT
    GCCAGCTTTA AAGACATCAT GCCTCAGACC AGTGAACAAA AGGAATATGA AAAATATGGA
    AGTGGGGACT ACCAGGATTT CCCAAGGCAG GATCTGTCCG CAGCTGAACA GAGCCAGGAG
    ATCATGTGTC CAAGCCCAGC ATCCAGTGGT GCCTCTCATG AAACCCCCAA AGAATGTGCT
    GATGACTTTG GGGAGTTTCA GAGTGAAAAG CCCAAAATCA GCAAATTTGA CTTTTTAGTA
    GCCAATTCAC AAAGCAAAAT GAAATCCAGT GAAGAAATGA TCAAAAGTGA GCTGGCAACC
    TTTGACCTTT CTGTTCAAGG ATCACACAAG AGAAGCTTGA GCCTTGGGGA TAAAGAAATA
    AGCCGGTCCT CTCCTTCTCC AGCCCTTGAG CAGCCTTTCA GGGATCGTTC CAACACTCTG
    AGTGAGAAGC CTGCTCTGCC TGTCATCCGT GACAAGTACA AAGATCTGAC AGGCGAGGTG
    GAGGAAAATG AGAGATATGC GTATGAATGG CAGAGGTGCC TGGGGAGCGC CTTGGATGTC
    ATTAAGAAGG CAAATGACAC CTTAAATGGA ATTAGTAGCA GTGCTGTTTG TACAGAAGTT
    ATTCAGTCAG CCCAAGGCAT GGAATATTTA TTAGGTGTCG TGGAAGTGTA CCGAGTAACC
    AAACGTGTGG AGCTGGGGAT AAAAGCTACT GCTGTGTGCA GTGAGAAACT CCAGCAGTTG
    CTGAAGGACA TTGATAAAGT GTGGAACAAC CTAATCGGCT TCATGTCACT CGCTACACTC
    ACACCAGATG AAAATTCACT GGATTTTTCC TCCTGTATGC TACGGCCTGG GATTAAAAAC
    GCTCAGGAAC TGGCTTGCGG GGTGTGCCTC TTAAATGTGG ATTCTAGGAG CCGGAAAGAA
    GAGAAGCCTA CAGAAGAACA TCCTAAAAAA GCATTCAACG CAGAAACAGA CAGTTTCAAG
    CTGGCCTATG GAGGGCACCA ATATCACGCC AGCTGTGCCA ACTTCTGGAT CAACTGTGTT
    GAGCCCAAGC CTCCTGGCCT CATCCTGCCA GATCTGCTCT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30851
    Clone ID Related Accession (Same CDS sequence) XM_008848095.3 , XM_008848095.2
    Accession Version XM_008848095.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4218bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848095.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGATATAGAG
    GACTTAAAAT ATGCTACTTT TGGAAGCTAC AGTAGCAGTT TTACAGTGAG CACACTTACA
    AGCTATGACT GGTCAGACAG GGATGATGCA TCTCAGGGCA GAAAACTCTC TCCATTTGTC
    CTCTCAGCAG GAAGTGGGTC CTCCTCAGCC ACCTCAGTTC TTCAAAAGAA AGAGACCTCA
    TTTGGTAGCT CTGAAAACAG CACCATGTCA TCGCTCTCCA AAGTAACAAC CTTTGCAAGT
    GAGGATGCTC TTCCAGAGAC TCCCTTCCCG GCCTTTGCCA GCTTTAAAGA CATCATGCCT
    CAGACCAGTG AACAAAAGGA ATATGAAAAA TATGGAAGTG GGGACTACCA GGATTTCCCA
    AGGCAGGATC TGTCCGCAGC TGAACAGAGC CAGGAGATCA TGTGTCCAAG CCCAGCATCC
    AGTGGTGCCT CTCATGAAAC CCCCAAAGAA TGTGCTGATG ACTTTGGGGA GTTTCAGAGT
    GAAAAGCCCA AAATCAGCAA ATTTGACTTT TTAGTAGCCA ATTCACAAAG CAAAATGAAA
    TCCAGTGAAG AAATGATCAA AAGTGAGCTG GCAACCTTTG ACCTTTCTGT TCAAGGATCA
    CACAAGAGAA GCTTGAGCCT TGGGGATAAA GAAATAAGCC GGTCCTCTCC TTCTCCAGCC
    CTTGAGCAGC CTTTCAGGGA TCGTTCCAAC ACTCTGAGTG AGAAGCCTGC TCTGCCTGTC
    ATCCGTGACA AGTACAAAGA TCTGACAGGC GAGGTGGAGG AAAATGAGAG ATATGCGTAT
    GAATGGCAGA GGTGCCTGGG GAGCGCCTTG GATGTCATTA AGAAGGCAAA TGACACCTTA
    AATGGAATTA GTAGCAGTGC TGTTTGTACA GAAGTTATTC AGTCAGCCCA AGGCATGGAA
    TATTTATTAG GTGTCGTGGA AGTGTACCGA GTAACCAAAC GTGTGGAGCT GGGGATAAAA
    GCTACTGCTG TGTGCAGTGA GAAACTCCAG CAGTTGCTGA AGGACATTGA TAAAGTGTGG
    AACAACCTAA TCGGCTTCAT GTCACTCGCT ACACTCACAC CAGATGAAAA TTCACTGGAT
    TTTTCCTCCT GTATGCTACG GCCTGGGATT AAAAACGCTC AGGAACTGGC TTGCGGGGTG
    TGCCTCTTAA ATGTGGATTC TAGGAGCCGG AAAGAAGAGA AGCCTACAGA AGAACATCCT
    AAAAAAGCAT TCAACGCAGA AACAGACAGT TTCAAGCTGG CCTATGGAGG GCACCAATAT
    CACGCCAGCT GTGCCAACTT CTGGATCAAC TGTGTTGAGC CCAAGCCTCC TGGCCTCATC
    CTGCCAGATC TGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846317.1
    CDS41..4258
    Translation

    Target ORF information:

    RefSeq Version XM_008848095.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848095.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGATATAGAG
    GACTTAAAAT ATGCTACTTT TGGAAGCTAC AGTAGCAGTT TTACAGTGAG CACACTTACA
    AGCTATGACT GGTCAGACAG GGATGATGCA TCTCAGGGCA GAAAACTCTC TCCATTTGTC
    CTCTCAGCAG GAAGTGGGTC CTCCTCAGCC ACCTCAGTTC TTCAAAAGAA AGAGACCTCA
    TTTGGTAGCT CTGAAAACAG CACCATGTCA TCGCTCTCCA AAGTAACAAC CTTTGCAAGT
    GAGGATGCTC TTCCAGAGAC TCCCTTCCCG GCCTTTGCCA GCTTTAAAGA CATCATGCCT
    CAGACCAGTG AACAAAAGGA ATATGAAAAA TATGGAAGTG GGGACTACCA GGATTTCCCA
    AGGCAGGATC TGTCCGCAGC TGAACAGAGC CAGGAGATCA TGTGTCCAAG CCCAGCATCC
    AGTGGTGCCT CTCATGAAAC CCCCAAAGAA TGTGCTGATG ACTTTGGGGA GTTTCAGAGT
    GAAAAGCCCA AAATCAGCAA ATTTGACTTT TTAGTAGCCA ATTCACAAAG CAAAATGAAA
    TCCAGTGAAG AAATGATCAA AAGTGAGCTG GCAACCTTTG ACCTTTCTGT TCAAGGATCA
    CACAAGAGAA GCTTGAGCCT TGGGGATAAA GAAATAAGCC GGTCCTCTCC TTCTCCAGCC
    CTTGAGCAGC CTTTCAGGGA TCGTTCCAAC ACTCTGAGTG AGAAGCCTGC TCTGCCTGTC
    ATCCGTGACA AGTACAAAGA TCTGACAGGC GAGGTGGAGG AAAATGAGAG ATATGCGTAT
    GAATGGCAGA GGTGCCTGGG GAGCGCCTTG GATGTCATTA AGAAGGCAAA TGACACCTTA
    AATGGAATTA GTAGCAGTGC TGTTTGTACA GAAGTTATTC AGTCAGCCCA AGGCATGGAA
    TATTTATTAG GTGTCGTGGA AGTGTACCGA GTAACCAAAC GTGTGGAGCT GGGGATAAAA
    GCTACTGCTG TGTGCAGTGA GAAACTCCAG CAGTTGCTGA AGGACATTGA TAAAGTGTGG
    AACAACCTAA TCGGCTTCAT GTCACTCGCT ACACTCACAC CAGATGAAAA TTCACTGGAT
    TTTTCCTCCT GTATGCTACG GCCTGGGATT AAAAACGCTC AGGAACTGGC TTGCGGGGTG
    TGCCTCTTAA ATGTGGATTC TAGGAGCCGG AAAGAAGAGA AGCCTACAGA AGAACATCCT
    AAAAAAGCAT TCAACGCAGA AACAGACAGT TTCAAGCTGG CCTATGGAGG GCACCAATAT
    CACGCCAGCT GTGCCAACTT CTGGATCAAC TGTGTTGAGC CCAAGCCTCC TGGCCTCATC
    CTGCCAGATC TGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30851
    Clone ID Related Accession (Same CDS sequence) XM_008848095.3 , XM_008848095.2
    Accession Version XM_008848095.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4218bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848095.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGATATAGAG
    GACTTAAAAT ATGCTACTTT TGGAAGCTAC AGTAGCAGTT TTACAGTGAG CACACTTACA
    AGCTATGACT GGTCAGACAG GGATGATGCA TCTCAGGGCA GAAAACTCTC TCCATTTGTC
    CTCTCAGCAG GAAGTGGGTC CTCCTCAGCC ACCTCAGTTC TTCAAAAGAA AGAGACCTCA
    TTTGGTAGCT CTGAAAACAG CACCATGTCA TCGCTCTCCA AAGTAACAAC CTTTGCAAGT
    GAGGATGCTC TTCCAGAGAC TCCCTTCCCG GCCTTTGCCA GCTTTAAAGA CATCATGCCT
    CAGACCAGTG AACAAAAGGA ATATGAAAAA TATGGAAGTG GGGACTACCA GGATTTCCCA
    AGGCAGGATC TGTCCGCAGC TGAACAGAGC CAGGAGATCA TGTGTCCAAG CCCAGCATCC
    AGTGGTGCCT CTCATGAAAC CCCCAAAGAA TGTGCTGATG ACTTTGGGGA GTTTCAGAGT
    GAAAAGCCCA AAATCAGCAA ATTTGACTTT TTAGTAGCCA ATTCACAAAG CAAAATGAAA
    TCCAGTGAAG AAATGATCAA AAGTGAGCTG GCAACCTTTG ACCTTTCTGT TCAAGGATCA
    CACAAGAGAA GCTTGAGCCT TGGGGATAAA GAAATAAGCC GGTCCTCTCC TTCTCCAGCC
    CTTGAGCAGC CTTTCAGGGA TCGTTCCAAC ACTCTGAGTG AGAAGCCTGC TCTGCCTGTC
    ATCCGTGACA AGTACAAAGA TCTGACAGGC GAGGTGGAGG AAAATGAGAG ATATGCGTAT
    GAATGGCAGA GGTGCCTGGG GAGCGCCTTG GATGTCATTA AGAAGGCAAA TGACACCTTA
    AATGGAATTA GTAGCAGTGC TGTTTGTACA GAAGTTATTC AGTCAGCCCA AGGCATGGAA
    TATTTATTAG GTGTCGTGGA AGTGTACCGA GTAACCAAAC GTGTGGAGCT GGGGATAAAA
    GCTACTGCTG TGTGCAGTGA GAAACTCCAG CAGTTGCTGA AGGACATTGA TAAAGTGTGG
    AACAACCTAA TCGGCTTCAT GTCACTCGCT ACACTCACAC CAGATGAAAA TTCACTGGAT
    TTTTCCTCCT GTATGCTACG GCCTGGGATT AAAAACGCTC AGGAACTGGC TTGCGGGGTG
    TGCCTCTTAA ATGTGGATTC TAGGAGCCGG AAAGAAGAGA AGCCTACAGA AGAACATCCT
    AAAAAAGCAT TCAACGCAGA AACAGACAGT TTCAAGCTGG CCTATGGAGG GCACCAATAT
    CACGCCAGCT GTGCCAACTT CTGGATCAAC TGTGTTGAGC CCAAGCCTCC TGGCCTCATC
    CTGCCAGATC TGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846317.1
    CDS10..4227
    Translation

    Target ORF information:

    RefSeq Version XM_008848095.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848095.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGATATAGAG
    GACTTAAAAT ATGCTACTTT TGGAAGCTAC AGTAGCAGTT TTACAGTGAG CACACTTACA
    AGCTATGACT GGTCAGACAG GGATGATGCA TCTCAGGGCA GAAAACTCTC TCCATTTGTC
    CTCTCAGCAG GAAGTGGGTC CTCCTCAGCC ACCTCAGTTC TTCAAAAGAA AGAGACCTCA
    TTTGGTAGCT CTGAAAACAG CACCATGTCA TCGCTCTCCA AAGTAACAAC CTTTGCAAGT
    GAGGATGCTC TTCCAGAGAC TCCCTTCCCG GCCTTTGCCA GCTTTAAAGA CATCATGCCT
    CAGACCAGTG AACAAAAGGA ATATGAAAAA TATGGAAGTG GGGACTACCA GGATTTCCCA
    AGGCAGGATC TGTCCGCAGC TGAACAGAGC CAGGAGATCA TGTGTCCAAG CCCAGCATCC
    AGTGGTGCCT CTCATGAAAC CCCCAAAGAA TGTGCTGATG ACTTTGGGGA GTTTCAGAGT
    GAAAAGCCCA AAATCAGCAA ATTTGACTTT TTAGTAGCCA ATTCACAAAG CAAAATGAAA
    TCCAGTGAAG AAATGATCAA AAGTGAGCTG GCAACCTTTG ACCTTTCTGT TCAAGGATCA
    CACAAGAGAA GCTTGAGCCT TGGGGATAAA GAAATAAGCC GGTCCTCTCC TTCTCCAGCC
    CTTGAGCAGC CTTTCAGGGA TCGTTCCAAC ACTCTGAGTG AGAAGCCTGC TCTGCCTGTC
    ATCCGTGACA AGTACAAAGA TCTGACAGGC GAGGTGGAGG AAAATGAGAG ATATGCGTAT
    GAATGGCAGA GGTGCCTGGG GAGCGCCTTG GATGTCATTA AGAAGGCAAA TGACACCTTA
    AATGGAATTA GTAGCAGTGC TGTTTGTACA GAAGTTATTC AGTCAGCCCA AGGCATGGAA
    TATTTATTAG GTGTCGTGGA AGTGTACCGA GTAACCAAAC GTGTGGAGCT GGGGATAAAA
    GCTACTGCTG TGTGCAGTGA GAAACTCCAG CAGTTGCTGA AGGACATTGA TAAAGTGTGG
    AACAACCTAA TCGGCTTCAT GTCACTCGCT ACACTCACAC CAGATGAAAA TTCACTGGAT
    TTTTCCTCCT GTATGCTACG GCCTGGGATT AAAAACGCTC AGGAACTGGC TTGCGGGGTG
    TGCCTCTTAA ATGTGGATTC TAGGAGCCGG AAAGAAGAGA AGCCTACAGA AGAACATCCT
    AAAAAAGCAT TCAACGCAGA AACAGACAGT TTCAAGCTGG CCTATGGAGG GCACCAATAT
    CACGCCAGCT GTGCCAACTT CTGGATCAAC TGTGTTGAGC CCAAGCCTCC TGGCCTCATC
    CTGCCAGATC TGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30852
    Clone ID Related Accession (Same CDS sequence) XM_008848096.3 , XM_008848096.2
    Accession Version XM_008848096.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4182bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848096.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGATATAGAG
    GACTTAAAAT ATGCTACTTT TGGAAGCTAC AGTAGCAGTT TTACAGTGAG CACACTTACA
    AGCTATGACT GGTCAGACAG GGATGATGCA TCTCAGGGCA GAAAACTCTC TCCATTTGTC
    CTCTCAGCAG GAAGTGGGTC CTCCTCAGCC ACCTCAGTTC TTCAAAAGAA AGAGACCTCA
    TTTGGTAGCT CTGAAAACAG CACCATGTCA TCGCTCTCCA AAGTAACAAC CTTTGCAAGT
    GAGGATGCTC TTCCAGAGAC TCCCTTCCCG GCCTTTGCCA GCTTTAAAGA CATCATGCCT
    CAGACCAGTG AACAAAAGGA ATATGAAAAA TATGGAAGTG GGGACTACCA GGATTTCCCA
    AGGCAGGATC TGTCCGCAGC TGAACAGAGC CAGGAGATCA TGTGTCCAAG CCCAGCATCC
    AGTGGTGCCT CTCATGAAAC CCCCAAAGAA TGTGCTGATG ACTTTGGGGA GTTTCAGAGT
    GAAAAGCCCA AAATCAGCAA ATTTGACTTT TTAGTAGCCA ATTCACAAAG CAAAATGAAA
    TCCAGTGAAG AAATGATCAA AAGTGAGCTG GCAACCTTTG ACCTTTCTGT TCAAGGATCA
    CACAAGAGAA GCTTGAGCCT TGGGGATAAA GAAATAAGCC GGTCCTCTCC TTCTCCAGCC
    CTTGAGCAGC CTTTCAGGGA TCGTTCCAAC ACTCTGAGTG AGAAGCCTGC TCTGCCTGTC
    ATCCGTGACA AGTACAAAGA TCTGACAGGC GAGGTGGAGG AAAATGAGAG ATATGCGTAT
    GAATGGCAGA GGTGCCTGGG GAGCGCCTTG GATGTCATTA AGAAGGCAAA TGACACCTTA
    AATGGAATTA GTAGCAGTGC TGTTTGTACA GAAGTTATTC AGTCAGCCCA AGGCATGGAA
    TATTTATTAG GTGTCGTGGA AGTGTACCGA GTAACCAAAC GTGTGGAGCT GGGGATAAAA
    GCTACTGCTG TGTGCAGTGA GAAACTCCAG CAGTTGCTGA AGGACATTGA TAAAGTGTGG
    AACAACCTAA TCGGCTTCAT GTCACTCGCT ACACTCACAC CAGATGAAAA TTCACTGGAT
    TTTTCCTCCT GTATGCTACG GCCTGGGATT AAAAACGCTC AGGAACTGGC TTGCGGGGTG
    TGCCTCTTAA ATGTGGATTC TAGGAGCCGG GCATTCAACG CAGAAACAGA CAGTTTCAAG
    CTGGCCTATG GAGGGCACCA ATATCACGCC AGCTGTGCCA ACTTCTGGAT CAACTGTGTT
    GAGCCCAAGC CTCCTGGCCT CATCCTGCCA GATCTGCTCT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846318.1
    CDS41..4222
    Translation

    Target ORF information:

    RefSeq Version XM_008848096.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848096.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGATATAGAG
    GACTTAAAAT ATGCTACTTT TGGAAGCTAC AGTAGCAGTT TTACAGTGAG CACACTTACA
    AGCTATGACT GGTCAGACAG GGATGATGCA TCTCAGGGCA GAAAACTCTC TCCATTTGTC
    CTCTCAGCAG GAAGTGGGTC CTCCTCAGCC ACCTCAGTTC TTCAAAAGAA AGAGACCTCA
    TTTGGTAGCT CTGAAAACAG CACCATGTCA TCGCTCTCCA AAGTAACAAC CTTTGCAAGT
    GAGGATGCTC TTCCAGAGAC TCCCTTCCCG GCCTTTGCCA GCTTTAAAGA CATCATGCCT
    CAGACCAGTG AACAAAAGGA ATATGAAAAA TATGGAAGTG GGGACTACCA GGATTTCCCA
    AGGCAGGATC TGTCCGCAGC TGAACAGAGC CAGGAGATCA TGTGTCCAAG CCCAGCATCC
    AGTGGTGCCT CTCATGAAAC CCCCAAAGAA TGTGCTGATG ACTTTGGGGA GTTTCAGAGT
    GAAAAGCCCA AAATCAGCAA ATTTGACTTT TTAGTAGCCA ATTCACAAAG CAAAATGAAA
    TCCAGTGAAG AAATGATCAA AAGTGAGCTG GCAACCTTTG ACCTTTCTGT TCAAGGATCA
    CACAAGAGAA GCTTGAGCCT TGGGGATAAA GAAATAAGCC GGTCCTCTCC TTCTCCAGCC
    CTTGAGCAGC CTTTCAGGGA TCGTTCCAAC ACTCTGAGTG AGAAGCCTGC TCTGCCTGTC
    ATCCGTGACA AGTACAAAGA TCTGACAGGC GAGGTGGAGG AAAATGAGAG ATATGCGTAT
    GAATGGCAGA GGTGCCTGGG GAGCGCCTTG GATGTCATTA AGAAGGCAAA TGACACCTTA
    AATGGAATTA GTAGCAGTGC TGTTTGTACA GAAGTTATTC AGTCAGCCCA AGGCATGGAA
    TATTTATTAG GTGTCGTGGA AGTGTACCGA GTAACCAAAC GTGTGGAGCT GGGGATAAAA
    GCTACTGCTG TGTGCAGTGA GAAACTCCAG CAGTTGCTGA AGGACATTGA TAAAGTGTGG
    AACAACCTAA TCGGCTTCAT GTCACTCGCT ACACTCACAC CAGATGAAAA TTCACTGGAT
    TTTTCCTCCT GTATGCTACG GCCTGGGATT AAAAACGCTC AGGAACTGGC TTGCGGGGTG
    TGCCTCTTAA ATGTGGATTC TAGGAGCCGG GCATTCAACG CAGAAACAGA CAGTTTCAAG
    CTGGCCTATG GAGGGCACCA ATATCACGCC AGCTGTGCCA ACTTCTGGAT CAACTGTGTT
    GAGCCCAAGC CTCCTGGCCT CATCCTGCCA GATCTGCTCT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30852
    Clone ID Related Accession (Same CDS sequence) XM_008848096.3 , XM_008848096.2
    Accession Version XM_008848096.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4182bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848096.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGATATAGAG
    GACTTAAAAT ATGCTACTTT TGGAAGCTAC AGTAGCAGTT TTACAGTGAG CACACTTACA
    AGCTATGACT GGTCAGACAG GGATGATGCA TCTCAGGGCA GAAAACTCTC TCCATTTGTC
    CTCTCAGCAG GAAGTGGGTC CTCCTCAGCC ACCTCAGTTC TTCAAAAGAA AGAGACCTCA
    TTTGGTAGCT CTGAAAACAG CACCATGTCA TCGCTCTCCA AAGTAACAAC CTTTGCAAGT
    GAGGATGCTC TTCCAGAGAC TCCCTTCCCG GCCTTTGCCA GCTTTAAAGA CATCATGCCT
    CAGACCAGTG AACAAAAGGA ATATGAAAAA TATGGAAGTG GGGACTACCA GGATTTCCCA
    AGGCAGGATC TGTCCGCAGC TGAACAGAGC CAGGAGATCA TGTGTCCAAG CCCAGCATCC
    AGTGGTGCCT CTCATGAAAC CCCCAAAGAA TGTGCTGATG ACTTTGGGGA GTTTCAGAGT
    GAAAAGCCCA AAATCAGCAA ATTTGACTTT TTAGTAGCCA ATTCACAAAG CAAAATGAAA
    TCCAGTGAAG AAATGATCAA AAGTGAGCTG GCAACCTTTG ACCTTTCTGT TCAAGGATCA
    CACAAGAGAA GCTTGAGCCT TGGGGATAAA GAAATAAGCC GGTCCTCTCC TTCTCCAGCC
    CTTGAGCAGC CTTTCAGGGA TCGTTCCAAC ACTCTGAGTG AGAAGCCTGC TCTGCCTGTC
    ATCCGTGACA AGTACAAAGA TCTGACAGGC GAGGTGGAGG AAAATGAGAG ATATGCGTAT
    GAATGGCAGA GGTGCCTGGG GAGCGCCTTG GATGTCATTA AGAAGGCAAA TGACACCTTA
    AATGGAATTA GTAGCAGTGC TGTTTGTACA GAAGTTATTC AGTCAGCCCA AGGCATGGAA
    TATTTATTAG GTGTCGTGGA AGTGTACCGA GTAACCAAAC GTGTGGAGCT GGGGATAAAA
    GCTACTGCTG TGTGCAGTGA GAAACTCCAG CAGTTGCTGA AGGACATTGA TAAAGTGTGG
    AACAACCTAA TCGGCTTCAT GTCACTCGCT ACACTCACAC CAGATGAAAA TTCACTGGAT
    TTTTCCTCCT GTATGCTACG GCCTGGGATT AAAAACGCTC AGGAACTGGC TTGCGGGGTG
    TGCCTCTTAA ATGTGGATTC TAGGAGCCGG GCATTCAACG CAGAAACAGA CAGTTTCAAG
    CTGGCCTATG GAGGGCACCA ATATCACGCC AGCTGTGCCA ACTTCTGGAT CAACTGTGTT
    GAGCCCAAGC CTCCTGGCCT CATCCTGCCA GATCTGCTCT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846318.1
    CDS10..4191
    Translation

    Target ORF information:

    RefSeq Version XM_008848096.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848096.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGATATAGAG
    GACTTAAAAT ATGCTACTTT TGGAAGCTAC AGTAGCAGTT TTACAGTGAG CACACTTACA
    AGCTATGACT GGTCAGACAG GGATGATGCA TCTCAGGGCA GAAAACTCTC TCCATTTGTC
    CTCTCAGCAG GAAGTGGGTC CTCCTCAGCC ACCTCAGTTC TTCAAAAGAA AGAGACCTCA
    TTTGGTAGCT CTGAAAACAG CACCATGTCA TCGCTCTCCA AAGTAACAAC CTTTGCAAGT
    GAGGATGCTC TTCCAGAGAC TCCCTTCCCG GCCTTTGCCA GCTTTAAAGA CATCATGCCT
    CAGACCAGTG AACAAAAGGA ATATGAAAAA TATGGAAGTG GGGACTACCA GGATTTCCCA
    AGGCAGGATC TGTCCGCAGC TGAACAGAGC CAGGAGATCA TGTGTCCAAG CCCAGCATCC
    AGTGGTGCCT CTCATGAAAC CCCCAAAGAA TGTGCTGATG ACTTTGGGGA GTTTCAGAGT
    GAAAAGCCCA AAATCAGCAA ATTTGACTTT TTAGTAGCCA ATTCACAAAG CAAAATGAAA
    TCCAGTGAAG AAATGATCAA AAGTGAGCTG GCAACCTTTG ACCTTTCTGT TCAAGGATCA
    CACAAGAGAA GCTTGAGCCT TGGGGATAAA GAAATAAGCC GGTCCTCTCC TTCTCCAGCC
    CTTGAGCAGC CTTTCAGGGA TCGTTCCAAC ACTCTGAGTG AGAAGCCTGC TCTGCCTGTC
    ATCCGTGACA AGTACAAAGA TCTGACAGGC GAGGTGGAGG AAAATGAGAG ATATGCGTAT
    GAATGGCAGA GGTGCCTGGG GAGCGCCTTG GATGTCATTA AGAAGGCAAA TGACACCTTA
    AATGGAATTA GTAGCAGTGC TGTTTGTACA GAAGTTATTC AGTCAGCCCA AGGCATGGAA
    TATTTATTAG GTGTCGTGGA AGTGTACCGA GTAACCAAAC GTGTGGAGCT GGGGATAAAA
    GCTACTGCTG TGTGCAGTGA GAAACTCCAG CAGTTGCTGA AGGACATTGA TAAAGTGTGG
    AACAACCTAA TCGGCTTCAT GTCACTCGCT ACACTCACAC CAGATGAAAA TTCACTGGAT
    TTTTCCTCCT GTATGCTACG GCCTGGGATT AAAAACGCTC AGGAACTGGC TTGCGGGGTG
    TGCCTCTTAA ATGTGGATTC TAGGAGCCGG GCATTCAACG CAGAAACAGA CAGTTTCAAG
    CTGGCCTATG GAGGGCACCA ATATCACGCC AGCTGTGCCA ACTTCTGGAT CAACTGTGTT
    GAGCCCAAGC CTCCTGGCCT CATCCTGCCA GATCTGCTCT GA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30853
    Clone ID Related Accession (Same CDS sequence) XM_008848097.3 , XM_008848097.2
    Accession Version XM_008848097.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4125bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848097.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGCCCTTCC
    TTGGAGGAGA AGCTCCTAGT ATCTTGTGAT ATAAGTACAT CTGGGCATGA ACAAATTAAA
    TTAAGTACTC CTGAAGCTGG GCACAAAGCT CTAGTCCCAG ATTCCAGTGA GAACCATCCC
    ACTTTAACGG CCAGTCATGG GGGTGCTGTA GATGGATGTG TAAATGGTCC CACCACTGCA
    GAGGCAGAAA AGACTTCAGA CCAAAACCTG TCAAATGAAG AGAGTGGTGT GGGTGTGTTT
    CCCTCGCAGG ATCCTGTTCC ACCCAGAATG CCTCCTTGGA TTTACAATGA AAGTTTGGTC
    CCAGATACCT ATAAGAAAAT TTTAGAAACC ACAGTGACTC CAACTGGAAT AGATACTGCT
    AAACTTTATC CCATTCTGAT GTCATCTGGA CTTCCCAGGG AAACTCTTGG ACAGATATGG
    GCCTTGGCCA ATCGAACTAC ACCTGGCAAA CTCACTAAAG AAGAGCTTTA CACTGTTCTC
    GCCATGATAG CAGTAACGCA GAGGGGTGTT CCTGCCATGA GTCCTGATGC TTTGAATCAG
    TTCCCAGCAG CTCCCATTCC AACGTTAAGT GGCTTTTCTA TGACTCTGCC TACCCCAGTG
    AGCCAGCCGA CTGTGATGCC CTCTGGCCCT TCAGGGTCCA TGCCCCTCAG CCTTGGACAG
    CCAGTCATGG GCATTAACCT TGTTGGACCA GTGGGTGGAG CTGCAGCCCC AGCTTCCAGT
    GGCTTCATGC CATCTTACCC AGCAAAACAG GTGGGAAAGA CAGAAGAGGA TGACTTCCAG
    GAATTTCAAG ATGCTTCTAA GTCAGGATCC CTTGATGACT CGTTCACTGA CTTCCAAGAG
    GTGCCTCCTT CCTCAAAAAC AAATAATTCC CAGCATGGAA ACAGTGCTCC ATCTTTGTTG
    ATACCACTTC CTGGAACTAA AGCTTCAAAG GATAAATATG CAGTGTTTAA AGGAATTTCA
    GCTGACAAAC CCTCTGAAAA TGCTGTTCCA TTTGGAGAGT CTGCTGATAA ATACAGTGCT
    TTCCGGGAAC TTGAGCAGAC CACAGAGAAT AAACCTTTAG GAGAGAGCTT CACAGAATTC
    AGATCTGCAG GAACTGATGA TGGTTTCACC GACTTTAAGA CAGCCGACAG TATATCACCT
    CTAGAGCCAC CAACGACAAA AGACACTTTC CCAACATCCT TCCCCTCAGG ACCTATACAG
    CAGAAACAGC AAACACAAGT GAAAACTCCT CTGAACTTAG CAGACCTGGA TATGTTTTCC
    TCAGTTAATT GCAGCAATGA GAAACCATTG CCCTTTTCAG CAGCATTTAG CACATCTAAG
    TCAGTTTCTA CAAGACCTCA GCCAGGGGGA TCTACTACAA GCCCAGCAGC ACTGGCATCC
    ACTAAAACTT CTAGTCTGGC TGATGATTTT GGAGAATTCA ACCTCTTTGG GGAATATTCT
    AGTCCTGCAT CAGTTGGGGA GCAGGATGAC TTTGCAGATT TTATGGCTTT CAGTAACAGC
    TCTATTTCTT CTGAGCAAAA AGCAGATGAC AAATATGATG TCCTCAGAGA GGAACCAAGT
    CCCGTTCCTC TGACCAGCAA CTCAGGCAGT GAGGGAAAGA GTACACCTGC TACATCCACC
    AAGTATGATG TCTTCAAACA GCTTTCCCTA GAAGGAGCTG GACTAGGTGT CGAAGAGTTA
    AAAGATAACA CTCCTTTTGG AAAAGGTGAT GATGATTTTG CTGATTTTCA CTCCAATAAA
    TTTTCATCCA TGAATTCGGA GAAATCCCTG GGAGAGAAAG CAGTAGCTTT CAGACACACC
    AAAGAAGACT CTGCTTCAGT GAAGTCCCTA GATCTCCCTT CTATTGGTGG CAGCAGCATT
    GGCAAGGAGG ACTCAGAAGA TGCGCTTTCT GTTCAGTTTG ACATGAAACT GGCTGATGTG
    GGAGGAGATC TTAAGCATGT CATGTCTGAT AGCTCTTTGG ATTTACCAAC AGTTAGTGGC
    CAGCATCCTC CTGCTGCAGA TATAGAGGAC TTAAAATATG CTACTTTTGG AAGCTACAGT
    AGCAGTTTTA CAGTGAGCAC ACTTACAAGC TATGACTGGT CAGACAGGGA TGATGCATCT
    CAGGGCAGAA AACTCTCTCC ATTTGTCCTC TCAGCAGGAA GTGGGTCCTC CTCAGCCACC
    TCAGTTCTTC AAAAGAAAGA GACCTCATTT GGTAGCTCTG AAAACAGCAC CATGTCATCG
    CTCTCCAAAG TAACAACCTT TGCAAGTGAG GATGCTCTTC CAGAGACTCC CTTCCCGGCC
    TTTGCCAGCT TTAAAGACAT CATGCCTCAG ACCAGTGAAC AAAAGGAATA TGAAAAATAT
    GGAAGTGGGG ACTACCAGGA TTTCCCAAGG CAGGATCTGT CCGCAGCTGA ACAGAGCCAG
    GAGATCATGT GTCCAAGCCC AGCATCCAGT GGTGCCTCTC ATGAAACCCC CAAAGAATGT
    GCTGATGACT TTGGGGAGTT TCAGAGTGAA AAGCCCAAAA TCAGCAAATT TGACTTTTTA
    GTAGCCAATT CACAAAGCAA AATGAAATCC AGTGAAGAAA TGATCAAAAG TGAGCTGGCA
    ACCTTTGACC TTTCTGTTCA AGGATCACAC AAGAGAAGCT TGAGCCTTGG GGATAAAGAA
    ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT GAGCAGCCTT TCAGGGATCG TTCCAACACT
    CTGAGTGAGA AGCCTGCTCT GCCTGTCATC CGTGACAAGT ACAAAGATCT GACAGGCGAG
    GTGGAGGAAA ATGAGAGATA TGCGTATGAA TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT
    GTCATTAAGA AGGCAAATGA CACCTTAAAT GGAATTAGTA GCAGTGCTGT TTGTACAGAA
    GTTATTCAGT CAGCCCAAGG CATGGAATAT TTATTAGGTG TCGTGGAAGT GTACCGAGTA
    ACCAAACGTG TGGAGCTGGG GATAAAAGCT ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG
    TTGCTGAAGG ACATTGATAA AGTGTGGAAC AACCTAATCG GCTTCATGTC ACTCGCTACA
    CTCACACCAG ATGAAAATTC ACTGGATTTT TCCTCCTGTA TGCTACGGCC TGGGATTAAA
    AACGCTCAGG AACTGGCTTG CGGGGTGTGC CTCTTAAATG TGGATTCTAG GAGCCGGAAA
    GAAGAGAAGC CTACAGAAGA ACATCCTAAA AAAGCATTCA ACGCAGAAAC AGACAGTTTC
    AAGCTGGCCT ATGGAGGGCA CCAATATCAC GCCAGCTGTG CCAACTTCTG GATCAACTGT
    GTTGAGCCCA AGCCTCCTGG CCTCATCCTG CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846319.1
    CDS41..4165
    Translation

    Target ORF information:

    RefSeq Version XM_008848097.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848097.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGCCCTTCC
    TTGGAGGAGA AGCTCCTAGT ATCTTGTGAT ATAAGTACAT CTGGGCATGA ACAAATTAAA
    TTAAGTACTC CTGAAGCTGG GCACAAAGCT CTAGTCCCAG ATTCCAGTGA GAACCATCCC
    ACTTTAACGG CCAGTCATGG GGGTGCTGTA GATGGATGTG TAAATGGTCC CACCACTGCA
    GAGGCAGAAA AGACTTCAGA CCAAAACCTG TCAAATGAAG AGAGTGGTGT GGGTGTGTTT
    CCCTCGCAGG ATCCTGTTCC ACCCAGAATG CCTCCTTGGA TTTACAATGA AAGTTTGGTC
    CCAGATACCT ATAAGAAAAT TTTAGAAACC ACAGTGACTC CAACTGGAAT AGATACTGCT
    AAACTTTATC CCATTCTGAT GTCATCTGGA CTTCCCAGGG AAACTCTTGG ACAGATATGG
    GCCTTGGCCA ATCGAACTAC ACCTGGCAAA CTCACTAAAG AAGAGCTTTA CACTGTTCTC
    GCCATGATAG CAGTAACGCA GAGGGGTGTT CCTGCCATGA GTCCTGATGC TTTGAATCAG
    TTCCCAGCAG CTCCCATTCC AACGTTAAGT GGCTTTTCTA TGACTCTGCC TACCCCAGTG
    AGCCAGCCGA CTGTGATGCC CTCTGGCCCT TCAGGGTCCA TGCCCCTCAG CCTTGGACAG
    CCAGTCATGG GCATTAACCT TGTTGGACCA GTGGGTGGAG CTGCAGCCCC AGCTTCCAGT
    GGCTTCATGC CATCTTACCC AGCAAAACAG GTGGGAAAGA CAGAAGAGGA TGACTTCCAG
    GAATTTCAAG ATGCTTCTAA GTCAGGATCC CTTGATGACT CGTTCACTGA CTTCCAAGAG
    GTGCCTCCTT CCTCAAAAAC AAATAATTCC CAGCATGGAA ACAGTGCTCC ATCTTTGTTG
    ATACCACTTC CTGGAACTAA AGCTTCAAAG GATAAATATG CAGTGTTTAA AGGAATTTCA
    GCTGACAAAC CCTCTGAAAA TGCTGTTCCA TTTGGAGAGT CTGCTGATAA ATACAGTGCT
    TTCCGGGAAC TTGAGCAGAC CACAGAGAAT AAACCTTTAG GAGAGAGCTT CACAGAATTC
    AGATCTGCAG GAACTGATGA TGGTTTCACC GACTTTAAGA CAGCCGACAG TATATCACCT
    CTAGAGCCAC CAACGACAAA AGACACTTTC CCAACATCCT TCCCCTCAGG ACCTATACAG
    CAGAAACAGC AAACACAAGT GAAAACTCCT CTGAACTTAG CAGACCTGGA TATGTTTTCC
    TCAGTTAATT GCAGCAATGA GAAACCATTG CCCTTTTCAG CAGCATTTAG CACATCTAAG
    TCAGTTTCTA CAAGACCTCA GCCAGGGGGA TCTACTACAA GCCCAGCAGC ACTGGCATCC
    ACTAAAACTT CTAGTCTGGC TGATGATTTT GGAGAATTCA ACCTCTTTGG GGAATATTCT
    AGTCCTGCAT CAGTTGGGGA GCAGGATGAC TTTGCAGATT TTATGGCTTT CAGTAACAGC
    TCTATTTCTT CTGAGCAAAA AGCAGATGAC AAATATGATG TCCTCAGAGA GGAACCAAGT
    CCCGTTCCTC TGACCAGCAA CTCAGGCAGT GAGGGAAAGA GTACACCTGC TACATCCACC
    AAGTATGATG TCTTCAAACA GCTTTCCCTA GAAGGAGCTG GACTAGGTGT CGAAGAGTTA
    AAAGATAACA CTCCTTTTGG AAAAGGTGAT GATGATTTTG CTGATTTTCA CTCCAATAAA
    TTTTCATCCA TGAATTCGGA GAAATCCCTG GGAGAGAAAG CAGTAGCTTT CAGACACACC
    AAAGAAGACT CTGCTTCAGT GAAGTCCCTA GATCTCCCTT CTATTGGTGG CAGCAGCATT
    GGCAAGGAGG ACTCAGAAGA TGCGCTTTCT GTTCAGTTTG ACATGAAACT GGCTGATGTG
    GGAGGAGATC TTAAGCATGT CATGTCTGAT AGCTCTTTGG ATTTACCAAC AGTTAGTGGC
    CAGCATCCTC CTGCTGCAGA TATAGAGGAC TTAAAATATG CTACTTTTGG AAGCTACAGT
    AGCAGTTTTA CAGTGAGCAC ACTTACAAGC TATGACTGGT CAGACAGGGA TGATGCATCT
    CAGGGCAGAA AACTCTCTCC ATTTGTCCTC TCAGCAGGAA GTGGGTCCTC CTCAGCCACC
    TCAGTTCTTC AAAAGAAAGA GACCTCATTT GGTAGCTCTG AAAACAGCAC CATGTCATCG
    CTCTCCAAAG TAACAACCTT TGCAAGTGAG GATGCTCTTC CAGAGACTCC CTTCCCGGCC
    TTTGCCAGCT TTAAAGACAT CATGCCTCAG ACCAGTGAAC AAAAGGAATA TGAAAAATAT
    GGAAGTGGGG ACTACCAGGA TTTCCCAAGG CAGGATCTGT CCGCAGCTGA ACAGAGCCAG
    GAGATCATGT GTCCAAGCCC AGCATCCAGT GGTGCCTCTC ATGAAACCCC CAAAGAATGT
    GCTGATGACT TTGGGGAGTT TCAGAGTGAA AAGCCCAAAA TCAGCAAATT TGACTTTTTA
    GTAGCCAATT CACAAAGCAA AATGAAATCC AGTGAAGAAA TGATCAAAAG TGAGCTGGCA
    ACCTTTGACC TTTCTGTTCA AGGATCACAC AAGAGAAGCT TGAGCCTTGG GGATAAAGAA
    ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT GAGCAGCCTT TCAGGGATCG TTCCAACACT
    CTGAGTGAGA AGCCTGCTCT GCCTGTCATC CGTGACAAGT ACAAAGATCT GACAGGCGAG
    GTGGAGGAAA ATGAGAGATA TGCGTATGAA TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT
    GTCATTAAGA AGGCAAATGA CACCTTAAAT GGAATTAGTA GCAGTGCTGT TTGTACAGAA
    GTTATTCAGT CAGCCCAAGG CATGGAATAT TTATTAGGTG TCGTGGAAGT GTACCGAGTA
    ACCAAACGTG TGGAGCTGGG GATAAAAGCT ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG
    TTGCTGAAGG ACATTGATAA AGTGTGGAAC AACCTAATCG GCTTCATGTC ACTCGCTACA
    CTCACACCAG ATGAAAATTC ACTGGATTTT TCCTCCTGTA TGCTACGGCC TGGGATTAAA
    AACGCTCAGG AACTGGCTTG CGGGGTGTGC CTCTTAAATG TGGATTCTAG GAGCCGGAAA
    GAAGAGAAGC CTACAGAAGA ACATCCTAAA AAAGCATTCA ACGCAGAAAC AGACAGTTTC
    AAGCTGGCCT ATGGAGGGCA CCAATATCAC GCCAGCTGTG CCAACTTCTG GATCAACTGT
    GTTGAGCCCA AGCCTCCTGG CCTCATCCTG CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30853
    Clone ID Related Accession (Same CDS sequence) XM_008848097.3 , XM_008848097.2
    Accession Version XM_008848097.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4125bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848097.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGCCCTTCC
    TTGGAGGAGA AGCTCCTAGT ATCTTGTGAT ATAAGTACAT CTGGGCATGA ACAAATTAAA
    TTAAGTACTC CTGAAGCTGG GCACAAAGCT CTAGTCCCAG ATTCCAGTGA GAACCATCCC
    ACTTTAACGG CCAGTCATGG GGGTGCTGTA GATGGATGTG TAAATGGTCC CACCACTGCA
    GAGGCAGAAA AGACTTCAGA CCAAAACCTG TCAAATGAAG AGAGTGGTGT GGGTGTGTTT
    CCCTCGCAGG ATCCTGTTCC ACCCAGAATG CCTCCTTGGA TTTACAATGA AAGTTTGGTC
    CCAGATACCT ATAAGAAAAT TTTAGAAACC ACAGTGACTC CAACTGGAAT AGATACTGCT
    AAACTTTATC CCATTCTGAT GTCATCTGGA CTTCCCAGGG AAACTCTTGG ACAGATATGG
    GCCTTGGCCA ATCGAACTAC ACCTGGCAAA CTCACTAAAG AAGAGCTTTA CACTGTTCTC
    GCCATGATAG CAGTAACGCA GAGGGGTGTT CCTGCCATGA GTCCTGATGC TTTGAATCAG
    TTCCCAGCAG CTCCCATTCC AACGTTAAGT GGCTTTTCTA TGACTCTGCC TACCCCAGTG
    AGCCAGCCGA CTGTGATGCC CTCTGGCCCT TCAGGGTCCA TGCCCCTCAG CCTTGGACAG
    CCAGTCATGG GCATTAACCT TGTTGGACCA GTGGGTGGAG CTGCAGCCCC AGCTTCCAGT
    GGCTTCATGC CATCTTACCC AGCAAAACAG GTGGGAAAGA CAGAAGAGGA TGACTTCCAG
    GAATTTCAAG ATGCTTCTAA GTCAGGATCC CTTGATGACT CGTTCACTGA CTTCCAAGAG
    GTGCCTCCTT CCTCAAAAAC AAATAATTCC CAGCATGGAA ACAGTGCTCC ATCTTTGTTG
    ATACCACTTC CTGGAACTAA AGCTTCAAAG GATAAATATG CAGTGTTTAA AGGAATTTCA
    GCTGACAAAC CCTCTGAAAA TGCTGTTCCA TTTGGAGAGT CTGCTGATAA ATACAGTGCT
    TTCCGGGAAC TTGAGCAGAC CACAGAGAAT AAACCTTTAG GAGAGAGCTT CACAGAATTC
    AGATCTGCAG GAACTGATGA TGGTTTCACC GACTTTAAGA CAGCCGACAG TATATCACCT
    CTAGAGCCAC CAACGACAAA AGACACTTTC CCAACATCCT TCCCCTCAGG ACCTATACAG
    CAGAAACAGC AAACACAAGT GAAAACTCCT CTGAACTTAG CAGACCTGGA TATGTTTTCC
    TCAGTTAATT GCAGCAATGA GAAACCATTG CCCTTTTCAG CAGCATTTAG CACATCTAAG
    TCAGTTTCTA CAAGACCTCA GCCAGGGGGA TCTACTACAA GCCCAGCAGC ACTGGCATCC
    ACTAAAACTT CTAGTCTGGC TGATGATTTT GGAGAATTCA ACCTCTTTGG GGAATATTCT
    AGTCCTGCAT CAGTTGGGGA GCAGGATGAC TTTGCAGATT TTATGGCTTT CAGTAACAGC
    TCTATTTCTT CTGAGCAAAA AGCAGATGAC AAATATGATG TCCTCAGAGA GGAACCAAGT
    CCCGTTCCTC TGACCAGCAA CTCAGGCAGT GAGGGAAAGA GTACACCTGC TACATCCACC
    AAGTATGATG TCTTCAAACA GCTTTCCCTA GAAGGAGCTG GACTAGGTGT CGAAGAGTTA
    AAAGATAACA CTCCTTTTGG AAAAGGTGAT GATGATTTTG CTGATTTTCA CTCCAATAAA
    TTTTCATCCA TGAATTCGGA GAAATCCCTG GGAGAGAAAG CAGTAGCTTT CAGACACACC
    AAAGAAGACT CTGCTTCAGT GAAGTCCCTA GATCTCCCTT CTATTGGTGG CAGCAGCATT
    GGCAAGGAGG ACTCAGAAGA TGCGCTTTCT GTTCAGTTTG ACATGAAACT GGCTGATGTG
    GGAGGAGATC TTAAGCATGT CATGTCTGAT AGCTCTTTGG ATTTACCAAC AGTTAGTGGC
    CAGCATCCTC CTGCTGCAGA TATAGAGGAC TTAAAATATG CTACTTTTGG AAGCTACAGT
    AGCAGTTTTA CAGTGAGCAC ACTTACAAGC TATGACTGGT CAGACAGGGA TGATGCATCT
    CAGGGCAGAA AACTCTCTCC ATTTGTCCTC TCAGCAGGAA GTGGGTCCTC CTCAGCCACC
    TCAGTTCTTC AAAAGAAAGA GACCTCATTT GGTAGCTCTG AAAACAGCAC CATGTCATCG
    CTCTCCAAAG TAACAACCTT TGCAAGTGAG GATGCTCTTC CAGAGACTCC CTTCCCGGCC
    TTTGCCAGCT TTAAAGACAT CATGCCTCAG ACCAGTGAAC AAAAGGAATA TGAAAAATAT
    GGAAGTGGGG ACTACCAGGA TTTCCCAAGG CAGGATCTGT CCGCAGCTGA ACAGAGCCAG
    GAGATCATGT GTCCAAGCCC AGCATCCAGT GGTGCCTCTC ATGAAACCCC CAAAGAATGT
    GCTGATGACT TTGGGGAGTT TCAGAGTGAA AAGCCCAAAA TCAGCAAATT TGACTTTTTA
    GTAGCCAATT CACAAAGCAA AATGAAATCC AGTGAAGAAA TGATCAAAAG TGAGCTGGCA
    ACCTTTGACC TTTCTGTTCA AGGATCACAC AAGAGAAGCT TGAGCCTTGG GGATAAAGAA
    ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT GAGCAGCCTT TCAGGGATCG TTCCAACACT
    CTGAGTGAGA AGCCTGCTCT GCCTGTCATC CGTGACAAGT ACAAAGATCT GACAGGCGAG
    GTGGAGGAAA ATGAGAGATA TGCGTATGAA TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT
    GTCATTAAGA AGGCAAATGA CACCTTAAAT GGAATTAGTA GCAGTGCTGT TTGTACAGAA
    GTTATTCAGT CAGCCCAAGG CATGGAATAT TTATTAGGTG TCGTGGAAGT GTACCGAGTA
    ACCAAACGTG TGGAGCTGGG GATAAAAGCT ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG
    TTGCTGAAGG ACATTGATAA AGTGTGGAAC AACCTAATCG GCTTCATGTC ACTCGCTACA
    CTCACACCAG ATGAAAATTC ACTGGATTTT TCCTCCTGTA TGCTACGGCC TGGGATTAAA
    AACGCTCAGG AACTGGCTTG CGGGGTGTGC CTCTTAAATG TGGATTCTAG GAGCCGGAAA
    GAAGAGAAGC CTACAGAAGA ACATCCTAAA AAAGCATTCA ACGCAGAAAC AGACAGTTTC
    AAGCTGGCCT ATGGAGGGCA CCAATATCAC GCCAGCTGTG CCAACTTCTG GATCAACTGT
    GTTGAGCCCA AGCCTCCTGG CCTCATCCTG CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846319.1
    CDS10..4134
    Translation

    Target ORF information:

    RefSeq Version XM_008848097.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848097.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGCCCTTCC
    TTGGAGGAGA AGCTCCTAGT ATCTTGTGAT ATAAGTACAT CTGGGCATGA ACAAATTAAA
    TTAAGTACTC CTGAAGCTGG GCACAAAGCT CTAGTCCCAG ATTCCAGTGA GAACCATCCC
    ACTTTAACGG CCAGTCATGG GGGTGCTGTA GATGGATGTG TAAATGGTCC CACCACTGCA
    GAGGCAGAAA AGACTTCAGA CCAAAACCTG TCAAATGAAG AGAGTGGTGT GGGTGTGTTT
    CCCTCGCAGG ATCCTGTTCC ACCCAGAATG CCTCCTTGGA TTTACAATGA AAGTTTGGTC
    CCAGATACCT ATAAGAAAAT TTTAGAAACC ACAGTGACTC CAACTGGAAT AGATACTGCT
    AAACTTTATC CCATTCTGAT GTCATCTGGA CTTCCCAGGG AAACTCTTGG ACAGATATGG
    GCCTTGGCCA ATCGAACTAC ACCTGGCAAA CTCACTAAAG AAGAGCTTTA CACTGTTCTC
    GCCATGATAG CAGTAACGCA GAGGGGTGTT CCTGCCATGA GTCCTGATGC TTTGAATCAG
    TTCCCAGCAG CTCCCATTCC AACGTTAAGT GGCTTTTCTA TGACTCTGCC TACCCCAGTG
    AGCCAGCCGA CTGTGATGCC CTCTGGCCCT TCAGGGTCCA TGCCCCTCAG CCTTGGACAG
    CCAGTCATGG GCATTAACCT TGTTGGACCA GTGGGTGGAG CTGCAGCCCC AGCTTCCAGT
    GGCTTCATGC CATCTTACCC AGCAAAACAG GTGGGAAAGA CAGAAGAGGA TGACTTCCAG
    GAATTTCAAG ATGCTTCTAA GTCAGGATCC CTTGATGACT CGTTCACTGA CTTCCAAGAG
    GTGCCTCCTT CCTCAAAAAC AAATAATTCC CAGCATGGAA ACAGTGCTCC ATCTTTGTTG
    ATACCACTTC CTGGAACTAA AGCTTCAAAG GATAAATATG CAGTGTTTAA AGGAATTTCA
    GCTGACAAAC CCTCTGAAAA TGCTGTTCCA TTTGGAGAGT CTGCTGATAA ATACAGTGCT
    TTCCGGGAAC TTGAGCAGAC CACAGAGAAT AAACCTTTAG GAGAGAGCTT CACAGAATTC
    AGATCTGCAG GAACTGATGA TGGTTTCACC GACTTTAAGA CAGCCGACAG TATATCACCT
    CTAGAGCCAC CAACGACAAA AGACACTTTC CCAACATCCT TCCCCTCAGG ACCTATACAG
    CAGAAACAGC AAACACAAGT GAAAACTCCT CTGAACTTAG CAGACCTGGA TATGTTTTCC
    TCAGTTAATT GCAGCAATGA GAAACCATTG CCCTTTTCAG CAGCATTTAG CACATCTAAG
    TCAGTTTCTA CAAGACCTCA GCCAGGGGGA TCTACTACAA GCCCAGCAGC ACTGGCATCC
    ACTAAAACTT CTAGTCTGGC TGATGATTTT GGAGAATTCA ACCTCTTTGG GGAATATTCT
    AGTCCTGCAT CAGTTGGGGA GCAGGATGAC TTTGCAGATT TTATGGCTTT CAGTAACAGC
    TCTATTTCTT CTGAGCAAAA AGCAGATGAC AAATATGATG TCCTCAGAGA GGAACCAAGT
    CCCGTTCCTC TGACCAGCAA CTCAGGCAGT GAGGGAAAGA GTACACCTGC TACATCCACC
    AAGTATGATG TCTTCAAACA GCTTTCCCTA GAAGGAGCTG GACTAGGTGT CGAAGAGTTA
    AAAGATAACA CTCCTTTTGG AAAAGGTGAT GATGATTTTG CTGATTTTCA CTCCAATAAA
    TTTTCATCCA TGAATTCGGA GAAATCCCTG GGAGAGAAAG CAGTAGCTTT CAGACACACC
    AAAGAAGACT CTGCTTCAGT GAAGTCCCTA GATCTCCCTT CTATTGGTGG CAGCAGCATT
    GGCAAGGAGG ACTCAGAAGA TGCGCTTTCT GTTCAGTTTG ACATGAAACT GGCTGATGTG
    GGAGGAGATC TTAAGCATGT CATGTCTGAT AGCTCTTTGG ATTTACCAAC AGTTAGTGGC
    CAGCATCCTC CTGCTGCAGA TATAGAGGAC TTAAAATATG CTACTTTTGG AAGCTACAGT
    AGCAGTTTTA CAGTGAGCAC ACTTACAAGC TATGACTGGT CAGACAGGGA TGATGCATCT
    CAGGGCAGAA AACTCTCTCC ATTTGTCCTC TCAGCAGGAA GTGGGTCCTC CTCAGCCACC
    TCAGTTCTTC AAAAGAAAGA GACCTCATTT GGTAGCTCTG AAAACAGCAC CATGTCATCG
    CTCTCCAAAG TAACAACCTT TGCAAGTGAG GATGCTCTTC CAGAGACTCC CTTCCCGGCC
    TTTGCCAGCT TTAAAGACAT CATGCCTCAG ACCAGTGAAC AAAAGGAATA TGAAAAATAT
    GGAAGTGGGG ACTACCAGGA TTTCCCAAGG CAGGATCTGT CCGCAGCTGA ACAGAGCCAG
    GAGATCATGT GTCCAAGCCC AGCATCCAGT GGTGCCTCTC ATGAAACCCC CAAAGAATGT
    GCTGATGACT TTGGGGAGTT TCAGAGTGAA AAGCCCAAAA TCAGCAAATT TGACTTTTTA
    GTAGCCAATT CACAAAGCAA AATGAAATCC AGTGAAGAAA TGATCAAAAG TGAGCTGGCA
    ACCTTTGACC TTTCTGTTCA AGGATCACAC AAGAGAAGCT TGAGCCTTGG GGATAAAGAA
    ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT GAGCAGCCTT TCAGGGATCG TTCCAACACT
    CTGAGTGAGA AGCCTGCTCT GCCTGTCATC CGTGACAAGT ACAAAGATCT GACAGGCGAG
    GTGGAGGAAA ATGAGAGATA TGCGTATGAA TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT
    GTCATTAAGA AGGCAAATGA CACCTTAAAT GGAATTAGTA GCAGTGCTGT TTGTACAGAA
    GTTATTCAGT CAGCCCAAGG CATGGAATAT TTATTAGGTG TCGTGGAAGT GTACCGAGTA
    ACCAAACGTG TGGAGCTGGG GATAAAAGCT ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG
    TTGCTGAAGG ACATTGATAA AGTGTGGAAC AACCTAATCG GCTTCATGTC ACTCGCTACA
    CTCACACCAG ATGAAAATTC ACTGGATTTT TCCTCCTGTA TGCTACGGCC TGGGATTAAA
    AACGCTCAGG AACTGGCTTG CGGGGTGTGC CTCTTAAATG TGGATTCTAG GAGCCGGAAA
    GAAGAGAAGC CTACAGAAGA ACATCCTAAA AAAGCATTCA ACGCAGAAAC AGACAGTTTC
    AAGCTGGCCT ATGGAGGGCA CCAATATCAC GCCAGCTGTG CCAACTTCTG GATCAACTGT
    GTTGAGCCCA AGCCTCCTGG CCTCATCCTG CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30854
    Clone ID Related Accession (Same CDS sequence) XM_008848098.2 , XM_008848098.3
    Accession Version XM_008848098.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4083bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848098.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGCAGGAAGT
    GGGTCCTCCT CAGCCACCTC AGTTCTTCAA AAGAAAGAGA CCTCATTTGG TAGCTCTGAA
    AACAGCACCA TGTCATCGCT CTCCAAAGTA ACAACCTTTG CAAGTGAGGA TGCTCTTCCA
    GAGACTCCCT TCCCGGCCTT TGCCAGCTTT AAAGACATCA TGCCTCAGAC CAGTGAACAA
    AAGGAATATG AAAAATATGG AAGTGGGGAC TACCAGGATT TCCCAAGGCA GGATCTGTCC
    GCAGCTGAAC AGAGCCAGGA GATCATGTGT CCAAGCCCAG CATCCAGTGG TGCCTCTCAT
    GAAACCCCCA AAGAATGTGC TGATGACTTT GGGGAGTTTC AGAGTGAAAA GCCCAAAATC
    AGCAAATTTG ACTTTTTAGT AGCCAATTCA CAAAGCAAAA TGAAATCCAG TGAAGAAATG
    ATCAAAAGTG AGCTGGCAAC CTTTGACCTT TCTGTTCAAG GATCACACAA GAGAAGCTTG
    AGCCTTGGGG ATAAAGAAAT AAGCCGGTCC TCTCCTTCTC CAGCCCTTGA GCAGCCTTTC
    AGGGATCGTT CCAACACTCT GAGTGAGAAG CCTGCTCTGC CTGTCATCCG TGACAAGTAC
    AAAGATCTGA CAGGCGAGGT GGAGGAAAAT GAGAGATATG CGTATGAATG GCAGAGGTGC
    CTGGGGAGCG CCTTGGATGT CATTAAGAAG GCAAATGACA CCTTAAATGG AATTAGTAGC
    AGTGCTGTTT GTACAGAAGT TATTCAGTCA GCCCAAGGCA TGGAATATTT ATTAGGTGTC
    GTGGAAGTGT ACCGAGTAAC CAAACGTGTG GAGCTGGGGA TAAAAGCTAC TGCTGTGTGC
    AGTGAGAAAC TCCAGCAGTT GCTGAAGGAC ATTGATAAAG TGTGGAACAA CCTAATCGGC
    TTCATGTCAC TCGCTACACT CACACCAGAT GAAAATTCAC TGGATTTTTC CTCCTGTATG
    CTACGGCCTG GGATTAAAAA CGCTCAGGAA CTGGCTTGCG GGGTGTGCCT CTTAAATGTG
    GATTCTAGGA GCCGGAAAGA AGAGAAGCCT ACAGAAGAAC ATCCTAAAAA AGCATTCAAC
    GCAGAAACAG ACAGTTTCAA GCTGGCCTAT GGAGGGCACC AATATCACGC CAGCTGTGCC
    AACTTCTGGA TCAACTGTGT TGAGCCCAAG CCTCCTGGCC TCATCCTGCC AGATCTGCTC
    TGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846320.1
    CDS10..4092
    Translation

    Target ORF information:

    RefSeq Version XM_008848098.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848098.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGCAGGAAGT
    GGGTCCTCCT CAGCCACCTC AGTTCTTCAA AAGAAAGAGA CCTCATTTGG TAGCTCTGAA
    AACAGCACCA TGTCATCGCT CTCCAAAGTA ACAACCTTTG CAAGTGAGGA TGCTCTTCCA
    GAGACTCCCT TCCCGGCCTT TGCCAGCTTT AAAGACATCA TGCCTCAGAC CAGTGAACAA
    AAGGAATATG AAAAATATGG AAGTGGGGAC TACCAGGATT TCCCAAGGCA GGATCTGTCC
    GCAGCTGAAC AGAGCCAGGA GATCATGTGT CCAAGCCCAG CATCCAGTGG TGCCTCTCAT
    GAAACCCCCA AAGAATGTGC TGATGACTTT GGGGAGTTTC AGAGTGAAAA GCCCAAAATC
    AGCAAATTTG ACTTTTTAGT AGCCAATTCA CAAAGCAAAA TGAAATCCAG TGAAGAAATG
    ATCAAAAGTG AGCTGGCAAC CTTTGACCTT TCTGTTCAAG GATCACACAA GAGAAGCTTG
    AGCCTTGGGG ATAAAGAAAT AAGCCGGTCC TCTCCTTCTC CAGCCCTTGA GCAGCCTTTC
    AGGGATCGTT CCAACACTCT GAGTGAGAAG CCTGCTCTGC CTGTCATCCG TGACAAGTAC
    AAAGATCTGA CAGGCGAGGT GGAGGAAAAT GAGAGATATG CGTATGAATG GCAGAGGTGC
    CTGGGGAGCG CCTTGGATGT CATTAAGAAG GCAAATGACA CCTTAAATGG AATTAGTAGC
    AGTGCTGTTT GTACAGAAGT TATTCAGTCA GCCCAAGGCA TGGAATATTT ATTAGGTGTC
    GTGGAAGTGT ACCGAGTAAC CAAACGTGTG GAGCTGGGGA TAAAAGCTAC TGCTGTGTGC
    AGTGAGAAAC TCCAGCAGTT GCTGAAGGAC ATTGATAAAG TGTGGAACAA CCTAATCGGC
    TTCATGTCAC TCGCTACACT CACACCAGAT GAAAATTCAC TGGATTTTTC CTCCTGTATG
    CTACGGCCTG GGATTAAAAA CGCTCAGGAA CTGGCTTGCG GGGTGTGCCT CTTAAATGTG
    GATTCTAGGA GCCGGAAAGA AGAGAAGCCT ACAGAAGAAC ATCCTAAAAA AGCATTCAAC
    GCAGAAACAG ACAGTTTCAA GCTGGCCTAT GGAGGGCACC AATATCACGC CAGCTGTGCC
    AACTTCTGGA TCAACTGTGT TGAGCCCAAG CCTCCTGGCC TCATCCTGCC AGATCTGCTC
    TGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30854
    Clone ID Related Accession (Same CDS sequence) XM_008848098.2 , XM_008848098.3
    Accession Version XM_008848098.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4083bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X6
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848098.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGCAGGAAGT
    GGGTCCTCCT CAGCCACCTC AGTTCTTCAA AAGAAAGAGA CCTCATTTGG TAGCTCTGAA
    AACAGCACCA TGTCATCGCT CTCCAAAGTA ACAACCTTTG CAAGTGAGGA TGCTCTTCCA
    GAGACTCCCT TCCCGGCCTT TGCCAGCTTT AAAGACATCA TGCCTCAGAC CAGTGAACAA
    AAGGAATATG AAAAATATGG AAGTGGGGAC TACCAGGATT TCCCAAGGCA GGATCTGTCC
    GCAGCTGAAC AGAGCCAGGA GATCATGTGT CCAAGCCCAG CATCCAGTGG TGCCTCTCAT
    GAAACCCCCA AAGAATGTGC TGATGACTTT GGGGAGTTTC AGAGTGAAAA GCCCAAAATC
    AGCAAATTTG ACTTTTTAGT AGCCAATTCA CAAAGCAAAA TGAAATCCAG TGAAGAAATG
    ATCAAAAGTG AGCTGGCAAC CTTTGACCTT TCTGTTCAAG GATCACACAA GAGAAGCTTG
    AGCCTTGGGG ATAAAGAAAT AAGCCGGTCC TCTCCTTCTC CAGCCCTTGA GCAGCCTTTC
    AGGGATCGTT CCAACACTCT GAGTGAGAAG CCTGCTCTGC CTGTCATCCG TGACAAGTAC
    AAAGATCTGA CAGGCGAGGT GGAGGAAAAT GAGAGATATG CGTATGAATG GCAGAGGTGC
    CTGGGGAGCG CCTTGGATGT CATTAAGAAG GCAAATGACA CCTTAAATGG AATTAGTAGC
    AGTGCTGTTT GTACAGAAGT TATTCAGTCA GCCCAAGGCA TGGAATATTT ATTAGGTGTC
    GTGGAAGTGT ACCGAGTAAC CAAACGTGTG GAGCTGGGGA TAAAAGCTAC TGCTGTGTGC
    AGTGAGAAAC TCCAGCAGTT GCTGAAGGAC ATTGATAAAG TGTGGAACAA CCTAATCGGC
    TTCATGTCAC TCGCTACACT CACACCAGAT GAAAATTCAC TGGATTTTTC CTCCTGTATG
    CTACGGCCTG GGATTAAAAA CGCTCAGGAA CTGGCTTGCG GGGTGTGCCT CTTAAATGTG
    GATTCTAGGA GCCGGAAAGA AGAGAAGCCT ACAGAAGAAC ATCCTAAAAA AGCATTCAAC
    GCAGAAACAG ACAGTTTCAA GCTGGCCTAT GGAGGGCACC AATATCACGC CAGCTGTGCC
    AACTTCTGGA TCAACTGTGT TGAGCCCAAG CCTCCTGGCC TCATCCTGCC AGATCTGCTC
    TGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846320.1
    CDS41..4123
    Translation

    Target ORF information:

    RefSeq Version XM_008848098.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X6, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848098.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GATTGTCCCA CATCATCTCA TCTCATTTCC
    CCATCACCTG CCTTTCTTGA TGAAGATGAA TTCAGTGACT TTATGCAGGG GCCTGTGGAG
    GTTCCTATTT GTGTGCCATC TTCTGCGGCC CAGCCCTTTC AGTCTTTCCT TCCCACCACC
    CCATTTGGCC AGTTGCATGC ACAGAAGGCT GGGGTACAGC CTCTCCCTCC AGGTCAGATT
    CCAGTGTCTT TTGCCTTACA TGGTGGCCCT GGGCAAATGC CTTATTTCTC TTCTGCTTCA
    ACTTCACACA GTGTGCAGAA AGCAGGCCCT TCCTTGGAGG AGAAGCTCCT AGTATCTTGT
    GATATAAGTA CATCTGGGCA TGAACAAATT AAATTAAGTA CTCCTGAAGC TGGGCACAAA
    GCTCTAGTCC CAGATTCCAG TGAGAACCAT CCCACTTTAA CGGCCAGTCA TGGGGGTGCT
    GTAGATGGAT GTGTAAATGG TCCCACCACT GCAGAGGCAG AAAAGACTTC AGACCAAAAC
    CTGTCAAATG AAGAGAGTGG TGTGGGTGTG TTTCCCTCGC AGGATCCTGT TCCACCCAGA
    ATGCCTCCTT GGATTTACAA TGAAAGTTTG GTCCCAGATA CCTATAAGAA AATTTTAGAA
    ACCACAGTGA CTCCAACTGG AATAGATACT GCTAAACTTT ATCCCATTCT GATGTCATCT
    GGACTTCCCA GGGAAACTCT TGGACAGATA TGGGCCTTGG CCAATCGAAC TACACCTGGC
    AAACTCACTA AAGAAGAGCT TTACACTGTT CTCGCCATGA TAGCAGTAAC GCAGAGGGGT
    GTTCCTGCCA TGAGTCCTGA TGCTTTGAAT CAGTTCCCAG CAGCTCCCAT TCCAACGTTA
    AGTGGCTTTT CTATGACTCT GCCTACCCCA GTGAGCCAGC CGACTGTGAT GCCCTCTGGC
    CCTTCAGGGT CCATGCCCCT CAGCCTTGGA CAGCCAGTCA TGGGCATTAA CCTTGTTGGA
    CCAGTGGGTG GAGCTGCAGC CCCAGCTTCC AGTGGCTTCA TGCCATCTTA CCCAGCAAAA
    CAGGTGGGAA AGACAGAAGA GGATGACTTC CAGGAATTTC AAGATGCTTC TAAGTCAGGA
    TCCCTTGATG ACTCGTTCAC TGACTTCCAA GAGGTGCCTC CTTCCTCAAA AACAAATAAT
    TCCCAGCATG GAAACAGTGC TCCATCTTTG TTGATACCAC TTCCTGGAAC TAAAGCTTCA
    AAGGATAAAT ATGCAGTGTT TAAAGGAATT TCAGCTGACA AACCCTCTGA AAATGCTGTT
    CCATTTGGAG AGTCTGCTGA TAAATACAGT GCTTTCCGGG AACTTGAGCA GACCACAGAG
    AATAAACCTT TAGGAGAGAG CTTCACAGAA TTCAGATCTG CAGGAACTGA TGATGGTTTC
    ACCGACTTTA AGACAGCCGA CAGTATATCA CCTCTAGAGC CACCAACGAC AAAAGACACT
    TTCCCAACAT CCTTCCCCTC AGGACCTATA CAGCAGAAAC AGCAAACACA AGTGAAAACT
    CCTCTGAACT TAGCAGACCT GGATATGTTT TCCTCAGTTA ATTGCAGCAA TGAGAAACCA
    TTGCCCTTTT CAGCAGCATT TAGCACATCT AAGTCAGTTT CTACAAGACC TCAGCCAGGG
    GGATCTACTA CAAGCCCAGC AGCACTGGCA TCCACTAAAA CTTCTAGTCT GGCTGATGAT
    TTTGGAGAAT TCAACCTCTT TGGGGAATAT TCTAGTCCTG CATCAGTTGG GGAGCAGGAT
    GACTTTGCAG ATTTTATGGC TTTCAGTAAC AGCTCTATTT CTTCTGAGCA AAAAGCAGAT
    GACAAATATG ATGTCCTCAG AGAGGAACCA AGTCCCGTTC CTCTGACCAG CAACTCAGGC
    AGTGAGGGAA AGAGTACACC TGCTACATCC ACCAAGTATG ATGTCTTCAA ACAGCTTTCC
    CTAGAAGGAG CTGGACTAGG TGTCGAAGAG TTAAAAGATA ACACTCCTTT TGGAAAAGGT
    GATGATGATT TTGCTGATTT TCACTCCAAT AAATTTTCAT CCATGAATTC GGAGAAATCC
    CTGGGAGAGA AAGCAGTAGC TTTCAGACAC ACCAAAGAAG ACTCTGCTTC AGTGAAGTCC
    CTAGATCTCC CTTCTATTGG TGGCAGCAGC ATTGGCAAGG AGGACTCAGA AGATGCGCTT
    TCTGTTCAGT TTGACATGAA ACTGGCTGAT GTGGGAGGAG ATCTTAAGCA TGTCATGTCT
    GATAGCTCTT TGGATTTACC AACAGTTAGT GGCCAGCATC CTCCTGCTGC AGCAGGAAGT
    GGGTCCTCCT CAGCCACCTC AGTTCTTCAA AAGAAAGAGA CCTCATTTGG TAGCTCTGAA
    AACAGCACCA TGTCATCGCT CTCCAAAGTA ACAACCTTTG CAAGTGAGGA TGCTCTTCCA
    GAGACTCCCT TCCCGGCCTT TGCCAGCTTT AAAGACATCA TGCCTCAGAC CAGTGAACAA
    AAGGAATATG AAAAATATGG AAGTGGGGAC TACCAGGATT TCCCAAGGCA GGATCTGTCC
    GCAGCTGAAC AGAGCCAGGA GATCATGTGT CCAAGCCCAG CATCCAGTGG TGCCTCTCAT
    GAAACCCCCA AAGAATGTGC TGATGACTTT GGGGAGTTTC AGAGTGAAAA GCCCAAAATC
    AGCAAATTTG ACTTTTTAGT AGCCAATTCA CAAAGCAAAA TGAAATCCAG TGAAGAAATG
    ATCAAAAGTG AGCTGGCAAC CTTTGACCTT TCTGTTCAAG GATCACACAA GAGAAGCTTG
    AGCCTTGGGG ATAAAGAAAT AAGCCGGTCC TCTCCTTCTC CAGCCCTTGA GCAGCCTTTC
    AGGGATCGTT CCAACACTCT GAGTGAGAAG CCTGCTCTGC CTGTCATCCG TGACAAGTAC
    AAAGATCTGA CAGGCGAGGT GGAGGAAAAT GAGAGATATG CGTATGAATG GCAGAGGTGC
    CTGGGGAGCG CCTTGGATGT CATTAAGAAG GCAAATGACA CCTTAAATGG AATTAGTAGC
    AGTGCTGTTT GTACAGAAGT TATTCAGTCA GCCCAAGGCA TGGAATATTT ATTAGGTGTC
    GTGGAAGTGT ACCGAGTAAC CAAACGTGTG GAGCTGGGGA TAAAAGCTAC TGCTGTGTGC
    AGTGAGAAAC TCCAGCAGTT GCTGAAGGAC ATTGATAAAG TGTGGAACAA CCTAATCGGC
    TTCATGTCAC TCGCTACACT CACACCAGAT GAAAATTCAC TGGATTTTTC CTCCTGTATG
    CTACGGCCTG GGATTAAAAA CGCTCAGGAA CTGGCTTGCG GGGTGTGCCT CTTAAATGTG
    GATTCTAGGA GCCGGAAAGA AGAGAAGCCT ACAGAAGAAC ATCCTAAAAA AGCATTCAAC
    GCAGAAACAG ACAGTTTCAA GCTGGCCTAT GGAGGGCACC AATATCACGC CAGCTGTGCC
    AACTTCTGGA TCAACTGTGT TGAGCCCAAG CCTCCTGGCC TCATCCTGCC AGATCTGCTC
    TGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30855
    Clone ID Related Accession (Same CDS sequence) XM_008848099.3 , XM_008848099.2
    Accession Version XM_008848099.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3924bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X8
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848099.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGCCCTTCCT TGGAGGAGAA GCTCCTAGTA
    TCTTGTGATA TAAGTACATC TGGGCATGAA CAAATTAAAT TAAGTACTCC TGAAGCTGGG
    CACAAAGCTC TAGTCCCAGA TTCCAGTGAG AACCATCCCA CTTTAACGGC CAGTCATGGG
    GGTGCTGTAG ATGGATGTGT AAATGGTCCC ACCACTGCAG AGGCAGAAAA GACTTCAGAC
    CAAAACCTGT CAAATGAAGA GAGTGGTGTG GGTGTGTTTC CCTCGCAGGA TCCTGTTCCA
    CCCAGAATGC CTCCTTGGAT TTACAATGAA AGTTTGGTCC CAGATACCTA TAAGAAAATT
    TTAGAAACCA CAGTGACTCC AACTGGAATA GATACTGCTA AACTTTATCC CATTCTGATG
    TCATCTGGAC TTCCCAGGGA AACTCTTGGA CAGATATGGG CCTTGGCCAA TCGAACTACA
    CCTGGCAAAC TCACTAAAGA AGAGCTTTAC ACTGTTCTCG CCATGATAGC AGTAACGCAG
    AGGGGTGTTC CTGCCATGAG TCCTGATGCT TTGAATCAGT TCCCAGCAGC TCCCATTCCA
    ACGTTAAGTG GCTTTTCTAT GACTCTGCCT ACCCCAGTGA GCCAGCCGAC TGTGATGCCC
    TCTGGCCCTT CAGGGTCCAT GCCCCTCAGC CTTGGACAGC CAGTCATGGG CATTAACCTT
    GTTGGACCAG TGGGTGGAGC TGCAGCCCCA GCTTCCAGTG GCTTCATGCC ATCTTACCCA
    GCAAAACAGG TGGGAAAGAC AGAAGAGGAT GACTTCCAGG AATTTCAAGA TGCTTCTAAG
    TCAGGATCCC TTGATGACTC GTTCACTGAC TTCCAAGAGG TGCCTCCTTC CTCAAAAACA
    AATAATTCCC AGCATGGAAA CAGTGCTCCA TCTTTGTTGA TACCACTTCC TGGAACTAAA
    GCTTCAAAGG ATAAATATGC AGTGTTTAAA GGAATTTCAG CTGACAAACC CTCTGAAAAT
    GCTGTTCCAT TTGGAGAGTC TGCTGATAAA TACAGTGCTT TCCGGGAACT TGAGCAGACC
    ACAGAGAATA AACCTTTAGG AGAGAGCTTC ACAGAATTCA GATCTGCAGG AACTGATGAT
    GGTTTCACCG ACTTTAAGAC AGCCGACAGT ATATCACCTC TAGAGCCACC AACGACAAAA
    GACACTTTCC CAACATCCTT CCCCTCAGGA CCTATACAGC AGAAACAGCA AACACAAGTG
    AAAACTCCTC TGAACTTAGC AGACCTGGAT ATGTTTTCCT CAGTTAATTG CAGCAATGAG
    AAACCATTGC CCTTTTCAGC AGCATTTAGC ACATCTAAGT CAGTTTCTAC AAGACCTCAG
    CCAGGGGGAT CTACTACAAG CCCAGCAGCA CTGGCATCCA CTAAAACTTC TAGTCTGGCT
    GATGATTTTG GAGAATTCAA CCTCTTTGGG GAATATTCTA GTCCTGCATC AGTTGGGGAG
    CAGGATGACT TTGCAGATTT TATGGCTTTC AGTAACAGCT CTATTTCTTC TGAGCAAAAA
    GCAGATGACA AATATGATGT CCTCAGAGAG GAACCAAGTC CCGTTCCTCT GACCAGCAAC
    TCAGGCAGTG AGGGAAAGAG TACACCTGCT ACATCCACCA AGTATGATGT CTTCAAACAG
    CTTTCCCTAG AAGGAGCTGG ACTAGGTGTC GAAGAGTTAA AAGATAACAC TCCTTTTGGA
    AAAGGTGATG ATGATTTTGC TGATTTTCAC TCCAATAAAT TTTCATCCAT GAATTCGGAG
    AAATCCCTGG GAGAGAAAGC AGTAGCTTTC AGACACACCA AAGAAGACTC TGCTTCAGTG
    AAGTCCCTAG ATCTCCCTTC TATTGGTGGC AGCAGCATTG GCAAGGAGGA CTCAGAAGAT
    GCGCTTTCTG TTCAGTTTGA CATGAAACTG GCTGATGTGG GAGGAGATCT TAAGCATGTC
    ATGTCTGATA GCTCTTTGGA TTTACCAACA GTTAGTGGCC AGCATCCTCC TGCTGCAGAT
    ATAGAGGACT TAAAATATGC TACTTTTGGA AGCTACAGTA GCAGTTTTAC AGTGAGCACA
    CTTACAAGCT ATGACTGGTC AGACAGGGAT GATGCATCTC AGGGCAGAAA ACTCTCTCCA
    TTTGTCCTCT CAGCAGGAAG TGGGTCCTCC TCAGCCACCT CAGTTCTTCA AAAGAAAGAG
    ACCTCATTTG GTAGCTCTGA AAACAGCACC ATGTCATCGC TCTCCAAAGT AACAACCTTT
    GCAAGTGAGG ATGCTCTTCC AGAGACTCCC TTCCCGGCCT TTGCCAGCTT TAAAGACATC
    ATGCCTCAGA CCAGTGAACA AAAGGAATAT GAAAAATATG GAAGTGGGGA CTACCAGGAT
    TTCCCAAGGC AGGATCTGTC CGCAGCTGAA CAGAGCCAGG AGATCATGTG TCCAAGCCCA
    GCATCCAGTG GTGCCTCTCA TGAAACCCCC AAAGAATGTG CTGATGACTT TGGGGAGTTT
    CAGAGTGAAA AGCCCAAAAT CAGCAAATTT GACTTTTTAG TAGCCAATTC ACAAAGCAAA
    ATGAAATCCA GTGAAGAAAT GATCAAAAGT GAGCTGGCAA CCTTTGACCT TTCTGTTCAA
    GGATCACACA AGAGAAGCTT GAGCCTTGGG GATAAAGAAA TAAGCCGGTC CTCTCCTTCT
    CCAGCCCTTG AGCAGCCTTT CAGGGATCGT TCCAACACTC TGAGTGAGAA GCCTGCTCTG
    CCTGTCATCC GTGACAAGTA CAAAGATCTG ACAGGCGAGG TGGAGGAAAA TGAGAGATAT
    GCGTATGAAT GGCAGAGGTG CCTGGGGAGC GCCTTGGATG TCATTAAGAA GGCAAATGAC
    ACCTTAAATG GAATTAGTAG CAGTGCTGTT TGTACAGAAG TTATTCAGTC AGCCCAAGGC
    ATGGAATATT TATTAGGTGT CGTGGAAGTG TACCGAGTAA CCAAACGTGT GGAGCTGGGG
    ATAAAAGCTA CTGCTGTGTG CAGTGAGAAA CTCCAGCAGT TGCTGAAGGA CATTGATAAA
    GTGTGGAACA ACCTAATCGG CTTCATGTCA CTCGCTACAC TCACACCAGA TGAAAATTCA
    CTGGATTTTT CCTCCTGTAT GCTACGGCCT GGGATTAAAA ACGCTCAGGA ACTGGCTTGC
    GGGGTGTGCC TCTTAAATGT GGATTCTAGG AGCCGGAAAG AAGAGAAGCC TACAGAAGAA
    CATCCTAAAA AAGCATTCAA CGCAGAAACA GACAGTTTCA AGCTGGCCTA TGGAGGGCAC
    CAATATCACG CCAGCTGTGC CAACTTCTGG ATCAACTGTG TTGAGCCCAA GCCTCCTGGC
    CTCATCCTGC CAGATCTGCT CTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846321.1
    CDS41..3964
    Translation

    Target ORF information:

    RefSeq Version XM_008848099.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X8, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848099.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGCCCTTCCT TGGAGGAGAA GCTCCTAGTA
    TCTTGTGATA TAAGTACATC TGGGCATGAA CAAATTAAAT TAAGTACTCC TGAAGCTGGG
    CACAAAGCTC TAGTCCCAGA TTCCAGTGAG AACCATCCCA CTTTAACGGC CAGTCATGGG
    GGTGCTGTAG ATGGATGTGT AAATGGTCCC ACCACTGCAG AGGCAGAAAA GACTTCAGAC
    CAAAACCTGT CAAATGAAGA GAGTGGTGTG GGTGTGTTTC CCTCGCAGGA TCCTGTTCCA
    CCCAGAATGC CTCCTTGGAT TTACAATGAA AGTTTGGTCC CAGATACCTA TAAGAAAATT
    TTAGAAACCA CAGTGACTCC AACTGGAATA GATACTGCTA AACTTTATCC CATTCTGATG
    TCATCTGGAC TTCCCAGGGA AACTCTTGGA CAGATATGGG CCTTGGCCAA TCGAACTACA
    CCTGGCAAAC TCACTAAAGA AGAGCTTTAC ACTGTTCTCG CCATGATAGC AGTAACGCAG
    AGGGGTGTTC CTGCCATGAG TCCTGATGCT TTGAATCAGT TCCCAGCAGC TCCCATTCCA
    ACGTTAAGTG GCTTTTCTAT GACTCTGCCT ACCCCAGTGA GCCAGCCGAC TGTGATGCCC
    TCTGGCCCTT CAGGGTCCAT GCCCCTCAGC CTTGGACAGC CAGTCATGGG CATTAACCTT
    GTTGGACCAG TGGGTGGAGC TGCAGCCCCA GCTTCCAGTG GCTTCATGCC ATCTTACCCA
    GCAAAACAGG TGGGAAAGAC AGAAGAGGAT GACTTCCAGG AATTTCAAGA TGCTTCTAAG
    TCAGGATCCC TTGATGACTC GTTCACTGAC TTCCAAGAGG TGCCTCCTTC CTCAAAAACA
    AATAATTCCC AGCATGGAAA CAGTGCTCCA TCTTTGTTGA TACCACTTCC TGGAACTAAA
    GCTTCAAAGG ATAAATATGC AGTGTTTAAA GGAATTTCAG CTGACAAACC CTCTGAAAAT
    GCTGTTCCAT TTGGAGAGTC TGCTGATAAA TACAGTGCTT TCCGGGAACT TGAGCAGACC
    ACAGAGAATA AACCTTTAGG AGAGAGCTTC ACAGAATTCA GATCTGCAGG AACTGATGAT
    GGTTTCACCG ACTTTAAGAC AGCCGACAGT ATATCACCTC TAGAGCCACC AACGACAAAA
    GACACTTTCC CAACATCCTT CCCCTCAGGA CCTATACAGC AGAAACAGCA AACACAAGTG
    AAAACTCCTC TGAACTTAGC AGACCTGGAT ATGTTTTCCT CAGTTAATTG CAGCAATGAG
    AAACCATTGC CCTTTTCAGC AGCATTTAGC ACATCTAAGT CAGTTTCTAC AAGACCTCAG
    CCAGGGGGAT CTACTACAAG CCCAGCAGCA CTGGCATCCA CTAAAACTTC TAGTCTGGCT
    GATGATTTTG GAGAATTCAA CCTCTTTGGG GAATATTCTA GTCCTGCATC AGTTGGGGAG
    CAGGATGACT TTGCAGATTT TATGGCTTTC AGTAACAGCT CTATTTCTTC TGAGCAAAAA
    GCAGATGACA AATATGATGT CCTCAGAGAG GAACCAAGTC CCGTTCCTCT GACCAGCAAC
    TCAGGCAGTG AGGGAAAGAG TACACCTGCT ACATCCACCA AGTATGATGT CTTCAAACAG
    CTTTCCCTAG AAGGAGCTGG ACTAGGTGTC GAAGAGTTAA AAGATAACAC TCCTTTTGGA
    AAAGGTGATG ATGATTTTGC TGATTTTCAC TCCAATAAAT TTTCATCCAT GAATTCGGAG
    AAATCCCTGG GAGAGAAAGC AGTAGCTTTC AGACACACCA AAGAAGACTC TGCTTCAGTG
    AAGTCCCTAG ATCTCCCTTC TATTGGTGGC AGCAGCATTG GCAAGGAGGA CTCAGAAGAT
    GCGCTTTCTG TTCAGTTTGA CATGAAACTG GCTGATGTGG GAGGAGATCT TAAGCATGTC
    ATGTCTGATA GCTCTTTGGA TTTACCAACA GTTAGTGGCC AGCATCCTCC TGCTGCAGAT
    ATAGAGGACT TAAAATATGC TACTTTTGGA AGCTACAGTA GCAGTTTTAC AGTGAGCACA
    CTTACAAGCT ATGACTGGTC AGACAGGGAT GATGCATCTC AGGGCAGAAA ACTCTCTCCA
    TTTGTCCTCT CAGCAGGAAG TGGGTCCTCC TCAGCCACCT CAGTTCTTCA AAAGAAAGAG
    ACCTCATTTG GTAGCTCTGA AAACAGCACC ATGTCATCGC TCTCCAAAGT AACAACCTTT
    GCAAGTGAGG ATGCTCTTCC AGAGACTCCC TTCCCGGCCT TTGCCAGCTT TAAAGACATC
    ATGCCTCAGA CCAGTGAACA AAAGGAATAT GAAAAATATG GAAGTGGGGA CTACCAGGAT
    TTCCCAAGGC AGGATCTGTC CGCAGCTGAA CAGAGCCAGG AGATCATGTG TCCAAGCCCA
    GCATCCAGTG GTGCCTCTCA TGAAACCCCC AAAGAATGTG CTGATGACTT TGGGGAGTTT
    CAGAGTGAAA AGCCCAAAAT CAGCAAATTT GACTTTTTAG TAGCCAATTC ACAAAGCAAA
    ATGAAATCCA GTGAAGAAAT GATCAAAAGT GAGCTGGCAA CCTTTGACCT TTCTGTTCAA
    GGATCACACA AGAGAAGCTT GAGCCTTGGG GATAAAGAAA TAAGCCGGTC CTCTCCTTCT
    CCAGCCCTTG AGCAGCCTTT CAGGGATCGT TCCAACACTC TGAGTGAGAA GCCTGCTCTG
    CCTGTCATCC GTGACAAGTA CAAAGATCTG ACAGGCGAGG TGGAGGAAAA TGAGAGATAT
    GCGTATGAAT GGCAGAGGTG CCTGGGGAGC GCCTTGGATG TCATTAAGAA GGCAAATGAC
    ACCTTAAATG GAATTAGTAG CAGTGCTGTT TGTACAGAAG TTATTCAGTC AGCCCAAGGC
    ATGGAATATT TATTAGGTGT CGTGGAAGTG TACCGAGTAA CCAAACGTGT GGAGCTGGGG
    ATAAAAGCTA CTGCTGTGTG CAGTGAGAAA CTCCAGCAGT TGCTGAAGGA CATTGATAAA
    GTGTGGAACA ACCTAATCGG CTTCATGTCA CTCGCTACAC TCACACCAGA TGAAAATTCA
    CTGGATTTTT CCTCCTGTAT GCTACGGCCT GGGATTAAAA ACGCTCAGGA ACTGGCTTGC
    GGGGTGTGCC TCTTAAATGT GGATTCTAGG AGCCGGAAAG AAGAGAAGCC TACAGAAGAA
    CATCCTAAAA AAGCATTCAA CGCAGAAACA GACAGTTTCA AGCTGGCCTA TGGAGGGCAC
    CAATATCACG CCAGCTGTGC CAACTTCTGG ATCAACTGTG TTGAGCCCAA GCCTCCTGGC
    CTCATCCTGC CAGATCTGCT CTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30855
    Clone ID Related Accession (Same CDS sequence) XM_008848099.3 , XM_008848099.2
    Accession Version XM_008848099.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3924bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848099.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGCCCTTCCT TGGAGGAGAA GCTCCTAGTA
    TCTTGTGATA TAAGTACATC TGGGCATGAA CAAATTAAAT TAAGTACTCC TGAAGCTGGG
    CACAAAGCTC TAGTCCCAGA TTCCAGTGAG AACCATCCCA CTTTAACGGC CAGTCATGGG
    GGTGCTGTAG ATGGATGTGT AAATGGTCCC ACCACTGCAG AGGCAGAAAA GACTTCAGAC
    CAAAACCTGT CAAATGAAGA GAGTGGTGTG GGTGTGTTTC CCTCGCAGGA TCCTGTTCCA
    CCCAGAATGC CTCCTTGGAT TTACAATGAA AGTTTGGTCC CAGATACCTA TAAGAAAATT
    TTAGAAACCA CAGTGACTCC AACTGGAATA GATACTGCTA AACTTTATCC CATTCTGATG
    TCATCTGGAC TTCCCAGGGA AACTCTTGGA CAGATATGGG CCTTGGCCAA TCGAACTACA
    CCTGGCAAAC TCACTAAAGA AGAGCTTTAC ACTGTTCTCG CCATGATAGC AGTAACGCAG
    AGGGGTGTTC CTGCCATGAG TCCTGATGCT TTGAATCAGT TCCCAGCAGC TCCCATTCCA
    ACGTTAAGTG GCTTTTCTAT GACTCTGCCT ACCCCAGTGA GCCAGCCGAC TGTGATGCCC
    TCTGGCCCTT CAGGGTCCAT GCCCCTCAGC CTTGGACAGC CAGTCATGGG CATTAACCTT
    GTTGGACCAG TGGGTGGAGC TGCAGCCCCA GCTTCCAGTG GCTTCATGCC ATCTTACCCA
    GCAAAACAGG TGGGAAAGAC AGAAGAGGAT GACTTCCAGG AATTTCAAGA TGCTTCTAAG
    TCAGGATCCC TTGATGACTC GTTCACTGAC TTCCAAGAGG TGCCTCCTTC CTCAAAAACA
    AATAATTCCC AGCATGGAAA CAGTGCTCCA TCTTTGTTGA TACCACTTCC TGGAACTAAA
    GCTTCAAAGG ATAAATATGC AGTGTTTAAA GGAATTTCAG CTGACAAACC CTCTGAAAAT
    GCTGTTCCAT TTGGAGAGTC TGCTGATAAA TACAGTGCTT TCCGGGAACT TGAGCAGACC
    ACAGAGAATA AACCTTTAGG AGAGAGCTTC ACAGAATTCA GATCTGCAGG AACTGATGAT
    GGTTTCACCG ACTTTAAGAC AGCCGACAGT ATATCACCTC TAGAGCCACC AACGACAAAA
    GACACTTTCC CAACATCCTT CCCCTCAGGA CCTATACAGC AGAAACAGCA AACACAAGTG
    AAAACTCCTC TGAACTTAGC AGACCTGGAT ATGTTTTCCT CAGTTAATTG CAGCAATGAG
    AAACCATTGC CCTTTTCAGC AGCATTTAGC ACATCTAAGT CAGTTTCTAC AAGACCTCAG
    CCAGGGGGAT CTACTACAAG CCCAGCAGCA CTGGCATCCA CTAAAACTTC TAGTCTGGCT
    GATGATTTTG GAGAATTCAA CCTCTTTGGG GAATATTCTA GTCCTGCATC AGTTGGGGAG
    CAGGATGACT TTGCAGATTT TATGGCTTTC AGTAACAGCT CTATTTCTTC TGAGCAAAAA
    GCAGATGACA AATATGATGT CCTCAGAGAG GAACCAAGTC CCGTTCCTCT GACCAGCAAC
    TCAGGCAGTG AGGGAAAGAG TACACCTGCT ACATCCACCA AGTATGATGT CTTCAAACAG
    CTTTCCCTAG AAGGAGCTGG ACTAGGTGTC GAAGAGTTAA AAGATAACAC TCCTTTTGGA
    AAAGGTGATG ATGATTTTGC TGATTTTCAC TCCAATAAAT TTTCATCCAT GAATTCGGAG
    AAATCCCTGG GAGAGAAAGC AGTAGCTTTC AGACACACCA AAGAAGACTC TGCTTCAGTG
    AAGTCCCTAG ATCTCCCTTC TATTGGTGGC AGCAGCATTG GCAAGGAGGA CTCAGAAGAT
    GCGCTTTCTG TTCAGTTTGA CATGAAACTG GCTGATGTGG GAGGAGATCT TAAGCATGTC
    ATGTCTGATA GCTCTTTGGA TTTACCAACA GTTAGTGGCC AGCATCCTCC TGCTGCAGAT
    ATAGAGGACT TAAAATATGC TACTTTTGGA AGCTACAGTA GCAGTTTTAC AGTGAGCACA
    CTTACAAGCT ATGACTGGTC AGACAGGGAT GATGCATCTC AGGGCAGAAA ACTCTCTCCA
    TTTGTCCTCT CAGCAGGAAG TGGGTCCTCC TCAGCCACCT CAGTTCTTCA AAAGAAAGAG
    ACCTCATTTG GTAGCTCTGA AAACAGCACC ATGTCATCGC TCTCCAAAGT AACAACCTTT
    GCAAGTGAGG ATGCTCTTCC AGAGACTCCC TTCCCGGCCT TTGCCAGCTT TAAAGACATC
    ATGCCTCAGA CCAGTGAACA AAAGGAATAT GAAAAATATG GAAGTGGGGA CTACCAGGAT
    TTCCCAAGGC AGGATCTGTC CGCAGCTGAA CAGAGCCAGG AGATCATGTG TCCAAGCCCA
    GCATCCAGTG GTGCCTCTCA TGAAACCCCC AAAGAATGTG CTGATGACTT TGGGGAGTTT
    CAGAGTGAAA AGCCCAAAAT CAGCAAATTT GACTTTTTAG TAGCCAATTC ACAAAGCAAA
    ATGAAATCCA GTGAAGAAAT GATCAAAAGT GAGCTGGCAA CCTTTGACCT TTCTGTTCAA
    GGATCACACA AGAGAAGCTT GAGCCTTGGG GATAAAGAAA TAAGCCGGTC CTCTCCTTCT
    CCAGCCCTTG AGCAGCCTTT CAGGGATCGT TCCAACACTC TGAGTGAGAA GCCTGCTCTG
    CCTGTCATCC GTGACAAGTA CAAAGATCTG ACAGGCGAGG TGGAGGAAAA TGAGAGATAT
    GCGTATGAAT GGCAGAGGTG CCTGGGGAGC GCCTTGGATG TCATTAAGAA GGCAAATGAC
    ACCTTAAATG GAATTAGTAG CAGTGCTGTT TGTACAGAAG TTATTCAGTC AGCCCAAGGC
    ATGGAATATT TATTAGGTGT CGTGGAAGTG TACCGAGTAA CCAAACGTGT GGAGCTGGGG
    ATAAAAGCTA CTGCTGTGTG CAGTGAGAAA CTCCAGCAGT TGCTGAAGGA CATTGATAAA
    GTGTGGAACA ACCTAATCGG CTTCATGTCA CTCGCTACAC TCACACCAGA TGAAAATTCA
    CTGGATTTTT CCTCCTGTAT GCTACGGCCT GGGATTAAAA ACGCTCAGGA ACTGGCTTGC
    GGGGTGTGCC TCTTAAATGT GGATTCTAGG AGCCGGAAAG AAGAGAAGCC TACAGAAGAA
    CATCCTAAAA AAGCATTCAA CGCAGAAACA GACAGTTTCA AGCTGGCCTA TGGAGGGCAC
    CAATATCACG CCAGCTGTGC CAACTTCTGG ATCAACTGTG TTGAGCCCAA GCCTCCTGGC
    CTCATCCTGC CAGATCTGCT CTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846321.1
    CDS10..3933
    Translation

    Target ORF information:

    RefSeq Version XM_008848099.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848099.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGCCCTTCCT TGGAGGAGAA GCTCCTAGTA
    TCTTGTGATA TAAGTACATC TGGGCATGAA CAAATTAAAT TAAGTACTCC TGAAGCTGGG
    CACAAAGCTC TAGTCCCAGA TTCCAGTGAG AACCATCCCA CTTTAACGGC CAGTCATGGG
    GGTGCTGTAG ATGGATGTGT AAATGGTCCC ACCACTGCAG AGGCAGAAAA GACTTCAGAC
    CAAAACCTGT CAAATGAAGA GAGTGGTGTG GGTGTGTTTC CCTCGCAGGA TCCTGTTCCA
    CCCAGAATGC CTCCTTGGAT TTACAATGAA AGTTTGGTCC CAGATACCTA TAAGAAAATT
    TTAGAAACCA CAGTGACTCC AACTGGAATA GATACTGCTA AACTTTATCC CATTCTGATG
    TCATCTGGAC TTCCCAGGGA AACTCTTGGA CAGATATGGG CCTTGGCCAA TCGAACTACA
    CCTGGCAAAC TCACTAAAGA AGAGCTTTAC ACTGTTCTCG CCATGATAGC AGTAACGCAG
    AGGGGTGTTC CTGCCATGAG TCCTGATGCT TTGAATCAGT TCCCAGCAGC TCCCATTCCA
    ACGTTAAGTG GCTTTTCTAT GACTCTGCCT ACCCCAGTGA GCCAGCCGAC TGTGATGCCC
    TCTGGCCCTT CAGGGTCCAT GCCCCTCAGC CTTGGACAGC CAGTCATGGG CATTAACCTT
    GTTGGACCAG TGGGTGGAGC TGCAGCCCCA GCTTCCAGTG GCTTCATGCC ATCTTACCCA
    GCAAAACAGG TGGGAAAGAC AGAAGAGGAT GACTTCCAGG AATTTCAAGA TGCTTCTAAG
    TCAGGATCCC TTGATGACTC GTTCACTGAC TTCCAAGAGG TGCCTCCTTC CTCAAAAACA
    AATAATTCCC AGCATGGAAA CAGTGCTCCA TCTTTGTTGA TACCACTTCC TGGAACTAAA
    GCTTCAAAGG ATAAATATGC AGTGTTTAAA GGAATTTCAG CTGACAAACC CTCTGAAAAT
    GCTGTTCCAT TTGGAGAGTC TGCTGATAAA TACAGTGCTT TCCGGGAACT TGAGCAGACC
    ACAGAGAATA AACCTTTAGG AGAGAGCTTC ACAGAATTCA GATCTGCAGG AACTGATGAT
    GGTTTCACCG ACTTTAAGAC AGCCGACAGT ATATCACCTC TAGAGCCACC AACGACAAAA
    GACACTTTCC CAACATCCTT CCCCTCAGGA CCTATACAGC AGAAACAGCA AACACAAGTG
    AAAACTCCTC TGAACTTAGC AGACCTGGAT ATGTTTTCCT CAGTTAATTG CAGCAATGAG
    AAACCATTGC CCTTTTCAGC AGCATTTAGC ACATCTAAGT CAGTTTCTAC AAGACCTCAG
    CCAGGGGGAT CTACTACAAG CCCAGCAGCA CTGGCATCCA CTAAAACTTC TAGTCTGGCT
    GATGATTTTG GAGAATTCAA CCTCTTTGGG GAATATTCTA GTCCTGCATC AGTTGGGGAG
    CAGGATGACT TTGCAGATTT TATGGCTTTC AGTAACAGCT CTATTTCTTC TGAGCAAAAA
    GCAGATGACA AATATGATGT CCTCAGAGAG GAACCAAGTC CCGTTCCTCT GACCAGCAAC
    TCAGGCAGTG AGGGAAAGAG TACACCTGCT ACATCCACCA AGTATGATGT CTTCAAACAG
    CTTTCCCTAG AAGGAGCTGG ACTAGGTGTC GAAGAGTTAA AAGATAACAC TCCTTTTGGA
    AAAGGTGATG ATGATTTTGC TGATTTTCAC TCCAATAAAT TTTCATCCAT GAATTCGGAG
    AAATCCCTGG GAGAGAAAGC AGTAGCTTTC AGACACACCA AAGAAGACTC TGCTTCAGTG
    AAGTCCCTAG ATCTCCCTTC TATTGGTGGC AGCAGCATTG GCAAGGAGGA CTCAGAAGAT
    GCGCTTTCTG TTCAGTTTGA CATGAAACTG GCTGATGTGG GAGGAGATCT TAAGCATGTC
    ATGTCTGATA GCTCTTTGGA TTTACCAACA GTTAGTGGCC AGCATCCTCC TGCTGCAGAT
    ATAGAGGACT TAAAATATGC TACTTTTGGA AGCTACAGTA GCAGTTTTAC AGTGAGCACA
    CTTACAAGCT ATGACTGGTC AGACAGGGAT GATGCATCTC AGGGCAGAAA ACTCTCTCCA
    TTTGTCCTCT CAGCAGGAAG TGGGTCCTCC TCAGCCACCT CAGTTCTTCA AAAGAAAGAG
    ACCTCATTTG GTAGCTCTGA AAACAGCACC ATGTCATCGC TCTCCAAAGT AACAACCTTT
    GCAAGTGAGG ATGCTCTTCC AGAGACTCCC TTCCCGGCCT TTGCCAGCTT TAAAGACATC
    ATGCCTCAGA CCAGTGAACA AAAGGAATAT GAAAAATATG GAAGTGGGGA CTACCAGGAT
    TTCCCAAGGC AGGATCTGTC CGCAGCTGAA CAGAGCCAGG AGATCATGTG TCCAAGCCCA
    GCATCCAGTG GTGCCTCTCA TGAAACCCCC AAAGAATGTG CTGATGACTT TGGGGAGTTT
    CAGAGTGAAA AGCCCAAAAT CAGCAAATTT GACTTTTTAG TAGCCAATTC ACAAAGCAAA
    ATGAAATCCA GTGAAGAAAT GATCAAAAGT GAGCTGGCAA CCTTTGACCT TTCTGTTCAA
    GGATCACACA AGAGAAGCTT GAGCCTTGGG GATAAAGAAA TAAGCCGGTC CTCTCCTTCT
    CCAGCCCTTG AGCAGCCTTT CAGGGATCGT TCCAACACTC TGAGTGAGAA GCCTGCTCTG
    CCTGTCATCC GTGACAAGTA CAAAGATCTG ACAGGCGAGG TGGAGGAAAA TGAGAGATAT
    GCGTATGAAT GGCAGAGGTG CCTGGGGAGC GCCTTGGATG TCATTAAGAA GGCAAATGAC
    ACCTTAAATG GAATTAGTAG CAGTGCTGTT TGTACAGAAG TTATTCAGTC AGCCCAAGGC
    ATGGAATATT TATTAGGTGT CGTGGAAGTG TACCGAGTAA CCAAACGTGT GGAGCTGGGG
    ATAAAAGCTA CTGCTGTGTG CAGTGAGAAA CTCCAGCAGT TGCTGAAGGA CATTGATAAA
    GTGTGGAACA ACCTAATCGG CTTCATGTCA CTCGCTACAC TCACACCAGA TGAAAATTCA
    CTGGATTTTT CCTCCTGTAT GCTACGGCCT GGGATTAAAA ACGCTCAGGA ACTGGCTTGC
    GGGGTGTGCC TCTTAAATGT GGATTCTAGG AGCCGGAAAG AAGAGAAGCC TACAGAAGAA
    CATCCTAAAA AAGCATTCAA CGCAGAAACA GACAGTTTCA AGCTGGCCTA TGGAGGGCAC
    CAATATCACG CCAGCTGTGC CAACTTCTGG ATCAACTGTG TTGAGCCCAA GCCTCCTGGC
    CTCATCCTGC CAGATCTGCT CTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30856
    Clone ID Related Accession (Same CDS sequence) XM_008848100.3 , XM_008848100.2
    Accession Version XM_008848100.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3690bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X10
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848100.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGATATAG AGGACTTAAA ATATGCTACT TTTGGAAGCT ACAGTAGCAG TTTTACAGTG
    AGCACACTTA CAAGCTATGA CTGGTCAGAC AGGGATGATG CATCTCAGGG CAGAAAACTC
    TCTCCATTTG TCCTCTCAGC AGGAAGTGGG TCCTCCTCAG CCACCTCAGT TCTTCAAAAG
    AAAGAGACCT CATTTGGTAG CTCTGAAAAC AGCACCATGT CATCGCTCTC CAAAGTAACA
    ACCTTTGCAA GTGAGGATGC TCTTCCAGAG ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA
    GACATCATGC CTCAGACCAG TGAACAAAAG GAATATGAAA AATATGGAAG TGGGGACTAC
    CAGGATTTCC CAAGGCAGGA TCTGTCCGCA GCTGAACAGA GCCAGGAGAT CATGTGTCCA
    AGCCCAGCAT CCAGTGGTGC CTCTCATGAA ACCCCCAAAG AATGTGCTGA TGACTTTGGG
    GAGTTTCAGA GTGAAAAGCC CAAAATCAGC AAATTTGACT TTTTAGTAGC CAATTCACAA
    AGCAAAATGA AATCCAGTGA AGAAATGATC AAAAGTGAGC TGGCAACCTT TGACCTTTCT
    GTTCAAGGAT CACACAAGAG AAGCTTGAGC CTTGGGGATA AAGAAATAAG CCGGTCCTCT
    CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG GATCGTTCCA ACACTCTGAG TGAGAAGCCT
    GCTCTGCCTG TCATCCGTGA CAAGTACAAA GATCTGACAG GCGAGGTGGA GGAAAATGAG
    AGATATGCGT ATGAATGGCA GAGGTGCCTG GGGAGCGCCT TGGATGTCAT TAAGAAGGCA
    AATGACACCT TAAATGGAAT TAGTAGCAGT GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC
    CAAGGCATGG AATATTTATT AGGTGTCGTG GAAGTGTACC GAGTAACCAA ACGTGTGGAG
    CTGGGGATAA AAGCTACTGC TGTGTGCAGT GAGAAACTCC AGCAGTTGCT GAAGGACATT
    GATAAAGTGT GGAACAACCT AATCGGCTTC ATGTCACTCG CTACACTCAC ACCAGATGAA
    AATTCACTGG ATTTTTCCTC CTGTATGCTA CGGCCTGGGA TTAAAAACGC TCAGGAACTG
    GCTTGCGGGG TGTGCCTCTT AAATGTGGAT TCTAGGAGCC GGAAAGAAGA GAAGCCTACA
    GAAGAACATC CTAAAAAAGC ATTCAACGCA GAAACAGACA GTTTCAAGCT GGCCTATGGA
    GGGCACCAAT ATCACGCCAG CTGTGCCAAC TTCTGGATCA ACTGTGTTGA GCCCAAGCCT
    CCTGGCCTCA TCCTGCCAGA TCTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846322.1
    CDS41..3730
    Translation

    Target ORF information:

    RefSeq Version XM_008848100.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X10, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848100.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGATATAG AGGACTTAAA ATATGCTACT TTTGGAAGCT ACAGTAGCAG TTTTACAGTG
    AGCACACTTA CAAGCTATGA CTGGTCAGAC AGGGATGATG CATCTCAGGG CAGAAAACTC
    TCTCCATTTG TCCTCTCAGC AGGAAGTGGG TCCTCCTCAG CCACCTCAGT TCTTCAAAAG
    AAAGAGACCT CATTTGGTAG CTCTGAAAAC AGCACCATGT CATCGCTCTC CAAAGTAACA
    ACCTTTGCAA GTGAGGATGC TCTTCCAGAG ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA
    GACATCATGC CTCAGACCAG TGAACAAAAG GAATATGAAA AATATGGAAG TGGGGACTAC
    CAGGATTTCC CAAGGCAGGA TCTGTCCGCA GCTGAACAGA GCCAGGAGAT CATGTGTCCA
    AGCCCAGCAT CCAGTGGTGC CTCTCATGAA ACCCCCAAAG AATGTGCTGA TGACTTTGGG
    GAGTTTCAGA GTGAAAAGCC CAAAATCAGC AAATTTGACT TTTTAGTAGC CAATTCACAA
    AGCAAAATGA AATCCAGTGA AGAAATGATC AAAAGTGAGC TGGCAACCTT TGACCTTTCT
    GTTCAAGGAT CACACAAGAG AAGCTTGAGC CTTGGGGATA AAGAAATAAG CCGGTCCTCT
    CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG GATCGTTCCA ACACTCTGAG TGAGAAGCCT
    GCTCTGCCTG TCATCCGTGA CAAGTACAAA GATCTGACAG GCGAGGTGGA GGAAAATGAG
    AGATATGCGT ATGAATGGCA GAGGTGCCTG GGGAGCGCCT TGGATGTCAT TAAGAAGGCA
    AATGACACCT TAAATGGAAT TAGTAGCAGT GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC
    CAAGGCATGG AATATTTATT AGGTGTCGTG GAAGTGTACC GAGTAACCAA ACGTGTGGAG
    CTGGGGATAA AAGCTACTGC TGTGTGCAGT GAGAAACTCC AGCAGTTGCT GAAGGACATT
    GATAAAGTGT GGAACAACCT AATCGGCTTC ATGTCACTCG CTACACTCAC ACCAGATGAA
    AATTCACTGG ATTTTTCCTC CTGTATGCTA CGGCCTGGGA TTAAAAACGC TCAGGAACTG
    GCTTGCGGGG TGTGCCTCTT AAATGTGGAT TCTAGGAGCC GGAAAGAAGA GAAGCCTACA
    GAAGAACATC CTAAAAAAGC ATTCAACGCA GAAACAGACA GTTTCAAGCT GGCCTATGGA
    GGGCACCAAT ATCACGCCAG CTGTGCCAAC TTCTGGATCA ACTGTGTTGA GCCCAAGCCT
    CCTGGCCTCA TCCTGCCAGA TCTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30856
    Clone ID Related Accession (Same CDS sequence) XM_008848100.3 , XM_008848100.2
    Accession Version XM_008848100.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3690bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X6
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848100.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGATATAG AGGACTTAAA ATATGCTACT TTTGGAAGCT ACAGTAGCAG TTTTACAGTG
    AGCACACTTA CAAGCTATGA CTGGTCAGAC AGGGATGATG CATCTCAGGG CAGAAAACTC
    TCTCCATTTG TCCTCTCAGC AGGAAGTGGG TCCTCCTCAG CCACCTCAGT TCTTCAAAAG
    AAAGAGACCT CATTTGGTAG CTCTGAAAAC AGCACCATGT CATCGCTCTC CAAAGTAACA
    ACCTTTGCAA GTGAGGATGC TCTTCCAGAG ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA
    GACATCATGC CTCAGACCAG TGAACAAAAG GAATATGAAA AATATGGAAG TGGGGACTAC
    CAGGATTTCC CAAGGCAGGA TCTGTCCGCA GCTGAACAGA GCCAGGAGAT CATGTGTCCA
    AGCCCAGCAT CCAGTGGTGC CTCTCATGAA ACCCCCAAAG AATGTGCTGA TGACTTTGGG
    GAGTTTCAGA GTGAAAAGCC CAAAATCAGC AAATTTGACT TTTTAGTAGC CAATTCACAA
    AGCAAAATGA AATCCAGTGA AGAAATGATC AAAAGTGAGC TGGCAACCTT TGACCTTTCT
    GTTCAAGGAT CACACAAGAG AAGCTTGAGC CTTGGGGATA AAGAAATAAG CCGGTCCTCT
    CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG GATCGTTCCA ACACTCTGAG TGAGAAGCCT
    GCTCTGCCTG TCATCCGTGA CAAGTACAAA GATCTGACAG GCGAGGTGGA GGAAAATGAG
    AGATATGCGT ATGAATGGCA GAGGTGCCTG GGGAGCGCCT TGGATGTCAT TAAGAAGGCA
    AATGACACCT TAAATGGAAT TAGTAGCAGT GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC
    CAAGGCATGG AATATTTATT AGGTGTCGTG GAAGTGTACC GAGTAACCAA ACGTGTGGAG
    CTGGGGATAA AAGCTACTGC TGTGTGCAGT GAGAAACTCC AGCAGTTGCT GAAGGACATT
    GATAAAGTGT GGAACAACCT AATCGGCTTC ATGTCACTCG CTACACTCAC ACCAGATGAA
    AATTCACTGG ATTTTTCCTC CTGTATGCTA CGGCCTGGGA TTAAAAACGC TCAGGAACTG
    GCTTGCGGGG TGTGCCTCTT AAATGTGGAT TCTAGGAGCC GGAAAGAAGA GAAGCCTACA
    GAAGAACATC CTAAAAAAGC ATTCAACGCA GAAACAGACA GTTTCAAGCT GGCCTATGGA
    GGGCACCAAT ATCACGCCAG CTGTGCCAAC TTCTGGATCA ACTGTGTTGA GCCCAAGCCT
    CCTGGCCTCA TCCTGCCAGA TCTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846322.1
    CDS10..3699
    Translation

    Target ORF information:

    RefSeq Version XM_008848100.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X6, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848100.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGATATAG AGGACTTAAA ATATGCTACT TTTGGAAGCT ACAGTAGCAG TTTTACAGTG
    AGCACACTTA CAAGCTATGA CTGGTCAGAC AGGGATGATG CATCTCAGGG CAGAAAACTC
    TCTCCATTTG TCCTCTCAGC AGGAAGTGGG TCCTCCTCAG CCACCTCAGT TCTTCAAAAG
    AAAGAGACCT CATTTGGTAG CTCTGAAAAC AGCACCATGT CATCGCTCTC CAAAGTAACA
    ACCTTTGCAA GTGAGGATGC TCTTCCAGAG ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA
    GACATCATGC CTCAGACCAG TGAACAAAAG GAATATGAAA AATATGGAAG TGGGGACTAC
    CAGGATTTCC CAAGGCAGGA TCTGTCCGCA GCTGAACAGA GCCAGGAGAT CATGTGTCCA
    AGCCCAGCAT CCAGTGGTGC CTCTCATGAA ACCCCCAAAG AATGTGCTGA TGACTTTGGG
    GAGTTTCAGA GTGAAAAGCC CAAAATCAGC AAATTTGACT TTTTAGTAGC CAATTCACAA
    AGCAAAATGA AATCCAGTGA AGAAATGATC AAAAGTGAGC TGGCAACCTT TGACCTTTCT
    GTTCAAGGAT CACACAAGAG AAGCTTGAGC CTTGGGGATA AAGAAATAAG CCGGTCCTCT
    CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG GATCGTTCCA ACACTCTGAG TGAGAAGCCT
    GCTCTGCCTG TCATCCGTGA CAAGTACAAA GATCTGACAG GCGAGGTGGA GGAAAATGAG
    AGATATGCGT ATGAATGGCA GAGGTGCCTG GGGAGCGCCT TGGATGTCAT TAAGAAGGCA
    AATGACACCT TAAATGGAAT TAGTAGCAGT GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC
    CAAGGCATGG AATATTTATT AGGTGTCGTG GAAGTGTACC GAGTAACCAA ACGTGTGGAG
    CTGGGGATAA AAGCTACTGC TGTGTGCAGT GAGAAACTCC AGCAGTTGCT GAAGGACATT
    GATAAAGTGT GGAACAACCT AATCGGCTTC ATGTCACTCG CTACACTCAC ACCAGATGAA
    AATTCACTGG ATTTTTCCTC CTGTATGCTA CGGCCTGGGA TTAAAAACGC TCAGGAACTG
    GCTTGCGGGG TGTGCCTCTT AAATGTGGAT TCTAGGAGCC GGAAAGAAGA GAAGCCTACA
    GAAGAACATC CTAAAAAAGC ATTCAACGCA GAAACAGACA GTTTCAAGCT GGCCTATGGA
    GGGCACCAAT ATCACGCCAG CTGTGCCAAC TTCTGGATCA ACTGTGTTGA GCCCAAGCCT
    CCTGGCCTCA TCCTGCCAGA TCTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30857
    Clone ID Related Accession (Same CDS sequence) XM_008848101.3 , XM_008848101.2
    Accession Version XM_008848101.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3654bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X12
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848101.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGATATAG AGGACTTAAA ATATGCTACT TTTGGAAGCT ACAGTAGCAG TTTTACAGTG
    AGCACACTTA CAAGCTATGA CTGGTCAGAC AGGGATGATG CATCTCAGGG CAGAAAACTC
    TCTCCATTTG TCCTCTCAGC AGGAAGTGGG TCCTCCTCAG CCACCTCAGT TCTTCAAAAG
    AAAGAGACCT CATTTGGTAG CTCTGAAAAC AGCACCATGT CATCGCTCTC CAAAGTAACA
    ACCTTTGCAA GTGAGGATGC TCTTCCAGAG ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA
    GACATCATGC CTCAGACCAG TGAACAAAAG GAATATGAAA AATATGGAAG TGGGGACTAC
    CAGGATTTCC CAAGGCAGGA TCTGTCCGCA GCTGAACAGA GCCAGGAGAT CATGTGTCCA
    AGCCCAGCAT CCAGTGGTGC CTCTCATGAA ACCCCCAAAG AATGTGCTGA TGACTTTGGG
    GAGTTTCAGA GTGAAAAGCC CAAAATCAGC AAATTTGACT TTTTAGTAGC CAATTCACAA
    AGCAAAATGA AATCCAGTGA AGAAATGATC AAAAGTGAGC TGGCAACCTT TGACCTTTCT
    GTTCAAGGAT CACACAAGAG AAGCTTGAGC CTTGGGGATA AAGAAATAAG CCGGTCCTCT
    CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG GATCGTTCCA ACACTCTGAG TGAGAAGCCT
    GCTCTGCCTG TCATCCGTGA CAAGTACAAA GATCTGACAG GCGAGGTGGA GGAAAATGAG
    AGATATGCGT ATGAATGGCA GAGGTGCCTG GGGAGCGCCT TGGATGTCAT TAAGAAGGCA
    AATGACACCT TAAATGGAAT TAGTAGCAGT GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC
    CAAGGCATGG AATATTTATT AGGTGTCGTG GAAGTGTACC GAGTAACCAA ACGTGTGGAG
    CTGGGGATAA AAGCTACTGC TGTGTGCAGT GAGAAACTCC AGCAGTTGCT GAAGGACATT
    GATAAAGTGT GGAACAACCT AATCGGCTTC ATGTCACTCG CTACACTCAC ACCAGATGAA
    AATTCACTGG ATTTTTCCTC CTGTATGCTA CGGCCTGGGA TTAAAAACGC TCAGGAACTG
    GCTTGCGGGG TGTGCCTCTT AAATGTGGAT TCTAGGAGCC GGGCATTCAA CGCAGAAACA
    GACAGTTTCA AGCTGGCCTA TGGAGGGCAC CAATATCACG CCAGCTGTGC CAACTTCTGG
    ATCAACTGTG TTGAGCCCAA GCCTCCTGGC CTCATCCTGC CAGATCTGCT CTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846323.1
    CDS41..3694
    Translation

    Target ORF information:

    RefSeq Version XM_008848101.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X12, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848101.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGATATAG AGGACTTAAA ATATGCTACT TTTGGAAGCT ACAGTAGCAG TTTTACAGTG
    AGCACACTTA CAAGCTATGA CTGGTCAGAC AGGGATGATG CATCTCAGGG CAGAAAACTC
    TCTCCATTTG TCCTCTCAGC AGGAAGTGGG TCCTCCTCAG CCACCTCAGT TCTTCAAAAG
    AAAGAGACCT CATTTGGTAG CTCTGAAAAC AGCACCATGT CATCGCTCTC CAAAGTAACA
    ACCTTTGCAA GTGAGGATGC TCTTCCAGAG ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA
    GACATCATGC CTCAGACCAG TGAACAAAAG GAATATGAAA AATATGGAAG TGGGGACTAC
    CAGGATTTCC CAAGGCAGGA TCTGTCCGCA GCTGAACAGA GCCAGGAGAT CATGTGTCCA
    AGCCCAGCAT CCAGTGGTGC CTCTCATGAA ACCCCCAAAG AATGTGCTGA TGACTTTGGG
    GAGTTTCAGA GTGAAAAGCC CAAAATCAGC AAATTTGACT TTTTAGTAGC CAATTCACAA
    AGCAAAATGA AATCCAGTGA AGAAATGATC AAAAGTGAGC TGGCAACCTT TGACCTTTCT
    GTTCAAGGAT CACACAAGAG AAGCTTGAGC CTTGGGGATA AAGAAATAAG CCGGTCCTCT
    CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG GATCGTTCCA ACACTCTGAG TGAGAAGCCT
    GCTCTGCCTG TCATCCGTGA CAAGTACAAA GATCTGACAG GCGAGGTGGA GGAAAATGAG
    AGATATGCGT ATGAATGGCA GAGGTGCCTG GGGAGCGCCT TGGATGTCAT TAAGAAGGCA
    AATGACACCT TAAATGGAAT TAGTAGCAGT GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC
    CAAGGCATGG AATATTTATT AGGTGTCGTG GAAGTGTACC GAGTAACCAA ACGTGTGGAG
    CTGGGGATAA AAGCTACTGC TGTGTGCAGT GAGAAACTCC AGCAGTTGCT GAAGGACATT
    GATAAAGTGT GGAACAACCT AATCGGCTTC ATGTCACTCG CTACACTCAC ACCAGATGAA
    AATTCACTGG ATTTTTCCTC CTGTATGCTA CGGCCTGGGA TTAAAAACGC TCAGGAACTG
    GCTTGCGGGG TGTGCCTCTT AAATGTGGAT TCTAGGAGCC GGGCATTCAA CGCAGAAACA
    GACAGTTTCA AGCTGGCCTA TGGAGGGCAC CAATATCACG CCAGCTGTGC CAACTTCTGG
    ATCAACTGTG TTGAGCCCAA GCCTCCTGGC CTCATCCTGC CAGATCTGCT CTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30857
    Clone ID Related Accession (Same CDS sequence) XM_008848101.3 , XM_008848101.2
    Accession Version XM_008848101.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3654bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X7
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848101.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGATATAG AGGACTTAAA ATATGCTACT TTTGGAAGCT ACAGTAGCAG TTTTACAGTG
    AGCACACTTA CAAGCTATGA CTGGTCAGAC AGGGATGATG CATCTCAGGG CAGAAAACTC
    TCTCCATTTG TCCTCTCAGC AGGAAGTGGG TCCTCCTCAG CCACCTCAGT TCTTCAAAAG
    AAAGAGACCT CATTTGGTAG CTCTGAAAAC AGCACCATGT CATCGCTCTC CAAAGTAACA
    ACCTTTGCAA GTGAGGATGC TCTTCCAGAG ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA
    GACATCATGC CTCAGACCAG TGAACAAAAG GAATATGAAA AATATGGAAG TGGGGACTAC
    CAGGATTTCC CAAGGCAGGA TCTGTCCGCA GCTGAACAGA GCCAGGAGAT CATGTGTCCA
    AGCCCAGCAT CCAGTGGTGC CTCTCATGAA ACCCCCAAAG AATGTGCTGA TGACTTTGGG
    GAGTTTCAGA GTGAAAAGCC CAAAATCAGC AAATTTGACT TTTTAGTAGC CAATTCACAA
    AGCAAAATGA AATCCAGTGA AGAAATGATC AAAAGTGAGC TGGCAACCTT TGACCTTTCT
    GTTCAAGGAT CACACAAGAG AAGCTTGAGC CTTGGGGATA AAGAAATAAG CCGGTCCTCT
    CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG GATCGTTCCA ACACTCTGAG TGAGAAGCCT
    GCTCTGCCTG TCATCCGTGA CAAGTACAAA GATCTGACAG GCGAGGTGGA GGAAAATGAG
    AGATATGCGT ATGAATGGCA GAGGTGCCTG GGGAGCGCCT TGGATGTCAT TAAGAAGGCA
    AATGACACCT TAAATGGAAT TAGTAGCAGT GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC
    CAAGGCATGG AATATTTATT AGGTGTCGTG GAAGTGTACC GAGTAACCAA ACGTGTGGAG
    CTGGGGATAA AAGCTACTGC TGTGTGCAGT GAGAAACTCC AGCAGTTGCT GAAGGACATT
    GATAAAGTGT GGAACAACCT AATCGGCTTC ATGTCACTCG CTACACTCAC ACCAGATGAA
    AATTCACTGG ATTTTTCCTC CTGTATGCTA CGGCCTGGGA TTAAAAACGC TCAGGAACTG
    GCTTGCGGGG TGTGCCTCTT AAATGTGGAT TCTAGGAGCC GGGCATTCAA CGCAGAAACA
    GACAGTTTCA AGCTGGCCTA TGGAGGGCAC CAATATCACG CCAGCTGTGC CAACTTCTGG
    ATCAACTGTG TTGAGCCCAA GCCTCCTGGC CTCATCCTGC CAGATCTGCT CTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846323.1
    CDS10..3663
    Translation

    Target ORF information:

    RefSeq Version XM_008848101.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X7, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848101.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGATATAG AGGACTTAAA ATATGCTACT TTTGGAAGCT ACAGTAGCAG TTTTACAGTG
    AGCACACTTA CAAGCTATGA CTGGTCAGAC AGGGATGATG CATCTCAGGG CAGAAAACTC
    TCTCCATTTG TCCTCTCAGC AGGAAGTGGG TCCTCCTCAG CCACCTCAGT TCTTCAAAAG
    AAAGAGACCT CATTTGGTAG CTCTGAAAAC AGCACCATGT CATCGCTCTC CAAAGTAACA
    ACCTTTGCAA GTGAGGATGC TCTTCCAGAG ACTCCCTTCC CGGCCTTTGC CAGCTTTAAA
    GACATCATGC CTCAGACCAG TGAACAAAAG GAATATGAAA AATATGGAAG TGGGGACTAC
    CAGGATTTCC CAAGGCAGGA TCTGTCCGCA GCTGAACAGA GCCAGGAGAT CATGTGTCCA
    AGCCCAGCAT CCAGTGGTGC CTCTCATGAA ACCCCCAAAG AATGTGCTGA TGACTTTGGG
    GAGTTTCAGA GTGAAAAGCC CAAAATCAGC AAATTTGACT TTTTAGTAGC CAATTCACAA
    AGCAAAATGA AATCCAGTGA AGAAATGATC AAAAGTGAGC TGGCAACCTT TGACCTTTCT
    GTTCAAGGAT CACACAAGAG AAGCTTGAGC CTTGGGGATA AAGAAATAAG CCGGTCCTCT
    CCTTCTCCAG CCCTTGAGCA GCCTTTCAGG GATCGTTCCA ACACTCTGAG TGAGAAGCCT
    GCTCTGCCTG TCATCCGTGA CAAGTACAAA GATCTGACAG GCGAGGTGGA GGAAAATGAG
    AGATATGCGT ATGAATGGCA GAGGTGCCTG GGGAGCGCCT TGGATGTCAT TAAGAAGGCA
    AATGACACCT TAAATGGAAT TAGTAGCAGT GCTGTTTGTA CAGAAGTTAT TCAGTCAGCC
    CAAGGCATGG AATATTTATT AGGTGTCGTG GAAGTGTACC GAGTAACCAA ACGTGTGGAG
    CTGGGGATAA AAGCTACTGC TGTGTGCAGT GAGAAACTCC AGCAGTTGCT GAAGGACATT
    GATAAAGTGT GGAACAACCT AATCGGCTTC ATGTCACTCG CTACACTCAC ACCAGATGAA
    AATTCACTGG ATTTTTCCTC CTGTATGCTA CGGCCTGGGA TTAAAAACGC TCAGGAACTG
    GCTTGCGGGG TGTGCCTCTT AAATGTGGAT TCTAGGAGCC GGGCATTCAA CGCAGAAACA
    GACAGTTTCA AGCTGGCCTA TGGAGGGCAC CAATATCACG CCAGCTGTGC CAACTTCTGG
    ATCAACTGTG TTGAGCCCAA GCCTCCTGGC CTCATCCTGC CAGATCTGCT CTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30858
    Clone ID Related Accession (Same CDS sequence) XM_008848102.2 , XM_008848102.3
    Accession Version XM_008848102.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3519bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X8
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848102.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGGCA TTCAACGCAG AAACAGACAG TTTCAAGCTG
    GCCTATGGAG GGCACCAATA TCACGCCAGC TGTGCCAACT TCTGGATCAA CTGTGTTGAG
    CCCAAGCCTC CTGGCCTCAT CCTGCCAGAT CTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846324.1
    CDS10..3528
    Translation

    Target ORF information:

    RefSeq Version XM_008848102.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X8, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848102.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGGCA TTCAACGCAG AAACAGACAG TTTCAAGCTG
    GCCTATGGAG GGCACCAATA TCACGCCAGC TGTGCCAACT TCTGGATCAA CTGTGTTGAG
    CCCAAGCCTC CTGGCCTCAT CCTGCCAGAT CTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30858
    Clone ID Related Accession (Same CDS sequence) XM_008848102.2 , XM_008848102.3
    Accession Version XM_008848102.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3519bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X13
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848102.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGGCA TTCAACGCAG AAACAGACAG TTTCAAGCTG
    GCCTATGGAG GGCACCAATA TCACGCCAGC TGTGCCAACT TCTGGATCAA CTGTGTTGAG
    CCCAAGCCTC CTGGCCTCAT CCTGCCAGAT CTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846324.1
    CDS41..3559
    Translation

    Target ORF information:

    RefSeq Version XM_008848102.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X13, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848102.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGGCA TTCAACGCAG AAACAGACAG TTTCAAGCTG
    GCCTATGGAG GGCACCAATA TCACGCCAGC TGTGCCAACT TCTGGATCAA CTGTGTTGAG
    CCCAAGCCTC CTGGCCTCAT CCTGCCAGAT CTGCTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30860
    Clone ID Related Accession (Same CDS sequence) XM_008848106.3 , XM_008848106.2
    Accession Version XM_008848106.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3555bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X16
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008848106.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGAAA GAAGAGAAGC CTACAGAAGA ACATCCTAAA
    AAAGCATTCA ACGCAGAAAC AGACAGTTTC AAGCTGGCCT ATGGAGGGCA CCAATATCAC
    GCCAGCTGTG CCAACTTCTG GATCAACTGT GTTGAGCCCA AGCCTCCTGG CCTCATCCTG
    CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846328.1
    CDS41..3595
    Translation

    Target ORF information:

    RefSeq Version XM_008848106.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin gamma (Synrg), transcript variant X16, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848106.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGAAA GAAGAGAAGC CTACAGAAGA ACATCCTAAA
    AAAGCATTCA ACGCAGAAAC AGACAGTTTC AAGCTGGCCT ATGGAGGGCA CCAATATCAC
    GCCAGCTGTG CCAACTTCTG GATCAACTGT GTTGAGCCCA AGCCTCCTGG CCTCATCCTG
    CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID ONa30860
    Clone ID Related Accession (Same CDS sequence) XM_008848106.3 , XM_008848106.2
    Accession Version XM_008848106.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3555bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product synergin gamma isoform X10
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008351176.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008848106.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGAAA GAAGAGAAGC CTACAGAAGA ACATCCTAAA
    AAAGCATTCA ACGCAGAAAC AGACAGTTTC AAGCTGGCCT ATGGAGGGCA CCAATATCAC
    GCCAGCTGTG CCAACTTCTG GATCAACTGT GTTGAGCCCA AGCCTCCTGG CCTCATCCTG
    CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_008846328.1
    CDS10..3564
    Translation

    Target ORF information:

    RefSeq Version XM_008848106.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili synergin, gamma (Synrg), transcript variant X10, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008848106.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGGCGCTGC GGCCCGGAGC GGGAGCCAGC GGGGCGGCGG GGGCCGGCGG GGCAGGCAGC 
    TTCCTGTTTC CTGTTGCAGG TGGGATGAGA CCCCCTCAAG CAGGCCTGAT GCCAATGCAG
    CAGCAAGGAT TTCCTATGGT CTCTGTCATG CAGCCCAATA TGCAAGGCAT GATGGGAATG
    AATTACAGCT CTCAAATGTC CCAAGGACCC ATTGCGATGC AGGCAGGGTT ACCGATGGCG
    CCAATGCCGG CAGCAGGCAT GCCTTACCTG GGGCAGGCAC CATTCCTGGG CATGCGTCCT
    CCAGGCCCAC AGTACACTCC AGACATGCAG AAGCAGTTTG CTGAAGAGCA ACAAAAACGA
    TTTGAACAGC AACAAAAACT CTTAGAAGAA GAAAGAAAAA GACGCCAGTT TGAAGAGCAA
    AAGCAAAAGC TCAGACTTCT GAGTAGCGTG AAACCCAAGA CAGGAGAGAA GAACAGAGAC
    GATGCTTTGG AAGCCATAAA AGGAAACTTG GATGGGTTTT CCAGAGATGC TAAGATGCAT
    CCTACTCCAG CATCGCACCC CAAGAAACCA GGTGTGGGTG TGTTTCCCTC GCAGGATCCT
    GTTCCACCCA GAATGCCTCC TTGGATTTAC AATGAAAGTT TGGTCCCAGA TACCTATAAG
    AAAATTTTAG AAACCACAGT GACTCCAACT GGAATAGATA CTGCTAAACT TTATCCCATT
    CTGATGTCAT CTGGACTTCC CAGGGAAACT CTTGGACAGA TATGGGCCTT GGCCAATCGA
    ACTACACCTG GCAAACTCAC TAAAGAAGAG CTTTACACTG TTCTCGCCAT GATAGCAGTA
    ACGCAGAGGG GTGTTCCTGC CATGAGTCCT GATGCTTTGA ATCAGTTCCC AGCAGCTCCC
    ATTCCAACGT TAAGTGGCTT TTCTATGACT CTGCCTACCC CAGTGAGCCA GCCGACTGTG
    ATGCCCTCTG GCCCTTCAGG GTCCATGCCC CTCAGCCTTG GACAGCCAGT CATGGGCATT
    AACCTTGTTG GACCAGTGGG TGGAGCTGCA GCCCCAGCTT CCAGTGGCTT CATGCCATCT
    TACCCAGCAA AACAGGTGGG AAAGACAGAA GAGGATGACT TCCAGGAATT TCAAGATGCT
    TCTAAGTCAG GATCCCTTGA TGACTCGTTC ACTGACTTCC AAGAGGTGCC TCCTTCCTCA
    AAAACAAATA ATTCCCAGCA TGGAAACAGT GCTCCATCTT TGTTGATACC ACTTCCTGGA
    ACTAAAGCTT CAAAGGATAA ATATGCAGTG TTTAAAGGAA TTTCAGCTGA CAAACCCTCT
    GAAAATGCTG TTCCATTTGG AGAGTCTGCT GATAAATACA GTGCTTTCCG GGAACTTGAG
    CAGACCACAG AGAATAAACC TTTAGGAGAG AGCTTCACAG AATTCAGATC TGCAGGAACT
    GATGATGGTT TCACCGACTT TAAGACAGCC GACAGTATAT CACCTCTAGA GCCACCAACG
    ACAAAAGACA CTTTCCCAAC ATCCTTCCCC TCAGGACCTA TACAGCAGAA ACAGCAAACA
    CAAGTGAAAA CTCCTCTGAA CTTAGCAGAC CTGGATATGT TTTCCTCAGT TAATTGCAGC
    AATGAGAAAC CATTGCCCTT TTCAGCAGCA TTTAGCACAT CTAAGTCAGT TTCTACAAGA
    CCTCAGCCAG GGGGATCTAC TACAAGCCCA GCAGCACTGG CATCCACTAA AACTTCTAGT
    CTGGCTGATG ATTTTGGAGA ATTCAACCTC TTTGGGGAAT ATTCTAGTCC TGCATCAGTT
    GGGGAGCAGG ATGACTTTGC AGATTTTATG GCTTTCAGTA ACAGCTCTAT TTCTTCTGAG
    CAAAAAGCAG ATGACAAATA TGATGTCCTC AGAGAGGAAC CAAGTCCCGT TCCTCTGACC
    AGCAACTCAG GCAGTGAGGG AAAGAGTACA CCTGCTACAT CCACCAAGTA TGATGTCTTC
    AAACAGCTTT CCCTAGAAGG AGCTGGACTA GGTGTCGAAG AGTTAAAAGA TAACACTCCT
    TTTGGAAAAG GTGATGATGA TTTTGCTGAT TTTCACTCCA ATAAATTTTC ATCCATGAAT
    TCGGAGAAAT CCCTGGGAGA GAAAGCAGTA GCTTTCAGAC ACACCAAAGA AGACTCTGCT
    TCAGTGAAGT CCCTAGATCT CCCTTCTATT GGTGGCAGCA GCATTGGCAA GGAGGACTCA
    GAAGATGCGC TTTCTGTTCA GTTTGACATG AAACTGGCTG ATGTGGGAGG AGATCTTAAG
    CATGTCATGT CTGATAGCTC TTTGGATTTA CCAACAGTTA GTGGCCAGCA TCCTCCTGCT
    GCAGCAGGAA GTGGGTCCTC CTCAGCCACC TCAGTTCTTC AAAAGAAAGA GACCTCATTT
    GGTAGCTCTG AAAACAGCAC CATGTCATCG CTCTCCAAAG TAACAACCTT TGCAAGTGAG
    GATGCTCTTC CAGAGACTCC CTTCCCGGCC TTTGCCAGCT TTAAAGACAT CATGCCTCAG
    ACCAGTGAAC AAAAGGAATA TGAAAAATAT GGAAGTGGGG ACTACCAGGA TTTCCCAAGG
    CAGGATCTGT CCGCAGCTGA ACAGAGCCAG GAGATCATGT GTCCAAGCCC AGCATCCAGT
    GGTGCCTCTC ATGAAACCCC CAAAGAATGT GCTGATGACT TTGGGGAGTT TCAGAGTGAA
    AAGCCCAAAA TCAGCAAATT TGACTTTTTA GTAGCCAATT CACAAAGCAA AATGAAATCC
    AGTGAAGAAA TGATCAAAAG TGAGCTGGCA ACCTTTGACC TTTCTGTTCA AGGATCACAC
    AAGAGAAGCT TGAGCCTTGG GGATAAAGAA ATAAGCCGGT CCTCTCCTTC TCCAGCCCTT
    GAGCAGCCTT TCAGGGATCG TTCCAACACT CTGAGTGAGA AGCCTGCTCT GCCTGTCATC
    CGTGACAAGT ACAAAGATCT GACAGGCGAG GTGGAGGAAA ATGAGAGATA TGCGTATGAA
    TGGCAGAGGT GCCTGGGGAG CGCCTTGGAT GTCATTAAGA AGGCAAATGA CACCTTAAAT
    GGAATTAGTA GCAGTGCTGT TTGTACAGAA GTTATTCAGT CAGCCCAAGG CATGGAATAT
    TTATTAGGTG TCGTGGAAGT GTACCGAGTA ACCAAACGTG TGGAGCTGGG GATAAAAGCT
    ACTGCTGTGT GCAGTGAGAA ACTCCAGCAG TTGCTGAAGG ACATTGATAA AGTGTGGAAC
    AACCTAATCG GCTTCATGTC ACTCGCTACA CTCACACCAG ATGAAAATTC ACTGGATTTT
    TCCTCCTGTA TGCTACGGCC TGGGATTAAA AACGCTCAGG AACTGGCTTG CGGGGTGTGC
    CTCTTAAATG TGGATTCTAG GAGCCGGAAA GAAGAGAAGC CTACAGAAGA ACATCCTAAA
    AAAGCATTCA ACGCAGAAAC AGACAGTTTC AAGCTGGCCT ATGGAGGGCA CCAATATCAC
    GCCAGCTGTG CCAACTTCTG GATCAACTGT GTTGAGCCCA AGCCTCCTGG CCTCATCCTG
    CCAGATCTGC TCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.