Tbc1d31 cDNA ORF clone, Nannospalax galili(Upper Galilee mountains blind mole rat)

The following Tbc1d31 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Tbc1d31 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
ONa21211 XM_008837996.3
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
ONa21212 XM_017799348.1
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X6, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
ONa21213 XM_017799349.1
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X7, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
ONa21207 XM_008837991.3
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21208 XM_008837993.2
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21209 XM_008837994.3
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21210 XM_008837995.3
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21214 XM_008837997.3
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21215 XM_008837998.2
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X9, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21216 XM_017799350.1
Latest version!
Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X10, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
View Old Accession Versions >>
ONa21209 XM_008837994.2 Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21207 XM_008837991.2 Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21210 XM_008837995.2 Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ONa21211 XM_008837996.2 Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
ONa21214 XM_008837997.2 Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X8, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
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 ONa21211
    Clone ID Related Accession (Same CDS sequence) XM_008837996.2 , XM_008837996.3
    Accession Version XM_008837996.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2985bp)
    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 TBC1 domain family member 31 isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008837996.1. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    RefSeq XP_008836218.1
    CDS21..3005
    Translation

    Target ORF information:

    RefSeq Version XM_008837996.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837996.2

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    CloneID ONa21211
    Clone ID Related Accession (Same CDS sequence) XM_008837996.2 , XM_008837996.3
    Accession Version XM_008837996.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2985bp)
    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 TBC1 domain family member 31 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008837996.2. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    RefSeq XP_008836218.1
    CDS47..3031
    Translation

    Target ORF information:

    RefSeq Version XM_008837996.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837996.3

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    CloneID ONa21212
    Clone ID Related Accession (Same CDS sequence) XM_017799348.1
    Accession Version XM_017799348.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2970bp)
    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 TBC1 domain family member 31 isoform X6
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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 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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GTGGAAGGAA GCTGAAGAAA AAGAATTTCA TCTGCAATCA
    GAAAAGAAAG CTGCTGCACT TTCAGATGCA TCTAGAAAGT GGTTTTTGCA GCAGGAAATA
    AGTGCAGCTT TAGAACATGC TGGAAACCCA CTGCATGAAG CAGTGCCCTG GCTCCAGAAA
    AAACAGGTAG CCTCAAGCTG TTTGCCCCAA ACCTCACCAT TAAGTGAGGG TTCTGAAATG
    GATCCCTCAG CACAGATGTT TTTAAATAGA AAAACAACAG GATGGGGCAG CATGGAACAG
    GATCTTCTCA AGAAAGTGAG GAATCTTCGG CAGAGACTCA CAGCTCAAGC TCAAAACAGA
    TGTCAGACCC CTCATCTTTT GACGACATAG

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

    RefSeq XP_017654837.1
    CDS21..2990
    Translation

    Target ORF information:

    RefSeq Version XM_017799348.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X6, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017799348.1

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GTGGAAGGAA GCTGAAGAAA AAGAATTTCA TCTGCAATCA
    GAAAAGAAAG CTGCTGCACT TTCAGATGCA TCTAGAAAGT GGTTTTTGCA GCAGGAAATA
    AGTGCAGCTT TAGAACATGC TGGAAACCCA CTGCATGAAG CAGTGCCCTG GCTCCAGAAA
    AAACAGGTAG CCTCAAGCTG TTTGCCCCAA ACCTCACCAT TAAGTGAGGG TTCTGAAATG
    GATCCCTCAG CACAGATGTT TTTAAATAGA AAAACAACAG GATGGGGCAG CATGGAACAG
    GATCTTCTCA AGAAAGTGAG GAATCTTCGG CAGAGACTCA CAGCTCAAGC TCAAAACAGA
    TGTCAGACCC CTCATCTTTT GACGACATAG

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

    CloneID ONa21213
    Clone ID Related Accession (Same CDS sequence) XM_017799349.1
    Accession Version XM_017799349.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2967bp)
    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 TBC1 domain family member 31 isoform X7
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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 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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GTGGAAGGAA GCTGAAGAAA AAGAATTTCA TCTGCAATCA
    GAAAAGAAAG CTGCTGCACT TTCAGATGCA TCTAGAAAGT GGTTTTTGCA GCAGGAAATA
    AGTGCAGCTT TAGAACATGC TGGAAACCCA CTGCATGAAG TGCCCTGGCT CCAGAAAAAA
    CAGGTAGCCT CAAGCTGTTT GCCCCAAACC TCACCATTAA GTGAGGGTTC TGAAATGGAT
    CCCTCAGCAC AGATGTTTTT AAATAGAAAA ACAACAGGAT GGGGCAGCAT GGAACAGGAT
    CTTCTCAAGA AAGTGAGGAA TCTTCGGCAG AGACTCACAG CTCAAGCTCA AAACAGATGT
    CAGACCCCTC ATCTTTTGAC GACATAG

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

    RefSeq XP_017654838.1
    CDS21..2987
    Translation

    Target ORF information:

    RefSeq Version XM_017799349.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X7, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017799349.1

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GTGGAAGGAA GCTGAAGAAA AAGAATTTCA TCTGCAATCA
    GAAAAGAAAG CTGCTGCACT TTCAGATGCA TCTAGAAAGT GGTTTTTGCA GCAGGAAATA
    AGTGCAGCTT TAGAACATGC TGGAAACCCA CTGCATGAAG TGCCCTGGCT CCAGAAAAAA
    CAGGTAGCCT CAAGCTGTTT GCCCCAAACC TCACCATTAA GTGAGGGTTC TGAAATGGAT
    CCCTCAGCAC AGATGTTTTT AAATAGAAAA ACAACAGGAT GGGGCAGCAT GGAACAGGAT
    CTTCTCAAGA AAGTGAGGAA TCTTCGGCAG AGACTCACAG CTCAAGCTCA AAACAGATGT
    CAGACCCCTC ATCTTTTGAC GACATAG

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

    CloneID ONa21207
    Clone ID Related Accession (Same CDS sequence) XM_008837991.2 , XM_008837991.3
    Accession Version XM_008837991.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3165bp)
    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 TBC1 domain family member 31 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008837991.1. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    RefSeq XP_008836213.1
    CDS21..3185
    Translation

    Target ORF information:

    RefSeq Version XM_008837991.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837991.2

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    CloneID ONa21207
    Clone ID Related Accession (Same CDS sequence) XM_008837991.2 , XM_008837991.3
    Accession Version XM_008837991.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3165bp)
    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 TBC1 domain family member 31 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008837991.2. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    RefSeq XP_008836213.1
    CDS47..3211
    Translation

    Target ORF information:

    RefSeq Version XM_008837991.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837991.3

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    CloneID ONa21208
    Clone ID Related Accession (Same CDS sequence) XM_008837993.2
    Accession Version XM_008837993.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3162bp)
    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 TBC1 domain family member 31 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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_008837993.1. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGTGCCC
    TGGCTCCAGA AAAAACAGGT AGCCTCAAGC TGTTTGCCCC AAACCTCACC ATTAAGTGAG
    GGTTCTGAAA TGGATCCCTC AGCACAGATG TTTTTAAATA GAAAAACAAC AGGATGGGGC
    AGCATGGAAC AGGATCTTCT CAAGAAAGTG AGGAATCTTC GGCAGAGACT CACAGCTCAA
    GCTCAAAACA GATGTCAGAC CCCTCATCTT TTGACGACAT AG

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

    RefSeq XP_008836215.1
    CDS21..3182
    Translation

    Target ORF information:

    RefSeq Version XM_008837993.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837993.2

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGTGCCC
    TGGCTCCAGA AAAAACAGGT AGCCTCAAGC TGTTTGCCCC AAACCTCACC ATTAAGTGAG
    GGTTCTGAAA TGGATCCCTC AGCACAGATG TTTTTAAATA GAAAAACAAC AGGATGGGGC
    AGCATGGAAC AGGATCTTCT CAAGAAAGTG AGGAATCTTC GGCAGAGACT CACAGCTCAA
    GCTCAAAACA GATGTCAGAC CCCTCATCTT TTGACGACAT AG

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

    CloneID ONa21209
    Clone ID Related Accession (Same CDS sequence) XM_008837994.3 , XM_008837994.2
    Accession Version XM_008837994.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3105bp)
    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 TBC1 domain family member 31 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008837994.2. ##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
    ATGAGCGCCT GCTGTGCGCC AAGTACGCTT CTAAGCTCTG GGAGACAATG GAGCAGACTA 
    ACGGTCTGCA TAGTTTACAT AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    RefSeq XP_008836216.1
    CDS359..3463
    Translation

    Target ORF information:

    RefSeq Version XM_008837994.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837994.3

    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
    ATGAGCGCCT GCTGTGCGCC AAGTACGCTT CTAAGCTCTG GGAGACAATG GAGCAGACTA 
    ACGGTCTGCA TAGTTTACAT AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    CloneID ONa21209
    Clone ID Related Accession (Same CDS sequence) XM_008837994.3 , XM_008837994.2
    Accession Version XM_008837994.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3105bp)
    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 TBC1 domain family member 31 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008837994.1. ##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
    ATGAGCGCCT GCTGTGCGCC AAGTACGCTT CTAAGCTCTG GGAGACAATG GAGCAGACTA 
    ACGGTCTGCA TAGTTTACAT AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    RefSeq XP_008836216.1
    CDS375..3479
    Translation

    Target ORF information:

    RefSeq Version XM_008837994.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837994.2

    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
    ATGAGCGCCT GCTGTGCGCC AAGTACGCTT CTAAGCTCTG GGAGACAATG GAGCAGACTA 
    ACGGTCTGCA TAGTTTACAT AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGCAGTG
    CCCTGGCTCC AGAAAAAACA GGTAGCCTCA AGCTGTTTGC CCCAAACCTC ACCATTAAGT
    GAGGGTTCTG AAATGGATCC CTCAGCACAG ATGTTTTTAA ATAGAAAAAC AACAGGATGG
    GGCAGCATGG AACAGGATCT TCTCAAGAAA GTGAGGAATC TTCGGCAGAG ACTCACAGCT
    CAAGCTCAAA ACAGATGTCA GACCCCTCAT CTTTTGACGA CATAG

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

    CloneID ONa21210
    Clone ID Related Accession (Same CDS sequence) XM_008837995.2 , XM_008837995.3
    Accession Version XM_008837995.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3069bp)
    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 TBC1 domain family member 31 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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_008837995.1. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGTGTTT
    TTAAATAGAA AAACAACAGG ATGGGGCAGC ATGGAACAGG ATCTTCTCAA GAAAGTGAGG
    AATCTTCGGC AGAGACTCAC AGCTCAAGCT CAAAACAGAT GTCAGACCCC TCATCTTTTG
    ACGACATAG

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

    RefSeq XP_008836217.1
    CDS21..3089
    Translation

    Target ORF information:

    RefSeq Version XM_008837995.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837995.2

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGTGTTT
    TTAAATAGAA AAACAACAGG ATGGGGCAGC ATGGAACAGG ATCTTCTCAA GAAAGTGAGG
    AATCTTCGGC AGAGACTCAC AGCTCAAGCT CAAAACAGAT GTCAGACCCC TCATCTTTTG
    ACGACATAG

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

    CloneID ONa21210
    Clone ID Related Accession (Same CDS sequence) XM_008837995.2 , XM_008837995.3
    Accession Version XM_008837995.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3069bp)
    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 TBC1 domain family member 31 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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_008837995.2. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGTGTTT
    TTAAATAGAA AAACAACAGG ATGGGGCAGC ATGGAACAGG ATCTTCTCAA GAAAGTGAGG
    AATCTTCGGC AGAGACTCAC AGCTCAAGCT CAAAACAGAT GTCAGACCCC TCATCTTTTG
    ACGACATAG

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

    RefSeq XP_008836217.1
    CDS46..3114
    Translation

    Target ORF information:

    RefSeq Version XM_008837995.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837995.3

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GATCTTACTA GAAATCAAGA AGCTGTTACA AAAGAAATAC GAGAAGATGC AGATGCCCAT
    AGACGAAAAG TGGCTCTTGA AGAGCATGTG TTTCAGAAGC TGCTAGAAAC TAGCCAGACC
    CAGAGCACAG AGACTCAGAA GGTAATTAAG GAAAATTTGG CAAAAGCTGA GCAAGCCTGC
    CTAAATGCCG ACTGGCAGAT TCAGGCTTTA CATAAACAAA AGTGTGATGA TCGACAGCGC
    AGTGAGGGTT ACCAAGAAGC AGCCAGTCTC CTCCGGAAGA ACAGAAGGAA GGAGATTGAA
    GTATTGAATT CAGTGGTGCA GGAGGAAGCC AAGAAGTGGA AGGAAGCTGA AGAAAAAGAA
    TTTCATCTGC AATCAGAAAA GAAAGCTGCT GCACTTTCAG ATGCATCTAG AAAGTGGTTT
    TTGCAGCAGG AAATAAGTGC AGCTTTAGAA CATGCTGGAA ACCCACTGCA TGAAGTGTTT
    TTAAATAGAA AAACAACAGG ATGGGGCAGC ATGGAACAGG ATCTTCTCAA GAAAGTGAGG
    AATCTTCGGC AGAGACTCAC AGCTCAAGCT CAAAACAGAT GTCAGACCCC TCATCTTTTG
    ACGACATAG

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

    CloneID ONa21214
    Clone ID Related Accession (Same CDS sequence) XM_008837997.2 , XM_008837997.3
    Accession Version XM_008837997.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3258bp)
    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 TBC1 domain family member 31 isoform X8
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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_008837997.1. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GGACAAATGA GAGATCAGGA GATTGTTGCC CCAACCAAAG ATCTGGAGAT GAGACAGCTG
    GAGCTCGAGT CACAAAAGTG GCTTTACGAG AAGGATCTTA CTAGAAATCA AGAAGCTGTT
    ACAAAAGAAA TACGAGAAGA TGCAGATGCC CATAGACGAA AAGTGGCTCT TGAAGAGCAT
    GTGTTTCAGA AGCTGCTAGA AACTAGCCAG ACCCAGAGCA CAGAGACTCA GAAGGTAATT
    AAGGAAAATT TGGCAAAAGC TGAGCAAGCC TGCCTAAATG CCGACTGGCA GATTCAGGCT
    TTACATAAAC AAAAGTGTGA TGATCGACAG CGCAGTGAGG GTTACCAAGA AGCAGCCAGT
    CTCCTCCGGA AGAACAGAAG GAAGGAGATT GAAGTATTGA ATTCAGTGGT GCAGGAGGAA
    GCCAAGAAGT GGAAGGAAGC TGAAGAAAAA GAATTTCATC TGCAATCAGA AAAGAAAGCT
    GCTGCACTTT CAGATGCATC TAGAAAGTGG TTTTTGCAGC AGGAAATAAG TGCAGCTTTA
    GAACATGCTG GAAACCCACT GCATGAAGCA GTGCCCTGGC TCCAGAAAAA ACAGGTAGCC
    TCAAGCTGTT TGCCCCAAAC CTCACCATTA AGTGAGGGTT CTGAAATGGA TCCCTCAGCA
    CAGATGTTTT TAAATAGAAA AACAACAGGA TGGGGCAGCA TGGAACAGGA TCTTCTCAAG
    AAAGTGAGGA ATCTTCGGCA GAGACTCACA GCTCAAGCTC AAAACAGATG TCAGACCCCT
    CATCTTTTGA CGACATAG

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

    RefSeq XP_008836219.1
    CDS21..3278
    Translation

    Target ORF information:

    RefSeq Version XM_008837997.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X8, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837997.2

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GGACAAATGA GAGATCAGGA GATTGTTGCC CCAACCAAAG ATCTGGAGAT GAGACAGCTG
    GAGCTCGAGT CACAAAAGTG GCTTTACGAG AAGGATCTTA CTAGAAATCA AGAAGCTGTT
    ACAAAAGAAA TACGAGAAGA TGCAGATGCC CATAGACGAA AAGTGGCTCT TGAAGAGCAT
    GTGTTTCAGA AGCTGCTAGA AACTAGCCAG ACCCAGAGCA CAGAGACTCA GAAGGTAATT
    AAGGAAAATT TGGCAAAAGC TGAGCAAGCC TGCCTAAATG CCGACTGGCA GATTCAGGCT
    TTACATAAAC AAAAGTGTGA TGATCGACAG CGCAGTGAGG GTTACCAAGA AGCAGCCAGT
    CTCCTCCGGA AGAACAGAAG GAAGGAGATT GAAGTATTGA ATTCAGTGGT GCAGGAGGAA
    GCCAAGAAGT GGAAGGAAGC TGAAGAAAAA GAATTTCATC TGCAATCAGA AAAGAAAGCT
    GCTGCACTTT CAGATGCATC TAGAAAGTGG TTTTTGCAGC AGGAAATAAG TGCAGCTTTA
    GAACATGCTG GAAACCCACT GCATGAAGCA GTGCCCTGGC TCCAGAAAAA ACAGGTAGCC
    TCAAGCTGTT TGCCCCAAAC CTCACCATTA AGTGAGGGTT CTGAAATGGA TCCCTCAGCA
    CAGATGTTTT TAAATAGAAA AACAACAGGA TGGGGCAGCA TGGAACAGGA TCTTCTCAAG
    AAAGTGAGGA ATCTTCGGCA GAGACTCACA GCTCAAGCTC AAAACAGATG TCAGACCCCT
    CATCTTTTGA CGACATAG

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

    CloneID ONa21214
    Clone ID Related Accession (Same CDS sequence) XM_008837997.2 , XM_008837997.3
    Accession Version XM_008837997.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3258bp)
    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 TBC1 domain family member 31 isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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_008837997.2. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GGACAAATGA GAGATCAGGA GATTGTTGCC CCAACCAAAG ATCTGGAGAT GAGACAGCTG
    GAGCTCGAGT CACAAAAGTG GCTTTACGAG AAGGATCTTA CTAGAAATCA AGAAGCTGTT
    ACAAAAGAAA TACGAGAAGA TGCAGATGCC CATAGACGAA AAGTGGCTCT TGAAGAGCAT
    GTGTTTCAGA AGCTGCTAGA AACTAGCCAG ACCCAGAGCA CAGAGACTCA GAAGGTAATT
    AAGGAAAATT TGGCAAAAGC TGAGCAAGCC TGCCTAAATG CCGACTGGCA GATTCAGGCT
    TTACATAAAC AAAAGTGTGA TGATCGACAG CGCAGTGAGG GTTACCAAGA AGCAGCCAGT
    CTCCTCCGGA AGAACAGAAG GAAGGAGATT GAAGTATTGA ATTCAGTGGT GCAGGAGGAA
    GCCAAGAAGT GGAAGGAAGC TGAAGAAAAA GAATTTCATC TGCAATCAGA AAAGAAAGCT
    GCTGCACTTT CAGATGCATC TAGAAAGTGG TTTTTGCAGC AGGAAATAAG TGCAGCTTTA
    GAACATGCTG GAAACCCACT GCATGAAGCA GTGCCCTGGC TCCAGAAAAA ACAGGTAGCC
    TCAAGCTGTT TGCCCCAAAC CTCACCATTA AGTGAGGGTT CTGAAATGGA TCCCTCAGCA
    CAGATGTTTT TAAATAGAAA AACAACAGGA TGGGGCAGCA TGGAACAGGA TCTTCTCAAG
    AAAGTGAGGA ATCTTCGGCA GAGACTCACA GCTCAAGCTC AAAACAGATG TCAGACCCCT
    CATCTTTTGA CGACATAG

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

    RefSeq XP_008836219.1
    CDS47..3304
    Translation

    Target ORF information:

    RefSeq Version XM_008837997.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837997.3

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GGACAAATGA GAGATCAGGA GATTGTTGCC CCAACCAAAG ATCTGGAGAT GAGACAGCTG
    GAGCTCGAGT CACAAAAGTG GCTTTACGAG AAGGATCTTA CTAGAAATCA AGAAGCTGTT
    ACAAAAGAAA TACGAGAAGA TGCAGATGCC CATAGACGAA AAGTGGCTCT TGAAGAGCAT
    GTGTTTCAGA AGCTGCTAGA AACTAGCCAG ACCCAGAGCA CAGAGACTCA GAAGGTAATT
    AAGGAAAATT TGGCAAAAGC TGAGCAAGCC TGCCTAAATG CCGACTGGCA GATTCAGGCT
    TTACATAAAC AAAAGTGTGA TGATCGACAG CGCAGTGAGG GTTACCAAGA AGCAGCCAGT
    CTCCTCCGGA AGAACAGAAG GAAGGAGATT GAAGTATTGA ATTCAGTGGT GCAGGAGGAA
    GCCAAGAAGT GGAAGGAAGC TGAAGAAAAA GAATTTCATC TGCAATCAGA AAAGAAAGCT
    GCTGCACTTT CAGATGCATC TAGAAAGTGG TTTTTGCAGC AGGAAATAAG TGCAGCTTTA
    GAACATGCTG GAAACCCACT GCATGAAGCA GTGCCCTGGC TCCAGAAAAA ACAGGTAGCC
    TCAAGCTGTT TGCCCCAAAC CTCACCATTA AGTGAGGGTT CTGAAATGGA TCCCTCAGCA
    CAGATGTTTT TAAATAGAAA AACAACAGGA TGGGGCAGCA TGGAACAGGA TCTTCTCAAG
    AAAGTGAGGA ATCTTCGGCA GAGACTCACA GCTCAAGCTC AAAACAGATG TCAGACCCCT
    CATCTTTTGA CGACATAG

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

    CloneID ONa21215
    Clone ID Related Accession (Same CDS sequence) XM_008837998.2
    Accession Version XM_008837998.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3255bp)
    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 TBC1 domain family member 31 isoform X9
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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_008837998.1. ##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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GGACAAATGA GAGATCAGGA GATTGTTGCC CCAACCAAAG ATCTGGAGAT GAGACAGCTG
    GAGCTCGAGT CACAAAAGTG GCTTTACGAG AAGGATCTTA CTAGAAATCA AGAAGCTGTT
    ACAAAAGAAA TACGAGAAGA TGCAGATGCC CATAGACGAA AAGTGGCTCT TGAAGAGCAT
    GTGTTTCAGA AGCTGCTAGA AACTAGCCAG ACCCAGAGCA CAGAGACTCA GAAGGTAATT
    AAGGAAAATT TGGCAAAAGC TGAGCAAGCC TGCCTAAATG CCGACTGGCA GATTCAGGCT
    TTACATAAAC AAAAGTGTGA TGATCGACAG CGCAGTGAGG GTTACCAAGA AGCAGCCAGT
    CTCCTCCGGA AGAACAGAAG GAAGGAGATT GAAGTATTGA ATTCAGTGGT GCAGGAGGAA
    GCCAAGAAGT GGAAGGAAGC TGAAGAAAAA GAATTTCATC TGCAATCAGA AAAGAAAGCT
    GCTGCACTTT CAGATGCATC TAGAAAGTGG TTTTTGCAGC AGGAAATAAG TGCAGCTTTA
    GAACATGCTG GAAACCCACT GCATGAAGTG CCCTGGCTCC AGAAAAAACA GGTAGCCTCA
    AGCTGTTTGC CCCAAACCTC ACCATTAAGT GAGGGTTCTG AAATGGATCC CTCAGCACAG
    ATGTTTTTAA ATAGAAAAAC AACAGGATGG GGCAGCATGG AACAGGATCT TCTCAAGAAA
    GTGAGGAATC TTCGGCAGAG ACTCACAGCT CAAGCTCAAA ACAGATGTCA GACCCCTCAT
    CTTTTGACGA CATAG

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

    RefSeq XP_008836220.1
    CDS21..3275
    Translation

    Target ORF information:

    RefSeq Version XM_008837998.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X9, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008837998.2

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GGACAAATGA GAGATCAGGA GATTGTTGCC CCAACCAAAG ATCTGGAGAT GAGACAGCTG
    GAGCTCGAGT CACAAAAGTG GCTTTACGAG AAGGATCTTA CTAGAAATCA AGAAGCTGTT
    ACAAAAGAAA TACGAGAAGA TGCAGATGCC CATAGACGAA AAGTGGCTCT TGAAGAGCAT
    GTGTTTCAGA AGCTGCTAGA AACTAGCCAG ACCCAGAGCA CAGAGACTCA GAAGGTAATT
    AAGGAAAATT TGGCAAAAGC TGAGCAAGCC TGCCTAAATG CCGACTGGCA GATTCAGGCT
    TTACATAAAC AAAAGTGTGA TGATCGACAG CGCAGTGAGG GTTACCAAGA AGCAGCCAGT
    CTCCTCCGGA AGAACAGAAG GAAGGAGATT GAAGTATTGA ATTCAGTGGT GCAGGAGGAA
    GCCAAGAAGT GGAAGGAAGC TGAAGAAAAA GAATTTCATC TGCAATCAGA AAAGAAAGCT
    GCTGCACTTT CAGATGCATC TAGAAAGTGG TTTTTGCAGC AGGAAATAAG TGCAGCTTTA
    GAACATGCTG GAAACCCACT GCATGAAGTG CCCTGGCTCC AGAAAAAACA GGTAGCCTCA
    AGCTGTTTGC CCCAAACCTC ACCATTAAGT GAGGGTTCTG AAATGGATCC CTCAGCACAG
    ATGTTTTTAA ATAGAAAAAC AACAGGATGG GGCAGCATGG AACAGGATCT TCTCAAGAAA
    GTGAGGAATC TTCGGCAGAG ACTCACAGCT CAAGCTCAAA ACAGATGTCA GACCCCTCAT
    CTTTTGACGA CATAG

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

    CloneID ONa21216
    Clone ID Related Accession (Same CDS sequence) XM_017799350.1
    Accession Version XM_017799350.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3060bp)
    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 TBC1 domain family member 31 isoform X10
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008342276.1) 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 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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GGACAAATGA GAGATCAGGA GATTGTTGCC CCAACCAAAG ATCTGGAGAT GAGACAGCTG
    GAGCTCGAGT CACAAAAGTG GCTTTACGAG AAGGATCTTA CTAGAAATCA AGAAGCTGTT
    ACAAAAGAAA TACGAGAAGA TGCAGATGCC CATAGACGAA AAGTGGCTCT TGAAGAGCAT
    GTGTTTCAGA AGCTGCTAGA AACTAGCCAG ACCCAGAGCA CAGAGACTCA GAAGTGGAAG
    GAAGCTGAAG AAAAAGAATT TCATCTGCAA TCAGAAAAGA AAGCTGCTGC ACTTTCAGAT
    GCATCTAGAA AGTGGTTTTT GCAGCAGGAA ATAAGTGCAG CTTTAGAACA TGCTGGAAAC
    CCACTGCATG AAGTGCCCTG GCTCCAGAAA AAACAGGTAG CCTCAAGCTG TTTGCCCCAA
    ACCTCACCAT TAAGTGAGGG TTCTGAAATG GATCCCTCAG CACAGATGTT TTTAAATAGA
    AAAACAACAG GATGGGGCAG CATGGAACAG GATCTTCTCA AGAAAGTGAG GAATCTTCGG
    CAGAGACTCA CAGCTCAAGC TCAAAACAGA TGTCAGACCC CTCATCTTTT GACGACATAG

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

    RefSeq XP_017654839.1
    CDS21..3080
    Translation

    Target ORF information:

    RefSeq Version XM_017799350.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili TBC1 domain family member 31 (Tbc1d31), transcript variant X10, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017799350.1

    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
    ATGCCGGGAA GTGATCGGGT CGGTTACCCA CCCAGCCAGC GGTGGTCCAG AGCGGCTACC 
    AGCATGCAGA GCACGGACTT GGGCAACAAA GAGAGCGGCA AGATATGGCA CCGCAAGCCG
    TCGCCGGCCA CCCGGGACGG AATTATAGTG AACATCATTC ACAATACTTC TGATTACCAC
    CCAAAAGTTT TGCGGTTTTT GAATGTGGCC TTTGATGGTT CAGGCGATTG CTTAATTGCT
    GGGGACCATC AAGGAAATAT CTATACTTTT GAGTTGCCTG GAAACAGGTT TAATCTTGTT
    CAGCGAACAG CACAAGCTTG CACAGCTCTG GCCTTTAGTC TTCGTAGGAA GTCTGAGTTC
    CTTGTGGCAT TAGCTGATTA TTCTGTTAAA TGTTTTGATA CAGTCACCAA GGAGCTAGTG
    AGCTGGATGC GAGGACATGA GTCATCAGTG AGTTCAATCT CTGTGCACGC ATCTGGGAGA
    TATGCTATCA CTACTTCTTC TGACACAGCA CAGCTCTGGG ACTTGGATAC CTTCCAGAGA
    AAAAGAAAGC TGAATATTCG CCAGTCTGTG GGGATACAGA AGGTTTTCTT CCTTCCTTTA
    AGTAATACCA TCCTCAGCTG TTTTAAAGAT AATTCCATCT TTGCCTGGGA ATGTGATACT
    CTTTTTTGCA AATATCAGTT ACCGGCTCCA CCTGAAAGCT CTAGTGTGTC ATACAAAGTG
    TTTGCTGTGA CCAGAGATGG CCGAATCCTG GCTGCTGGAG GCAAGTCAAA TCATCTGCAT
    TTGTGGTGCT TAGAAGCCAC ACAGCTCTTC AGAATCATCC AGATGCCTAC TAAAGTGCGA
    GCTGTTCGCC ACCTGGAATT TCTTCCTGAT AGCTTTGATG CTGGCTCTAA TCAGGTTCTT
    GGAGTGCTAA GTCAAGATGG TATTATGAGA TTTGTCAATA TACAGACTTG TAAACTTCTC
    TTTGAAATTG GGAGTCTTGA TGAAGGAATC AGCTCATCAG TAATCAGCCC ACATGGTCGG
    TACATTGCAT CTGTTATGGA AAATGGAAGT CTGAACATAT ATTCAGTTCA GGCTTTAATG
    CAGGAAATAA ATAAGCCACC TCCTCCTTTG GTTAAAGTGA TTGAAGATTT GCCTAAGAAT
    ACACTGAATT CCAATGATCT TAAGATGAAA ATGATGTCAG GAAGAATACA GCGGCCAGCA
    AAATCTAGAG AGAGCAAAAT TCAAACTAGA ATACTTAAAC AAGACCTGAC TGGTAACTTA
    GAAAATAAAG AGAATGAATT GTCAGAGGGA TTAAACAAAA AACGTTTACA AATCTTATTA
    AAAAGTTATG GGGAATATCC AACAAAATAC AGAATGTTTA TTTGGCGCTC TTTGCTACAA
    CTACCTGAAA ATCATACTGC ATTTAGCAGC CTAGTGGATA AGGGGACTCA TGTGGCGCAT
    CTCAGCCTTC AGAAGAAATA CCCCATCAAA AGTAGGAAAC TCCTGAGAGT GTTACAGAGG
    ACCCTCTCCG CATTAGCTCA CTGGTCTTCA GTCTTAAGTG ACACACCATA TCTTCCACTC
    CTGGCATTTC CGTTTGTGAA ATTATTCCAG AACAACCAAC TCATCTGTTT TGAGGTTGTT
    GCTACTCTCA TAATCAATTG GTGTCAACAT TGGTTTGAGT ACTTTCCTAA CCCACCCATC
    AATATTCTTA GCATGATAGA AAATGTTTTG GCATTTCATG ACAAGGAGCT ACTGCAGCAC
    TTTATAGATC GTGATGTAAC TTCTCAGCTT TATGCATGGC CTCTTCTTGA AACTGTGTTC
    TCCGAAGTAC TGACGAGAGA GGAGTGGCTC AGATTGTTTG ATAATGTCTT CTCCAACCAC
    CCTTCTTTCC TCCTGATGAC TGTGGTAGCC TATAATACAT GCTGTAGAGC ACCTCTGCTC
    AACTGTACTC TTAAGGATGA TTTTGAGTAT TTTTTTCACC ATCGGAATAA CCTGGACATA
    AATGTTGTGA TTAGAGAAGC GTATCGTCTC ATGGAGACCA CACCTGCTAG TATTCACCCA
    AGTAGCGTAC TGGATGCTTT CGTTGCACTG ACAAAGGGGC AATATCCGGT ATTTAATCAA
    TATCCAAAGT TTATTGTGGA CTATCAGACA CAGGAACGAG AAAGAAGGAA TGATGAATTG
    GATTTCTTGA GAGAGAGGCA GACAGTTGAA AACATGCAAG CTGAAGTCGA GCAGCGAGCA
    GAGGACGAGG CCTGGTACAA GAGACAGGAG CTGCTTCGCA GAGCTGAGGA GACGAGAAGA
    GAAATGCTCT TGCAAGAGGA GAAGATGCTG CAGCAGAAAC AGAGGCTGGC TGCTGTGAAG
    AGAGAGCTGA AAATAAAGGA GATAAACTTA CAGGATGCTT CTAGAAGGCA CCTTCTGAAG
    CTTCAGCAGG ACCGGCGGGA AATGGAACTA CGCAGGCTGG AGGATGAAAT TGAGAGAAAG
    GGACAAATGA GAGATCAGGA GATTGTTGCC CCAACCAAAG ATCTGGAGAT GAGACAGCTG
    GAGCTCGAGT CACAAAAGTG GCTTTACGAG AAGGATCTTA CTAGAAATCA AGAAGCTGTT
    ACAAAAGAAA TACGAGAAGA TGCAGATGCC CATAGACGAA AAGTGGCTCT TGAAGAGCAT
    GTGTTTCAGA AGCTGCTAGA AACTAGCCAG ACCCAGAGCA CAGAGACTCA GAAGTGGAAG
    GAAGCTGAAG AAAAAGAATT TCATCTGCAA TCAGAAAAGA AAGCTGCTGC ACTTTCAGAT
    GCATCTAGAA AGTGGTTTTT GCAGCAGGAA ATAAGTGCAG CTTTAGAACA TGCTGGAAAC
    CCACTGCATG AAGTGCCCTG GCTCCAGAAA AAACAGGTAG CCTCAAGCTG TTTGCCCCAA
    ACCTCACCAT TAAGTGAGGG TTCTGAAATG GATCCCTCAG CACAGATGTT TTTAAATAGA
    AAAACAACAG GATGGGGCAG CATGGAACAG GATCTTCTCA AGAAAGTGAG GAATCTTCGG
    CAGAGACTCA CAGCTCAAGC TCAAAACAGA TGTCAGACCC CTCATCTTTT GACGACATAG

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