Mast1 cDNA ORF clone, Nannospalax galili(Upper Galilee mountains blind mole rat)

The following Mast1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Mast1 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
ONa137466 XM_029557347.1
Latest version!
Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
ONa37014 XM_008855469.2
Latest version!
Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00
ONa37015 XM_008855470.3
Latest version!
Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00
ONa37016 XM_008855471.3
Latest version!
Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00
View Old Accession Versions >>
ONa37014 XM_008855469.1 Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00
ONa37015 XM_008855470.2 Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00
ONa37016 XM_008855471.2 Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00
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 ONa137466
    Clone ID Related Accession (Same CDS sequence) XM_029557347.1
    Accession Version XM_029557347.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4167bp)
    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 microtubule-associated serine/threonine-protein kinase 1 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008357641.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    ATGATGAACC ATGTGTACAA GGAGCGGTTC CCCAAGGCCA CCGCACAGAT GGAGGAGAAG 
    CTGCGGGACT TTGCCCGCGC CTACGAACCT GACAGCGTGC TGCCGCTGGC GGACGGCGTA
    CTCAGCTTCA TCCACCACCA GATCATCGAG CTGGCACGGG ACTGCCTGAC CAAGTCCCGC
    GACGGGCTCA TCACCACCGT CTACTTCTAT GAACTACAGG AGAACCTGGA GAAGCTATTG
    CAGGACGCCT ATGAACGCTC CGAGAGCTTG GAGGTGGCCT TTGTCACTCA GCTGGTGAAG
    AAACTGCTCA TTATCATCTC TCGCCCAGCT AGGCTTCTAG AGTGCCTGGA ATTCAACCCT
    GAGGAGTTCT ACCACCTACT GGAGGCAGCA GAGGGACATG CCAAGGAGGG CCACCTCGTC
    AAGACTGACA TCCCCCGATA CATCATCCAT CAGCTGGGCC TCACCCGGGA CCCCTTTCCT
    GATGTGGTAC ATCTGGAGGA ACAGGACAGT GGTGGCTCTA ACACACCAGA GCAGGACGAC
    ATCTCTGAGG GTCGCAGTGG CACCGCCAAG GCCAAGAAGC CACCTGGAGA GAATGACTTT
    GACACCATTA AGCTCATAAG CAATGGTGCC TACGGGGCGG TCTATCTGGT GCGGCACCGA
    GACACACGGC AGCGCTTTGC CATGAAGAAG ATTAACAAGC AGAACCTGAT CCTCCGCAAT
    CAGATCCAGC AGGCCTTCGT GGAACGCGAC ATCCTGACCT TCGCAGAGAA CCCCTTTGTG
    GTCGGCATGT TCTGTTCCTT CGAGACCCGC CGCCACCTCT GCATGGTCAT GGAGTATGTG
    GAAGGTGGTG ACTGTGCCAC CCTACTGAAG AACATTGGGG CACTGCCTGT AGAGATGGCC
    CGCATGTACT TTGCAGAGAC AGTGCTGGCA CTAGAGTACT TGCACAACTA CGGCATTGTG
    CATCGTGACC TCAAGCCAGA CAACCTCCTC ATCACTTCCA TGGGCCACAT CAAACTCACG
    GATTTTGGCC TCTCCAAGAT GGGGCTCATG AGCCTGACCA CCAACTTATA TGAAGGTCAC
    ATAGAGAAGG ACGCCCGGGA GTTCCTGGAC AAACAGGTGT GTGGGACCCC AGAGTACATC
    GCACCCGAGG TCATCCTGCG CCAGGGCTAC GGCAAGCCAG TGGACTGGTG GGCCATGGGG
    ATCATACTCT ACGAGTTCCT GGTTGGCTGT GTGCCTTTCT TTGGGGACAC CCCAGAAGAG
    CTCTTTGGAC AAGTTATCAG TGATGACATC CTGTGGCCCG AGGGGGATGA GGCCCTGCCT
    ACAGATGCCC AGCTTCTGAT ATCTAGCCTT CTGCAGACCA ACCCCCTGGT CCGGCTTGGG
    GCAGGTGGTG CCTTTGAAGT GAAGCAGCAT AGTTTCTTCC GAGACCTGGA TTGGACAGGG
    CTGCTGAGGC AAAAGGCCGA GTTCATCCCC CACCTAGAGT CAGAAGATGA CACCAGCTAC
    TTTGACACCC GGTCAGACAG GTATCACCAT GTGAACTCCT ATGATGAGGA TGACACCACC
    GAGGAAGAAC CTGTGGAGAT CCGCCAGTTC TCCTCTTGCT CTCCCCGCTT CAGCAAGGTG
    TACAGCAGTA TGGAGCAGCT GTCACAACAT GAGCCCAAGA CCCCCGTATC AACATCGGGG
    GCGACCAAGA GGGAGCCAAG CGCCAAGGGC TCAGAGGAGA AGGTAGCCGG CAAGCGGGAG
    GGACTGGGTG GCCTGACTCT GCGAGAGAAG ACCTGGAGAG GGGGCTCCCC AGAGATCAAG
    CGCTTCTCCG CTTCCGAGGC CTGTTTCTTG GAGGGGGAGG CCAGTCCTCC GTTAGGAGCG
    CGCCGACGTT TCTCGGCGCT GCTGGAGCCC AGCCGCTTCA ATGCTCCTCA GGAGGACGAA
    GATGAAGTCC GGCTCCGCAG GCCTCCCCGG CCCAGCTCCG ATCCTTCAGG CTCACTGGAG
    ACGCGAGCCC CCAAAGAGAC GGCTCAAGAA GGCACCCCCA CGGCTGGGGA CCCCGAGACC
    ACTGAGCACA CATGCCCAGG TGACCTCTGC ACACTCTCAA AGGATGGGGA TCCATCAGGC
    CCTAGGGCCA CCAATGACCT AGTTCTGCGA AGGGTGCGCC ACCAGCAGCT GTCTGGAGAT
    CCTTCGGTGG AGAAGCGACC TTCTCGAACT GGGGGCAAAG TTATCAAGTC AGCCTCAGCG
    ACTGCCCTAT CCGTCATGAT TCCTGCAGTG GACCCACATG GAAGCTCACC CCTTGCTAGT
    CCCATGTCCC CTCGATCCCT TTCCTCCAAC CCATCCTCGA GGGACTCTTC ACCCAGCCGG
    GACTACTCAC CTGCTGTCAG TGGCCTCCGT TCCCCAATCA CCATCCAACG CTCAGGCAAA
    AAATACGGCT TCACGCTGCG TGCCATCCGC GTCTACATGG GCGATTCGGA TGTCTACAGT
    GTTCACCACA TTGTTTGGCA TGTGGAGGAA GGGGGCCCAG CCCAAGAGGC GGGTCTCTGT
    GCTGGGGACC TCATCACGCA CGTGAACGGC GAGCCGGTGC ATGGCATGGT GCATCCTGAG
    GTGGTAGAGC TGATCCTTAA GAGCGGCAAC AAGGTGGCTG TGACCACGAC ACCCTTCGAA
    AACACCTCCA TCCGCATTGG GCCCGCCAGG CGCAGCAGCT ACAAAGCTAA AATGGCTCGG
    AGGAACAAGA GACCCTCGTC TAAGGATGGC CAGGAGAGCA AGAAACGCAG CTCCCTCTTC
    CGGAAGATCA CAAAACAGTC AAACCTGTTG CATACTAGCC GCTCGCTCTC CTCGCTGAAC
    CGGTCCCTGT CGTCCAGTGA TAGTCTCCCC GGATCACCCA CGCACGGACT ACCGGCGCGC
    TCGCCCACGC ACAGTTACCG CTCCACGCCT GACTCCGCCT ACCTAGGCGC CTCCTCCCAG
    AGCAGCTCCC CAGCCTCCAG CACTCCCAAC TCCCCCGCGT CCTCGGCGTC GCACCACATC
    CGACCCAGCA CCCTGCATGG GCTGTCACCG AAGCTCCACC GCCAGTACCG CTCTGCGCGC
    TGCAAGTCAG CCGGCAACAT CCCGCTGTCG CCACTGGCGC ACACTCCATC CCCGACGCAG
    GCGTCGCCGC CACCGTTGCC GGGCCACACC GTGGGCAGTT CGCACACCAC GCAGAGCTTC
    CCAGCCAAAT TGCACTCGTC ACCGCCGGTC GTGCGCCCGC GCCCCAAGAG TGCAGAGCCG
    CCGCGCTCGC CGCTGCTCAA GCGAGTGCAG TCGGCAGAGA AGCTGGGGGC CTCACTGGGC
    GCAGACAAGA AGGGCGCACT GCGCAAACAC AGCCTCGAGG TGGGCCACCC GGATTTCCGC
    AAGGACTTCC ACGGCGAGCT GGCTCTGCAT AGCCTAGCCG AGTCCGACGG CGAGACGCCT
    CCCATCGAGG GTCCTGGAGC GTCCCGGCAA GTCACAATGC GACGCCTGGG CCGCCAGGAA
    TCGCCCCTAA GCTTGGGTGC GGACCCGTTG CTCCCTGAGG GCGCGCCCAG GCTAATGGCG
    TCAAGCAAGG AGAAGGAGTC TCCGGGAGGC GTGGAGGCCT GCACTCCACC TCGCGCAACA
    ACCCCCGGGA GCCGGACCCT GGAGCGGGAT TCCGGCTGCA CGCGGCACCA GAGCGTGCAA
    ACTGAAGACG GCCAAGGCGG GGTGGCTAGG GCAGTGGCCA AGGCGGCGCT TAGTCCGGTG
    CAGGAACACG AGACCGGCCG GCGCAGTAGC TCGGGCGAGA CAGGCACACC CGTGGTGCCC
    ATTGTTGTGG AGCCCACGCG GCCAAGGGTG AAGGCCCAGG CGCTCCAGCC TCTGGGCACA
    GACTCCAAGG GATTGAAGGA ACCTGTACCC CTGGTGCCTC TGGTGCCTGA TGCCCCAAGG
    GGCCGGGAGC GCTGGGTGCT GCAGGAGGTA GAGGAGCGGA CCACGCTGAG CGGGCCACGC
    TCCAAGCCTG TTTCCCCCAA ACTCTCCCCG GATCCCCAGA CTCCCACTCT AGCCCCAACA
    AAAAATGTGT CGGGAAATGC AGGCCCTCCA GCTCCACCCA CTTCCCTCCG GGAAGTGGGG
    CTCACCTCCG GATCCCCTGT TGAGGCTGTG ACTCCAGTAG GCCTGACCAA AAAAGGGGCA
    CCCAGCATCG CACCCTCAGG CCCGTAG

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

    RefSeq XP_029413207.1
    CDS378..4544
    Translation

    Target ORF information:

    RefSeq Version XM_029557347.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029557347.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    ATGATGAACC ATGTGTACAA GGAGCGGTTC CCCAAGGCCA CCGCACAGAT GGAGGAGAAG 
    CTGCGGGACT TTGCCCGCGC CTACGAACCT GACAGCGTGC TGCCGCTGGC GGACGGCGTA
    CTCAGCTTCA TCCACCACCA GATCATCGAG CTGGCACGGG ACTGCCTGAC CAAGTCCCGC
    GACGGGCTCA TCACCACCGT CTACTTCTAT GAACTACAGG AGAACCTGGA GAAGCTATTG
    CAGGACGCCT ATGAACGCTC CGAGAGCTTG GAGGTGGCCT TTGTCACTCA GCTGGTGAAG
    AAACTGCTCA TTATCATCTC TCGCCCAGCT AGGCTTCTAG AGTGCCTGGA ATTCAACCCT
    GAGGAGTTCT ACCACCTACT GGAGGCAGCA GAGGGACATG CCAAGGAGGG CCACCTCGTC
    AAGACTGACA TCCCCCGATA CATCATCCAT CAGCTGGGCC TCACCCGGGA CCCCTTTCCT
    GATGTGGTAC ATCTGGAGGA ACAGGACAGT GGTGGCTCTA ACACACCAGA GCAGGACGAC
    ATCTCTGAGG GTCGCAGTGG CACCGCCAAG GCCAAGAAGC CACCTGGAGA GAATGACTTT
    GACACCATTA AGCTCATAAG CAATGGTGCC TACGGGGCGG TCTATCTGGT GCGGCACCGA
    GACACACGGC AGCGCTTTGC CATGAAGAAG ATTAACAAGC AGAACCTGAT CCTCCGCAAT
    CAGATCCAGC AGGCCTTCGT GGAACGCGAC ATCCTGACCT TCGCAGAGAA CCCCTTTGTG
    GTCGGCATGT TCTGTTCCTT CGAGACCCGC CGCCACCTCT GCATGGTCAT GGAGTATGTG
    GAAGGTGGTG ACTGTGCCAC CCTACTGAAG AACATTGGGG CACTGCCTGT AGAGATGGCC
    CGCATGTACT TTGCAGAGAC AGTGCTGGCA CTAGAGTACT TGCACAACTA CGGCATTGTG
    CATCGTGACC TCAAGCCAGA CAACCTCCTC ATCACTTCCA TGGGCCACAT CAAACTCACG
    GATTTTGGCC TCTCCAAGAT GGGGCTCATG AGCCTGACCA CCAACTTATA TGAAGGTCAC
    ATAGAGAAGG ACGCCCGGGA GTTCCTGGAC AAACAGGTGT GTGGGACCCC AGAGTACATC
    GCACCCGAGG TCATCCTGCG CCAGGGCTAC GGCAAGCCAG TGGACTGGTG GGCCATGGGG
    ATCATACTCT ACGAGTTCCT GGTTGGCTGT GTGCCTTTCT TTGGGGACAC CCCAGAAGAG
    CTCTTTGGAC AAGTTATCAG TGATGACATC CTGTGGCCCG AGGGGGATGA GGCCCTGCCT
    ACAGATGCCC AGCTTCTGAT ATCTAGCCTT CTGCAGACCA ACCCCCTGGT CCGGCTTGGG
    GCAGGTGGTG CCTTTGAAGT GAAGCAGCAT AGTTTCTTCC GAGACCTGGA TTGGACAGGG
    CTGCTGAGGC AAAAGGCCGA GTTCATCCCC CACCTAGAGT CAGAAGATGA CACCAGCTAC
    TTTGACACCC GGTCAGACAG GTATCACCAT GTGAACTCCT ATGATGAGGA TGACACCACC
    GAGGAAGAAC CTGTGGAGAT CCGCCAGTTC TCCTCTTGCT CTCCCCGCTT CAGCAAGGTG
    TACAGCAGTA TGGAGCAGCT GTCACAACAT GAGCCCAAGA CCCCCGTATC AACATCGGGG
    GCGACCAAGA GGGAGCCAAG CGCCAAGGGC TCAGAGGAGA AGGTAGCCGG CAAGCGGGAG
    GGACTGGGTG GCCTGACTCT GCGAGAGAAG ACCTGGAGAG GGGGCTCCCC AGAGATCAAG
    CGCTTCTCCG CTTCCGAGGC CTGTTTCTTG GAGGGGGAGG CCAGTCCTCC GTTAGGAGCG
    CGCCGACGTT TCTCGGCGCT GCTGGAGCCC AGCCGCTTCA ATGCTCCTCA GGAGGACGAA
    GATGAAGTCC GGCTCCGCAG GCCTCCCCGG CCCAGCTCCG ATCCTTCAGG CTCACTGGAG
    ACGCGAGCCC CCAAAGAGAC GGCTCAAGAA GGCACCCCCA CGGCTGGGGA CCCCGAGACC
    ACTGAGCACA CATGCCCAGG TGACCTCTGC ACACTCTCAA AGGATGGGGA TCCATCAGGC
    CCTAGGGCCA CCAATGACCT AGTTCTGCGA AGGGTGCGCC ACCAGCAGCT GTCTGGAGAT
    CCTTCGGTGG AGAAGCGACC TTCTCGAACT GGGGGCAAAG TTATCAAGTC AGCCTCAGCG
    ACTGCCCTAT CCGTCATGAT TCCTGCAGTG GACCCACATG GAAGCTCACC CCTTGCTAGT
    CCCATGTCCC CTCGATCCCT TTCCTCCAAC CCATCCTCGA GGGACTCTTC ACCCAGCCGG
    GACTACTCAC CTGCTGTCAG TGGCCTCCGT TCCCCAATCA CCATCCAACG CTCAGGCAAA
    AAATACGGCT TCACGCTGCG TGCCATCCGC GTCTACATGG GCGATTCGGA TGTCTACAGT
    GTTCACCACA TTGTTTGGCA TGTGGAGGAA GGGGGCCCAG CCCAAGAGGC GGGTCTCTGT
    GCTGGGGACC TCATCACGCA CGTGAACGGC GAGCCGGTGC ATGGCATGGT GCATCCTGAG
    GTGGTAGAGC TGATCCTTAA GAGCGGCAAC AAGGTGGCTG TGACCACGAC ACCCTTCGAA
    AACACCTCCA TCCGCATTGG GCCCGCCAGG CGCAGCAGCT ACAAAGCTAA AATGGCTCGG
    AGGAACAAGA GACCCTCGTC TAAGGATGGC CAGGAGAGCA AGAAACGCAG CTCCCTCTTC
    CGGAAGATCA CAAAACAGTC AAACCTGTTG CATACTAGCC GCTCGCTCTC CTCGCTGAAC
    CGGTCCCTGT CGTCCAGTGA TAGTCTCCCC GGATCACCCA CGCACGGACT ACCGGCGCGC
    TCGCCCACGC ACAGTTACCG CTCCACGCCT GACTCCGCCT ACCTAGGCGC CTCCTCCCAG
    AGCAGCTCCC CAGCCTCCAG CACTCCCAAC TCCCCCGCGT CCTCGGCGTC GCACCACATC
    CGACCCAGCA CCCTGCATGG GCTGTCACCG AAGCTCCACC GCCAGTACCG CTCTGCGCGC
    TGCAAGTCAG CCGGCAACAT CCCGCTGTCG CCACTGGCGC ACACTCCATC CCCGACGCAG
    GCGTCGCCGC CACCGTTGCC GGGCCACACC GTGGGCAGTT CGCACACCAC GCAGAGCTTC
    CCAGCCAAAT TGCACTCGTC ACCGCCGGTC GTGCGCCCGC GCCCCAAGAG TGCAGAGCCG
    CCGCGCTCGC CGCTGCTCAA GCGAGTGCAG TCGGCAGAGA AGCTGGGGGC CTCACTGGGC
    GCAGACAAGA AGGGCGCACT GCGCAAACAC AGCCTCGAGG TGGGCCACCC GGATTTCCGC
    AAGGACTTCC ACGGCGAGCT GGCTCTGCAT AGCCTAGCCG AGTCCGACGG CGAGACGCCT
    CCCATCGAGG GTCCTGGAGC GTCCCGGCAA GTCACAATGC GACGCCTGGG CCGCCAGGAA
    TCGCCCCTAA GCTTGGGTGC GGACCCGTTG CTCCCTGAGG GCGCGCCCAG GCTAATGGCG
    TCAAGCAAGG AGAAGGAGTC TCCGGGAGGC GTGGAGGCCT GCACTCCACC TCGCGCAACA
    ACCCCCGGGA GCCGGACCCT GGAGCGGGAT TCCGGCTGCA CGCGGCACCA GAGCGTGCAA
    ACTGAAGACG GCCAAGGCGG GGTGGCTAGG GCAGTGGCCA AGGCGGCGCT TAGTCCGGTG
    CAGGAACACG AGACCGGCCG GCGCAGTAGC TCGGGCGAGA CAGGCACACC CGTGGTGCCC
    ATTGTTGTGG AGCCCACGCG GCCAAGGGTG AAGGCCCAGG CGCTCCAGCC TCTGGGCACA
    GACTCCAAGG GATTGAAGGA ACCTGTACCC CTGGTGCCTC TGGTGCCTGA TGCCCCAAGG
    GGCCGGGAGC GCTGGGTGCT GCAGGAGGTA GAGGAGCGGA CCACGCTGAG CGGGCCACGC
    TCCAAGCCTG TTTCCCCCAA ACTCTCCCCG GATCCCCAGA CTCCCACTCT AGCCCCAACA
    AAAAATGTGT CGGGAAATGC AGGCCCTCCA GCTCCACCCA CTTCCCTCCG GGAAGTGGGG
    CTCACCTCCG GATCCCCTGT TGAGGCTGTG ACTCCAGTAG GCCTGACCAA AAAAGGGGCA
    CCCAGCATCG CACCCTCAGG CCCGTAG

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

    CloneID ONa37014
    Clone ID Related Accession (Same CDS sequence) XM_008855469.1 , XM_008855469.2
    Accession Version XM_008855469.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4695bp)
    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 microtubule-associated serine/threonine-protein kinase 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008357641.1) 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
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    ATGTCTGACT CTCTCTGGAC CGCGCTTTCC AATTTCTCGA TGCCCTCCTT CCCCGGCGGC 
    AGTATGTTCC GCCGCACCAA GAGCTGCCGC ACTAGTAACC GGAAAAGCCT CATCCTGACA
    AGCACTTCGC CAACGCTGCC GCGGCCCCAC TCCCCATTGC CAGGCCACTT AGGTAGCAGT
    CCCCTGGACA GCCCCCGCAA CTTCTCTCCC AACACCCCAG CCCACTTCTC ATTTGCCTCC
    TCCCGAAGGG CTGATGGACG TCGCTGGTCG CTGGCCTCAC TCCCTTCCTC TGGCTATGGC
    ACCAACACAC CCAGTTCCAC TGTGTCGTCC TCCTGTTCCT CCCAGGAGCG TCTGCATCAA
    CTGCCCTACC AGCCCACGGT GGACGAGCTG CACTTCCTTT CCAAACACTT CGGCAGCACT
    GAGAGCATCA CGGACGAGGA TGGCGGCCGC CGCTCCCCGG CGGTGCGGCC CCGCTCGCGG
    AGCCTCAGCC CCGGCCGCTC TCCCTCCTCC TACGACAATG AAATCGTGAT GATGAACCAT
    GTGTACAAGG AGCGGTTCCC CAAGGCCACC GCACAGATGG AGGAGAAGCT GCGGGACTTT
    GCCCGCGCCT ACGAACCTGA CAGCGTGCTG CCGCTGGCGG ACGGCGTACT CAGCTTCATC
    CACCACCAGA TCATCGAGCT GGCACGGGAC TGCCTGACCA AGTCCCGCGA CGGGCTCATC
    ACCACCGTCT ACTTCTATGA ACTACAGGAG AACCTGGAGA AGCTATTGCA GGACGCCTAT
    GAACGCTCCG AGAGCTTGGA GGTGGCCTTT GTCACTCAGC TGGTGAAGAA ACTGCTCATT
    ATCATCTCTC GCCCAGCTAG GCTTCTAGAG TGCCTGGAAT TCAACCCTGA GGAGTTCTAC
    CACCTACTGG AGGCAGCAGA GGGACATGCC AAGGAGGGCC ACCTCGTCAA GACTGACATC
    CCCCGATACA TCATCCATCA GCTGGGCCTC ACCCGGGACC CCTTTCCTGA TGTGGTACAT
    CTGGAGGAAC AGGACAGTGG TGGCTCTAAC ACACCAGAGC AGGACGACAT CTCTGAGGGT
    CGCAGTGGCA CCGCCAAGGC CAAGAAGCCA CCTGGAGAGA ATGACTTTGA CACCATTAAG
    CTCATAAGCA ATGGTGCCTA CGGGGCGGTC TATCTGGTGC GGCACCGAGA CACACGGCAG
    CGCTTTGCCA TGAAGAAGAT TAACAAGCAG AACCTGATCC TCCGCAATCA GATCCAGCAG
    GCCTTCGTGG AACGCGACAT CCTGACCTTC GCAGAGAACC CCTTTGTGGT CGGCATGTTC
    TGTTCCTTCG AGACCCGCCG CCACCTCTGC ATGGTCATGG AGTATGTGGA AGGTGGTGAC
    TGTGCCACCC TACTGAAGAA CATTGGGGCA CTGCCTGTAG AGATGGCCCG CATGTACTTT
    GCAGAGACAG TGCTGGCACT AGAGTACTTG CACAACTACG GCATTGTGCA TCGTGACCTC
    AAGCCAGACA ACCTCCTCAT CACTTCCATG GGCCACATCA AACTCACGGA TTTTGGCCTC
    TCCAAGATGG GGCTCATGAG CCTGACCACC AACTTATATG AAGGTCACAT AGAGAAGGAC
    GCCCGGGAGT TCCTGGACAA ACAGGTGTGT GGGACCCCAG AGTACATCGC ACCCGAGGTC
    ATCCTGCGCC AGGGCTACGG CAAGCCAGTG GACTGGTGGG CCATGGGGAT CATACTCTAC
    GAGTTCCTGG TTGGCTGTGT GCCTTTCTTT GGGGACACCC CAGAAGAGCT CTTTGGACAA
    GTTATCAGTG ATGACATCCT GTGGCCCGAG GGGGATGAGG CCCTGCCTAC AGATGCCCAG
    CTTCTGATAT CTAGCCTTCT GCAGACCAAC CCCCTGGTCC GGCTTGGGGC AGGTGGTGCC
    TTTGAAGTGA AGCAGCATAG TTTCTTCCGA GACCTGGATT GGACAGGGCT GCTGAGGCAA
    AAGGCCGAGT TCATCCCCCA CCTAGAGTCA GAAGATGACA CCAGCTACTT TGACACCCGG
    TCAGACAGGT ATCACCATGT GAACTCCTAT GATGAGGATG ACACCACCGA GGAAGAACCT
    GTGGAGATCC GCCAGTTCTC CTCTTGCTCT CCCCGCTTCA GCAAGGTGTA CAGCAGTATG
    GAGCAGCTGT CACAACATGA GCCCAAGACC CCCGTATCAA CATCGGGGGC GACCAAGAGG
    GAGCCAAGCG CCAAGGGCTC AGAGGAGAAG GTAGCCGGCA AGCGGGAGGG ACTGGGTGGC
    CTGACTCTGC GAGAGAAGAC CTGGAGAGGG GGCTCCCCAG AGATCAAGCG CTTCTCCGCT
    TCCGAGGCCT GTTTCTTGGA GGGGGAGGCC AGTCCTCCGT TAGGAGCGCG CCGACGTTTC
    TCGGCGCTGC TGGAGCCCAG CCGCTTCAAT GCTCCTCAGG AGGACGAAGA TGAAGTCCGG
    CTCCGCAGGC CTCCCCGGCC CAGCTCCGAT CCTTCAGGCT CACTGGAGAC GCGAGCCCCC
    AAAGAGACGG CTCAAGAAGG CACCCCCACG GCTGGGGACC CCGAGACCAC TGAGCACACA
    TGCCCAGGTG ACCTCTGCAC ACTCTCAAAG GATGGGGATC CATCAGGCCC TAGGGCCACC
    AATGACCTAG TTCTGCGAAG GGTGCGCCAC CAGCAGCTGT CTGGAGATCC TTCGGTGGAG
    AAGCGACCTT CTCGAACTGG GGGCAAAGTT ATCAAGTCAG CCTCAGCGAC TGCCCTATCC
    GTCATGATTC CTGCAGTGGA CCCACATGGA AGCTCACCCC TTGCTAGTCC CATGTCCCCT
    CGATCCCTTT CCTCCAACCC ATCCTCGAGG GACTCTTCAC CCAGCCGGGA CTACTCACCT
    GCTGTCAGTG GCCTCCGTTC CCCAATCACC ATCCAACGCT CAGGCAAAAA ATACGGCTTC
    ACGCTGCGTG CCATCCGCGT CTACATGGGC GATTCGGATG TCTACAGTGT TCACCACATT
    GTTTGGCATG TGGAGGAAGG GGGCCCAGCC CAAGAGGCGG GTCTCTGTGC TGGGGACCTC
    ATCACGCACG TGAACGGCGA GCCGGTGCAT GGCATGGTGC ATCCTGAGGT GGTAGAGCTG
    ATCCTTAAGA GCGGCAACAA GGTGGCTGTG ACCACGACAC CCTTCGAAAA CACCTCCATC
    CGCATTGGGC CCGCCAGGCG CAGCAGCTAC AAAGCTAAAA TGGCTCGGAG GAACAAGAGA
    CCCTCGTCTA AGGATGGCCA GGAGAGCAAG AAACGCAGCT CCCTCTTCCG GAAGATCACA
    AAACAGTCAA ACCTGTTGCA TACTAGCCGC TCGCTCTCCT CGCTGAACCG GTCCCTGTCG
    TCCAGTGATA GTCTCCCCGG ATCACCCACG CACGGACTAC CGGCGCGCTC GCCCACGCAC
    AGTTACCGCT CCACGCCTGA CTCCGCCTAC CTAGGCGCCT CCTCCCAGAG CAGCTCCCCA
    GCCTCCAGCA CTCCCAACTC CCCCGCGTCC TCGGCGTCGC ACCACATCCG ACCCAGCACC
    CTGCATGGGC TGTCACCGAA GCTCCACCGC CAGTACCGCT CTGCGCGCTG CAAGTCAGCC
    GGCAACATCC CGCTGTCGCC ACTGGCGCAC ACTCCATCCC CGACGCAGGC GTCGCCGCCA
    CCGTTGCCGG GCCACACCGT GGGCAGTTCG CACACCACGC AGAGCTTCCC AGCCAAATTG
    CACTCGTCAC CGCCGGTCGT GCGCCCGCGC CCCAAGAGTG CAGAGCCGCC GCGCTCGCCG
    CTGCTCAAGC GAGTGCAGTC GGCAGAGAAG CTGGGGGCCT CACTGGGCGC AGACAAGAAG
    GGCGCACTGC GCAAACACAG CCTCGAGGTG GGCCACCCGG ATTTCCGCAA GGACTTCCAC
    GGCGAGCTGG CTCTGCATAG CCTAGCCGAG TCCGACGGCG AGACGCCTCC CATCGAGGGT
    CCTGGAGCGT CCCGGCAAGT CACAATGCGA CGCCTGGGCC GCCAGGAATC GCCCCTAAGC
    TTGGGTGCGG ACCCGTTGCT CCCTGAGGGC GCGCCCAGGC TAATGGCGTC AAGCAAGGAG
    AAGGAGTCTC CGGGAGGCGT GGAGGCCTGC ACTCCACCTC GCGCAACAAC CCCCGGGAGC
    CGGACCCTGG AGCGGGATTC CGGCTGCACG CGGCACCAGA GCGTGCAAAC TGAAGACGGC
    CAAGGCGGGG TGGCTAGGGC AGTGGCCAAG GCGGCGCTTA GTCCGGTGCA GGAACACGAG
    ACCGGCCGGC GCAGTAGCTC GGGCGAGACA GGCACACCCG TGGTGCCCAT TGTTGTGGAG
    CCCACGCGGC CAAGGGTGAA GGCCCAGGCG CTCCAGCCTC TGGGCACAGA CTCCAAGGGA
    TTGAAGGAAC CTGTACCCCT GGTGCCTCTG GTGCCTGATG CCCCAAGGGG CCGGGAGCGC
    TGGGTGCTGC AGGAGGTAGA GGAGCGGACC ACGCTGAGCG GGCCACGCTC CAAGCCTGTT
    TCCCCCAAAC TCTCCCCGGA TCCCCAGACT CCCACTCTAG CCCCAACAAA AAATGTGTCG
    GGAAATGCAG GCCCTCCAGC TCCACCCACT TCCCTCCGGG AAGTGGGGCT CACCTCCGGA
    TCCCCTGTTG AGGCTGTGAC TCCAGTAGGC CTGACCAAAA AAGGGGCACC CAGCATCGCA
    CCCTCAGGCC CGTAG

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

    RefSeq XP_008853691.1
    CDS112..4806
    Translation

    Target ORF information:

    RefSeq Version XM_008855469.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008855469.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    ATGTCTGACT CTCTCTGGAC CGCGCTTTCC AATTTCTCGA TGCCCTCCTT CCCCGGCGGC 
    AGTATGTTCC GCCGCACCAA GAGCTGCCGC ACTAGTAACC GGAAAAGCCT CATCCTGACA
    AGCACTTCGC CAACGCTGCC GCGGCCCCAC TCCCCATTGC CAGGCCACTT AGGTAGCAGT
    CCCCTGGACA GCCCCCGCAA CTTCTCTCCC AACACCCCAG CCCACTTCTC ATTTGCCTCC
    TCCCGAAGGG CTGATGGACG TCGCTGGTCG CTGGCCTCAC TCCCTTCCTC TGGCTATGGC
    ACCAACACAC CCAGTTCCAC TGTGTCGTCC TCCTGTTCCT CCCAGGAGCG TCTGCATCAA
    CTGCCCTACC AGCCCACGGT GGACGAGCTG CACTTCCTTT CCAAACACTT CGGCAGCACT
    GAGAGCATCA CGGACGAGGA TGGCGGCCGC CGCTCCCCGG CGGTGCGGCC CCGCTCGCGG
    AGCCTCAGCC CCGGCCGCTC TCCCTCCTCC TACGACAATG AAATCGTGAT GATGAACCAT
    GTGTACAAGG AGCGGTTCCC CAAGGCCACC GCACAGATGG AGGAGAAGCT GCGGGACTTT
    GCCCGCGCCT ACGAACCTGA CAGCGTGCTG CCGCTGGCGG ACGGCGTACT CAGCTTCATC
    CACCACCAGA TCATCGAGCT GGCACGGGAC TGCCTGACCA AGTCCCGCGA CGGGCTCATC
    ACCACCGTCT ACTTCTATGA ACTACAGGAG AACCTGGAGA AGCTATTGCA GGACGCCTAT
    GAACGCTCCG AGAGCTTGGA GGTGGCCTTT GTCACTCAGC TGGTGAAGAA ACTGCTCATT
    ATCATCTCTC GCCCAGCTAG GCTTCTAGAG TGCCTGGAAT TCAACCCTGA GGAGTTCTAC
    CACCTACTGG AGGCAGCAGA GGGACATGCC AAGGAGGGCC ACCTCGTCAA GACTGACATC
    CCCCGATACA TCATCCATCA GCTGGGCCTC ACCCGGGACC CCTTTCCTGA TGTGGTACAT
    CTGGAGGAAC AGGACAGTGG TGGCTCTAAC ACACCAGAGC AGGACGACAT CTCTGAGGGT
    CGCAGTGGCA CCGCCAAGGC CAAGAAGCCA CCTGGAGAGA ATGACTTTGA CACCATTAAG
    CTCATAAGCA ATGGTGCCTA CGGGGCGGTC TATCTGGTGC GGCACCGAGA CACACGGCAG
    CGCTTTGCCA TGAAGAAGAT TAACAAGCAG AACCTGATCC TCCGCAATCA GATCCAGCAG
    GCCTTCGTGG AACGCGACAT CCTGACCTTC GCAGAGAACC CCTTTGTGGT CGGCATGTTC
    TGTTCCTTCG AGACCCGCCG CCACCTCTGC ATGGTCATGG AGTATGTGGA AGGTGGTGAC
    TGTGCCACCC TACTGAAGAA CATTGGGGCA CTGCCTGTAG AGATGGCCCG CATGTACTTT
    GCAGAGACAG TGCTGGCACT AGAGTACTTG CACAACTACG GCATTGTGCA TCGTGACCTC
    AAGCCAGACA ACCTCCTCAT CACTTCCATG GGCCACATCA AACTCACGGA TTTTGGCCTC
    TCCAAGATGG GGCTCATGAG CCTGACCACC AACTTATATG AAGGTCACAT AGAGAAGGAC
    GCCCGGGAGT TCCTGGACAA ACAGGTGTGT GGGACCCCAG AGTACATCGC ACCCGAGGTC
    ATCCTGCGCC AGGGCTACGG CAAGCCAGTG GACTGGTGGG CCATGGGGAT CATACTCTAC
    GAGTTCCTGG TTGGCTGTGT GCCTTTCTTT GGGGACACCC CAGAAGAGCT CTTTGGACAA
    GTTATCAGTG ATGACATCCT GTGGCCCGAG GGGGATGAGG CCCTGCCTAC AGATGCCCAG
    CTTCTGATAT CTAGCCTTCT GCAGACCAAC CCCCTGGTCC GGCTTGGGGC AGGTGGTGCC
    TTTGAAGTGA AGCAGCATAG TTTCTTCCGA GACCTGGATT GGACAGGGCT GCTGAGGCAA
    AAGGCCGAGT TCATCCCCCA CCTAGAGTCA GAAGATGACA CCAGCTACTT TGACACCCGG
    TCAGACAGGT ATCACCATGT GAACTCCTAT GATGAGGATG ACACCACCGA GGAAGAACCT
    GTGGAGATCC GCCAGTTCTC CTCTTGCTCT CCCCGCTTCA GCAAGGTGTA CAGCAGTATG
    GAGCAGCTGT CACAACATGA GCCCAAGACC CCCGTATCAA CATCGGGGGC GACCAAGAGG
    GAGCCAAGCG CCAAGGGCTC AGAGGAGAAG GTAGCCGGCA AGCGGGAGGG ACTGGGTGGC
    CTGACTCTGC GAGAGAAGAC CTGGAGAGGG GGCTCCCCAG AGATCAAGCG CTTCTCCGCT
    TCCGAGGCCT GTTTCTTGGA GGGGGAGGCC AGTCCTCCGT TAGGAGCGCG CCGACGTTTC
    TCGGCGCTGC TGGAGCCCAG CCGCTTCAAT GCTCCTCAGG AGGACGAAGA TGAAGTCCGG
    CTCCGCAGGC CTCCCCGGCC CAGCTCCGAT CCTTCAGGCT CACTGGAGAC GCGAGCCCCC
    AAAGAGACGG CTCAAGAAGG CACCCCCACG GCTGGGGACC CCGAGACCAC TGAGCACACA
    TGCCCAGGTG ACCTCTGCAC ACTCTCAAAG GATGGGGATC CATCAGGCCC TAGGGCCACC
    AATGACCTAG TTCTGCGAAG GGTGCGCCAC CAGCAGCTGT CTGGAGATCC TTCGGTGGAG
    AAGCGACCTT CTCGAACTGG GGGCAAAGTT ATCAAGTCAG CCTCAGCGAC TGCCCTATCC
    GTCATGATTC CTGCAGTGGA CCCACATGGA AGCTCACCCC TTGCTAGTCC CATGTCCCCT
    CGATCCCTTT CCTCCAACCC ATCCTCGAGG GACTCTTCAC CCAGCCGGGA CTACTCACCT
    GCTGTCAGTG GCCTCCGTTC CCCAATCACC ATCCAACGCT CAGGCAAAAA ATACGGCTTC
    ACGCTGCGTG CCATCCGCGT CTACATGGGC GATTCGGATG TCTACAGTGT TCACCACATT
    GTTTGGCATG TGGAGGAAGG GGGCCCAGCC CAAGAGGCGG GTCTCTGTGC TGGGGACCTC
    ATCACGCACG TGAACGGCGA GCCGGTGCAT GGCATGGTGC ATCCTGAGGT GGTAGAGCTG
    ATCCTTAAGA GCGGCAACAA GGTGGCTGTG ACCACGACAC CCTTCGAAAA CACCTCCATC
    CGCATTGGGC CCGCCAGGCG CAGCAGCTAC AAAGCTAAAA TGGCTCGGAG GAACAAGAGA
    CCCTCGTCTA AGGATGGCCA GGAGAGCAAG AAACGCAGCT CCCTCTTCCG GAAGATCACA
    AAACAGTCAA ACCTGTTGCA TACTAGCCGC TCGCTCTCCT CGCTGAACCG GTCCCTGTCG
    TCCAGTGATA GTCTCCCCGG ATCACCCACG CACGGACTAC CGGCGCGCTC GCCCACGCAC
    AGTTACCGCT CCACGCCTGA CTCCGCCTAC CTAGGCGCCT CCTCCCAGAG CAGCTCCCCA
    GCCTCCAGCA CTCCCAACTC CCCCGCGTCC TCGGCGTCGC ACCACATCCG ACCCAGCACC
    CTGCATGGGC TGTCACCGAA GCTCCACCGC CAGTACCGCT CTGCGCGCTG CAAGTCAGCC
    GGCAACATCC CGCTGTCGCC ACTGGCGCAC ACTCCATCCC CGACGCAGGC GTCGCCGCCA
    CCGTTGCCGG GCCACACCGT GGGCAGTTCG CACACCACGC AGAGCTTCCC AGCCAAATTG
    CACTCGTCAC CGCCGGTCGT GCGCCCGCGC CCCAAGAGTG CAGAGCCGCC GCGCTCGCCG
    CTGCTCAAGC GAGTGCAGTC GGCAGAGAAG CTGGGGGCCT CACTGGGCGC AGACAAGAAG
    GGCGCACTGC GCAAACACAG CCTCGAGGTG GGCCACCCGG ATTTCCGCAA GGACTTCCAC
    GGCGAGCTGG CTCTGCATAG CCTAGCCGAG TCCGACGGCG AGACGCCTCC CATCGAGGGT
    CCTGGAGCGT CCCGGCAAGT CACAATGCGA CGCCTGGGCC GCCAGGAATC GCCCCTAAGC
    TTGGGTGCGG ACCCGTTGCT CCCTGAGGGC GCGCCCAGGC TAATGGCGTC AAGCAAGGAG
    AAGGAGTCTC CGGGAGGCGT GGAGGCCTGC ACTCCACCTC GCGCAACAAC CCCCGGGAGC
    CGGACCCTGG AGCGGGATTC CGGCTGCACG CGGCACCAGA GCGTGCAAAC TGAAGACGGC
    CAAGGCGGGG TGGCTAGGGC AGTGGCCAAG GCGGCGCTTA GTCCGGTGCA GGAACACGAG
    ACCGGCCGGC GCAGTAGCTC GGGCGAGACA GGCACACCCG TGGTGCCCAT TGTTGTGGAG
    CCCACGCGGC CAAGGGTGAA GGCCCAGGCG CTCCAGCCTC TGGGCACAGA CTCCAAGGGA
    TTGAAGGAAC CTGTACCCCT GGTGCCTCTG GTGCCTGATG CCCCAAGGGG CCGGGAGCGC
    TGGGTGCTGC AGGAGGTAGA GGAGCGGACC ACGCTGAGCG GGCCACGCTC CAAGCCTGTT
    TCCCCCAAAC TCTCCCCGGA TCCCCAGACT CCCACTCTAG CCCCAACAAA AAATGTGTCG
    GGAAATGCAG GCCCTCCAGC TCCACCCACT TCCCTCCGGG AAGTGGGGCT CACCTCCGGA
    TCCCCTGTTG AGGCTGTGAC TCCAGTAGGC CTGACCAAAA AAGGGGCACC CAGCATCGCA
    CCCTCAGGCC CGTAG

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

    CloneID ONa37014
    Clone ID Related Accession (Same CDS sequence) XM_008855469.1 , XM_008855469.2
    Accession Version XM_008855469.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4695bp)
    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 microtubule-associated serine/threonine-protein kinase 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008357641.1) 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_008855469.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    ATGTCTGACT CTCTCTGGAC CGCGCTTTCC AATTTCTCGA TGCCCTCCTT CCCCGGCGGC 
    AGTATGTTCC GCCGCACCAA GAGCTGCCGC ACTAGTAACC GGAAAAGCCT CATCCTGACA
    AGCACTTCGC CAACGCTGCC GCGGCCCCAC TCCCCATTGC CAGGCCACTT AGGTAGCAGT
    CCCCTGGACA GCCCCCGCAA CTTCTCTCCC AACACCCCAG CCCACTTCTC ATTTGCCTCC
    TCCCGAAGGG CTGATGGACG TCGCTGGTCG CTGGCCTCAC TCCCTTCCTC TGGCTATGGC
    ACCAACACAC CCAGTTCCAC TGTGTCGTCC TCCTGTTCCT CCCAGGAGCG TCTGCATCAA
    CTGCCCTACC AGCCCACGGT GGACGAGCTG CACTTCCTTT CCAAACACTT CGGCAGCACT
    GAGAGCATCA CGGACGAGGA TGGCGGCCGC CGCTCCCCGG CGGTGCGGCC CCGCTCGCGG
    AGCCTCAGCC CCGGCCGCTC TCCCTCCTCC TACGACAATG AAATCGTGAT GATGAACCAT
    GTGTACAAGG AGCGGTTCCC CAAGGCCACC GCACAGATGG AGGAGAAGCT GCGGGACTTT
    GCCCGCGCCT ACGAACCTGA CAGCGTGCTG CCGCTGGCGG ACGGCGTACT CAGCTTCATC
    CACCACCAGA TCATCGAGCT GGCACGGGAC TGCCTGACCA AGTCCCGCGA CGGGCTCATC
    ACCACCGTCT ACTTCTATGA ACTACAGGAG AACCTGGAGA AGCTATTGCA GGACGCCTAT
    GAACGCTCCG AGAGCTTGGA GGTGGCCTTT GTCACTCAGC TGGTGAAGAA ACTGCTCATT
    ATCATCTCTC GCCCAGCTAG GCTTCTAGAG TGCCTGGAAT TCAACCCTGA GGAGTTCTAC
    CACCTACTGG AGGCAGCAGA GGGACATGCC AAGGAGGGCC ACCTCGTCAA GACTGACATC
    CCCCGATACA TCATCCATCA GCTGGGCCTC ACCCGGGACC CCTTTCCTGA TGTGGTACAT
    CTGGAGGAAC AGGACAGTGG TGGCTCTAAC ACACCAGAGC AGGACGACAT CTCTGAGGGT
    CGCAGTGGCA CCGCCAAGGC CAAGAAGCCA CCTGGAGAGA ATGACTTTGA CACCATTAAG
    CTCATAAGCA ATGGTGCCTA CGGGGCGGTC TATCTGGTGC GGCACCGAGA CACACGGCAG
    CGCTTTGCCA TGAAGAAGAT TAACAAGCAG AACCTGATCC TCCGCAATCA GATCCAGCAG
    GCCTTCGTGG AACGCGACAT CCTGACCTTC GCAGAGAACC CCTTTGTGGT CGGCATGTTC
    TGTTCCTTCG AGACCCGCCG CCACCTCTGC ATGGTCATGG AGTATGTGGA AGGTGGTGAC
    TGTGCCACCC TACTGAAGAA CATTGGGGCA CTGCCTGTAG AGATGGCCCG CATGTACTTT
    GCAGAGACAG TGCTGGCACT AGAGTACTTG CACAACTACG GCATTGTGCA TCGTGACCTC
    AAGCCAGACA ACCTCCTCAT CACTTCCATG GGCCACATCA AACTCACGGA TTTTGGCCTC
    TCCAAGATGG GGCTCATGAG CCTGACCACC AACTTATATG AAGGTCACAT AGAGAAGGAC
    GCCCGGGAGT TCCTGGACAA ACAGGTGTGT GGGACCCCAG AGTACATCGC ACCCGAGGTC
    ATCCTGCGCC AGGGCTACGG CAAGCCAGTG GACTGGTGGG CCATGGGGAT CATACTCTAC
    GAGTTCCTGG TTGGCTGTGT GCCTTTCTTT GGGGACACCC CAGAAGAGCT CTTTGGACAA
    GTTATCAGTG ATGACATCCT GTGGCCCGAG GGGGATGAGG CCCTGCCTAC AGATGCCCAG
    CTTCTGATAT CTAGCCTTCT GCAGACCAAC CCCCTGGTCC GGCTTGGGGC AGGTGGTGCC
    TTTGAAGTGA AGCAGCATAG TTTCTTCCGA GACCTGGATT GGACAGGGCT GCTGAGGCAA
    AAGGCCGAGT TCATCCCCCA CCTAGAGTCA GAAGATGACA CCAGCTACTT TGACACCCGG
    TCAGACAGGT ATCACCATGT GAACTCCTAT GATGAGGATG ACACCACCGA GGAAGAACCT
    GTGGAGATCC GCCAGTTCTC CTCTTGCTCT CCCCGCTTCA GCAAGGTGTA CAGCAGTATG
    GAGCAGCTGT CACAACATGA GCCCAAGACC CCCGTATCAA CATCGGGGGC GACCAAGAGG
    GAGCCAAGCG CCAAGGGCTC AGAGGAGAAG GTAGCCGGCA AGCGGGAGGG ACTGGGTGGC
    CTGACTCTGC GAGAGAAGAC CTGGAGAGGG GGCTCCCCAG AGATCAAGCG CTTCTCCGCT
    TCCGAGGCCT GTTTCTTGGA GGGGGAGGCC AGTCCTCCGT TAGGAGCGCG CCGACGTTTC
    TCGGCGCTGC TGGAGCCCAG CCGCTTCAAT GCTCCTCAGG AGGACGAAGA TGAAGTCCGG
    CTCCGCAGGC CTCCCCGGCC CAGCTCCGAT CCTTCAGGCT CACTGGAGAC GCGAGCCCCC
    AAAGAGACGG CTCAAGAAGG CACCCCCACG GCTGGGGACC CCGAGACCAC TGAGCACACA
    TGCCCAGGTG ACCTCTGCAC ACTCTCAAAG GATGGGGATC CATCAGGCCC TAGGGCCACC
    AATGACCTAG TTCTGCGAAG GGTGCGCCAC CAGCAGCTGT CTGGAGATCC TTCGGTGGAG
    AAGCGACCTT CTCGAACTGG GGGCAAAGTT ATCAAGTCAG CCTCAGCGAC TGCCCTATCC
    GTCATGATTC CTGCAGTGGA CCCACATGGA AGCTCACCCC TTGCTAGTCC CATGTCCCCT
    CGATCCCTTT CCTCCAACCC ATCCTCGAGG GACTCTTCAC CCAGCCGGGA CTACTCACCT
    GCTGTCAGTG GCCTCCGTTC CCCAATCACC ATCCAACGCT CAGGCAAAAA ATACGGCTTC
    ACGCTGCGTG CCATCCGCGT CTACATGGGC GATTCGGATG TCTACAGTGT TCACCACATT
    GTTTGGCATG TGGAGGAAGG GGGCCCAGCC CAAGAGGCGG GTCTCTGTGC TGGGGACCTC
    ATCACGCACG TGAACGGCGA GCCGGTGCAT GGCATGGTGC ATCCTGAGGT GGTAGAGCTG
    ATCCTTAAGA GCGGCAACAA GGTGGCTGTG ACCACGACAC CCTTCGAAAA CACCTCCATC
    CGCATTGGGC CCGCCAGGCG CAGCAGCTAC AAAGCTAAAA TGGCTCGGAG GAACAAGAGA
    CCCTCGTCTA AGGATGGCCA GGAGAGCAAG AAACGCAGCT CCCTCTTCCG GAAGATCACA
    AAACAGTCAA ACCTGTTGCA TACTAGCCGC TCGCTCTCCT CGCTGAACCG GTCCCTGTCG
    TCCAGTGATA GTCTCCCCGG ATCACCCACG CACGGACTAC CGGCGCGCTC GCCCACGCAC
    AGTTACCGCT CCACGCCTGA CTCCGCCTAC CTAGGCGCCT CCTCCCAGAG CAGCTCCCCA
    GCCTCCAGCA CTCCCAACTC CCCCGCGTCC TCGGCGTCGC ACCACATCCG ACCCAGCACC
    CTGCATGGGC TGTCACCGAA GCTCCACCGC CAGTACCGCT CTGCGCGCTG CAAGTCAGCC
    GGCAACATCC CGCTGTCGCC ACTGGCGCAC ACTCCATCCC CGACGCAGGC GTCGCCGCCA
    CCGTTGCCGG GCCACACCGT GGGCAGTTCG CACACCACGC AGAGCTTCCC AGCCAAATTG
    CACTCGTCAC CGCCGGTCGT GCGCCCGCGC CCCAAGAGTG CAGAGCCGCC GCGCTCGCCG
    CTGCTCAAGC GAGTGCAGTC GGCAGAGAAG CTGGGGGCCT CACTGGGCGC AGACAAGAAG
    GGCGCACTGC GCAAACACAG CCTCGAGGTG GGCCACCCGG ATTTCCGCAA GGACTTCCAC
    GGCGAGCTGG CTCTGCATAG CCTAGCCGAG TCCGACGGCG AGACGCCTCC CATCGAGGGT
    CCTGGAGCGT CCCGGCAAGT CACAATGCGA CGCCTGGGCC GCCAGGAATC GCCCCTAAGC
    TTGGGTGCGG ACCCGTTGCT CCCTGAGGGC GCGCCCAGGC TAATGGCGTC AAGCAAGGAG
    AAGGAGTCTC CGGGAGGCGT GGAGGCCTGC ACTCCACCTC GCGCAACAAC CCCCGGGAGC
    CGGACCCTGG AGCGGGATTC CGGCTGCACG CGGCACCAGA GCGTGCAAAC TGAAGACGGC
    CAAGGCGGGG TGGCTAGGGC AGTGGCCAAG GCGGCGCTTA GTCCGGTGCA GGAACACGAG
    ACCGGCCGGC GCAGTAGCTC GGGCGAGACA GGCACACCCG TGGTGCCCAT TGTTGTGGAG
    CCCACGCGGC CAAGGGTGAA GGCCCAGGCG CTCCAGCCTC TGGGCACAGA CTCCAAGGGA
    TTGAAGGAAC CTGTACCCCT GGTGCCTCTG GTGCCTGATG CCCCAAGGGG CCGGGAGCGC
    TGGGTGCTGC AGGAGGTAGA GGAGCGGACC ACGCTGAGCG GGCCACGCTC CAAGCCTGTT
    TCCCCCAAAC TCTCCCCGGA TCCCCAGACT CCCACTCTAG CCCCAACAAA AAATGTGTCG
    GGAAATGCAG GCCCTCCAGC TCCACCCACT TCCCTCCGGG AAGTGGGGCT CACCTCCGGA
    TCCCCTGTTG AGGCTGTGAC TCCAGTAGGC CTGACCAAAA AAGGGGCACC CAGCATCGCA
    CCCTCAGGCC CGTAG

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

    RefSeq XP_008853691.1
    CDS88..4782
    Translation

    Target ORF information:

    RefSeq Version XM_008855469.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008855469.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    ATGTCTGACT CTCTCTGGAC CGCGCTTTCC AATTTCTCGA TGCCCTCCTT CCCCGGCGGC 
    AGTATGTTCC GCCGCACCAA GAGCTGCCGC ACTAGTAACC GGAAAAGCCT CATCCTGACA
    AGCACTTCGC CAACGCTGCC GCGGCCCCAC TCCCCATTGC CAGGCCACTT AGGTAGCAGT
    CCCCTGGACA GCCCCCGCAA CTTCTCTCCC AACACCCCAG CCCACTTCTC ATTTGCCTCC
    TCCCGAAGGG CTGATGGACG TCGCTGGTCG CTGGCCTCAC TCCCTTCCTC TGGCTATGGC
    ACCAACACAC CCAGTTCCAC TGTGTCGTCC TCCTGTTCCT CCCAGGAGCG TCTGCATCAA
    CTGCCCTACC AGCCCACGGT GGACGAGCTG CACTTCCTTT CCAAACACTT CGGCAGCACT
    GAGAGCATCA CGGACGAGGA TGGCGGCCGC CGCTCCCCGG CGGTGCGGCC CCGCTCGCGG
    AGCCTCAGCC CCGGCCGCTC TCCCTCCTCC TACGACAATG AAATCGTGAT GATGAACCAT
    GTGTACAAGG AGCGGTTCCC CAAGGCCACC GCACAGATGG AGGAGAAGCT GCGGGACTTT
    GCCCGCGCCT ACGAACCTGA CAGCGTGCTG CCGCTGGCGG ACGGCGTACT CAGCTTCATC
    CACCACCAGA TCATCGAGCT GGCACGGGAC TGCCTGACCA AGTCCCGCGA CGGGCTCATC
    ACCACCGTCT ACTTCTATGA ACTACAGGAG AACCTGGAGA AGCTATTGCA GGACGCCTAT
    GAACGCTCCG AGAGCTTGGA GGTGGCCTTT GTCACTCAGC TGGTGAAGAA ACTGCTCATT
    ATCATCTCTC GCCCAGCTAG GCTTCTAGAG TGCCTGGAAT TCAACCCTGA GGAGTTCTAC
    CACCTACTGG AGGCAGCAGA GGGACATGCC AAGGAGGGCC ACCTCGTCAA GACTGACATC
    CCCCGATACA TCATCCATCA GCTGGGCCTC ACCCGGGACC CCTTTCCTGA TGTGGTACAT
    CTGGAGGAAC AGGACAGTGG TGGCTCTAAC ACACCAGAGC AGGACGACAT CTCTGAGGGT
    CGCAGTGGCA CCGCCAAGGC CAAGAAGCCA CCTGGAGAGA ATGACTTTGA CACCATTAAG
    CTCATAAGCA ATGGTGCCTA CGGGGCGGTC TATCTGGTGC GGCACCGAGA CACACGGCAG
    CGCTTTGCCA TGAAGAAGAT TAACAAGCAG AACCTGATCC TCCGCAATCA GATCCAGCAG
    GCCTTCGTGG AACGCGACAT CCTGACCTTC GCAGAGAACC CCTTTGTGGT CGGCATGTTC
    TGTTCCTTCG AGACCCGCCG CCACCTCTGC ATGGTCATGG AGTATGTGGA AGGTGGTGAC
    TGTGCCACCC TACTGAAGAA CATTGGGGCA CTGCCTGTAG AGATGGCCCG CATGTACTTT
    GCAGAGACAG TGCTGGCACT AGAGTACTTG CACAACTACG GCATTGTGCA TCGTGACCTC
    AAGCCAGACA ACCTCCTCAT CACTTCCATG GGCCACATCA AACTCACGGA TTTTGGCCTC
    TCCAAGATGG GGCTCATGAG CCTGACCACC AACTTATATG AAGGTCACAT AGAGAAGGAC
    GCCCGGGAGT TCCTGGACAA ACAGGTGTGT GGGACCCCAG AGTACATCGC ACCCGAGGTC
    ATCCTGCGCC AGGGCTACGG CAAGCCAGTG GACTGGTGGG CCATGGGGAT CATACTCTAC
    GAGTTCCTGG TTGGCTGTGT GCCTTTCTTT GGGGACACCC CAGAAGAGCT CTTTGGACAA
    GTTATCAGTG ATGACATCCT GTGGCCCGAG GGGGATGAGG CCCTGCCTAC AGATGCCCAG
    CTTCTGATAT CTAGCCTTCT GCAGACCAAC CCCCTGGTCC GGCTTGGGGC AGGTGGTGCC
    TTTGAAGTGA AGCAGCATAG TTTCTTCCGA GACCTGGATT GGACAGGGCT GCTGAGGCAA
    AAGGCCGAGT TCATCCCCCA CCTAGAGTCA GAAGATGACA CCAGCTACTT TGACACCCGG
    TCAGACAGGT ATCACCATGT GAACTCCTAT GATGAGGATG ACACCACCGA GGAAGAACCT
    GTGGAGATCC GCCAGTTCTC CTCTTGCTCT CCCCGCTTCA GCAAGGTGTA CAGCAGTATG
    GAGCAGCTGT CACAACATGA GCCCAAGACC CCCGTATCAA CATCGGGGGC GACCAAGAGG
    GAGCCAAGCG CCAAGGGCTC AGAGGAGAAG GTAGCCGGCA AGCGGGAGGG ACTGGGTGGC
    CTGACTCTGC GAGAGAAGAC CTGGAGAGGG GGCTCCCCAG AGATCAAGCG CTTCTCCGCT
    TCCGAGGCCT GTTTCTTGGA GGGGGAGGCC AGTCCTCCGT TAGGAGCGCG CCGACGTTTC
    TCGGCGCTGC TGGAGCCCAG CCGCTTCAAT GCTCCTCAGG AGGACGAAGA TGAAGTCCGG
    CTCCGCAGGC CTCCCCGGCC CAGCTCCGAT CCTTCAGGCT CACTGGAGAC GCGAGCCCCC
    AAAGAGACGG CTCAAGAAGG CACCCCCACG GCTGGGGACC CCGAGACCAC TGAGCACACA
    TGCCCAGGTG ACCTCTGCAC ACTCTCAAAG GATGGGGATC CATCAGGCCC TAGGGCCACC
    AATGACCTAG TTCTGCGAAG GGTGCGCCAC CAGCAGCTGT CTGGAGATCC TTCGGTGGAG
    AAGCGACCTT CTCGAACTGG GGGCAAAGTT ATCAAGTCAG CCTCAGCGAC TGCCCTATCC
    GTCATGATTC CTGCAGTGGA CCCACATGGA AGCTCACCCC TTGCTAGTCC CATGTCCCCT
    CGATCCCTTT CCTCCAACCC ATCCTCGAGG GACTCTTCAC CCAGCCGGGA CTACTCACCT
    GCTGTCAGTG GCCTCCGTTC CCCAATCACC ATCCAACGCT CAGGCAAAAA ATACGGCTTC
    ACGCTGCGTG CCATCCGCGT CTACATGGGC GATTCGGATG TCTACAGTGT TCACCACATT
    GTTTGGCATG TGGAGGAAGG GGGCCCAGCC CAAGAGGCGG GTCTCTGTGC TGGGGACCTC
    ATCACGCACG TGAACGGCGA GCCGGTGCAT GGCATGGTGC ATCCTGAGGT GGTAGAGCTG
    ATCCTTAAGA GCGGCAACAA GGTGGCTGTG ACCACGACAC CCTTCGAAAA CACCTCCATC
    CGCATTGGGC CCGCCAGGCG CAGCAGCTAC AAAGCTAAAA TGGCTCGGAG GAACAAGAGA
    CCCTCGTCTA AGGATGGCCA GGAGAGCAAG AAACGCAGCT CCCTCTTCCG GAAGATCACA
    AAACAGTCAA ACCTGTTGCA TACTAGCCGC TCGCTCTCCT CGCTGAACCG GTCCCTGTCG
    TCCAGTGATA GTCTCCCCGG ATCACCCACG CACGGACTAC CGGCGCGCTC GCCCACGCAC
    AGTTACCGCT CCACGCCTGA CTCCGCCTAC CTAGGCGCCT CCTCCCAGAG CAGCTCCCCA
    GCCTCCAGCA CTCCCAACTC CCCCGCGTCC TCGGCGTCGC ACCACATCCG ACCCAGCACC
    CTGCATGGGC TGTCACCGAA GCTCCACCGC CAGTACCGCT CTGCGCGCTG CAAGTCAGCC
    GGCAACATCC CGCTGTCGCC ACTGGCGCAC ACTCCATCCC CGACGCAGGC GTCGCCGCCA
    CCGTTGCCGG GCCACACCGT GGGCAGTTCG CACACCACGC AGAGCTTCCC AGCCAAATTG
    CACTCGTCAC CGCCGGTCGT GCGCCCGCGC CCCAAGAGTG CAGAGCCGCC GCGCTCGCCG
    CTGCTCAAGC GAGTGCAGTC GGCAGAGAAG CTGGGGGCCT CACTGGGCGC AGACAAGAAG
    GGCGCACTGC GCAAACACAG CCTCGAGGTG GGCCACCCGG ATTTCCGCAA GGACTTCCAC
    GGCGAGCTGG CTCTGCATAG CCTAGCCGAG TCCGACGGCG AGACGCCTCC CATCGAGGGT
    CCTGGAGCGT CCCGGCAAGT CACAATGCGA CGCCTGGGCC GCCAGGAATC GCCCCTAAGC
    TTGGGTGCGG ACCCGTTGCT CCCTGAGGGC GCGCCCAGGC TAATGGCGTC AAGCAAGGAG
    AAGGAGTCTC CGGGAGGCGT GGAGGCCTGC ACTCCACCTC GCGCAACAAC CCCCGGGAGC
    CGGACCCTGG AGCGGGATTC CGGCTGCACG CGGCACCAGA GCGTGCAAAC TGAAGACGGC
    CAAGGCGGGG TGGCTAGGGC AGTGGCCAAG GCGGCGCTTA GTCCGGTGCA GGAACACGAG
    ACCGGCCGGC GCAGTAGCTC GGGCGAGACA GGCACACCCG TGGTGCCCAT TGTTGTGGAG
    CCCACGCGGC CAAGGGTGAA GGCCCAGGCG CTCCAGCCTC TGGGCACAGA CTCCAAGGGA
    TTGAAGGAAC CTGTACCCCT GGTGCCTCTG GTGCCTGATG CCCCAAGGGG CCGGGAGCGC
    TGGGTGCTGC AGGAGGTAGA GGAGCGGACC ACGCTGAGCG GGCCACGCTC CAAGCCTGTT
    TCCCCCAAAC TCTCCCCGGA TCCCCAGACT CCCACTCTAG CCCCAACAAA AAATGTGTCG
    GGAAATGCAG GCCCTCCAGC TCCACCCACT TCCCTCCGGG AAGTGGGGCT CACCTCCGGA
    TCCCCTGTTG AGGCTGTGAC TCCAGTAGGC CTGACCAAAA AAGGGGCACC CAGCATCGCA
    CCCTCAGGCC CGTAG

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

    CloneID ONa37015
    Clone ID Related Accession (Same CDS sequence) XM_008855470.3 , XM_008855470.2
    Accession Version XM_008855470.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4683bp)
    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 microtubule-associated serine/threonine-protein kinase 1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008357641.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008855470.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    ATGGACGATT CCGGCCTGAT CCGCCGCCGC AGGCTGCAGA AGGATTTACC CCTGCCCCGG 
    AAAAGCAGCA GCTGCCGCAC TAGTAACCGG AAAAGCCTCA TCCTGACAAG CACTTCGCCA
    ACGCTGCCGC GGCCCCACTC CCCATTGCCA GGCCACTTAG GTAGCAGTCC CCTGGACAGC
    CCCCGCAACT TCTCTCCCAA CACCCCAGCC CACTTCTCAT TTGCCTCCTC CCGAAGGGCT
    GATGGACGTC GCTGGTCGCT GGCCTCACTC CCTTCCTCTG GCTATGGCAC CAACACACCC
    AGTTCCACTG TGTCGTCCTC CTGTTCCTCC CAGGAGCGTC TGCATCAACT GCCCTACCAG
    CCCACGGTGG ACGAGCTGCA CTTCCTTTCC AAACACTTCG GCAGCACTGA GAGCATCACG
    GACGAGGATG GCGGCCGCCG CTCCCCGGCG GTGCGGCCCC GCTCGCGGAG CCTCAGCCCC
    GGCCGCTCTC CCTCCTCCTA CGACAATGAA ATCGTGATGA TGAACCATGT GTACAAGGAG
    CGGTTCCCCA AGGCCACCGC ACAGATGGAG GAGAAGCTGC GGGACTTTGC CCGCGCCTAC
    GAACCTGACA GCGTGCTGCC GCTGGCGGAC GGCGTACTCA GCTTCATCCA CCACCAGATC
    ATCGAGCTGG CACGGGACTG CCTGACCAAG TCCCGCGACG GGCTCATCAC CACCGTCTAC
    TTCTATGAAC TACAGGAGAA CCTGGAGAAG CTATTGCAGG ACGCCTATGA ACGCTCCGAG
    AGCTTGGAGG TGGCCTTTGT CACTCAGCTG GTGAAGAAAC TGCTCATTAT CATCTCTCGC
    CCAGCTAGGC TTCTAGAGTG CCTGGAATTC AACCCTGAGG AGTTCTACCA CCTACTGGAG
    GCAGCAGAGG GACATGCCAA GGAGGGCCAC CTCGTCAAGA CTGACATCCC CCGATACATC
    ATCCATCAGC TGGGCCTCAC CCGGGACCCC TTTCCTGATG TGGTACATCT GGAGGAACAG
    GACAGTGGTG GCTCTAACAC ACCAGAGCAG GACGACATCT CTGAGGGTCG CAGTGGCACC
    GCCAAGGCCA AGAAGCCACC TGGAGAGAAT GACTTTGACA CCATTAAGCT CATAAGCAAT
    GGTGCCTACG GGGCGGTCTA TCTGGTGCGG CACCGAGACA CACGGCAGCG CTTTGCCATG
    AAGAAGATTA ACAAGCAGAA CCTGATCCTC CGCAATCAGA TCCAGCAGGC CTTCGTGGAA
    CGCGACATCC TGACCTTCGC AGAGAACCCC TTTGTGGTCG GCATGTTCTG TTCCTTCGAG
    ACCCGCCGCC ACCTCTGCAT GGTCATGGAG TATGTGGAAG GTGGTGACTG TGCCACCCTA
    CTGAAGAACA TTGGGGCACT GCCTGTAGAG ATGGCCCGCA TGTACTTTGC AGAGACAGTG
    CTGGCACTAG AGTACTTGCA CAACTACGGC ATTGTGCATC GTGACCTCAA GCCAGACAAC
    CTCCTCATCA CTTCCATGGG CCACATCAAA CTCACGGATT TTGGCCTCTC CAAGATGGGG
    CTCATGAGCC TGACCACCAA CTTATATGAA GGTCACATAG AGAAGGACGC CCGGGAGTTC
    CTGGACAAAC AGGTGTGTGG GACCCCAGAG TACATCGCAC CCGAGGTCAT CCTGCGCCAG
    GGCTACGGCA AGCCAGTGGA CTGGTGGGCC ATGGGGATCA TACTCTACGA GTTCCTGGTT
    GGCTGTGTGC CTTTCTTTGG GGACACCCCA GAAGAGCTCT TTGGACAAGT TATCAGTGAT
    GACATCCTGT GGCCCGAGGG GGATGAGGCC CTGCCTACAG ATGCCCAGCT TCTGATATCT
    AGCCTTCTGC AGACCAACCC CCTGGTCCGG CTTGGGGCAG GTGGTGCCTT TGAAGTGAAG
    CAGCATAGTT TCTTCCGAGA CCTGGATTGG ACAGGGCTGC TGAGGCAAAA GGCCGAGTTC
    ATCCCCCACC TAGAGTCAGA AGATGACACC AGCTACTTTG ACACCCGGTC AGACAGGTAT
    CACCATGTGA ACTCCTATGA TGAGGATGAC ACCACCGAGG AAGAACCTGT GGAGATCCGC
    CAGTTCTCCT CTTGCTCTCC CCGCTTCAGC AAGGTGTACA GCAGTATGGA GCAGCTGTCA
    CAACATGAGC CCAAGACCCC CGTATCAACA TCGGGGGCGA CCAAGAGGGA GCCAAGCGCC
    AAGGGCTCAG AGGAGAAGGT AGCCGGCAAG CGGGAGGGAC TGGGTGGCCT GACTCTGCGA
    GAGAAGACCT GGAGAGGGGG CTCCCCAGAG ATCAAGCGCT TCTCCGCTTC CGAGGCCTGT
    TTCTTGGAGG GGGAGGCCAG TCCTCCGTTA GGAGCGCGCC GACGTTTCTC GGCGCTGCTG
    GAGCCCAGCC GCTTCAATGC TCCTCAGGAG GACGAAGATG AAGTCCGGCT CCGCAGGCCT
    CCCCGGCCCA GCTCCGATCC TTCAGGCTCA CTGGAGACGC GAGCCCCCAA AGAGACGGCT
    CAAGAAGGCA CCCCCACGGC TGGGGACCCC GAGACCACTG AGCACACATG CCCAGGTGAC
    CTCTGCACAC TCTCAAAGGA TGGGGATCCA TCAGGCCCTA GGGCCACCAA TGACCTAGTT
    CTGCGAAGGG TGCGCCACCA GCAGCTGTCT GGAGATCCTT CGGTGGAGAA GCGACCTTCT
    CGAACTGGGG GCAAAGTTAT CAAGTCAGCC TCAGCGACTG CCCTATCCGT CATGATTCCT
    GCAGTGGACC CACATGGAAG CTCACCCCTT GCTAGTCCCA TGTCCCCTCG ATCCCTTTCC
    TCCAACCCAT CCTCGAGGGA CTCTTCACCC AGCCGGGACT ACTCACCTGC TGTCAGTGGC
    CTCCGTTCCC CAATCACCAT CCAACGCTCA GGCAAAAAAT ACGGCTTCAC GCTGCGTGCC
    ATCCGCGTCT ACATGGGCGA TTCGGATGTC TACAGTGTTC ACCACATTGT TTGGCATGTG
    GAGGAAGGGG GCCCAGCCCA AGAGGCGGGT CTCTGTGCTG GGGACCTCAT CACGCACGTG
    AACGGCGAGC CGGTGCATGG CATGGTGCAT CCTGAGGTGG TAGAGCTGAT CCTTAAGAGC
    GGCAACAAGG TGGCTGTGAC CACGACACCC TTCGAAAACA CCTCCATCCG CATTGGGCCC
    GCCAGGCGCA GCAGCTACAA AGCTAAAATG GCTCGGAGGA ACAAGAGACC CTCGTCTAAG
    GATGGCCAGG AGAGCAAGAA ACGCAGCTCC CTCTTCCGGA AGATCACAAA ACAGTCAAAC
    CTGTTGCATA CTAGCCGCTC GCTCTCCTCG CTGAACCGGT CCCTGTCGTC CAGTGATAGT
    CTCCCCGGAT CACCCACGCA CGGACTACCG GCGCGCTCGC CCACGCACAG TTACCGCTCC
    ACGCCTGACT CCGCCTACCT AGGCGCCTCC TCCCAGAGCA GCTCCCCAGC CTCCAGCACT
    CCCAACTCCC CCGCGTCCTC GGCGTCGCAC CACATCCGAC CCAGCACCCT GCATGGGCTG
    TCACCGAAGC TCCACCGCCA GTACCGCTCT GCGCGCTGCA AGTCAGCCGG CAACATCCCG
    CTGTCGCCAC TGGCGCACAC TCCATCCCCG ACGCAGGCGT CGCCGCCACC GTTGCCGGGC
    CACACCGTGG GCAGTTCGCA CACCACGCAG AGCTTCCCAG CCAAATTGCA CTCGTCACCG
    CCGGTCGTGC GCCCGCGCCC CAAGAGTGCA GAGCCGCCGC GCTCGCCGCT GCTCAAGCGA
    GTGCAGTCGG CAGAGAAGCT GGGGGCCTCA CTGGGCGCAG ACAAGAAGGG CGCACTGCGC
    AAACACAGCC TCGAGGTGGG CCACCCGGAT TTCCGCAAGG ACTTCCACGG CGAGCTGGCT
    CTGCATAGCC TAGCCGAGTC CGACGGCGAG ACGCCTCCCA TCGAGGGTCC TGGAGCGTCC
    CGGCAAGTCA CAATGCGACG CCTGGGCCGC CAGGAATCGC CCCTAAGCTT GGGTGCGGAC
    CCGTTGCTCC CTGAGGGCGC GCCCAGGCTA ATGGCGTCAA GCAAGGAGAA GGAGTCTCCG
    GGAGGCGTGG AGGCCTGCAC TCCACCTCGC GCAACAACCC CCGGGAGCCG GACCCTGGAG
    CGGGATTCCG GCTGCACGCG GCACCAGAGC GTGCAAACTG AAGACGGCCA AGGCGGGGTG
    GCTAGGGCAG TGGCCAAGGC GGCGCTTAGT CCGGTGCAGG AACACGAGAC CGGCCGGCGC
    AGTAGCTCGG GCGAGACAGG CACACCCGTG GTGCCCATTG TTGTGGAGCC CACGCGGCCA
    AGGGTGAAGG CCCAGGCGCT CCAGCCTCTG GGCACAGACT CCAAGGGATT GAAGGAACCT
    GTACCCCTGG TGCCTCTGGT GCCTGATGCC CCAAGGGGCC GGGAGCGCTG GGTGCTGCAG
    GAGGTAGAGG AGCGGACCAC GCTGAGCGGG CCACGCTCCA AGCCTGTTTC CCCCAAACTC
    TCCCCGGATC CCCAGACTCC CACTCTAGCC CCAACAAAAA ATGTGTCGGG AAATGCAGGC
    CCTCCAGCTC CACCCACTTC CCTCCGGGAA GTGGGGCTCA CCTCCGGATC CCCTGTTGAG
    GCTGTGACTC CAGTAGGCCT GACCAAAAAA GGGGCACCCA GCATCGCACC CTCAGGCCCG
    TAG

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

    RefSeq XP_008853692.1
    CDS74..4756
    Translation

    Target ORF information:

    RefSeq Version XM_008855470.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008855470.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    ATGGACGATT CCGGCCTGAT CCGCCGCCGC AGGCTGCAGA AGGATTTACC CCTGCCCCGG 
    AAAAGCAGCA GCTGCCGCAC TAGTAACCGG AAAAGCCTCA TCCTGACAAG CACTTCGCCA
    ACGCTGCCGC GGCCCCACTC CCCATTGCCA GGCCACTTAG GTAGCAGTCC CCTGGACAGC
    CCCCGCAACT TCTCTCCCAA CACCCCAGCC CACTTCTCAT TTGCCTCCTC CCGAAGGGCT
    GATGGACGTC GCTGGTCGCT GGCCTCACTC CCTTCCTCTG GCTATGGCAC CAACACACCC
    AGTTCCACTG TGTCGTCCTC CTGTTCCTCC CAGGAGCGTC TGCATCAACT GCCCTACCAG
    CCCACGGTGG ACGAGCTGCA CTTCCTTTCC AAACACTTCG GCAGCACTGA GAGCATCACG
    GACGAGGATG GCGGCCGCCG CTCCCCGGCG GTGCGGCCCC GCTCGCGGAG CCTCAGCCCC
    GGCCGCTCTC CCTCCTCCTA CGACAATGAA ATCGTGATGA TGAACCATGT GTACAAGGAG
    CGGTTCCCCA AGGCCACCGC ACAGATGGAG GAGAAGCTGC GGGACTTTGC CCGCGCCTAC
    GAACCTGACA GCGTGCTGCC GCTGGCGGAC GGCGTACTCA GCTTCATCCA CCACCAGATC
    ATCGAGCTGG CACGGGACTG CCTGACCAAG TCCCGCGACG GGCTCATCAC CACCGTCTAC
    TTCTATGAAC TACAGGAGAA CCTGGAGAAG CTATTGCAGG ACGCCTATGA ACGCTCCGAG
    AGCTTGGAGG TGGCCTTTGT CACTCAGCTG GTGAAGAAAC TGCTCATTAT CATCTCTCGC
    CCAGCTAGGC TTCTAGAGTG CCTGGAATTC AACCCTGAGG AGTTCTACCA CCTACTGGAG
    GCAGCAGAGG GACATGCCAA GGAGGGCCAC CTCGTCAAGA CTGACATCCC CCGATACATC
    ATCCATCAGC TGGGCCTCAC CCGGGACCCC TTTCCTGATG TGGTACATCT GGAGGAACAG
    GACAGTGGTG GCTCTAACAC ACCAGAGCAG GACGACATCT CTGAGGGTCG CAGTGGCACC
    GCCAAGGCCA AGAAGCCACC TGGAGAGAAT GACTTTGACA CCATTAAGCT CATAAGCAAT
    GGTGCCTACG GGGCGGTCTA TCTGGTGCGG CACCGAGACA CACGGCAGCG CTTTGCCATG
    AAGAAGATTA ACAAGCAGAA CCTGATCCTC CGCAATCAGA TCCAGCAGGC CTTCGTGGAA
    CGCGACATCC TGACCTTCGC AGAGAACCCC TTTGTGGTCG GCATGTTCTG TTCCTTCGAG
    ACCCGCCGCC ACCTCTGCAT GGTCATGGAG TATGTGGAAG GTGGTGACTG TGCCACCCTA
    CTGAAGAACA TTGGGGCACT GCCTGTAGAG ATGGCCCGCA TGTACTTTGC AGAGACAGTG
    CTGGCACTAG AGTACTTGCA CAACTACGGC ATTGTGCATC GTGACCTCAA GCCAGACAAC
    CTCCTCATCA CTTCCATGGG CCACATCAAA CTCACGGATT TTGGCCTCTC CAAGATGGGG
    CTCATGAGCC TGACCACCAA CTTATATGAA GGTCACATAG AGAAGGACGC CCGGGAGTTC
    CTGGACAAAC AGGTGTGTGG GACCCCAGAG TACATCGCAC CCGAGGTCAT CCTGCGCCAG
    GGCTACGGCA AGCCAGTGGA CTGGTGGGCC ATGGGGATCA TACTCTACGA GTTCCTGGTT
    GGCTGTGTGC CTTTCTTTGG GGACACCCCA GAAGAGCTCT TTGGACAAGT TATCAGTGAT
    GACATCCTGT GGCCCGAGGG GGATGAGGCC CTGCCTACAG ATGCCCAGCT TCTGATATCT
    AGCCTTCTGC AGACCAACCC CCTGGTCCGG CTTGGGGCAG GTGGTGCCTT TGAAGTGAAG
    CAGCATAGTT TCTTCCGAGA CCTGGATTGG ACAGGGCTGC TGAGGCAAAA GGCCGAGTTC
    ATCCCCCACC TAGAGTCAGA AGATGACACC AGCTACTTTG ACACCCGGTC AGACAGGTAT
    CACCATGTGA ACTCCTATGA TGAGGATGAC ACCACCGAGG AAGAACCTGT GGAGATCCGC
    CAGTTCTCCT CTTGCTCTCC CCGCTTCAGC AAGGTGTACA GCAGTATGGA GCAGCTGTCA
    CAACATGAGC CCAAGACCCC CGTATCAACA TCGGGGGCGA CCAAGAGGGA GCCAAGCGCC
    AAGGGCTCAG AGGAGAAGGT AGCCGGCAAG CGGGAGGGAC TGGGTGGCCT GACTCTGCGA
    GAGAAGACCT GGAGAGGGGG CTCCCCAGAG ATCAAGCGCT TCTCCGCTTC CGAGGCCTGT
    TTCTTGGAGG GGGAGGCCAG TCCTCCGTTA GGAGCGCGCC GACGTTTCTC GGCGCTGCTG
    GAGCCCAGCC GCTTCAATGC TCCTCAGGAG GACGAAGATG AAGTCCGGCT CCGCAGGCCT
    CCCCGGCCCA GCTCCGATCC TTCAGGCTCA CTGGAGACGC GAGCCCCCAA AGAGACGGCT
    CAAGAAGGCA CCCCCACGGC TGGGGACCCC GAGACCACTG AGCACACATG CCCAGGTGAC
    CTCTGCACAC TCTCAAAGGA TGGGGATCCA TCAGGCCCTA GGGCCACCAA TGACCTAGTT
    CTGCGAAGGG TGCGCCACCA GCAGCTGTCT GGAGATCCTT CGGTGGAGAA GCGACCTTCT
    CGAACTGGGG GCAAAGTTAT CAAGTCAGCC TCAGCGACTG CCCTATCCGT CATGATTCCT
    GCAGTGGACC CACATGGAAG CTCACCCCTT GCTAGTCCCA TGTCCCCTCG ATCCCTTTCC
    TCCAACCCAT CCTCGAGGGA CTCTTCACCC AGCCGGGACT ACTCACCTGC TGTCAGTGGC
    CTCCGTTCCC CAATCACCAT CCAACGCTCA GGCAAAAAAT ACGGCTTCAC GCTGCGTGCC
    ATCCGCGTCT ACATGGGCGA TTCGGATGTC TACAGTGTTC ACCACATTGT TTGGCATGTG
    GAGGAAGGGG GCCCAGCCCA AGAGGCGGGT CTCTGTGCTG GGGACCTCAT CACGCACGTG
    AACGGCGAGC CGGTGCATGG CATGGTGCAT CCTGAGGTGG TAGAGCTGAT CCTTAAGAGC
    GGCAACAAGG TGGCTGTGAC CACGACACCC TTCGAAAACA CCTCCATCCG CATTGGGCCC
    GCCAGGCGCA GCAGCTACAA AGCTAAAATG GCTCGGAGGA ACAAGAGACC CTCGTCTAAG
    GATGGCCAGG AGAGCAAGAA ACGCAGCTCC CTCTTCCGGA AGATCACAAA ACAGTCAAAC
    CTGTTGCATA CTAGCCGCTC GCTCTCCTCG CTGAACCGGT CCCTGTCGTC CAGTGATAGT
    CTCCCCGGAT CACCCACGCA CGGACTACCG GCGCGCTCGC CCACGCACAG TTACCGCTCC
    ACGCCTGACT CCGCCTACCT AGGCGCCTCC TCCCAGAGCA GCTCCCCAGC CTCCAGCACT
    CCCAACTCCC CCGCGTCCTC GGCGTCGCAC CACATCCGAC CCAGCACCCT GCATGGGCTG
    TCACCGAAGC TCCACCGCCA GTACCGCTCT GCGCGCTGCA AGTCAGCCGG CAACATCCCG
    CTGTCGCCAC TGGCGCACAC TCCATCCCCG ACGCAGGCGT CGCCGCCACC GTTGCCGGGC
    CACACCGTGG GCAGTTCGCA CACCACGCAG AGCTTCCCAG CCAAATTGCA CTCGTCACCG
    CCGGTCGTGC GCCCGCGCCC CAAGAGTGCA GAGCCGCCGC GCTCGCCGCT GCTCAAGCGA
    GTGCAGTCGG CAGAGAAGCT GGGGGCCTCA CTGGGCGCAG ACAAGAAGGG CGCACTGCGC
    AAACACAGCC TCGAGGTGGG CCACCCGGAT TTCCGCAAGG ACTTCCACGG CGAGCTGGCT
    CTGCATAGCC TAGCCGAGTC CGACGGCGAG ACGCCTCCCA TCGAGGGTCC TGGAGCGTCC
    CGGCAAGTCA CAATGCGACG CCTGGGCCGC CAGGAATCGC CCCTAAGCTT GGGTGCGGAC
    CCGTTGCTCC CTGAGGGCGC GCCCAGGCTA ATGGCGTCAA GCAAGGAGAA GGAGTCTCCG
    GGAGGCGTGG AGGCCTGCAC TCCACCTCGC GCAACAACCC CCGGGAGCCG GACCCTGGAG
    CGGGATTCCG GCTGCACGCG GCACCAGAGC GTGCAAACTG AAGACGGCCA AGGCGGGGTG
    GCTAGGGCAG TGGCCAAGGC GGCGCTTAGT CCGGTGCAGG AACACGAGAC CGGCCGGCGC
    AGTAGCTCGG GCGAGACAGG CACACCCGTG GTGCCCATTG TTGTGGAGCC CACGCGGCCA
    AGGGTGAAGG CCCAGGCGCT CCAGCCTCTG GGCACAGACT CCAAGGGATT GAAGGAACCT
    GTACCCCTGG TGCCTCTGGT GCCTGATGCC CCAAGGGGCC GGGAGCGCTG GGTGCTGCAG
    GAGGTAGAGG AGCGGACCAC GCTGAGCGGG CCACGCTCCA AGCCTGTTTC CCCCAAACTC
    TCCCCGGATC CCCAGACTCC CACTCTAGCC CCAACAAAAA ATGTGTCGGG AAATGCAGGC
    CCTCCAGCTC CACCCACTTC CCTCCGGGAA GTGGGGCTCA CCTCCGGATC CCCTGTTGAG
    GCTGTGACTC CAGTAGGCCT GACCAAAAAA GGGGCACCCA GCATCGCACC CTCAGGCCCG
    TAG

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

    CloneID ONa37015
    Clone ID Related Accession (Same CDS sequence) XM_008855470.3 , XM_008855470.2
    Accession Version XM_008855470.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4683bp)
    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 microtubule-associated serine/threonine-protein kinase 1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008357641.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008855470.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    ATGGACGATT CCGGCCTGAT CCGCCGCCGC AGGCTGCAGA AGGATTTACC CCTGCCCCGG 
    AAAAGCAGCA GCTGCCGCAC TAGTAACCGG AAAAGCCTCA TCCTGACAAG CACTTCGCCA
    ACGCTGCCGC GGCCCCACTC CCCATTGCCA GGCCACTTAG GTAGCAGTCC CCTGGACAGC
    CCCCGCAACT TCTCTCCCAA CACCCCAGCC CACTTCTCAT TTGCCTCCTC CCGAAGGGCT
    GATGGACGTC GCTGGTCGCT GGCCTCACTC CCTTCCTCTG GCTATGGCAC CAACACACCC
    AGTTCCACTG TGTCGTCCTC CTGTTCCTCC CAGGAGCGTC TGCATCAACT GCCCTACCAG
    CCCACGGTGG ACGAGCTGCA CTTCCTTTCC AAACACTTCG GCAGCACTGA GAGCATCACG
    GACGAGGATG GCGGCCGCCG CTCCCCGGCG GTGCGGCCCC GCTCGCGGAG CCTCAGCCCC
    GGCCGCTCTC CCTCCTCCTA CGACAATGAA ATCGTGATGA TGAACCATGT GTACAAGGAG
    CGGTTCCCCA AGGCCACCGC ACAGATGGAG GAGAAGCTGC GGGACTTTGC CCGCGCCTAC
    GAACCTGACA GCGTGCTGCC GCTGGCGGAC GGCGTACTCA GCTTCATCCA CCACCAGATC
    ATCGAGCTGG CACGGGACTG CCTGACCAAG TCCCGCGACG GGCTCATCAC CACCGTCTAC
    TTCTATGAAC TACAGGAGAA CCTGGAGAAG CTATTGCAGG ACGCCTATGA ACGCTCCGAG
    AGCTTGGAGG TGGCCTTTGT CACTCAGCTG GTGAAGAAAC TGCTCATTAT CATCTCTCGC
    CCAGCTAGGC TTCTAGAGTG CCTGGAATTC AACCCTGAGG AGTTCTACCA CCTACTGGAG
    GCAGCAGAGG GACATGCCAA GGAGGGCCAC CTCGTCAAGA CTGACATCCC CCGATACATC
    ATCCATCAGC TGGGCCTCAC CCGGGACCCC TTTCCTGATG TGGTACATCT GGAGGAACAG
    GACAGTGGTG GCTCTAACAC ACCAGAGCAG GACGACATCT CTGAGGGTCG CAGTGGCACC
    GCCAAGGCCA AGAAGCCACC TGGAGAGAAT GACTTTGACA CCATTAAGCT CATAAGCAAT
    GGTGCCTACG GGGCGGTCTA TCTGGTGCGG CACCGAGACA CACGGCAGCG CTTTGCCATG
    AAGAAGATTA ACAAGCAGAA CCTGATCCTC CGCAATCAGA TCCAGCAGGC CTTCGTGGAA
    CGCGACATCC TGACCTTCGC AGAGAACCCC TTTGTGGTCG GCATGTTCTG TTCCTTCGAG
    ACCCGCCGCC ACCTCTGCAT GGTCATGGAG TATGTGGAAG GTGGTGACTG TGCCACCCTA
    CTGAAGAACA TTGGGGCACT GCCTGTAGAG ATGGCCCGCA TGTACTTTGC AGAGACAGTG
    CTGGCACTAG AGTACTTGCA CAACTACGGC ATTGTGCATC GTGACCTCAA GCCAGACAAC
    CTCCTCATCA CTTCCATGGG CCACATCAAA CTCACGGATT TTGGCCTCTC CAAGATGGGG
    CTCATGAGCC TGACCACCAA CTTATATGAA GGTCACATAG AGAAGGACGC CCGGGAGTTC
    CTGGACAAAC AGGTGTGTGG GACCCCAGAG TACATCGCAC CCGAGGTCAT CCTGCGCCAG
    GGCTACGGCA AGCCAGTGGA CTGGTGGGCC ATGGGGATCA TACTCTACGA GTTCCTGGTT
    GGCTGTGTGC CTTTCTTTGG GGACACCCCA GAAGAGCTCT TTGGACAAGT TATCAGTGAT
    GACATCCTGT GGCCCGAGGG GGATGAGGCC CTGCCTACAG ATGCCCAGCT TCTGATATCT
    AGCCTTCTGC AGACCAACCC CCTGGTCCGG CTTGGGGCAG GTGGTGCCTT TGAAGTGAAG
    CAGCATAGTT TCTTCCGAGA CCTGGATTGG ACAGGGCTGC TGAGGCAAAA GGCCGAGTTC
    ATCCCCCACC TAGAGTCAGA AGATGACACC AGCTACTTTG ACACCCGGTC AGACAGGTAT
    CACCATGTGA ACTCCTATGA TGAGGATGAC ACCACCGAGG AAGAACCTGT GGAGATCCGC
    CAGTTCTCCT CTTGCTCTCC CCGCTTCAGC AAGGTGTACA GCAGTATGGA GCAGCTGTCA
    CAACATGAGC CCAAGACCCC CGTATCAACA TCGGGGGCGA CCAAGAGGGA GCCAAGCGCC
    AAGGGCTCAG AGGAGAAGGT AGCCGGCAAG CGGGAGGGAC TGGGTGGCCT GACTCTGCGA
    GAGAAGACCT GGAGAGGGGG CTCCCCAGAG ATCAAGCGCT TCTCCGCTTC CGAGGCCTGT
    TTCTTGGAGG GGGAGGCCAG TCCTCCGTTA GGAGCGCGCC GACGTTTCTC GGCGCTGCTG
    GAGCCCAGCC GCTTCAATGC TCCTCAGGAG GACGAAGATG AAGTCCGGCT CCGCAGGCCT
    CCCCGGCCCA GCTCCGATCC TTCAGGCTCA CTGGAGACGC GAGCCCCCAA AGAGACGGCT
    CAAGAAGGCA CCCCCACGGC TGGGGACCCC GAGACCACTG AGCACACATG CCCAGGTGAC
    CTCTGCACAC TCTCAAAGGA TGGGGATCCA TCAGGCCCTA GGGCCACCAA TGACCTAGTT
    CTGCGAAGGG TGCGCCACCA GCAGCTGTCT GGAGATCCTT CGGTGGAGAA GCGACCTTCT
    CGAACTGGGG GCAAAGTTAT CAAGTCAGCC TCAGCGACTG CCCTATCCGT CATGATTCCT
    GCAGTGGACC CACATGGAAG CTCACCCCTT GCTAGTCCCA TGTCCCCTCG ATCCCTTTCC
    TCCAACCCAT CCTCGAGGGA CTCTTCACCC AGCCGGGACT ACTCACCTGC TGTCAGTGGC
    CTCCGTTCCC CAATCACCAT CCAACGCTCA GGCAAAAAAT ACGGCTTCAC GCTGCGTGCC
    ATCCGCGTCT ACATGGGCGA TTCGGATGTC TACAGTGTTC ACCACATTGT TTGGCATGTG
    GAGGAAGGGG GCCCAGCCCA AGAGGCGGGT CTCTGTGCTG GGGACCTCAT CACGCACGTG
    AACGGCGAGC CGGTGCATGG CATGGTGCAT CCTGAGGTGG TAGAGCTGAT CCTTAAGAGC
    GGCAACAAGG TGGCTGTGAC CACGACACCC TTCGAAAACA CCTCCATCCG CATTGGGCCC
    GCCAGGCGCA GCAGCTACAA AGCTAAAATG GCTCGGAGGA ACAAGAGACC CTCGTCTAAG
    GATGGCCAGG AGAGCAAGAA ACGCAGCTCC CTCTTCCGGA AGATCACAAA ACAGTCAAAC
    CTGTTGCATA CTAGCCGCTC GCTCTCCTCG CTGAACCGGT CCCTGTCGTC CAGTGATAGT
    CTCCCCGGAT CACCCACGCA CGGACTACCG GCGCGCTCGC CCACGCACAG TTACCGCTCC
    ACGCCTGACT CCGCCTACCT AGGCGCCTCC TCCCAGAGCA GCTCCCCAGC CTCCAGCACT
    CCCAACTCCC CCGCGTCCTC GGCGTCGCAC CACATCCGAC CCAGCACCCT GCATGGGCTG
    TCACCGAAGC TCCACCGCCA GTACCGCTCT GCGCGCTGCA AGTCAGCCGG CAACATCCCG
    CTGTCGCCAC TGGCGCACAC TCCATCCCCG ACGCAGGCGT CGCCGCCACC GTTGCCGGGC
    CACACCGTGG GCAGTTCGCA CACCACGCAG AGCTTCCCAG CCAAATTGCA CTCGTCACCG
    CCGGTCGTGC GCCCGCGCCC CAAGAGTGCA GAGCCGCCGC GCTCGCCGCT GCTCAAGCGA
    GTGCAGTCGG CAGAGAAGCT GGGGGCCTCA CTGGGCGCAG ACAAGAAGGG CGCACTGCGC
    AAACACAGCC TCGAGGTGGG CCACCCGGAT TTCCGCAAGG ACTTCCACGG CGAGCTGGCT
    CTGCATAGCC TAGCCGAGTC CGACGGCGAG ACGCCTCCCA TCGAGGGTCC TGGAGCGTCC
    CGGCAAGTCA CAATGCGACG CCTGGGCCGC CAGGAATCGC CCCTAAGCTT GGGTGCGGAC
    CCGTTGCTCC CTGAGGGCGC GCCCAGGCTA ATGGCGTCAA GCAAGGAGAA GGAGTCTCCG
    GGAGGCGTGG AGGCCTGCAC TCCACCTCGC GCAACAACCC CCGGGAGCCG GACCCTGGAG
    CGGGATTCCG GCTGCACGCG GCACCAGAGC GTGCAAACTG AAGACGGCCA AGGCGGGGTG
    GCTAGGGCAG TGGCCAAGGC GGCGCTTAGT CCGGTGCAGG AACACGAGAC CGGCCGGCGC
    AGTAGCTCGG GCGAGACAGG CACACCCGTG GTGCCCATTG TTGTGGAGCC CACGCGGCCA
    AGGGTGAAGG CCCAGGCGCT CCAGCCTCTG GGCACAGACT CCAAGGGATT GAAGGAACCT
    GTACCCCTGG TGCCTCTGGT GCCTGATGCC CCAAGGGGCC GGGAGCGCTG GGTGCTGCAG
    GAGGTAGAGG AGCGGACCAC GCTGAGCGGG CCACGCTCCA AGCCTGTTTC CCCCAAACTC
    TCCCCGGATC CCCAGACTCC CACTCTAGCC CCAACAAAAA ATGTGTCGGG AAATGCAGGC
    CCTCCAGCTC CACCCACTTC CCTCCGGGAA GTGGGGCTCA CCTCCGGATC CCCTGTTGAG
    GCTGTGACTC CAGTAGGCCT GACCAAAAAA GGGGCACCCA GCATCGCACC CTCAGGCCCG
    TAG

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

    RefSeq XP_008853692.1
    CDS73..4755
    Translation

    Target ORF information:

    RefSeq Version XM_008855470.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008855470.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    ATGGACGATT CCGGCCTGAT CCGCCGCCGC AGGCTGCAGA AGGATTTACC CCTGCCCCGG 
    AAAAGCAGCA GCTGCCGCAC TAGTAACCGG AAAAGCCTCA TCCTGACAAG CACTTCGCCA
    ACGCTGCCGC GGCCCCACTC CCCATTGCCA GGCCACTTAG GTAGCAGTCC CCTGGACAGC
    CCCCGCAACT TCTCTCCCAA CACCCCAGCC CACTTCTCAT TTGCCTCCTC CCGAAGGGCT
    GATGGACGTC GCTGGTCGCT GGCCTCACTC CCTTCCTCTG GCTATGGCAC CAACACACCC
    AGTTCCACTG TGTCGTCCTC CTGTTCCTCC CAGGAGCGTC TGCATCAACT GCCCTACCAG
    CCCACGGTGG ACGAGCTGCA CTTCCTTTCC AAACACTTCG GCAGCACTGA GAGCATCACG
    GACGAGGATG GCGGCCGCCG CTCCCCGGCG GTGCGGCCCC GCTCGCGGAG CCTCAGCCCC
    GGCCGCTCTC CCTCCTCCTA CGACAATGAA ATCGTGATGA TGAACCATGT GTACAAGGAG
    CGGTTCCCCA AGGCCACCGC ACAGATGGAG GAGAAGCTGC GGGACTTTGC CCGCGCCTAC
    GAACCTGACA GCGTGCTGCC GCTGGCGGAC GGCGTACTCA GCTTCATCCA CCACCAGATC
    ATCGAGCTGG CACGGGACTG CCTGACCAAG TCCCGCGACG GGCTCATCAC CACCGTCTAC
    TTCTATGAAC TACAGGAGAA CCTGGAGAAG CTATTGCAGG ACGCCTATGA ACGCTCCGAG
    AGCTTGGAGG TGGCCTTTGT CACTCAGCTG GTGAAGAAAC TGCTCATTAT CATCTCTCGC
    CCAGCTAGGC TTCTAGAGTG CCTGGAATTC AACCCTGAGG AGTTCTACCA CCTACTGGAG
    GCAGCAGAGG GACATGCCAA GGAGGGCCAC CTCGTCAAGA CTGACATCCC CCGATACATC
    ATCCATCAGC TGGGCCTCAC CCGGGACCCC TTTCCTGATG TGGTACATCT GGAGGAACAG
    GACAGTGGTG GCTCTAACAC ACCAGAGCAG GACGACATCT CTGAGGGTCG CAGTGGCACC
    GCCAAGGCCA AGAAGCCACC TGGAGAGAAT GACTTTGACA CCATTAAGCT CATAAGCAAT
    GGTGCCTACG GGGCGGTCTA TCTGGTGCGG CACCGAGACA CACGGCAGCG CTTTGCCATG
    AAGAAGATTA ACAAGCAGAA CCTGATCCTC CGCAATCAGA TCCAGCAGGC CTTCGTGGAA
    CGCGACATCC TGACCTTCGC AGAGAACCCC TTTGTGGTCG GCATGTTCTG TTCCTTCGAG
    ACCCGCCGCC ACCTCTGCAT GGTCATGGAG TATGTGGAAG GTGGTGACTG TGCCACCCTA
    CTGAAGAACA TTGGGGCACT GCCTGTAGAG ATGGCCCGCA TGTACTTTGC AGAGACAGTG
    CTGGCACTAG AGTACTTGCA CAACTACGGC ATTGTGCATC GTGACCTCAA GCCAGACAAC
    CTCCTCATCA CTTCCATGGG CCACATCAAA CTCACGGATT TTGGCCTCTC CAAGATGGGG
    CTCATGAGCC TGACCACCAA CTTATATGAA GGTCACATAG AGAAGGACGC CCGGGAGTTC
    CTGGACAAAC AGGTGTGTGG GACCCCAGAG TACATCGCAC CCGAGGTCAT CCTGCGCCAG
    GGCTACGGCA AGCCAGTGGA CTGGTGGGCC ATGGGGATCA TACTCTACGA GTTCCTGGTT
    GGCTGTGTGC CTTTCTTTGG GGACACCCCA GAAGAGCTCT TTGGACAAGT TATCAGTGAT
    GACATCCTGT GGCCCGAGGG GGATGAGGCC CTGCCTACAG ATGCCCAGCT TCTGATATCT
    AGCCTTCTGC AGACCAACCC CCTGGTCCGG CTTGGGGCAG GTGGTGCCTT TGAAGTGAAG
    CAGCATAGTT TCTTCCGAGA CCTGGATTGG ACAGGGCTGC TGAGGCAAAA GGCCGAGTTC
    ATCCCCCACC TAGAGTCAGA AGATGACACC AGCTACTTTG ACACCCGGTC AGACAGGTAT
    CACCATGTGA ACTCCTATGA TGAGGATGAC ACCACCGAGG AAGAACCTGT GGAGATCCGC
    CAGTTCTCCT CTTGCTCTCC CCGCTTCAGC AAGGTGTACA GCAGTATGGA GCAGCTGTCA
    CAACATGAGC CCAAGACCCC CGTATCAACA TCGGGGGCGA CCAAGAGGGA GCCAAGCGCC
    AAGGGCTCAG AGGAGAAGGT AGCCGGCAAG CGGGAGGGAC TGGGTGGCCT GACTCTGCGA
    GAGAAGACCT GGAGAGGGGG CTCCCCAGAG ATCAAGCGCT TCTCCGCTTC CGAGGCCTGT
    TTCTTGGAGG GGGAGGCCAG TCCTCCGTTA GGAGCGCGCC GACGTTTCTC GGCGCTGCTG
    GAGCCCAGCC GCTTCAATGC TCCTCAGGAG GACGAAGATG AAGTCCGGCT CCGCAGGCCT
    CCCCGGCCCA GCTCCGATCC TTCAGGCTCA CTGGAGACGC GAGCCCCCAA AGAGACGGCT
    CAAGAAGGCA CCCCCACGGC TGGGGACCCC GAGACCACTG AGCACACATG CCCAGGTGAC
    CTCTGCACAC TCTCAAAGGA TGGGGATCCA TCAGGCCCTA GGGCCACCAA TGACCTAGTT
    CTGCGAAGGG TGCGCCACCA GCAGCTGTCT GGAGATCCTT CGGTGGAGAA GCGACCTTCT
    CGAACTGGGG GCAAAGTTAT CAAGTCAGCC TCAGCGACTG CCCTATCCGT CATGATTCCT
    GCAGTGGACC CACATGGAAG CTCACCCCTT GCTAGTCCCA TGTCCCCTCG ATCCCTTTCC
    TCCAACCCAT CCTCGAGGGA CTCTTCACCC AGCCGGGACT ACTCACCTGC TGTCAGTGGC
    CTCCGTTCCC CAATCACCAT CCAACGCTCA GGCAAAAAAT ACGGCTTCAC GCTGCGTGCC
    ATCCGCGTCT ACATGGGCGA TTCGGATGTC TACAGTGTTC ACCACATTGT TTGGCATGTG
    GAGGAAGGGG GCCCAGCCCA AGAGGCGGGT CTCTGTGCTG GGGACCTCAT CACGCACGTG
    AACGGCGAGC CGGTGCATGG CATGGTGCAT CCTGAGGTGG TAGAGCTGAT CCTTAAGAGC
    GGCAACAAGG TGGCTGTGAC CACGACACCC TTCGAAAACA CCTCCATCCG CATTGGGCCC
    GCCAGGCGCA GCAGCTACAA AGCTAAAATG GCTCGGAGGA ACAAGAGACC CTCGTCTAAG
    GATGGCCAGG AGAGCAAGAA ACGCAGCTCC CTCTTCCGGA AGATCACAAA ACAGTCAAAC
    CTGTTGCATA CTAGCCGCTC GCTCTCCTCG CTGAACCGGT CCCTGTCGTC CAGTGATAGT
    CTCCCCGGAT CACCCACGCA CGGACTACCG GCGCGCTCGC CCACGCACAG TTACCGCTCC
    ACGCCTGACT CCGCCTACCT AGGCGCCTCC TCCCAGAGCA GCTCCCCAGC CTCCAGCACT
    CCCAACTCCC CCGCGTCCTC GGCGTCGCAC CACATCCGAC CCAGCACCCT GCATGGGCTG
    TCACCGAAGC TCCACCGCCA GTACCGCTCT GCGCGCTGCA AGTCAGCCGG CAACATCCCG
    CTGTCGCCAC TGGCGCACAC TCCATCCCCG ACGCAGGCGT CGCCGCCACC GTTGCCGGGC
    CACACCGTGG GCAGTTCGCA CACCACGCAG AGCTTCCCAG CCAAATTGCA CTCGTCACCG
    CCGGTCGTGC GCCCGCGCCC CAAGAGTGCA GAGCCGCCGC GCTCGCCGCT GCTCAAGCGA
    GTGCAGTCGG CAGAGAAGCT GGGGGCCTCA CTGGGCGCAG ACAAGAAGGG CGCACTGCGC
    AAACACAGCC TCGAGGTGGG CCACCCGGAT TTCCGCAAGG ACTTCCACGG CGAGCTGGCT
    CTGCATAGCC TAGCCGAGTC CGACGGCGAG ACGCCTCCCA TCGAGGGTCC TGGAGCGTCC
    CGGCAAGTCA CAATGCGACG CCTGGGCCGC CAGGAATCGC CCCTAAGCTT GGGTGCGGAC
    CCGTTGCTCC CTGAGGGCGC GCCCAGGCTA ATGGCGTCAA GCAAGGAGAA GGAGTCTCCG
    GGAGGCGTGG AGGCCTGCAC TCCACCTCGC GCAACAACCC CCGGGAGCCG GACCCTGGAG
    CGGGATTCCG GCTGCACGCG GCACCAGAGC GTGCAAACTG AAGACGGCCA AGGCGGGGTG
    GCTAGGGCAG TGGCCAAGGC GGCGCTTAGT CCGGTGCAGG AACACGAGAC CGGCCGGCGC
    AGTAGCTCGG GCGAGACAGG CACACCCGTG GTGCCCATTG TTGTGGAGCC CACGCGGCCA
    AGGGTGAAGG CCCAGGCGCT CCAGCCTCTG GGCACAGACT CCAAGGGATT GAAGGAACCT
    GTACCCCTGG TGCCTCTGGT GCCTGATGCC CCAAGGGGCC GGGAGCGCTG GGTGCTGCAG
    GAGGTAGAGG AGCGGACCAC GCTGAGCGGG CCACGCTCCA AGCCTGTTTC CCCCAAACTC
    TCCCCGGATC CCCAGACTCC CACTCTAGCC CCAACAAAAA ATGTGTCGGG AAATGCAGGC
    CCTCCAGCTC CACCCACTTC CCTCCGGGAA GTGGGGCTCA CCTCCGGATC CCCTGTTGAG
    GCTGTGACTC CAGTAGGCCT GACCAAAAAA GGGGCACCCA GCATCGCACC CTCAGGCCCG
    TAG

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

    CloneID ONa37016
    Clone ID Related Accession (Same CDS sequence) XM_008855471.3 , XM_008855471.2
    Accession Version XM_008855471.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4680bp)
    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 microtubule-associated serine/threonine-protein kinase 1 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008357641.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008855471.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGGACGATT CCGGCCTGAT CCGCCGCCGC AGGCTGCAGG ATTTACCCCT GCCCCGGAAA 
    AGCAGCAGCT GCCGCACTAG TAACCGGAAA AGCCTCATCC TGACAAGCAC TTCGCCAACG
    CTGCCGCGGC CCCACTCCCC ATTGCCAGGC CACTTAGGTA GCAGTCCCCT GGACAGCCCC
    CGCAACTTCT CTCCCAACAC CCCAGCCCAC TTCTCATTTG CCTCCTCCCG AAGGGCTGAT
    GGACGTCGCT GGTCGCTGGC CTCACTCCCT TCCTCTGGCT ATGGCACCAA CACACCCAGT
    TCCACTGTGT CGTCCTCCTG TTCCTCCCAG GAGCGTCTGC ATCAACTGCC CTACCAGCCC
    ACGGTGGACG AGCTGCACTT CCTTTCCAAA CACTTCGGCA GCACTGAGAG CATCACGGAC
    GAGGATGGCG GCCGCCGCTC CCCGGCGGTG CGGCCCCGCT CGCGGAGCCT CAGCCCCGGC
    CGCTCTCCCT CCTCCTACGA CAATGAAATC GTGATGATGA ACCATGTGTA CAAGGAGCGG
    TTCCCCAAGG CCACCGCACA GATGGAGGAG AAGCTGCGGG ACTTTGCCCG CGCCTACGAA
    CCTGACAGCG TGCTGCCGCT GGCGGACGGC GTACTCAGCT TCATCCACCA CCAGATCATC
    GAGCTGGCAC GGGACTGCCT GACCAAGTCC CGCGACGGGC TCATCACCAC CGTCTACTTC
    TATGAACTAC AGGAGAACCT GGAGAAGCTA TTGCAGGACG CCTATGAACG CTCCGAGAGC
    TTGGAGGTGG CCTTTGTCAC TCAGCTGGTG AAGAAACTGC TCATTATCAT CTCTCGCCCA
    GCTAGGCTTC TAGAGTGCCT GGAATTCAAC CCTGAGGAGT TCTACCACCT ACTGGAGGCA
    GCAGAGGGAC ATGCCAAGGA GGGCCACCTC GTCAAGACTG ACATCCCCCG ATACATCATC
    CATCAGCTGG GCCTCACCCG GGACCCCTTT CCTGATGTGG TACATCTGGA GGAACAGGAC
    AGTGGTGGCT CTAACACACC AGAGCAGGAC GACATCTCTG AGGGTCGCAG TGGCACCGCC
    AAGGCCAAGA AGCCACCTGG AGAGAATGAC TTTGACACCA TTAAGCTCAT AAGCAATGGT
    GCCTACGGGG CGGTCTATCT GGTGCGGCAC CGAGACACAC GGCAGCGCTT TGCCATGAAG
    AAGATTAACA AGCAGAACCT GATCCTCCGC AATCAGATCC AGCAGGCCTT CGTGGAACGC
    GACATCCTGA CCTTCGCAGA GAACCCCTTT GTGGTCGGCA TGTTCTGTTC CTTCGAGACC
    CGCCGCCACC TCTGCATGGT CATGGAGTAT GTGGAAGGTG GTGACTGTGC CACCCTACTG
    AAGAACATTG GGGCACTGCC TGTAGAGATG GCCCGCATGT ACTTTGCAGA GACAGTGCTG
    GCACTAGAGT ACTTGCACAA CTACGGCATT GTGCATCGTG ACCTCAAGCC AGACAACCTC
    CTCATCACTT CCATGGGCCA CATCAAACTC ACGGATTTTG GCCTCTCCAA GATGGGGCTC
    ATGAGCCTGA CCACCAACTT ATATGAAGGT CACATAGAGA AGGACGCCCG GGAGTTCCTG
    GACAAACAGG TGTGTGGGAC CCCAGAGTAC ATCGCACCCG AGGTCATCCT GCGCCAGGGC
    TACGGCAAGC CAGTGGACTG GTGGGCCATG GGGATCATAC TCTACGAGTT CCTGGTTGGC
    TGTGTGCCTT TCTTTGGGGA CACCCCAGAA GAGCTCTTTG GACAAGTTAT CAGTGATGAC
    ATCCTGTGGC CCGAGGGGGA TGAGGCCCTG CCTACAGATG CCCAGCTTCT GATATCTAGC
    CTTCTGCAGA CCAACCCCCT GGTCCGGCTT GGGGCAGGTG GTGCCTTTGA AGTGAAGCAG
    CATAGTTTCT TCCGAGACCT GGATTGGACA GGGCTGCTGA GGCAAAAGGC CGAGTTCATC
    CCCCACCTAG AGTCAGAAGA TGACACCAGC TACTTTGACA CCCGGTCAGA CAGGTATCAC
    CATGTGAACT CCTATGATGA GGATGACACC ACCGAGGAAG AACCTGTGGA GATCCGCCAG
    TTCTCCTCTT GCTCTCCCCG CTTCAGCAAG GTGTACAGCA GTATGGAGCA GCTGTCACAA
    CATGAGCCCA AGACCCCCGT ATCAACATCG GGGGCGACCA AGAGGGAGCC AAGCGCCAAG
    GGCTCAGAGG AGAAGGTAGC CGGCAAGCGG GAGGGACTGG GTGGCCTGAC TCTGCGAGAG
    AAGACCTGGA GAGGGGGCTC CCCAGAGATC AAGCGCTTCT CCGCTTCCGA GGCCTGTTTC
    TTGGAGGGGG AGGCCAGTCC TCCGTTAGGA GCGCGCCGAC GTTTCTCGGC GCTGCTGGAG
    CCCAGCCGCT TCAATGCTCC TCAGGAGGAC GAAGATGAAG TCCGGCTCCG CAGGCCTCCC
    CGGCCCAGCT CCGATCCTTC AGGCTCACTG GAGACGCGAG CCCCCAAAGA GACGGCTCAA
    GAAGGCACCC CCACGGCTGG GGACCCCGAG ACCACTGAGC ACACATGCCC AGGTGACCTC
    TGCACACTCT CAAAGGATGG GGATCCATCA GGCCCTAGGG CCACCAATGA CCTAGTTCTG
    CGAAGGGTGC GCCACCAGCA GCTGTCTGGA GATCCTTCGG TGGAGAAGCG ACCTTCTCGA
    ACTGGGGGCA AAGTTATCAA GTCAGCCTCA GCGACTGCCC TATCCGTCAT GATTCCTGCA
    GTGGACCCAC ATGGAAGCTC ACCCCTTGCT AGTCCCATGT CCCCTCGATC CCTTTCCTCC
    AACCCATCCT CGAGGGACTC TTCACCCAGC CGGGACTACT CACCTGCTGT CAGTGGCCTC
    CGTTCCCCAA TCACCATCCA ACGCTCAGGC AAAAAATACG GCTTCACGCT GCGTGCCATC
    CGCGTCTACA TGGGCGATTC GGATGTCTAC AGTGTTCACC ACATTGTTTG GCATGTGGAG
    GAAGGGGGCC CAGCCCAAGA GGCGGGTCTC TGTGCTGGGG ACCTCATCAC GCACGTGAAC
    GGCGAGCCGG TGCATGGCAT GGTGCATCCT GAGGTGGTAG AGCTGATCCT TAAGAGCGGC
    AACAAGGTGG CTGTGACCAC GACACCCTTC GAAAACACCT CCATCCGCAT TGGGCCCGCC
    AGGCGCAGCA GCTACAAAGC TAAAATGGCT CGGAGGAACA AGAGACCCTC GTCTAAGGAT
    GGCCAGGAGA GCAAGAAACG CAGCTCCCTC TTCCGGAAGA TCACAAAACA GTCAAACCTG
    TTGCATACTA GCCGCTCGCT CTCCTCGCTG AACCGGTCCC TGTCGTCCAG TGATAGTCTC
    CCCGGATCAC CCACGCACGG ACTACCGGCG CGCTCGCCCA CGCACAGTTA CCGCTCCACG
    CCTGACTCCG CCTACCTAGG CGCCTCCTCC CAGAGCAGCT CCCCAGCCTC CAGCACTCCC
    AACTCCCCCG CGTCCTCGGC GTCGCACCAC ATCCGACCCA GCACCCTGCA TGGGCTGTCA
    CCGAAGCTCC ACCGCCAGTA CCGCTCTGCG CGCTGCAAGT CAGCCGGCAA CATCCCGCTG
    TCGCCACTGG CGCACACTCC ATCCCCGACG CAGGCGTCGC CGCCACCGTT GCCGGGCCAC
    ACCGTGGGCA GTTCGCACAC CACGCAGAGC TTCCCAGCCA AATTGCACTC GTCACCGCCG
    GTCGTGCGCC CGCGCCCCAA GAGTGCAGAG CCGCCGCGCT CGCCGCTGCT CAAGCGAGTG
    CAGTCGGCAG AGAAGCTGGG GGCCTCACTG GGCGCAGACA AGAAGGGCGC ACTGCGCAAA
    CACAGCCTCG AGGTGGGCCA CCCGGATTTC CGCAAGGACT TCCACGGCGA GCTGGCTCTG
    CATAGCCTAG CCGAGTCCGA CGGCGAGACG CCTCCCATCG AGGGTCCTGG AGCGTCCCGG
    CAAGTCACAA TGCGACGCCT GGGCCGCCAG GAATCGCCCC TAAGCTTGGG TGCGGACCCG
    TTGCTCCCTG AGGGCGCGCC CAGGCTAATG GCGTCAAGCA AGGAGAAGGA GTCTCCGGGA
    GGCGTGGAGG CCTGCACTCC ACCTCGCGCA ACAACCCCCG GGAGCCGGAC CCTGGAGCGG
    GATTCCGGCT GCACGCGGCA CCAGAGCGTG CAAACTGAAG ACGGCCAAGG CGGGGTGGCT
    AGGGCAGTGG CCAAGGCGGC GCTTAGTCCG GTGCAGGAAC ACGAGACCGG CCGGCGCAGT
    AGCTCGGGCG AGACAGGCAC ACCCGTGGTG CCCATTGTTG TGGAGCCCAC GCGGCCAAGG
    GTGAAGGCCC AGGCGCTCCA GCCTCTGGGC ACAGACTCCA AGGGATTGAA GGAACCTGTA
    CCCCTGGTGC CTCTGGTGCC TGATGCCCCA AGGGGCCGGG AGCGCTGGGT GCTGCAGGAG
    GTAGAGGAGC GGACCACGCT GAGCGGGCCA CGCTCCAAGC CTGTTTCCCC CAAACTCTCC
    CCGGATCCCC AGACTCCCAC TCTAGCCCCA ACAAAAAATG TGTCGGGAAA TGCAGGCCCT
    CCAGCTCCAC CCACTTCCCT CCGGGAAGTG GGGCTCACCT CCGGATCCCC TGTTGAGGCT
    GTGACTCCAG TAGGCCTGAC CAAAAAAGGG GCACCCAGCA TCGCACCCTC AGGCCCGTAG

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

    RefSeq XP_008853693.1
    CDS68..4747
    Translation

    Target ORF information:

    RefSeq Version XM_008855471.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008855471.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGGACGATT CCGGCCTGAT CCGCCGCCGC AGGCTGCAGG ATTTACCCCT GCCCCGGAAA 
    AGCAGCAGCT GCCGCACTAG TAACCGGAAA AGCCTCATCC TGACAAGCAC TTCGCCAACG
    CTGCCGCGGC CCCACTCCCC ATTGCCAGGC CACTTAGGTA GCAGTCCCCT GGACAGCCCC
    CGCAACTTCT CTCCCAACAC CCCAGCCCAC TTCTCATTTG CCTCCTCCCG AAGGGCTGAT
    GGACGTCGCT GGTCGCTGGC CTCACTCCCT TCCTCTGGCT ATGGCACCAA CACACCCAGT
    TCCACTGTGT CGTCCTCCTG TTCCTCCCAG GAGCGTCTGC ATCAACTGCC CTACCAGCCC
    ACGGTGGACG AGCTGCACTT CCTTTCCAAA CACTTCGGCA GCACTGAGAG CATCACGGAC
    GAGGATGGCG GCCGCCGCTC CCCGGCGGTG CGGCCCCGCT CGCGGAGCCT CAGCCCCGGC
    CGCTCTCCCT CCTCCTACGA CAATGAAATC GTGATGATGA ACCATGTGTA CAAGGAGCGG
    TTCCCCAAGG CCACCGCACA GATGGAGGAG AAGCTGCGGG ACTTTGCCCG CGCCTACGAA
    CCTGACAGCG TGCTGCCGCT GGCGGACGGC GTACTCAGCT TCATCCACCA CCAGATCATC
    GAGCTGGCAC GGGACTGCCT GACCAAGTCC CGCGACGGGC TCATCACCAC CGTCTACTTC
    TATGAACTAC AGGAGAACCT GGAGAAGCTA TTGCAGGACG CCTATGAACG CTCCGAGAGC
    TTGGAGGTGG CCTTTGTCAC TCAGCTGGTG AAGAAACTGC TCATTATCAT CTCTCGCCCA
    GCTAGGCTTC TAGAGTGCCT GGAATTCAAC CCTGAGGAGT TCTACCACCT ACTGGAGGCA
    GCAGAGGGAC ATGCCAAGGA GGGCCACCTC GTCAAGACTG ACATCCCCCG ATACATCATC
    CATCAGCTGG GCCTCACCCG GGACCCCTTT CCTGATGTGG TACATCTGGA GGAACAGGAC
    AGTGGTGGCT CTAACACACC AGAGCAGGAC GACATCTCTG AGGGTCGCAG TGGCACCGCC
    AAGGCCAAGA AGCCACCTGG AGAGAATGAC TTTGACACCA TTAAGCTCAT AAGCAATGGT
    GCCTACGGGG CGGTCTATCT GGTGCGGCAC CGAGACACAC GGCAGCGCTT TGCCATGAAG
    AAGATTAACA AGCAGAACCT GATCCTCCGC AATCAGATCC AGCAGGCCTT CGTGGAACGC
    GACATCCTGA CCTTCGCAGA GAACCCCTTT GTGGTCGGCA TGTTCTGTTC CTTCGAGACC
    CGCCGCCACC TCTGCATGGT CATGGAGTAT GTGGAAGGTG GTGACTGTGC CACCCTACTG
    AAGAACATTG GGGCACTGCC TGTAGAGATG GCCCGCATGT ACTTTGCAGA GACAGTGCTG
    GCACTAGAGT ACTTGCACAA CTACGGCATT GTGCATCGTG ACCTCAAGCC AGACAACCTC
    CTCATCACTT CCATGGGCCA CATCAAACTC ACGGATTTTG GCCTCTCCAA GATGGGGCTC
    ATGAGCCTGA CCACCAACTT ATATGAAGGT CACATAGAGA AGGACGCCCG GGAGTTCCTG
    GACAAACAGG TGTGTGGGAC CCCAGAGTAC ATCGCACCCG AGGTCATCCT GCGCCAGGGC
    TACGGCAAGC CAGTGGACTG GTGGGCCATG GGGATCATAC TCTACGAGTT CCTGGTTGGC
    TGTGTGCCTT TCTTTGGGGA CACCCCAGAA GAGCTCTTTG GACAAGTTAT CAGTGATGAC
    ATCCTGTGGC CCGAGGGGGA TGAGGCCCTG CCTACAGATG CCCAGCTTCT GATATCTAGC
    CTTCTGCAGA CCAACCCCCT GGTCCGGCTT GGGGCAGGTG GTGCCTTTGA AGTGAAGCAG
    CATAGTTTCT TCCGAGACCT GGATTGGACA GGGCTGCTGA GGCAAAAGGC CGAGTTCATC
    CCCCACCTAG AGTCAGAAGA TGACACCAGC TACTTTGACA CCCGGTCAGA CAGGTATCAC
    CATGTGAACT CCTATGATGA GGATGACACC ACCGAGGAAG AACCTGTGGA GATCCGCCAG
    TTCTCCTCTT GCTCTCCCCG CTTCAGCAAG GTGTACAGCA GTATGGAGCA GCTGTCACAA
    CATGAGCCCA AGACCCCCGT ATCAACATCG GGGGCGACCA AGAGGGAGCC AAGCGCCAAG
    GGCTCAGAGG AGAAGGTAGC CGGCAAGCGG GAGGGACTGG GTGGCCTGAC TCTGCGAGAG
    AAGACCTGGA GAGGGGGCTC CCCAGAGATC AAGCGCTTCT CCGCTTCCGA GGCCTGTTTC
    TTGGAGGGGG AGGCCAGTCC TCCGTTAGGA GCGCGCCGAC GTTTCTCGGC GCTGCTGGAG
    CCCAGCCGCT TCAATGCTCC TCAGGAGGAC GAAGATGAAG TCCGGCTCCG CAGGCCTCCC
    CGGCCCAGCT CCGATCCTTC AGGCTCACTG GAGACGCGAG CCCCCAAAGA GACGGCTCAA
    GAAGGCACCC CCACGGCTGG GGACCCCGAG ACCACTGAGC ACACATGCCC AGGTGACCTC
    TGCACACTCT CAAAGGATGG GGATCCATCA GGCCCTAGGG CCACCAATGA CCTAGTTCTG
    CGAAGGGTGC GCCACCAGCA GCTGTCTGGA GATCCTTCGG TGGAGAAGCG ACCTTCTCGA
    ACTGGGGGCA AAGTTATCAA GTCAGCCTCA GCGACTGCCC TATCCGTCAT GATTCCTGCA
    GTGGACCCAC ATGGAAGCTC ACCCCTTGCT AGTCCCATGT CCCCTCGATC CCTTTCCTCC
    AACCCATCCT CGAGGGACTC TTCACCCAGC CGGGACTACT CACCTGCTGT CAGTGGCCTC
    CGTTCCCCAA TCACCATCCA ACGCTCAGGC AAAAAATACG GCTTCACGCT GCGTGCCATC
    CGCGTCTACA TGGGCGATTC GGATGTCTAC AGTGTTCACC ACATTGTTTG GCATGTGGAG
    GAAGGGGGCC CAGCCCAAGA GGCGGGTCTC TGTGCTGGGG ACCTCATCAC GCACGTGAAC
    GGCGAGCCGG TGCATGGCAT GGTGCATCCT GAGGTGGTAG AGCTGATCCT TAAGAGCGGC
    AACAAGGTGG CTGTGACCAC GACACCCTTC GAAAACACCT CCATCCGCAT TGGGCCCGCC
    AGGCGCAGCA GCTACAAAGC TAAAATGGCT CGGAGGAACA AGAGACCCTC GTCTAAGGAT
    GGCCAGGAGA GCAAGAAACG CAGCTCCCTC TTCCGGAAGA TCACAAAACA GTCAAACCTG
    TTGCATACTA GCCGCTCGCT CTCCTCGCTG AACCGGTCCC TGTCGTCCAG TGATAGTCTC
    CCCGGATCAC CCACGCACGG ACTACCGGCG CGCTCGCCCA CGCACAGTTA CCGCTCCACG
    CCTGACTCCG CCTACCTAGG CGCCTCCTCC CAGAGCAGCT CCCCAGCCTC CAGCACTCCC
    AACTCCCCCG CGTCCTCGGC GTCGCACCAC ATCCGACCCA GCACCCTGCA TGGGCTGTCA
    CCGAAGCTCC ACCGCCAGTA CCGCTCTGCG CGCTGCAAGT CAGCCGGCAA CATCCCGCTG
    TCGCCACTGG CGCACACTCC ATCCCCGACG CAGGCGTCGC CGCCACCGTT GCCGGGCCAC
    ACCGTGGGCA GTTCGCACAC CACGCAGAGC TTCCCAGCCA AATTGCACTC GTCACCGCCG
    GTCGTGCGCC CGCGCCCCAA GAGTGCAGAG CCGCCGCGCT CGCCGCTGCT CAAGCGAGTG
    CAGTCGGCAG AGAAGCTGGG GGCCTCACTG GGCGCAGACA AGAAGGGCGC ACTGCGCAAA
    CACAGCCTCG AGGTGGGCCA CCCGGATTTC CGCAAGGACT TCCACGGCGA GCTGGCTCTG
    CATAGCCTAG CCGAGTCCGA CGGCGAGACG CCTCCCATCG AGGGTCCTGG AGCGTCCCGG
    CAAGTCACAA TGCGACGCCT GGGCCGCCAG GAATCGCCCC TAAGCTTGGG TGCGGACCCG
    TTGCTCCCTG AGGGCGCGCC CAGGCTAATG GCGTCAAGCA AGGAGAAGGA GTCTCCGGGA
    GGCGTGGAGG CCTGCACTCC ACCTCGCGCA ACAACCCCCG GGAGCCGGAC CCTGGAGCGG
    GATTCCGGCT GCACGCGGCA CCAGAGCGTG CAAACTGAAG ACGGCCAAGG CGGGGTGGCT
    AGGGCAGTGG CCAAGGCGGC GCTTAGTCCG GTGCAGGAAC ACGAGACCGG CCGGCGCAGT
    AGCTCGGGCG AGACAGGCAC ACCCGTGGTG CCCATTGTTG TGGAGCCCAC GCGGCCAAGG
    GTGAAGGCCC AGGCGCTCCA GCCTCTGGGC ACAGACTCCA AGGGATTGAA GGAACCTGTA
    CCCCTGGTGC CTCTGGTGCC TGATGCCCCA AGGGGCCGGG AGCGCTGGGT GCTGCAGGAG
    GTAGAGGAGC GGACCACGCT GAGCGGGCCA CGCTCCAAGC CTGTTTCCCC CAAACTCTCC
    CCGGATCCCC AGACTCCCAC TCTAGCCCCA ACAAAAAATG TGTCGGGAAA TGCAGGCCCT
    CCAGCTCCAC CCACTTCCCT CCGGGAAGTG GGGCTCACCT CCGGATCCCC TGTTGAGGCT
    GTGACTCCAG TAGGCCTGAC CAAAAAAGGG GCACCCAGCA TCGCACCCTC AGGCCCGTAG

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

    CloneID ONa37016
    Clone ID Related Accession (Same CDS sequence) XM_008855471.3 , XM_008855471.2
    Accession Version XM_008855471.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4680bp)
    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 microtubule-associated serine/threonine-protein kinase 1 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008357641.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008855471.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGGACGATT CCGGCCTGAT CCGCCGCCGC AGGCTGCAGG ATTTACCCCT GCCCCGGAAA 
    AGCAGCAGCT GCCGCACTAG TAACCGGAAA AGCCTCATCC TGACAAGCAC TTCGCCAACG
    CTGCCGCGGC CCCACTCCCC ATTGCCAGGC CACTTAGGTA GCAGTCCCCT GGACAGCCCC
    CGCAACTTCT CTCCCAACAC CCCAGCCCAC TTCTCATTTG CCTCCTCCCG AAGGGCTGAT
    GGACGTCGCT GGTCGCTGGC CTCACTCCCT TCCTCTGGCT ATGGCACCAA CACACCCAGT
    TCCACTGTGT CGTCCTCCTG TTCCTCCCAG GAGCGTCTGC ATCAACTGCC CTACCAGCCC
    ACGGTGGACG AGCTGCACTT CCTTTCCAAA CACTTCGGCA GCACTGAGAG CATCACGGAC
    GAGGATGGCG GCCGCCGCTC CCCGGCGGTG CGGCCCCGCT CGCGGAGCCT CAGCCCCGGC
    CGCTCTCCCT CCTCCTACGA CAATGAAATC GTGATGATGA ACCATGTGTA CAAGGAGCGG
    TTCCCCAAGG CCACCGCACA GATGGAGGAG AAGCTGCGGG ACTTTGCCCG CGCCTACGAA
    CCTGACAGCG TGCTGCCGCT GGCGGACGGC GTACTCAGCT TCATCCACCA CCAGATCATC
    GAGCTGGCAC GGGACTGCCT GACCAAGTCC CGCGACGGGC TCATCACCAC CGTCTACTTC
    TATGAACTAC AGGAGAACCT GGAGAAGCTA TTGCAGGACG CCTATGAACG CTCCGAGAGC
    TTGGAGGTGG CCTTTGTCAC TCAGCTGGTG AAGAAACTGC TCATTATCAT CTCTCGCCCA
    GCTAGGCTTC TAGAGTGCCT GGAATTCAAC CCTGAGGAGT TCTACCACCT ACTGGAGGCA
    GCAGAGGGAC ATGCCAAGGA GGGCCACCTC GTCAAGACTG ACATCCCCCG ATACATCATC
    CATCAGCTGG GCCTCACCCG GGACCCCTTT CCTGATGTGG TACATCTGGA GGAACAGGAC
    AGTGGTGGCT CTAACACACC AGAGCAGGAC GACATCTCTG AGGGTCGCAG TGGCACCGCC
    AAGGCCAAGA AGCCACCTGG AGAGAATGAC TTTGACACCA TTAAGCTCAT AAGCAATGGT
    GCCTACGGGG CGGTCTATCT GGTGCGGCAC CGAGACACAC GGCAGCGCTT TGCCATGAAG
    AAGATTAACA AGCAGAACCT GATCCTCCGC AATCAGATCC AGCAGGCCTT CGTGGAACGC
    GACATCCTGA CCTTCGCAGA GAACCCCTTT GTGGTCGGCA TGTTCTGTTC CTTCGAGACC
    CGCCGCCACC TCTGCATGGT CATGGAGTAT GTGGAAGGTG GTGACTGTGC CACCCTACTG
    AAGAACATTG GGGCACTGCC TGTAGAGATG GCCCGCATGT ACTTTGCAGA GACAGTGCTG
    GCACTAGAGT ACTTGCACAA CTACGGCATT GTGCATCGTG ACCTCAAGCC AGACAACCTC
    CTCATCACTT CCATGGGCCA CATCAAACTC ACGGATTTTG GCCTCTCCAA GATGGGGCTC
    ATGAGCCTGA CCACCAACTT ATATGAAGGT CACATAGAGA AGGACGCCCG GGAGTTCCTG
    GACAAACAGG TGTGTGGGAC CCCAGAGTAC ATCGCACCCG AGGTCATCCT GCGCCAGGGC
    TACGGCAAGC CAGTGGACTG GTGGGCCATG GGGATCATAC TCTACGAGTT CCTGGTTGGC
    TGTGTGCCTT TCTTTGGGGA CACCCCAGAA GAGCTCTTTG GACAAGTTAT CAGTGATGAC
    ATCCTGTGGC CCGAGGGGGA TGAGGCCCTG CCTACAGATG CCCAGCTTCT GATATCTAGC
    CTTCTGCAGA CCAACCCCCT GGTCCGGCTT GGGGCAGGTG GTGCCTTTGA AGTGAAGCAG
    CATAGTTTCT TCCGAGACCT GGATTGGACA GGGCTGCTGA GGCAAAAGGC CGAGTTCATC
    CCCCACCTAG AGTCAGAAGA TGACACCAGC TACTTTGACA CCCGGTCAGA CAGGTATCAC
    CATGTGAACT CCTATGATGA GGATGACACC ACCGAGGAAG AACCTGTGGA GATCCGCCAG
    TTCTCCTCTT GCTCTCCCCG CTTCAGCAAG GTGTACAGCA GTATGGAGCA GCTGTCACAA
    CATGAGCCCA AGACCCCCGT ATCAACATCG GGGGCGACCA AGAGGGAGCC AAGCGCCAAG
    GGCTCAGAGG AGAAGGTAGC CGGCAAGCGG GAGGGACTGG GTGGCCTGAC TCTGCGAGAG
    AAGACCTGGA GAGGGGGCTC CCCAGAGATC AAGCGCTTCT CCGCTTCCGA GGCCTGTTTC
    TTGGAGGGGG AGGCCAGTCC TCCGTTAGGA GCGCGCCGAC GTTTCTCGGC GCTGCTGGAG
    CCCAGCCGCT TCAATGCTCC TCAGGAGGAC GAAGATGAAG TCCGGCTCCG CAGGCCTCCC
    CGGCCCAGCT CCGATCCTTC AGGCTCACTG GAGACGCGAG CCCCCAAAGA GACGGCTCAA
    GAAGGCACCC CCACGGCTGG GGACCCCGAG ACCACTGAGC ACACATGCCC AGGTGACCTC
    TGCACACTCT CAAAGGATGG GGATCCATCA GGCCCTAGGG CCACCAATGA CCTAGTTCTG
    CGAAGGGTGC GCCACCAGCA GCTGTCTGGA GATCCTTCGG TGGAGAAGCG ACCTTCTCGA
    ACTGGGGGCA AAGTTATCAA GTCAGCCTCA GCGACTGCCC TATCCGTCAT GATTCCTGCA
    GTGGACCCAC ATGGAAGCTC ACCCCTTGCT AGTCCCATGT CCCCTCGATC CCTTTCCTCC
    AACCCATCCT CGAGGGACTC TTCACCCAGC CGGGACTACT CACCTGCTGT CAGTGGCCTC
    CGTTCCCCAA TCACCATCCA ACGCTCAGGC AAAAAATACG GCTTCACGCT GCGTGCCATC
    CGCGTCTACA TGGGCGATTC GGATGTCTAC AGTGTTCACC ACATTGTTTG GCATGTGGAG
    GAAGGGGGCC CAGCCCAAGA GGCGGGTCTC TGTGCTGGGG ACCTCATCAC GCACGTGAAC
    GGCGAGCCGG TGCATGGCAT GGTGCATCCT GAGGTGGTAG AGCTGATCCT TAAGAGCGGC
    AACAAGGTGG CTGTGACCAC GACACCCTTC GAAAACACCT CCATCCGCAT TGGGCCCGCC
    AGGCGCAGCA GCTACAAAGC TAAAATGGCT CGGAGGAACA AGAGACCCTC GTCTAAGGAT
    GGCCAGGAGA GCAAGAAACG CAGCTCCCTC TTCCGGAAGA TCACAAAACA GTCAAACCTG
    TTGCATACTA GCCGCTCGCT CTCCTCGCTG AACCGGTCCC TGTCGTCCAG TGATAGTCTC
    CCCGGATCAC CCACGCACGG ACTACCGGCG CGCTCGCCCA CGCACAGTTA CCGCTCCACG
    CCTGACTCCG CCTACCTAGG CGCCTCCTCC CAGAGCAGCT CCCCAGCCTC CAGCACTCCC
    AACTCCCCCG CGTCCTCGGC GTCGCACCAC ATCCGACCCA GCACCCTGCA TGGGCTGTCA
    CCGAAGCTCC ACCGCCAGTA CCGCTCTGCG CGCTGCAAGT CAGCCGGCAA CATCCCGCTG
    TCGCCACTGG CGCACACTCC ATCCCCGACG CAGGCGTCGC CGCCACCGTT GCCGGGCCAC
    ACCGTGGGCA GTTCGCACAC CACGCAGAGC TTCCCAGCCA AATTGCACTC GTCACCGCCG
    GTCGTGCGCC CGCGCCCCAA GAGTGCAGAG CCGCCGCGCT CGCCGCTGCT CAAGCGAGTG
    CAGTCGGCAG AGAAGCTGGG GGCCTCACTG GGCGCAGACA AGAAGGGCGC ACTGCGCAAA
    CACAGCCTCG AGGTGGGCCA CCCGGATTTC CGCAAGGACT TCCACGGCGA GCTGGCTCTG
    CATAGCCTAG CCGAGTCCGA CGGCGAGACG CCTCCCATCG AGGGTCCTGG AGCGTCCCGG
    CAAGTCACAA TGCGACGCCT GGGCCGCCAG GAATCGCCCC TAAGCTTGGG TGCGGACCCG
    TTGCTCCCTG AGGGCGCGCC CAGGCTAATG GCGTCAAGCA AGGAGAAGGA GTCTCCGGGA
    GGCGTGGAGG CCTGCACTCC ACCTCGCGCA ACAACCCCCG GGAGCCGGAC CCTGGAGCGG
    GATTCCGGCT GCACGCGGCA CCAGAGCGTG CAAACTGAAG ACGGCCAAGG CGGGGTGGCT
    AGGGCAGTGG CCAAGGCGGC GCTTAGTCCG GTGCAGGAAC ACGAGACCGG CCGGCGCAGT
    AGCTCGGGCG AGACAGGCAC ACCCGTGGTG CCCATTGTTG TGGAGCCCAC GCGGCCAAGG
    GTGAAGGCCC AGGCGCTCCA GCCTCTGGGC ACAGACTCCA AGGGATTGAA GGAACCTGTA
    CCCCTGGTGC CTCTGGTGCC TGATGCCCCA AGGGGCCGGG AGCGCTGGGT GCTGCAGGAG
    GTAGAGGAGC GGACCACGCT GAGCGGGCCA CGCTCCAAGC CTGTTTCCCC CAAACTCTCC
    CCGGATCCCC AGACTCCCAC TCTAGCCCCA ACAAAAAATG TGTCGGGAAA TGCAGGCCCT
    CCAGCTCCAC CCACTTCCCT CCGGGAAGTG GGGCTCACCT CCGGATCCCC TGTTGAGGCT
    GTGACTCCAG TAGGCCTGAC CAAAAAAGGG GCACCCAGCA TCGCACCCTC AGGCCCGTAG

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

    RefSeq XP_008853693.1
    CDS73..4752
    Translation

    Target ORF information:

    RefSeq Version XM_008855471.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili microtubule associated serine/threonine kinase 1 (Mast1), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008855471.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGGACGATT CCGGCCTGAT CCGCCGCCGC AGGCTGCAGG ATTTACCCCT GCCCCGGAAA 
    AGCAGCAGCT GCCGCACTAG TAACCGGAAA AGCCTCATCC TGACAAGCAC TTCGCCAACG
    CTGCCGCGGC CCCACTCCCC ATTGCCAGGC CACTTAGGTA GCAGTCCCCT GGACAGCCCC
    CGCAACTTCT CTCCCAACAC CCCAGCCCAC TTCTCATTTG CCTCCTCCCG AAGGGCTGAT
    GGACGTCGCT GGTCGCTGGC CTCACTCCCT TCCTCTGGCT ATGGCACCAA CACACCCAGT
    TCCACTGTGT CGTCCTCCTG TTCCTCCCAG GAGCGTCTGC ATCAACTGCC CTACCAGCCC
    ACGGTGGACG AGCTGCACTT CCTTTCCAAA CACTTCGGCA GCACTGAGAG CATCACGGAC
    GAGGATGGCG GCCGCCGCTC CCCGGCGGTG CGGCCCCGCT CGCGGAGCCT CAGCCCCGGC
    CGCTCTCCCT CCTCCTACGA CAATGAAATC GTGATGATGA ACCATGTGTA CAAGGAGCGG
    TTCCCCAAGG CCACCGCACA GATGGAGGAG AAGCTGCGGG ACTTTGCCCG CGCCTACGAA
    CCTGACAGCG TGCTGCCGCT GGCGGACGGC GTACTCAGCT TCATCCACCA CCAGATCATC
    GAGCTGGCAC GGGACTGCCT GACCAAGTCC CGCGACGGGC TCATCACCAC CGTCTACTTC
    TATGAACTAC AGGAGAACCT GGAGAAGCTA TTGCAGGACG CCTATGAACG CTCCGAGAGC
    TTGGAGGTGG CCTTTGTCAC TCAGCTGGTG AAGAAACTGC TCATTATCAT CTCTCGCCCA
    GCTAGGCTTC TAGAGTGCCT GGAATTCAAC CCTGAGGAGT TCTACCACCT ACTGGAGGCA
    GCAGAGGGAC ATGCCAAGGA GGGCCACCTC GTCAAGACTG ACATCCCCCG ATACATCATC
    CATCAGCTGG GCCTCACCCG GGACCCCTTT CCTGATGTGG TACATCTGGA GGAACAGGAC
    AGTGGTGGCT CTAACACACC AGAGCAGGAC GACATCTCTG AGGGTCGCAG TGGCACCGCC
    AAGGCCAAGA AGCCACCTGG AGAGAATGAC TTTGACACCA TTAAGCTCAT AAGCAATGGT
    GCCTACGGGG CGGTCTATCT GGTGCGGCAC CGAGACACAC GGCAGCGCTT TGCCATGAAG
    AAGATTAACA AGCAGAACCT GATCCTCCGC AATCAGATCC AGCAGGCCTT CGTGGAACGC
    GACATCCTGA CCTTCGCAGA GAACCCCTTT GTGGTCGGCA TGTTCTGTTC CTTCGAGACC
    CGCCGCCACC TCTGCATGGT CATGGAGTAT GTGGAAGGTG GTGACTGTGC CACCCTACTG
    AAGAACATTG GGGCACTGCC TGTAGAGATG GCCCGCATGT ACTTTGCAGA GACAGTGCTG
    GCACTAGAGT ACTTGCACAA CTACGGCATT GTGCATCGTG ACCTCAAGCC AGACAACCTC
    CTCATCACTT CCATGGGCCA CATCAAACTC ACGGATTTTG GCCTCTCCAA GATGGGGCTC
    ATGAGCCTGA CCACCAACTT ATATGAAGGT CACATAGAGA AGGACGCCCG GGAGTTCCTG
    GACAAACAGG TGTGTGGGAC CCCAGAGTAC ATCGCACCCG AGGTCATCCT GCGCCAGGGC
    TACGGCAAGC CAGTGGACTG GTGGGCCATG GGGATCATAC TCTACGAGTT CCTGGTTGGC
    TGTGTGCCTT TCTTTGGGGA CACCCCAGAA GAGCTCTTTG GACAAGTTAT CAGTGATGAC
    ATCCTGTGGC CCGAGGGGGA TGAGGCCCTG CCTACAGATG CCCAGCTTCT GATATCTAGC
    CTTCTGCAGA CCAACCCCCT GGTCCGGCTT GGGGCAGGTG GTGCCTTTGA AGTGAAGCAG
    CATAGTTTCT TCCGAGACCT GGATTGGACA GGGCTGCTGA GGCAAAAGGC CGAGTTCATC
    CCCCACCTAG AGTCAGAAGA TGACACCAGC TACTTTGACA CCCGGTCAGA CAGGTATCAC
    CATGTGAACT CCTATGATGA GGATGACACC ACCGAGGAAG AACCTGTGGA GATCCGCCAG
    TTCTCCTCTT GCTCTCCCCG CTTCAGCAAG GTGTACAGCA GTATGGAGCA GCTGTCACAA
    CATGAGCCCA AGACCCCCGT ATCAACATCG GGGGCGACCA AGAGGGAGCC AAGCGCCAAG
    GGCTCAGAGG AGAAGGTAGC CGGCAAGCGG GAGGGACTGG GTGGCCTGAC TCTGCGAGAG
    AAGACCTGGA GAGGGGGCTC CCCAGAGATC AAGCGCTTCT CCGCTTCCGA GGCCTGTTTC
    TTGGAGGGGG AGGCCAGTCC TCCGTTAGGA GCGCGCCGAC GTTTCTCGGC GCTGCTGGAG
    CCCAGCCGCT TCAATGCTCC TCAGGAGGAC GAAGATGAAG TCCGGCTCCG CAGGCCTCCC
    CGGCCCAGCT CCGATCCTTC AGGCTCACTG GAGACGCGAG CCCCCAAAGA GACGGCTCAA
    GAAGGCACCC CCACGGCTGG GGACCCCGAG ACCACTGAGC ACACATGCCC AGGTGACCTC
    TGCACACTCT CAAAGGATGG GGATCCATCA GGCCCTAGGG CCACCAATGA CCTAGTTCTG
    CGAAGGGTGC GCCACCAGCA GCTGTCTGGA GATCCTTCGG TGGAGAAGCG ACCTTCTCGA
    ACTGGGGGCA AAGTTATCAA GTCAGCCTCA GCGACTGCCC TATCCGTCAT GATTCCTGCA
    GTGGACCCAC ATGGAAGCTC ACCCCTTGCT AGTCCCATGT CCCCTCGATC CCTTTCCTCC
    AACCCATCCT CGAGGGACTC TTCACCCAGC CGGGACTACT CACCTGCTGT CAGTGGCCTC
    CGTTCCCCAA TCACCATCCA ACGCTCAGGC AAAAAATACG GCTTCACGCT GCGTGCCATC
    CGCGTCTACA TGGGCGATTC GGATGTCTAC AGTGTTCACC ACATTGTTTG GCATGTGGAG
    GAAGGGGGCC CAGCCCAAGA GGCGGGTCTC TGTGCTGGGG ACCTCATCAC GCACGTGAAC
    GGCGAGCCGG TGCATGGCAT GGTGCATCCT GAGGTGGTAG AGCTGATCCT TAAGAGCGGC
    AACAAGGTGG CTGTGACCAC GACACCCTTC GAAAACACCT CCATCCGCAT TGGGCCCGCC
    AGGCGCAGCA GCTACAAAGC TAAAATGGCT CGGAGGAACA AGAGACCCTC GTCTAAGGAT
    GGCCAGGAGA GCAAGAAACG CAGCTCCCTC TTCCGGAAGA TCACAAAACA GTCAAACCTG
    TTGCATACTA GCCGCTCGCT CTCCTCGCTG AACCGGTCCC TGTCGTCCAG TGATAGTCTC
    CCCGGATCAC CCACGCACGG ACTACCGGCG CGCTCGCCCA CGCACAGTTA CCGCTCCACG
    CCTGACTCCG CCTACCTAGG CGCCTCCTCC CAGAGCAGCT CCCCAGCCTC CAGCACTCCC
    AACTCCCCCG CGTCCTCGGC GTCGCACCAC ATCCGACCCA GCACCCTGCA TGGGCTGTCA
    CCGAAGCTCC ACCGCCAGTA CCGCTCTGCG CGCTGCAAGT CAGCCGGCAA CATCCCGCTG
    TCGCCACTGG CGCACACTCC ATCCCCGACG CAGGCGTCGC CGCCACCGTT GCCGGGCCAC
    ACCGTGGGCA GTTCGCACAC CACGCAGAGC TTCCCAGCCA AATTGCACTC GTCACCGCCG
    GTCGTGCGCC CGCGCCCCAA GAGTGCAGAG CCGCCGCGCT CGCCGCTGCT CAAGCGAGTG
    CAGTCGGCAG AGAAGCTGGG GGCCTCACTG GGCGCAGACA AGAAGGGCGC ACTGCGCAAA
    CACAGCCTCG AGGTGGGCCA CCCGGATTTC CGCAAGGACT TCCACGGCGA GCTGGCTCTG
    CATAGCCTAG CCGAGTCCGA CGGCGAGACG CCTCCCATCG AGGGTCCTGG AGCGTCCCGG
    CAAGTCACAA TGCGACGCCT GGGCCGCCAG GAATCGCCCC TAAGCTTGGG TGCGGACCCG
    TTGCTCCCTG AGGGCGCGCC CAGGCTAATG GCGTCAAGCA AGGAGAAGGA GTCTCCGGGA
    GGCGTGGAGG CCTGCACTCC ACCTCGCGCA ACAACCCCCG GGAGCCGGAC CCTGGAGCGG
    GATTCCGGCT GCACGCGGCA CCAGAGCGTG CAAACTGAAG ACGGCCAAGG CGGGGTGGCT
    AGGGCAGTGG CCAAGGCGGC GCTTAGTCCG GTGCAGGAAC ACGAGACCGG CCGGCGCAGT
    AGCTCGGGCG AGACAGGCAC ACCCGTGGTG CCCATTGTTG TGGAGCCCAC GCGGCCAAGG
    GTGAAGGCCC AGGCGCTCCA GCCTCTGGGC ACAGACTCCA AGGGATTGAA GGAACCTGTA
    CCCCTGGTGC CTCTGGTGCC TGATGCCCCA AGGGGCCGGG AGCGCTGGGT GCTGCAGGAG
    GTAGAGGAGC GGACCACGCT GAGCGGGCCA CGCTCCAAGC CTGTTTCCCC CAAACTCTCC
    CCGGATCCCC AGACTCCCAC TCTAGCCCCA ACAAAAAATG TGTCGGGAAA TGCAGGCCCT
    CCAGCTCCAC CCACTTCCCT CCGGGAAGTG GGGCTCACCT CCGGATCCCC TGTTGAGGCT
    GTGACTCCAG TAGGCCTGAC CAAAAAAGGG GCACCCAGCA TCGCACCCTC AGGCCCGTAG

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