Adamts12 cDNA ORF clone, Cavia porcellus(domestic guinea pig)

The following Adamts12 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Adamts12 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
ODo12926 XM_003470179.3
Latest version!
Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 12 (Adamts12), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
$1159.00
ODo32249 XM_013152885.1
Latest version!
Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 12 (Adamts12), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
$1159.00
View Old Accession Versions >>
ODo12926 XM_003470179.2 Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 12 (Adamts12), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
$1159.00
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 ODo12926
    Clone ID Related Accession (Same CDS sequence) XM_003470179.2 , XM_003470179.3
    Accession Version XM_003470179.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4812bp)
    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 1436716800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 12 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176390.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Jul 14, 2015 this sequence version replaced XM_003470179.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Cavia porcellus Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    4741
    4801
    ATGCCATGTG CGCAGAGGAG CTGGCTTGCA GACCTCTCGG TGCTGGCTCA GCTCCTCAAC 
    TTCGGGGCAC TTTGCTATGG CAGAGAGCCC CAGCCGGGCC CGGTTCGCTT CCCCGACCGG
    AGGCAAGAGC ATTTTATGCA GGCCCTTCCG GAATATCACG TAGTGGCTCC TGTCCGAGTA
    GATTCTAGTG GGCACTTCCT GTCCTATGGC TTGAACCATC CTGTCACCAG CAGCAGGAGG
    AAAAGAGGTT TGGATGGCCC AGAGGACCGA GTGTACTATA GAATTTCACA TGAAGATAAG
    GACCTGTTTT TTAACCTGAC AGTCAACCGA GGATTTCTTT CCAGTAGCTA CATTGTGGAG
    AAGAGATACG GGAACCTTTC CAATGTTAAG ATTGTGGCTC CCTCAAGCCC CCCTTGTCAT
    CTCAAGGGCA TAGTTCAGCA GCAGAGCATT GCAGTTGGGA CTGCAGTGCT CAGTGCCTGC
    CATGGACTGA CTGGATTTTT CCATCTACCA CATGGAGACT TTTTCATTGA GCCTGTTAAA
    AAGCATCCAC TGGATAAGGG AGGATCCCAC CCACACATCA TTTACAAGAA CCAGAAGCAG
    AGAGTTACAG AGACGAAGGA GCCAACCTGC GGATTAAAGG ACAGTCTTGA CACCTCCAAG
    CAGCAGGAGC TTCGGCGAGA GAAGTGGGAG AGGAACAACA ATGTGCCACG CAGAAGCCTT
    TCTCGACGTT CCATCAGCAA GGAGAGATGG GTGGAGACAC TGGTGGTGGC TGACACAAAG
    ATGATTGAGT ATCATGGGAG TGAGAACGTG GAGTCTTACA TCCTCACCAT CATGAACATG
    GTTACTGGGT TGTTTCATAA CCCAAGCATT GGAAATGCAA TTCACATTGT TGTGGTTCGG
    CTCATTCTCC TTGAAGAAGA AGAGCAAGGG TTAAAAATAG TTCACCATGC AGAGAAGACC
    CTGTCCAGTT TCTGCAAATG GCAGAAAAGC ATTAATCCTA AGAGTGACCT CAACCCTGTC
    CATCATGATG TGGCTGTCCT TCTTACCAGA AAAGACATCT GTGCTGGTGT CAATCGTCCT
    TGTGAGACTC TAGGTTTGTC ACACCTGTCA GGAATGTGCC AGCCTCACCG AAGTTGTAAC
    ATCAATGAGG ACTCTGGGCT CCCCCTAGCT TTCACGATTG CACATGAGCT GGGACACAGC
    TTTGGCATCC AGCATGATGG CAAAGAAAAT GACTGTGAGC CCATGGGCAG ACATCCGTAC
    ATCATGTCCC ATCAGCTCCA GTATGATCCC ACTCCGCTGA CCTGGTCCAA GTGCAGCAAA
    GAGTACATCA CCCGCTTCTT GGACCGAGGC TGGGGGTCCT GTCTTGATGA TGTCCCCAAA
    AAGAAAGGTT TGAAGTCCAA GGTCATTGCC CCTGGAGTGA TTTATGATGT TCATCACCAG
    TGCCAACTCC AGTATGGCCC CAATGCTACT TTCTGCCAGG AAGTAGAAAA TGTTTGCCAG
    ACGCTGTGGT GCTCAGTGAA AGGTTTCTGT CGCTCTAAGC TGGATGCTGC TGCAGACGGG
    ACCCAATGTG GTGAGAAGAA GTGGTGCATG GCAGGCAAGT GCATCACAGT GGGGAAGAAA
    CCAGAGAGCA TCCCTGGAGG CTGGGGCCTG TGGTCACCCT GGTCCCACTG TACCAGGACC
    TGTGGGGCTG GAGCCCAGAG TGCAGAGAGG CACTGCAACA ACCCTGAACC AAAGTTTGGA
    GGGAAATACT GTACTGGAGA AAGAAAACGT TATCGCTTGT GCAACGTCCA TCCCTGTCGT
    CCAGATGTAC CAACATTTAG ACAGATGCAG TGCAGTGAAT TTGATACCAT CCCCTACAAG
    AATGAATTCT ATCACTGGTT TCCTGTTTTT AATCAAGCAC ACCCTTGTGG GCTCTACTGC
    CGACCCATAG ATGGCCAGTT TTCTGAAAAA ATGCTGGATG CTGTCATTGA TGGCACCCCT
    TGCTTTGAAG GTGGCAACAA CAGAAATGTC TGTATTAATG GCATGTGTAA GATGGTTGGC
    TGTGACTATG AGATTGATTC CAATGCCACA GAAGACCGCT GTGGTGTGTG CCAGGGAGAC
    GGCTCTGCCT GCCAGACCAT AAGGAAGATG TTTACACAGA AAGAAGGATC TGGTTATGTG
    GACATTGGAC TCATTCCCAA AGGAGCAAGG GACATAAGGG TAATGGAAAT CAAGGGCGCT
    GGAAATTTCT TGGCCATCAG GAGTGAGGAT CCAGAAAAAT ACTATCTCAA TGGAGGATTT
    ATTATCCAGT GGAATGGGAA CTATAAGCTG GCTGGGACCA TCTTTCAGTA TGACAGGAAA
    GGAGACCTGG AAACCTTGAT GGCCCCAGGC CCCACCAATG AGTCAGTGTG GCTCCAGCTT
    CTATTCCAGG TGACTAACCC AGGTGTCAAG TACGAGTACA TAATCCAAAA AGAGGGTCTT
    GACAATGATG TGGAACAGCT GCTGTATTTC TGGCAGTTTG GCCAGTGGAC AGAGTGCAGT
    GTAACGTGTG GAACAGGTAT CCGTCGGCAG ACTGCTCATT GTGTGAAGAA GGGCCAAGGG
    ATGGTGAAAG CGACATTCTG TAACCCGGAA ACACAACCTA ATGGGAGACA GAAGAAGTGC
    TATGAAAAGG ATTGCCCACC CAGGTGGTGG GCAGGAGAGT GGGAAGCATG TTCAAAAACA
    TGTGGGCCCT ACGGAGAGAA GAGGCGAACC GTGCTGTGCA TCCAGACCAT GGCCTCTGAT
    GAGCAAGCTC TTCCGGCTAC AGACTGTCAG CACCTGCTGA AGCCCAAGGC CCTCAGTTCC
    TGTAACAGAG ATATCCTGTG CCCATCAGAC TGGACAGTGG GCAACTGGAG TGAGTGCTCT
    GTTTCCTGTG GTGGTGGAGT GCGGATTCGC AGTGTCACAT GCACCAAGAA CCATGGTGAA
    CCTTGTGATA AGACAAAGAA ACCAAATAGC AGAGCTCTGT GTGGCCTTCA GCAATGCCCA
    TCAAGTCGGA GAGTTCTGAG ACCCAACAAA GCCACAGTTC CCAGTGGGAA AAATCTACCA
    ACATCCGGGC AAGACCTTCT AAGCCCCACC CCTTCACCTT CATCCCAGCC CACCCTGCTG
    GCCACACCCA CAGTGCCTGA GACTATGGAC ACAAGCACTC CAGCCACCAG CAGCCCCAGT
    CTCACCACGG CCTCCACAAA GGGAGACTTG GATGGAGAAT GGTGGCAGAA TAGTTCAAGC
    CAAACTGAAC TGGACTCTGA TGATCTCATT TCTACTGGAA GCACTTCTCA GCCCTTTCTC
    ACTTCCTGGT CTTTGGGCAT CCAGCCCAAT GACAAAAATG GTGCTAATTC AGATACTATT
    CCTACCTCAG ATAGAGACAT TGTAGCTACA ACAAGAAGTG GTCTTGATGT GTCATCTTCC
    AGCAATCCTG CTACTTGGCA GATAACTCCA TACTATAATA CATTGACAAA AGATCCAGAA
    ATGGAGATGC ATAGTGGCTC AGGGGAAGGC AGTGAACAGT CTGAGAACAA AGATGAAAGC
    AACTCTGTAA TATGGACCAA GAATAGAGTA CCTGGAAATG ATCCTCCAAT GGAAAGAAGT
    ACAGAAATTC CACTTGGACC TCCACCAACA CCTCATGATG GGGATGGGTC TTTGTGGTAT
    CACTTCAGCA CAGTGATGGA AGGATCACTA TCTACTCAAA GGCCCAGTAC CCTTACAGAT
    GGGACACCCA GAACTGAGGA AATGGTCACT GAAGAGCCAG GTAACACTTC AATCCATGTG
    GAAGAAGAGC ACCAGCCAGC AACCTCAGAA AAGCCAGCAA ATCATAACCA CCTAGAACTT
    CCAAATATGA ATCAAACACA AGGTTCTGGA CCAGTCCTGA CTGAGGAAGA TGCAACCAGT
    CTGATTGCTG AAGGATTTTT ACTGAATGCC TCCAATTACA AGCAGCTTGC TAAGGATCAC
    AGCCCTGCAT ACTGGGTCGT TGGAAACTGG AGTGAGTGTT CCACCACGTG TGGGCTGGGC
    GCCTACTGGA GAAGTGTGAA GTGCAGCACG CAGGTGGATG CCGATTGCAT GGCCTTCCAG
    AGGCCTGACC CTGCTAAGAG ATGCCACCTC CGCCCCTGTG CTGGCTGGAA AGTGGGAAAC
    TGGAGCAAGT GCTCCAGAAA CTGCAGTGGG GGCTATAAAG TCCGTGAGAT TCAGTGCGTG
    GACAGCTGGG ACCATCACCG AAGCCTGAGG CCATTTCACT GCCAGTTCCT AGCTGGCCTT
    CCTCCCCCGC TGAGCATGAG CTGTAACCCA GAGCCCTGTG AAGAGTGGCA CGTGGAGCCC
    TGGAGCCAGT GTTCCAGATC CTGTGGAGGT GGAGTTCAAG AGAGAGGGGT GTCTTGTCCA
    GGAGGCCTGT GTGACTGGAC AAAAAGGCCC CCATCTACTA TGCCTTGCAA CAGGCATGTT
    TGCTGTCACT GGGCCACCGG AAACTGGGAC TTGTGCACCA GGTCCTGTGG AGGTGGACTT
    CAGAAAAGGA CCGTTCACTG TGTCCCCTCA GAGAACGATA CAGCTGAAGA CCAAGATCAC
    TGCCTGTGTG ATCATGAACC AAGACCTCCA GAATTCCAGC ACTGCAACCA GCAAGCCTGC
    AAGAAGAGTG CTGATTTACT TTGCACCAAG GACAGGCTGT CAGCCAGTTT CTGCCAGACC
    CTAAAGACCA TGAAGAAATG TTCCATACCC ACTGTGAAGG CACAGTGCTG TTTTTCATGT
    CCTCAGATGC ATGTCACTCA TACCCAAAGG CAAAGAAGGC AACACTTGCT CAAAAACCCC
    AAAGCACTGT AA

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

    RefSeq XP_003470227.1
    CDS193..5004
    Translation

    Target ORF information:

    RefSeq Version XM_003470179.2
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 12 (Adamts12), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003470179.2

    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
    4741
    4801
    ATGCCATGTG CGCAGAGGAG CTGGCTTGCA GACCTCTCGG TGCTGGCTCA GCTCCTCAAC 
    TTCGGGGCAC TTTGCTATGG CAGAGAGCCC CAGCCGGGCC CGGTTCGCTT CCCCGACCGG
    AGGCAAGAGC ATTTTATGCA GGCCCTTCCG GAATATCACG TAGTGGCTCC TGTCCGAGTA
    GATTCTAGTG GGCACTTCCT GTCCTATGGC TTGAACCATC CTGTCACCAG CAGCAGGAGG
    AAAAGAGGTT TGGATGGCCC AGAGGACCGA GTGTACTATA GAATTTCACA TGAAGATAAG
    GACCTGTTTT TTAACCTGAC AGTCAACCGA GGATTTCTTT CCAGTAGCTA CATTGTGGAG
    AAGAGATACG GGAACCTTTC CAATGTTAAG ATTGTGGCTC CCTCAAGCCC CCCTTGTCAT
    CTCAAGGGCA TAGTTCAGCA GCAGAGCATT GCAGTTGGGA CTGCAGTGCT CAGTGCCTGC
    CATGGACTGA CTGGATTTTT CCATCTACCA CATGGAGACT TTTTCATTGA GCCTGTTAAA
    AAGCATCCAC TGGATAAGGG AGGATCCCAC CCACACATCA TTTACAAGAA CCAGAAGCAG
    AGAGTTACAG AGACGAAGGA GCCAACCTGC GGATTAAAGG ACAGTCTTGA CACCTCCAAG
    CAGCAGGAGC TTCGGCGAGA GAAGTGGGAG AGGAACAACA ATGTGCCACG CAGAAGCCTT
    TCTCGACGTT CCATCAGCAA GGAGAGATGG GTGGAGACAC TGGTGGTGGC TGACACAAAG
    ATGATTGAGT ATCATGGGAG TGAGAACGTG GAGTCTTACA TCCTCACCAT CATGAACATG
    GTTACTGGGT TGTTTCATAA CCCAAGCATT GGAAATGCAA TTCACATTGT TGTGGTTCGG
    CTCATTCTCC TTGAAGAAGA AGAGCAAGGG TTAAAAATAG TTCACCATGC AGAGAAGACC
    CTGTCCAGTT TCTGCAAATG GCAGAAAAGC ATTAATCCTA AGAGTGACCT CAACCCTGTC
    CATCATGATG TGGCTGTCCT TCTTACCAGA AAAGACATCT GTGCTGGTGT CAATCGTCCT
    TGTGAGACTC TAGGTTTGTC ACACCTGTCA GGAATGTGCC AGCCTCACCG AAGTTGTAAC
    ATCAATGAGG ACTCTGGGCT CCCCCTAGCT TTCACGATTG CACATGAGCT GGGACACAGC
    TTTGGCATCC AGCATGATGG CAAAGAAAAT GACTGTGAGC CCATGGGCAG ACATCCGTAC
    ATCATGTCCC ATCAGCTCCA GTATGATCCC ACTCCGCTGA CCTGGTCCAA GTGCAGCAAA
    GAGTACATCA CCCGCTTCTT GGACCGAGGC TGGGGGTCCT GTCTTGATGA TGTCCCCAAA
    AAGAAAGGTT TGAAGTCCAA GGTCATTGCC CCTGGAGTGA TTTATGATGT TCATCACCAG
    TGCCAACTCC AGTATGGCCC CAATGCTACT TTCTGCCAGG AAGTAGAAAA TGTTTGCCAG
    ACGCTGTGGT GCTCAGTGAA AGGTTTCTGT CGCTCTAAGC TGGATGCTGC TGCAGACGGG
    ACCCAATGTG GTGAGAAGAA GTGGTGCATG GCAGGCAAGT GCATCACAGT GGGGAAGAAA
    CCAGAGAGCA TCCCTGGAGG CTGGGGCCTG TGGTCACCCT GGTCCCACTG TACCAGGACC
    TGTGGGGCTG GAGCCCAGAG TGCAGAGAGG CACTGCAACA ACCCTGAACC AAAGTTTGGA
    GGGAAATACT GTACTGGAGA AAGAAAACGT TATCGCTTGT GCAACGTCCA TCCCTGTCGT
    CCAGATGTAC CAACATTTAG ACAGATGCAG TGCAGTGAAT TTGATACCAT CCCCTACAAG
    AATGAATTCT ATCACTGGTT TCCTGTTTTT AATCAAGCAC ACCCTTGTGG GCTCTACTGC
    CGACCCATAG ATGGCCAGTT TTCTGAAAAA ATGCTGGATG CTGTCATTGA TGGCACCCCT
    TGCTTTGAAG GTGGCAACAA CAGAAATGTC TGTATTAATG GCATGTGTAA GATGGTTGGC
    TGTGACTATG AGATTGATTC CAATGCCACA GAAGACCGCT GTGGTGTGTG CCAGGGAGAC
    GGCTCTGCCT GCCAGACCAT AAGGAAGATG TTTACACAGA AAGAAGGATC TGGTTATGTG
    GACATTGGAC TCATTCCCAA AGGAGCAAGG GACATAAGGG TAATGGAAAT CAAGGGCGCT
    GGAAATTTCT TGGCCATCAG GAGTGAGGAT CCAGAAAAAT ACTATCTCAA TGGAGGATTT
    ATTATCCAGT GGAATGGGAA CTATAAGCTG GCTGGGACCA TCTTTCAGTA TGACAGGAAA
    GGAGACCTGG AAACCTTGAT GGCCCCAGGC CCCACCAATG AGTCAGTGTG GCTCCAGCTT
    CTATTCCAGG TGACTAACCC AGGTGTCAAG TACGAGTACA TAATCCAAAA AGAGGGTCTT
    GACAATGATG TGGAACAGCT GCTGTATTTC TGGCAGTTTG GCCAGTGGAC AGAGTGCAGT
    GTAACGTGTG GAACAGGTAT CCGTCGGCAG ACTGCTCATT GTGTGAAGAA GGGCCAAGGG
    ATGGTGAAAG CGACATTCTG TAACCCGGAA ACACAACCTA ATGGGAGACA GAAGAAGTGC
    TATGAAAAGG ATTGCCCACC CAGGTGGTGG GCAGGAGAGT GGGAAGCATG TTCAAAAACA
    TGTGGGCCCT ACGGAGAGAA GAGGCGAACC GTGCTGTGCA TCCAGACCAT GGCCTCTGAT
    GAGCAAGCTC TTCCGGCTAC AGACTGTCAG CACCTGCTGA AGCCCAAGGC CCTCAGTTCC
    TGTAACAGAG ATATCCTGTG CCCATCAGAC TGGACAGTGG GCAACTGGAG TGAGTGCTCT
    GTTTCCTGTG GTGGTGGAGT GCGGATTCGC AGTGTCACAT GCACCAAGAA CCATGGTGAA
    CCTTGTGATA AGACAAAGAA ACCAAATAGC AGAGCTCTGT GTGGCCTTCA GCAATGCCCA
    TCAAGTCGGA GAGTTCTGAG ACCCAACAAA GCCACAGTTC CCAGTGGGAA AAATCTACCA
    ACATCCGGGC AAGACCTTCT AAGCCCCACC CCTTCACCTT CATCCCAGCC CACCCTGCTG
    GCCACACCCA CAGTGCCTGA GACTATGGAC ACAAGCACTC CAGCCACCAG CAGCCCCAGT
    CTCACCACGG CCTCCACAAA GGGAGACTTG GATGGAGAAT GGTGGCAGAA TAGTTCAAGC
    CAAACTGAAC TGGACTCTGA TGATCTCATT TCTACTGGAA GCACTTCTCA GCCCTTTCTC
    ACTTCCTGGT CTTTGGGCAT CCAGCCCAAT GACAAAAATG GTGCTAATTC AGATACTATT
    CCTACCTCAG ATAGAGACAT TGTAGCTACA ACAAGAAGTG GTCTTGATGT GTCATCTTCC
    AGCAATCCTG CTACTTGGCA GATAACTCCA TACTATAATA CATTGACAAA AGATCCAGAA
    ATGGAGATGC ATAGTGGCTC AGGGGAAGGC AGTGAACAGT CTGAGAACAA AGATGAAAGC
    AACTCTGTAA TATGGACCAA GAATAGAGTA CCTGGAAATG ATCCTCCAAT GGAAAGAAGT
    ACAGAAATTC CACTTGGACC TCCACCAACA CCTCATGATG GGGATGGGTC TTTGTGGTAT
    CACTTCAGCA CAGTGATGGA AGGATCACTA TCTACTCAAA GGCCCAGTAC CCTTACAGAT
    GGGACACCCA GAACTGAGGA AATGGTCACT GAAGAGCCAG GTAACACTTC AATCCATGTG
    GAAGAAGAGC ACCAGCCAGC AACCTCAGAA AAGCCAGCAA ATCATAACCA CCTAGAACTT
    CCAAATATGA ATCAAACACA AGGTTCTGGA CCAGTCCTGA CTGAGGAAGA TGCAACCAGT
    CTGATTGCTG AAGGATTTTT ACTGAATGCC TCCAATTACA AGCAGCTTGC TAAGGATCAC
    AGCCCTGCAT ACTGGGTCGT TGGAAACTGG AGTGAGTGTT CCACCACGTG TGGGCTGGGC
    GCCTACTGGA GAAGTGTGAA GTGCAGCACG CAGGTGGATG CCGATTGCAT GGCCTTCCAG
    AGGCCTGACC CTGCTAAGAG ATGCCACCTC CGCCCCTGTG CTGGCTGGAA AGTGGGAAAC
    TGGAGCAAGT GCTCCAGAAA CTGCAGTGGG GGCTATAAAG TCCGTGAGAT TCAGTGCGTG
    GACAGCTGGG ACCATCACCG AAGCCTGAGG CCATTTCACT GCCAGTTCCT AGCTGGCCTT
    CCTCCCCCGC TGAGCATGAG CTGTAACCCA GAGCCCTGTG AAGAGTGGCA CGTGGAGCCC
    TGGAGCCAGT GTTCCAGATC CTGTGGAGGT GGAGTTCAAG AGAGAGGGGT GTCTTGTCCA
    GGAGGCCTGT GTGACTGGAC AAAAAGGCCC CCATCTACTA TGCCTTGCAA CAGGCATGTT
    TGCTGTCACT GGGCCACCGG AAACTGGGAC TTGTGCACCA GGTCCTGTGG AGGTGGACTT
    CAGAAAAGGA CCGTTCACTG TGTCCCCTCA GAGAACGATA CAGCTGAAGA CCAAGATCAC
    TGCCTGTGTG ATCATGAACC AAGACCTCCA GAATTCCAGC ACTGCAACCA GCAAGCCTGC
    AAGAAGAGTG CTGATTTACT TTGCACCAAG GACAGGCTGT CAGCCAGTTT CTGCCAGACC
    CTAAAGACCA TGAAGAAATG TTCCATACCC ACTGTGAAGG CACAGTGCTG TTTTTCATGT
    CCTCAGATGC ATGTCACTCA TACCCAAAGG CAAAGAAGGC AACACTTGCT CAAAAACCCC
    AAAGCACTGT AA

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

    CloneID ODo12926
    Clone ID Related Accession (Same CDS sequence) XM_003470179.2 , XM_003470179.3
    Accession Version XM_003470179.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4812bp)
    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 1516204800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 12
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176390.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Jan 19, 2018 this sequence version replaced XM_003470179.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Cavia porcellus Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    4741
    4801
    ATGCCATGTG CGCAGAGGAG CTGGCTTGCA GACCTCTCGG TGCTGGCTCA GCTCCTCAAC 
    TTCGGGGCAC TTTGCTATGG CAGAGAGCCC CAGCCGGGCC CGGTTCGCTT CCCCGACCGG
    AGGCAAGAGC ATTTTATGCA GGCCCTTCCG GAATATCACG TAGTGGCTCC TGTCCGAGTA
    GATTCTAGTG GGCACTTCCT GTCCTATGGC TTGAACCATC CTGTCACCAG CAGCAGGAGG
    AAAAGAGGTT TGGATGGCCC AGAGGACCGA GTGTACTATA GAATTTCACA TGAAGATAAG
    GACCTGTTTT TTAACCTGAC AGTCAACCGA GGATTTCTTT CCAGTAGCTA CATTGTGGAG
    AAGAGATACG GGAACCTTTC CAATGTTAAG ATTGTGGCTC CCTCAAGCCC CCCTTGTCAT
    CTCAAGGGCA TAGTTCAGCA GCAGAGCATT GCAGTTGGGA CTGCAGTGCT CAGTGCCTGC
    CATGGACTGA CTGGATTTTT CCATCTACCA CATGGAGACT TTTTCATTGA GCCTGTTAAA
    AAGCATCCAC TGGATAAGGG AGGATCCCAC CCACACATCA TTTACAAGAA CCAGAAGCAG
    AGAGTTACAG AGACGAAGGA GCCAACCTGC GGATTAAAGG ACAGTCTTGA CACCTCCAAG
    CAGCAGGAGC TTCGGCGAGA GAAGTGGGAG AGGAACAACA ATGTGCCACG CAGAAGCCTT
    TCTCGACGTT CCATCAGCAA GGAGAGATGG GTGGAGACAC TGGTGGTGGC TGACACAAAG
    ATGATTGAGT ATCATGGGAG TGAGAACGTG GAGTCTTACA TCCTCACCAT CATGAACATG
    GTTACTGGGT TGTTTCATAA CCCAAGCATT GGAAATGCAA TTCACATTGT TGTGGTTCGG
    CTCATTCTCC TTGAAGAAGA AGAGCAAGGG TTAAAAATAG TTCACCATGC AGAGAAGACC
    CTGTCCAGTT TCTGCAAATG GCAGAAAAGC ATTAATCCTA AGAGTGACCT CAACCCTGTC
    CATCATGATG TGGCTGTCCT TCTTACCAGA AAAGACATCT GTGCTGGTGT CAATCGTCCT
    TGTGAGACTC TAGGTTTGTC ACACCTGTCA GGAATGTGCC AGCCTCACCG AAGTTGTAAC
    ATCAATGAGG ACTCTGGGCT CCCCCTAGCT TTCACGATTG CACATGAGCT GGGACACAGC
    TTTGGCATCC AGCATGATGG CAAAGAAAAT GACTGTGAGC CCATGGGCAG ACATCCGTAC
    ATCATGTCCC ATCAGCTCCA GTATGATCCC ACTCCGCTGA CCTGGTCCAA GTGCAGCAAA
    GAGTACATCA CCCGCTTCTT GGACCGAGGC TGGGGGTCCT GTCTTGATGA TGTCCCCAAA
    AAGAAAGGTT TGAAGTCCAA GGTCATTGCC CCTGGAGTGA TTTATGATGT TCATCACCAG
    TGCCAACTCC AGTATGGCCC CAATGCTACT TTCTGCCAGG AAGTAGAAAA TGTTTGCCAG
    ACGCTGTGGT GCTCAGTGAA AGGTTTCTGT CGCTCTAAGC TGGATGCTGC TGCAGACGGG
    ACCCAATGTG GTGAGAAGAA GTGGTGCATG GCAGGCAAGT GCATCACAGT GGGGAAGAAA
    CCAGAGAGCA TCCCTGGAGG CTGGGGCCTG TGGTCACCCT GGTCCCACTG TACCAGGACC
    TGTGGGGCTG GAGCCCAGAG TGCAGAGAGG CACTGCAACA ACCCTGAACC AAAGTTTGGA
    GGGAAATACT GTACTGGAGA AAGAAAACGT TATCGCTTGT GCAACGTCCA TCCCTGTCGT
    CCAGATGTAC CAACATTTAG ACAGATGCAG TGCAGTGAAT TTGATACCAT CCCCTACAAG
    AATGAATTCT ATCACTGGTT TCCTGTTTTT AATCAAGCAC ACCCTTGTGG GCTCTACTGC
    CGACCCATAG ATGGCCAGTT TTCTGAAAAA ATGCTGGATG CTGTCATTGA TGGCACCCCT
    TGCTTTGAAG GTGGCAACAA CAGAAATGTC TGTATTAATG GCATGTGTAA GATGGTTGGC
    TGTGACTATG AGATTGATTC CAATGCCACA GAAGACCGCT GTGGTGTGTG CCAGGGAGAC
    GGCTCTGCCT GCCAGACCAT AAGGAAGATG TTTACACAGA AAGAAGGATC TGGTTATGTG
    GACATTGGAC TCATTCCCAA AGGAGCAAGG GACATAAGGG TAATGGAAAT CAAGGGCGCT
    GGAAATTTCT TGGCCATCAG GAGTGAGGAT CCAGAAAAAT ACTATCTCAA TGGAGGATTT
    ATTATCCAGT GGAATGGGAA CTATAAGCTG GCTGGGACCA TCTTTCAGTA TGACAGGAAA
    GGAGACCTGG AAACCTTGAT GGCCCCAGGC CCCACCAATG AGTCAGTGTG GCTCCAGCTT
    CTATTCCAGG TGACTAACCC AGGTGTCAAG TACGAGTACA TAATCCAAAA AGAGGGTCTT
    GACAATGATG TGGAACAGCT GCTGTATTTC TGGCAGTTTG GCCAGTGGAC AGAGTGCAGT
    GTAACGTGTG GAACAGGTAT CCGTCGGCAG ACTGCTCATT GTGTGAAGAA GGGCCAAGGG
    ATGGTGAAAG CGACATTCTG TAACCCGGAA ACACAACCTA ATGGGAGACA GAAGAAGTGC
    TATGAAAAGG ATTGCCCACC CAGGTGGTGG GCAGGAGAGT GGGAAGCATG TTCAAAAACA
    TGTGGGCCCT ACGGAGAGAA GAGGCGAACC GTGCTGTGCA TCCAGACCAT GGCCTCTGAT
    GAGCAAGCTC TTCCGGCTAC AGACTGTCAG CACCTGCTGA AGCCCAAGGC CCTCAGTTCC
    TGTAACAGAG ATATCCTGTG CCCATCAGAC TGGACAGTGG GCAACTGGAG TGAGTGCTCT
    GTTTCCTGTG GTGGTGGAGT GCGGATTCGC AGTGTCACAT GCACCAAGAA CCATGGTGAA
    CCTTGTGATA AGACAAAGAA ACCAAATAGC AGAGCTCTGT GTGGCCTTCA GCAATGCCCA
    TCAAGTCGGA GAGTTCTGAG ACCCAACAAA GCCACAGTTC CCAGTGGGAA AAATCTACCA
    ACATCCGGGC AAGACCTTCT AAGCCCCACC CCTTCACCTT CATCCCAGCC CACCCTGCTG
    GCCACACCCA CAGTGCCTGA GACTATGGAC ACAAGCACTC CAGCCACCAG CAGCCCCAGT
    CTCACCACGG CCTCCACAAA GGGAGACTTG GATGGAGAAT GGTGGCAGAA TAGTTCAAGC
    CAAACTGAAC TGGACTCTGA TGATCTCATT TCTACTGGAA GCACTTCTCA GCCCTTTCTC
    ACTTCCTGGT CTTTGGGCAT CCAGCCCAAT GACAAAAATG GTGCTAATTC AGATACTATT
    CCTACCTCAG ATAGAGACAT TGTAGCTACA ACAAGAAGTG GTCTTGATGT GTCATCTTCC
    AGCAATCCTG CTACTTGGCA GATAACTCCA TACTATAATA CATTGACAAA AGATCCAGAA
    ATGGAGATGC ATAGTGGCTC AGGGGAAGGC AGTGAACAGT CTGAGAACAA AGATGAAAGC
    AACTCTGTAA TATGGACCAA GAATAGAGTA CCTGGAAATG ATCCTCCAAT GGAAAGAAGT
    ACAGAAATTC CACTTGGACC TCCACCAACA CCTCATGATG GGGATGGGTC TTTGTGGTAT
    CACTTCAGCA CAGTGATGGA AGGATCACTA TCTACTCAAA GGCCCAGTAC CCTTACAGAT
    GGGACACCCA GAACTGAGGA AATGGTCACT GAAGAGCCAG GTAACACTTC AATCCATGTG
    GAAGAAGAGC ACCAGCCAGC AACCTCAGAA AAGCCAGCAA ATCATAACCA CCTAGAACTT
    CCAAATATGA ATCAAACACA AGGTTCTGGA CCAGTCCTGA CTGAGGAAGA TGCAACCAGT
    CTGATTGCTG AAGGATTTTT ACTGAATGCC TCCAATTACA AGCAGCTTGC TAAGGATCAC
    AGCCCTGCAT ACTGGGTCGT TGGAAACTGG AGTGAGTGTT CCACCACGTG TGGGCTGGGC
    GCCTACTGGA GAAGTGTGAA GTGCAGCACG CAGGTGGATG CCGATTGCAT GGCCTTCCAG
    AGGCCTGACC CTGCTAAGAG ATGCCACCTC CGCCCCTGTG CTGGCTGGAA AGTGGGAAAC
    TGGAGCAAGT GCTCCAGAAA CTGCAGTGGG GGCTATAAAG TCCGTGAGAT TCAGTGCGTG
    GACAGCTGGG ACCATCACCG AAGCCTGAGG CCATTTCACT GCCAGTTCCT AGCTGGCCTT
    CCTCCCCCGC TGAGCATGAG CTGTAACCCA GAGCCCTGTG AAGAGTGGCA CGTGGAGCCC
    TGGAGCCAGT GTTCCAGATC CTGTGGAGGT GGAGTTCAAG AGAGAGGGGT GTCTTGTCCA
    GGAGGCCTGT GTGACTGGAC AAAAAGGCCC CCATCTACTA TGCCTTGCAA CAGGCATGTT
    TGCTGTCACT GGGCCACCGG AAACTGGGAC TTGTGCACCA GGTCCTGTGG AGGTGGACTT
    CAGAAAAGGA CCGTTCACTG TGTCCCCTCA GAGAACGATA CAGCTGAAGA CCAAGATCAC
    TGCCTGTGTG ATCATGAACC AAGACCTCCA GAATTCCAGC ACTGCAACCA GCAAGCCTGC
    AAGAAGAGTG CTGATTTACT TTGCACCAAG GACAGGCTGT CAGCCAGTTT CTGCCAGACC
    CTAAAGACCA TGAAGAAATG TTCCATACCC ACTGTGAAGG CACAGTGCTG TTTTTCATGT
    CCTCAGATGC ATGTCACTCA TACCCAAAGG CAAAGAAGGC AACACTTGCT CAAAAACCCC
    AAAGCACTGT AA

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

    RefSeq XP_003470227.1
    CDS188..4999
    Translation

    Target ORF information:

    RefSeq Version XM_003470179.3
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 12 (Adamts12), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003470179.3

    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
    4741
    4801
    ATGCCATGTG CGCAGAGGAG CTGGCTTGCA GACCTCTCGG TGCTGGCTCA GCTCCTCAAC 
    TTCGGGGCAC TTTGCTATGG CAGAGAGCCC CAGCCGGGCC CGGTTCGCTT CCCCGACCGG
    AGGCAAGAGC ATTTTATGCA GGCCCTTCCG GAATATCACG TAGTGGCTCC TGTCCGAGTA
    GATTCTAGTG GGCACTTCCT GTCCTATGGC TTGAACCATC CTGTCACCAG CAGCAGGAGG
    AAAAGAGGTT TGGATGGCCC AGAGGACCGA GTGTACTATA GAATTTCACA TGAAGATAAG
    GACCTGTTTT TTAACCTGAC AGTCAACCGA GGATTTCTTT CCAGTAGCTA CATTGTGGAG
    AAGAGATACG GGAACCTTTC CAATGTTAAG ATTGTGGCTC CCTCAAGCCC CCCTTGTCAT
    CTCAAGGGCA TAGTTCAGCA GCAGAGCATT GCAGTTGGGA CTGCAGTGCT CAGTGCCTGC
    CATGGACTGA CTGGATTTTT CCATCTACCA CATGGAGACT TTTTCATTGA GCCTGTTAAA
    AAGCATCCAC TGGATAAGGG AGGATCCCAC CCACACATCA TTTACAAGAA CCAGAAGCAG
    AGAGTTACAG AGACGAAGGA GCCAACCTGC GGATTAAAGG ACAGTCTTGA CACCTCCAAG
    CAGCAGGAGC TTCGGCGAGA GAAGTGGGAG AGGAACAACA ATGTGCCACG CAGAAGCCTT
    TCTCGACGTT CCATCAGCAA GGAGAGATGG GTGGAGACAC TGGTGGTGGC TGACACAAAG
    ATGATTGAGT ATCATGGGAG TGAGAACGTG GAGTCTTACA TCCTCACCAT CATGAACATG
    GTTACTGGGT TGTTTCATAA CCCAAGCATT GGAAATGCAA TTCACATTGT TGTGGTTCGG
    CTCATTCTCC TTGAAGAAGA AGAGCAAGGG TTAAAAATAG TTCACCATGC AGAGAAGACC
    CTGTCCAGTT TCTGCAAATG GCAGAAAAGC ATTAATCCTA AGAGTGACCT CAACCCTGTC
    CATCATGATG TGGCTGTCCT TCTTACCAGA AAAGACATCT GTGCTGGTGT CAATCGTCCT
    TGTGAGACTC TAGGTTTGTC ACACCTGTCA GGAATGTGCC AGCCTCACCG AAGTTGTAAC
    ATCAATGAGG ACTCTGGGCT CCCCCTAGCT TTCACGATTG CACATGAGCT GGGACACAGC
    TTTGGCATCC AGCATGATGG CAAAGAAAAT GACTGTGAGC CCATGGGCAG ACATCCGTAC
    ATCATGTCCC ATCAGCTCCA GTATGATCCC ACTCCGCTGA CCTGGTCCAA GTGCAGCAAA
    GAGTACATCA CCCGCTTCTT GGACCGAGGC TGGGGGTCCT GTCTTGATGA TGTCCCCAAA
    AAGAAAGGTT TGAAGTCCAA GGTCATTGCC CCTGGAGTGA TTTATGATGT TCATCACCAG
    TGCCAACTCC AGTATGGCCC CAATGCTACT TTCTGCCAGG AAGTAGAAAA TGTTTGCCAG
    ACGCTGTGGT GCTCAGTGAA AGGTTTCTGT CGCTCTAAGC TGGATGCTGC TGCAGACGGG
    ACCCAATGTG GTGAGAAGAA GTGGTGCATG GCAGGCAAGT GCATCACAGT GGGGAAGAAA
    CCAGAGAGCA TCCCTGGAGG CTGGGGCCTG TGGTCACCCT GGTCCCACTG TACCAGGACC
    TGTGGGGCTG GAGCCCAGAG TGCAGAGAGG CACTGCAACA ACCCTGAACC AAAGTTTGGA
    GGGAAATACT GTACTGGAGA AAGAAAACGT TATCGCTTGT GCAACGTCCA TCCCTGTCGT
    CCAGATGTAC CAACATTTAG ACAGATGCAG TGCAGTGAAT TTGATACCAT CCCCTACAAG
    AATGAATTCT ATCACTGGTT TCCTGTTTTT AATCAAGCAC ACCCTTGTGG GCTCTACTGC
    CGACCCATAG ATGGCCAGTT TTCTGAAAAA ATGCTGGATG CTGTCATTGA TGGCACCCCT
    TGCTTTGAAG GTGGCAACAA CAGAAATGTC TGTATTAATG GCATGTGTAA GATGGTTGGC
    TGTGACTATG AGATTGATTC CAATGCCACA GAAGACCGCT GTGGTGTGTG CCAGGGAGAC
    GGCTCTGCCT GCCAGACCAT AAGGAAGATG TTTACACAGA AAGAAGGATC TGGTTATGTG
    GACATTGGAC TCATTCCCAA AGGAGCAAGG GACATAAGGG TAATGGAAAT CAAGGGCGCT
    GGAAATTTCT TGGCCATCAG GAGTGAGGAT CCAGAAAAAT ACTATCTCAA TGGAGGATTT
    ATTATCCAGT GGAATGGGAA CTATAAGCTG GCTGGGACCA TCTTTCAGTA TGACAGGAAA
    GGAGACCTGG AAACCTTGAT GGCCCCAGGC CCCACCAATG AGTCAGTGTG GCTCCAGCTT
    CTATTCCAGG TGACTAACCC AGGTGTCAAG TACGAGTACA TAATCCAAAA AGAGGGTCTT
    GACAATGATG TGGAACAGCT GCTGTATTTC TGGCAGTTTG GCCAGTGGAC AGAGTGCAGT
    GTAACGTGTG GAACAGGTAT CCGTCGGCAG ACTGCTCATT GTGTGAAGAA GGGCCAAGGG
    ATGGTGAAAG CGACATTCTG TAACCCGGAA ACACAACCTA ATGGGAGACA GAAGAAGTGC
    TATGAAAAGG ATTGCCCACC CAGGTGGTGG GCAGGAGAGT GGGAAGCATG TTCAAAAACA
    TGTGGGCCCT ACGGAGAGAA GAGGCGAACC GTGCTGTGCA TCCAGACCAT GGCCTCTGAT
    GAGCAAGCTC TTCCGGCTAC AGACTGTCAG CACCTGCTGA AGCCCAAGGC CCTCAGTTCC
    TGTAACAGAG ATATCCTGTG CCCATCAGAC TGGACAGTGG GCAACTGGAG TGAGTGCTCT
    GTTTCCTGTG GTGGTGGAGT GCGGATTCGC AGTGTCACAT GCACCAAGAA CCATGGTGAA
    CCTTGTGATA AGACAAAGAA ACCAAATAGC AGAGCTCTGT GTGGCCTTCA GCAATGCCCA
    TCAAGTCGGA GAGTTCTGAG ACCCAACAAA GCCACAGTTC CCAGTGGGAA AAATCTACCA
    ACATCCGGGC AAGACCTTCT AAGCCCCACC CCTTCACCTT CATCCCAGCC CACCCTGCTG
    GCCACACCCA CAGTGCCTGA GACTATGGAC ACAAGCACTC CAGCCACCAG CAGCCCCAGT
    CTCACCACGG CCTCCACAAA GGGAGACTTG GATGGAGAAT GGTGGCAGAA TAGTTCAAGC
    CAAACTGAAC TGGACTCTGA TGATCTCATT TCTACTGGAA GCACTTCTCA GCCCTTTCTC
    ACTTCCTGGT CTTTGGGCAT CCAGCCCAAT GACAAAAATG GTGCTAATTC AGATACTATT
    CCTACCTCAG ATAGAGACAT TGTAGCTACA ACAAGAAGTG GTCTTGATGT GTCATCTTCC
    AGCAATCCTG CTACTTGGCA GATAACTCCA TACTATAATA CATTGACAAA AGATCCAGAA
    ATGGAGATGC ATAGTGGCTC AGGGGAAGGC AGTGAACAGT CTGAGAACAA AGATGAAAGC
    AACTCTGTAA TATGGACCAA GAATAGAGTA CCTGGAAATG ATCCTCCAAT GGAAAGAAGT
    ACAGAAATTC CACTTGGACC TCCACCAACA CCTCATGATG GGGATGGGTC TTTGTGGTAT
    CACTTCAGCA CAGTGATGGA AGGATCACTA TCTACTCAAA GGCCCAGTAC CCTTACAGAT
    GGGACACCCA GAACTGAGGA AATGGTCACT GAAGAGCCAG GTAACACTTC AATCCATGTG
    GAAGAAGAGC ACCAGCCAGC AACCTCAGAA AAGCCAGCAA ATCATAACCA CCTAGAACTT
    CCAAATATGA ATCAAACACA AGGTTCTGGA CCAGTCCTGA CTGAGGAAGA TGCAACCAGT
    CTGATTGCTG AAGGATTTTT ACTGAATGCC TCCAATTACA AGCAGCTTGC TAAGGATCAC
    AGCCCTGCAT ACTGGGTCGT TGGAAACTGG AGTGAGTGTT CCACCACGTG TGGGCTGGGC
    GCCTACTGGA GAAGTGTGAA GTGCAGCACG CAGGTGGATG CCGATTGCAT GGCCTTCCAG
    AGGCCTGACC CTGCTAAGAG ATGCCACCTC CGCCCCTGTG CTGGCTGGAA AGTGGGAAAC
    TGGAGCAAGT GCTCCAGAAA CTGCAGTGGG GGCTATAAAG TCCGTGAGAT TCAGTGCGTG
    GACAGCTGGG ACCATCACCG AAGCCTGAGG CCATTTCACT GCCAGTTCCT AGCTGGCCTT
    CCTCCCCCGC TGAGCATGAG CTGTAACCCA GAGCCCTGTG AAGAGTGGCA CGTGGAGCCC
    TGGAGCCAGT GTTCCAGATC CTGTGGAGGT GGAGTTCAAG AGAGAGGGGT GTCTTGTCCA
    GGAGGCCTGT GTGACTGGAC AAAAAGGCCC CCATCTACTA TGCCTTGCAA CAGGCATGTT
    TGCTGTCACT GGGCCACCGG AAACTGGGAC TTGTGCACCA GGTCCTGTGG AGGTGGACTT
    CAGAAAAGGA CCGTTCACTG TGTCCCCTCA GAGAACGATA CAGCTGAAGA CCAAGATCAC
    TGCCTGTGTG ATCATGAACC AAGACCTCCA GAATTCCAGC ACTGCAACCA GCAAGCCTGC
    AAGAAGAGTG CTGATTTACT TTGCACCAAG GACAGGCTGT CAGCCAGTTT CTGCCAGACC
    CTAAAGACCA TGAAGAAATG TTCCATACCC ACTGTGAAGG CACAGTGCTG TTTTTCATGT
    CCTCAGATGC ATGTCACTCA TACCCAAAGG CAAAGAAGGC AACACTTGCT CAAAAACCCC
    AAAGCACTGT AA

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

    CloneID ODo32249
    Clone ID Related Accession (Same CDS sequence) XM_013152885.1
    Accession Version XM_013152885.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4662bp)
    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 1436716800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 12 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176390.1) 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 Version :: Cavia porcellus Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    ATGCCATGTG CGCAGAGGAG CTGGCTTGCA GACCTCTCGG TGCTGGCTCA GCTCCTCAAC 
    TTCGGGGCAC TTTGCTATGG CAGAGAGCCC CAGCCGGGCC CGGTTCGCTT CCCCGACCGG
    AGGCAAGAGC ATTTTATGCA GGCCCTTCCG GAATATCACG TAGTGGCTCC TGTCCGAGTA
    GATTCTAGTG GGCACTTCCT GTCCTATGGC TTGAACCATC CTGTCACCAG CAGCAGGAGG
    AAAAGAGGTT TGGATGGCCC AGAGGACCGA GTGTACTATA GAATTTCACA TGAAGATAAG
    GACCTGTTTT TTAACCTGAC AGTCAACCGA GGATTTCTTT CCAGTAGCTA CATTGTGGAG
    AAGAGATACG GGAACCTTTC CAATGTTAAG ATTGTGGCTC CCTCAAGCCC CCCTTGTCAT
    CTCAAGGGCA TAGTTCAGCA GCAGAGCATT GCAGTTGGGA CTGCAGTGCT CAGTGCCTGC
    CATGGACTGA CTGGATTTTT CCATCTACCA CATGGAGACT TTTTCATTGA GCCTGTTAAA
    AAGCATCCAC TGGATAAGGG AGGATCCCAC CCACACATCA TTTACAAGAA CCAGAAGCAG
    AGAGTTACAG AGACGAAGGA GCCAACCTGC GGATTAAAGG ACAGTCTTGA CACCTCCAAG
    CAGCAGGAGC TTCGGCGAGA GAAGTGGGAG AGGAACAACA ATGTGCCACG CAGAAGCCTT
    TCTCGACGTT CCATCAGCAA GGAGAGATGG GTGGAGACAC TGGTGGTGGC TGACACAAAG
    ATGATTGAGT ATCATGGGAG TGAGAACGTG GAGTCTTACA TCCTCACCAT CATGAACATG
    GTTACTGGGT TGTTTCATAA CCCAAGCATT GGAAATGCAA TTCACATTGT TGTGGTTCGG
    CTCATTCTCC TTGAAGAAGA AGAGCAAGGG TTAAAAATAG TTCACCATGC AGAGAAGACC
    CTGTCCAGTT TCTGCAAATG GCAGAAAAGC ATTAATCCTA AGAGTGACCT CAACCCTGTC
    CATCATGATG TGGCTGTCCT TCTTACCAGC TTTGGCATCC AGCATGATGG CAAAGAAAAT
    GACTGTGAGC CCATGGGCAG ACATCCGTAC ATCATGTCCC ATCAGCTCCA GTATGATCCC
    ACTCCGCTGA CCTGGTCCAA GTGCAGCAAA GAGTACATCA CCCGCTTCTT GGACCGAGGC
    TGGGGGTCCT GTCTTGATGA TGTCCCCAAA AAGAAAGGTT TGAAGTCCAA GGTCATTGCC
    CCTGGAGTGA TTTATGATGT TCATCACCAG TGCCAACTCC AGTATGGCCC CAATGCTACT
    TTCTGCCAGG AAGTAGAAAA TGTTTGCCAG ACGCTGTGGT GCTCAGTGAA AGGTTTCTGT
    CGCTCTAAGC TGGATGCTGC TGCAGACGGG ACCCAATGTG GTGAGAAGAA GTGGTGCATG
    GCAGGCAAGT GCATCACAGT GGGGAAGAAA CCAGAGAGCA TCCCTGGAGG CTGGGGCCTG
    TGGTCACCCT GGTCCCACTG TACCAGGACC TGTGGGGCTG GAGCCCAGAG TGCAGAGAGG
    CACTGCAACA ACCCTGAACC AAAGTTTGGA GGGAAATACT GTACTGGAGA AAGAAAACGT
    TATCGCTTGT GCAACGTCCA TCCCTGTCGT CCAGATGTAC CAACATTTAG ACAGATGCAG
    TGCAGTGAAT TTGATACCAT CCCCTACAAG AATGAATTCT ATCACTGGTT TCCTGTTTTT
    AATCAAGCAC ACCCTTGTGG GCTCTACTGC CGACCCATAG ATGGCCAGTT TTCTGAAAAA
    ATGCTGGATG CTGTCATTGA TGGCACCCCT TGCTTTGAAG GTGGCAACAA CAGAAATGTC
    TGTATTAATG GCATGTGTAA GATGGTTGGC TGTGACTATG AGATTGATTC CAATGCCACA
    GAAGACCGCT GTGGTGTGTG CCAGGGAGAC GGCTCTGCCT GCCAGACCAT AAGGAAGATG
    TTTACACAGA AAGAAGGATC TGGTTATGTG GACATTGGAC TCATTCCCAA AGGAGCAAGG
    GACATAAGGG TAATGGAAAT CAAGGGCGCT GGAAATTTCT TGGCCATCAG GAGTGAGGAT
    CCAGAAAAAT ACTATCTCAA TGGAGGATTT ATTATCCAGT GGAATGGGAA CTATAAGCTG
    GCTGGGACCA TCTTTCAGTA TGACAGGAAA GGAGACCTGG AAACCTTGAT GGCCCCAGGC
    CCCACCAATG AGTCAGTGTG GCTCCAGCTT CTATTCCAGG TGACTAACCC AGGTGTCAAG
    TACGAGTACA TAATCCAAAA AGAGGGTCTT GACAATGATG TGGAACAGCT GCTGTATTTC
    TGGCAGTTTG GCCAGTGGAC AGAGTGCAGT GTAACGTGTG GAACAGGTAT CCGTCGGCAG
    ACTGCTCATT GTGTGAAGAA GGGCCAAGGG ATGGTGAAAG CGACATTCTG TAACCCGGAA
    ACACAACCTA ATGGGAGACA GAAGAAGTGC TATGAAAAGG ATTGCCCACC CAGGTGGTGG
    GCAGGAGAGT GGGAAGCATG TTCAAAAACA TGTGGGCCCT ACGGAGAGAA GAGGCGAACC
    GTGCTGTGCA TCCAGACCAT GGCCTCTGAT GAGCAAGCTC TTCCGGCTAC AGACTGTCAG
    CACCTGCTGA AGCCCAAGGC CCTCAGTTCC TGTAACAGAG ATATCCTGTG CCCATCAGAC
    TGGACAGTGG GCAACTGGAG TGAGTGCTCT GTTTCCTGTG GTGGTGGAGT GCGGATTCGC
    AGTGTCACAT GCACCAAGAA CCATGGTGAA CCTTGTGATA AGACAAAGAA ACCAAATAGC
    AGAGCTCTGT GTGGCCTTCA GCAATGCCCA TCAAGTCGGA GAGTTCTGAG ACCCAACAAA
    GCCACAGTTC CCAGTGGGAA AAATCTACCA ACATCCGGGC AAGACCTTCT AAGCCCCACC
    CCTTCACCTT CATCCCAGCC CACCCTGCTG GCCACACCCA CAGTGCCTGA GACTATGGAC
    ACAAGCACTC CAGCCACCAG CAGCCCCAGT CTCACCACGG CCTCCACAAA GGGAGACTTG
    GATGGAGAAT GGTGGCAGAA TAGTTCAAGC CAAACTGAAC TGGACTCTGA TGATCTCATT
    TCTACTGGAA GCACTTCTCA GCCCTTTCTC ACTTCCTGGT CTTTGGGCAT CCAGCCCAAT
    GACAAAAATG GTGCTAATTC AGATACTATT CCTACCTCAG ATAGAGACAT TGTAGCTACA
    ACAAGAAGTG GTCTTGATGT GTCATCTTCC AGCAATCCTG CTACTTGGCA GATAACTCCA
    TACTATAATA CATTGACAAA AGATCCAGAA ATGGAGATGC ATAGTGGCTC AGGGGAAGGC
    AGTGAACAGT CTGAGAACAA AGATGAAAGC AACTCTGTAA TATGGACCAA GAATAGAGTA
    CCTGGAAATG ATCCTCCAAT GGAAAGAAGT ACAGAAATTC CACTTGGACC TCCACCAACA
    CCTCATGATG GGGATGGGTC TTTGTGGTAT CACTTCAGCA CAGTGATGGA AGGATCACTA
    TCTACTCAAA GGCCCAGTAC CCTTACAGAT GGGACACCCA GAACTGAGGA AATGGTCACT
    GAAGAGCCAG GTAACACTTC AATCCATGTG GAAGAAGAGC ACCAGCCAGC AACCTCAGAA
    AAGCCAGCAA ATCATAACCA CCTAGAACTT CCAAATATGA ATCAAACACA AGGTTCTGGA
    CCAGTCCTGA CTGAGGAAGA TGCAACCAGT CTGATTGCTG AAGGATTTTT ACTGAATGCC
    TCCAATTACA AGCAGCTTGC TAAGGATCAC AGCCCTGCAT ACTGGGTCGT TGGAAACTGG
    AGTGAGTGTT CCACCACGTG TGGGCTGGGC GCCTACTGGA GAAGTGTGAA GTGCAGCACG
    CAGGTGGATG CCGATTGCAT GGCCTTCCAG AGGCCTGACC CTGCTAAGAG ATGCCACCTC
    CGCCCCTGTG CTGGCTGGAA AGTGGGAAAC TGGAGCAAGT GCTCCAGAAA CTGCAGTGGG
    GGCTATAAAG TCCGTGAGAT TCAGTGCGTG GACAGCTGGG ACCATCACCG AAGCCTGAGG
    CCATTTCACT GCCAGTTCCT AGCTGGCCTT CCTCCCCCGC TGAGCATGAG CTGTAACCCA
    GAGCCCTGTG AAGAGTGGCA CGTGGAGCCC TGGAGCCAGT GTTCCAGATC CTGTGGAGGT
    GGAGTTCAAG AGAGAGGGGT GTCTTGTCCA GGAGGCCTGT GTGACTGGAC AAAAAGGCCC
    CCATCTACTA TGCCTTGCAA CAGGCATGTT TGCTGTCACT GGGCCACCGG AAACTGGGAC
    TTGTGCACCA GGTCCTGTGG AGGTGGACTT CAGAAAAGGA CCGTTCACTG TGTCCCCTCA
    GAGAACGATA CAGCTGAAGA CCAAGATCAC TGCCTGTGTG ATCATGAACC AAGACCTCCA
    GAATTCCAGC ACTGCAACCA GCAAGCCTGC AAGAAGAGTG CTGATTTACT TTGCACCAAG
    GACAGGCTGT CAGCCAGTTT CTGCCAGACC CTAAAGACCA TGAAGAAATG TTCCATACCC
    ACTGTGAAGG CACAGTGCTG TTTTTCATGT CCTCAGATGC ATGTCACTCA TACCCAAAGG
    CAAAGAAGGC AACACTTGCT CAAAAACCCC AAAGCACTGT AA

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

    RefSeq XP_013008339.1
    CDS193..4854
    Translation

    Target ORF information:

    RefSeq Version XM_013152885.1
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 12 (Adamts12), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013152885.1

    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
    ATGCCATGTG CGCAGAGGAG CTGGCTTGCA GACCTCTCGG TGCTGGCTCA GCTCCTCAAC 
    TTCGGGGCAC TTTGCTATGG CAGAGAGCCC CAGCCGGGCC CGGTTCGCTT CCCCGACCGG
    AGGCAAGAGC ATTTTATGCA GGCCCTTCCG GAATATCACG TAGTGGCTCC TGTCCGAGTA
    GATTCTAGTG GGCACTTCCT GTCCTATGGC TTGAACCATC CTGTCACCAG CAGCAGGAGG
    AAAAGAGGTT TGGATGGCCC AGAGGACCGA GTGTACTATA GAATTTCACA TGAAGATAAG
    GACCTGTTTT TTAACCTGAC AGTCAACCGA GGATTTCTTT CCAGTAGCTA CATTGTGGAG
    AAGAGATACG GGAACCTTTC CAATGTTAAG ATTGTGGCTC CCTCAAGCCC CCCTTGTCAT
    CTCAAGGGCA TAGTTCAGCA GCAGAGCATT GCAGTTGGGA CTGCAGTGCT CAGTGCCTGC
    CATGGACTGA CTGGATTTTT CCATCTACCA CATGGAGACT TTTTCATTGA GCCTGTTAAA
    AAGCATCCAC TGGATAAGGG AGGATCCCAC CCACACATCA TTTACAAGAA CCAGAAGCAG
    AGAGTTACAG AGACGAAGGA GCCAACCTGC GGATTAAAGG ACAGTCTTGA CACCTCCAAG
    CAGCAGGAGC TTCGGCGAGA GAAGTGGGAG AGGAACAACA ATGTGCCACG CAGAAGCCTT
    TCTCGACGTT CCATCAGCAA GGAGAGATGG GTGGAGACAC TGGTGGTGGC TGACACAAAG
    ATGATTGAGT ATCATGGGAG TGAGAACGTG GAGTCTTACA TCCTCACCAT CATGAACATG
    GTTACTGGGT TGTTTCATAA CCCAAGCATT GGAAATGCAA TTCACATTGT TGTGGTTCGG
    CTCATTCTCC TTGAAGAAGA AGAGCAAGGG TTAAAAATAG TTCACCATGC AGAGAAGACC
    CTGTCCAGTT TCTGCAAATG GCAGAAAAGC ATTAATCCTA AGAGTGACCT CAACCCTGTC
    CATCATGATG TGGCTGTCCT TCTTACCAGC TTTGGCATCC AGCATGATGG CAAAGAAAAT
    GACTGTGAGC CCATGGGCAG ACATCCGTAC ATCATGTCCC ATCAGCTCCA GTATGATCCC
    ACTCCGCTGA CCTGGTCCAA GTGCAGCAAA GAGTACATCA CCCGCTTCTT GGACCGAGGC
    TGGGGGTCCT GTCTTGATGA TGTCCCCAAA AAGAAAGGTT TGAAGTCCAA GGTCATTGCC
    CCTGGAGTGA TTTATGATGT TCATCACCAG TGCCAACTCC AGTATGGCCC CAATGCTACT
    TTCTGCCAGG AAGTAGAAAA TGTTTGCCAG ACGCTGTGGT GCTCAGTGAA AGGTTTCTGT
    CGCTCTAAGC TGGATGCTGC TGCAGACGGG ACCCAATGTG GTGAGAAGAA GTGGTGCATG
    GCAGGCAAGT GCATCACAGT GGGGAAGAAA CCAGAGAGCA TCCCTGGAGG CTGGGGCCTG
    TGGTCACCCT GGTCCCACTG TACCAGGACC TGTGGGGCTG GAGCCCAGAG TGCAGAGAGG
    CACTGCAACA ACCCTGAACC AAAGTTTGGA GGGAAATACT GTACTGGAGA AAGAAAACGT
    TATCGCTTGT GCAACGTCCA TCCCTGTCGT CCAGATGTAC CAACATTTAG ACAGATGCAG
    TGCAGTGAAT TTGATACCAT CCCCTACAAG AATGAATTCT ATCACTGGTT TCCTGTTTTT
    AATCAAGCAC ACCCTTGTGG GCTCTACTGC CGACCCATAG ATGGCCAGTT TTCTGAAAAA
    ATGCTGGATG CTGTCATTGA TGGCACCCCT TGCTTTGAAG GTGGCAACAA CAGAAATGTC
    TGTATTAATG GCATGTGTAA GATGGTTGGC TGTGACTATG AGATTGATTC CAATGCCACA
    GAAGACCGCT GTGGTGTGTG CCAGGGAGAC GGCTCTGCCT GCCAGACCAT AAGGAAGATG
    TTTACACAGA AAGAAGGATC TGGTTATGTG GACATTGGAC TCATTCCCAA AGGAGCAAGG
    GACATAAGGG TAATGGAAAT CAAGGGCGCT GGAAATTTCT TGGCCATCAG GAGTGAGGAT
    CCAGAAAAAT ACTATCTCAA TGGAGGATTT ATTATCCAGT GGAATGGGAA CTATAAGCTG
    GCTGGGACCA TCTTTCAGTA TGACAGGAAA GGAGACCTGG AAACCTTGAT GGCCCCAGGC
    CCCACCAATG AGTCAGTGTG GCTCCAGCTT CTATTCCAGG TGACTAACCC AGGTGTCAAG
    TACGAGTACA TAATCCAAAA AGAGGGTCTT GACAATGATG TGGAACAGCT GCTGTATTTC
    TGGCAGTTTG GCCAGTGGAC AGAGTGCAGT GTAACGTGTG GAACAGGTAT CCGTCGGCAG
    ACTGCTCATT GTGTGAAGAA GGGCCAAGGG ATGGTGAAAG CGACATTCTG TAACCCGGAA
    ACACAACCTA ATGGGAGACA GAAGAAGTGC TATGAAAAGG ATTGCCCACC CAGGTGGTGG
    GCAGGAGAGT GGGAAGCATG TTCAAAAACA TGTGGGCCCT ACGGAGAGAA GAGGCGAACC
    GTGCTGTGCA TCCAGACCAT GGCCTCTGAT GAGCAAGCTC TTCCGGCTAC AGACTGTCAG
    CACCTGCTGA AGCCCAAGGC CCTCAGTTCC TGTAACAGAG ATATCCTGTG CCCATCAGAC
    TGGACAGTGG GCAACTGGAG TGAGTGCTCT GTTTCCTGTG GTGGTGGAGT GCGGATTCGC
    AGTGTCACAT GCACCAAGAA CCATGGTGAA CCTTGTGATA AGACAAAGAA ACCAAATAGC
    AGAGCTCTGT GTGGCCTTCA GCAATGCCCA TCAAGTCGGA GAGTTCTGAG ACCCAACAAA
    GCCACAGTTC CCAGTGGGAA AAATCTACCA ACATCCGGGC AAGACCTTCT AAGCCCCACC
    CCTTCACCTT CATCCCAGCC CACCCTGCTG GCCACACCCA CAGTGCCTGA GACTATGGAC
    ACAAGCACTC CAGCCACCAG CAGCCCCAGT CTCACCACGG CCTCCACAAA GGGAGACTTG
    GATGGAGAAT GGTGGCAGAA TAGTTCAAGC CAAACTGAAC TGGACTCTGA TGATCTCATT
    TCTACTGGAA GCACTTCTCA GCCCTTTCTC ACTTCCTGGT CTTTGGGCAT CCAGCCCAAT
    GACAAAAATG GTGCTAATTC AGATACTATT CCTACCTCAG ATAGAGACAT TGTAGCTACA
    ACAAGAAGTG GTCTTGATGT GTCATCTTCC AGCAATCCTG CTACTTGGCA GATAACTCCA
    TACTATAATA CATTGACAAA AGATCCAGAA ATGGAGATGC ATAGTGGCTC AGGGGAAGGC
    AGTGAACAGT CTGAGAACAA AGATGAAAGC AACTCTGTAA TATGGACCAA GAATAGAGTA
    CCTGGAAATG ATCCTCCAAT GGAAAGAAGT ACAGAAATTC CACTTGGACC TCCACCAACA
    CCTCATGATG GGGATGGGTC TTTGTGGTAT CACTTCAGCA CAGTGATGGA AGGATCACTA
    TCTACTCAAA GGCCCAGTAC CCTTACAGAT GGGACACCCA GAACTGAGGA AATGGTCACT
    GAAGAGCCAG GTAACACTTC AATCCATGTG GAAGAAGAGC ACCAGCCAGC AACCTCAGAA
    AAGCCAGCAA ATCATAACCA CCTAGAACTT CCAAATATGA ATCAAACACA AGGTTCTGGA
    CCAGTCCTGA CTGAGGAAGA TGCAACCAGT CTGATTGCTG AAGGATTTTT ACTGAATGCC
    TCCAATTACA AGCAGCTTGC TAAGGATCAC AGCCCTGCAT ACTGGGTCGT TGGAAACTGG
    AGTGAGTGTT CCACCACGTG TGGGCTGGGC GCCTACTGGA GAAGTGTGAA GTGCAGCACG
    CAGGTGGATG CCGATTGCAT GGCCTTCCAG AGGCCTGACC CTGCTAAGAG ATGCCACCTC
    CGCCCCTGTG CTGGCTGGAA AGTGGGAAAC TGGAGCAAGT GCTCCAGAAA CTGCAGTGGG
    GGCTATAAAG TCCGTGAGAT TCAGTGCGTG GACAGCTGGG ACCATCACCG AAGCCTGAGG
    CCATTTCACT GCCAGTTCCT AGCTGGCCTT CCTCCCCCGC TGAGCATGAG CTGTAACCCA
    GAGCCCTGTG AAGAGTGGCA CGTGGAGCCC TGGAGCCAGT GTTCCAGATC CTGTGGAGGT
    GGAGTTCAAG AGAGAGGGGT GTCTTGTCCA GGAGGCCTGT GTGACTGGAC AAAAAGGCCC
    CCATCTACTA TGCCTTGCAA CAGGCATGTT TGCTGTCACT GGGCCACCGG AAACTGGGAC
    TTGTGCACCA GGTCCTGTGG AGGTGGACTT CAGAAAAGGA CCGTTCACTG TGTCCCCTCA
    GAGAACGATA CAGCTGAAGA CCAAGATCAC TGCCTGTGTG ATCATGAACC AAGACCTCCA
    GAATTCCAGC ACTGCAACCA GCAAGCCTGC AAGAAGAGTG CTGATTTACT TTGCACCAAG
    GACAGGCTGT CAGCCAGTTT CTGCCAGACC CTAAAGACCA TGAAGAAATG TTCCATACCC
    ACTGTGAAGG CACAGTGCTG TTTTTCATGT CCTCAGATGC ATGTCACTCA TACCCAAAGG
    CAAAGAAGGC AACACTTGCT CAAAAACCCC AAAGCACTGT AA

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