ADAMTS6 cDNA ORF clone, Alligator mississippiensis(American alligator)

The following ADAMTS6 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ADAMTS6 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
OAl66989 XM_019496070.1
Latest version!
Alligator mississippiensis ADAM metallopeptidase with thrombospondin type 1 motif 6 (ADAMTS6), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OAl66987 XM_019496068.1
Latest version!
Alligator mississippiensis ADAM metallopeptidase with thrombospondin type 1 motif 6 (ADAMTS6), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAl66988 XM_019496069.1
Latest version!
Alligator mississippiensis ADAM metallopeptidase with thrombospondin type 1 motif 6 (ADAMTS6), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

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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 OAl66989
    Clone ID Related Accession (Same CDS sequence) XM_019496070.1
    Accession Version XM_019496070.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2697bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 6 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712138.1) 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 :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGAGTGACA CATCTGCTTT TCCAACTTCA CTTCCAAATA ATGACACATT AAGTAGTCAC 
    AGTCGACAGA AGAGATCAGT AAGCATTGAA CGGTTTGTGG AGACGCTGGT AGTAGCAGAC
    AAAATGATGG TGGGATACCA TGGTCGCAAA GACATTGAGC ATTACATTTT GAGTGTAATG
    AATATTGTTG CCAAACTTTA TCGTGATTCC AGTCTTGGAA ACGTTGTGAA TATTATAGTG
    ACACGGCTGA TTGTTCTTAC CGAAGATCAG CCAAACTTGG AGATAAACCA CCATGCAGAC
    AAGTCCCTCG ATAGCTTCTG TAAGTGGCAG AAATCCATTC TCTCCCACCA AAGTGATGGA
    AACACCATTC CAGAAAATGG GATTGCTCAC CATGATAATG CGGTTCTTAT TACTAGATAC
    GATATCTGCA CTTATAAAAA CAAGCCCTGT GGAACATTGG GCTTGGCCTC TGTGGCTGGA
    ATGTGTGAGC CTGAAAGGAG CTGCAGCATT AATGAAGACA TTGGCCTAGG TTCAGCTTTT
    ACCATTGCAC ATGAGATTGG TCACAATTTT GGCATGAACC ATGATGGAAT TGGAAATTCT
    TGTGGGACCA AAGGTCATGA AGCAGCAAAG CTTATGGCAG CTCACATTAC AGCAAACACC
    AACCCCTTTT CTTGGTCAGC CTGTAGCCGG GACTACATCA CCAGCTTTTT AGATTCGGGC
    CGTGGTACTT GCCTTGATAA TGAGCCTCCC AAGCGTGACT TTCTTTATCC AGCTGTGGCC
    CCAGGTCAGG TGTACGATGC TGATGAACAG TGTCGCTTCC AGTATGGAGC AACATCCCGC
    CAATGTAAAT ATGGGGAAGT GTGTAGAGAG CTCTGGTGCC TCAGCAAGAG TAACCGCTGT
    GTTACCAACA GCATTCCAGC AGCTGAGGGT ACTCTCTGCC AGACAGGGAG CATTGAGAAA
    GGGTGGTGTT ATCAGGGAGA GTGCGTACCT TTTGGCACTT GGCCCCAGAG CATAGATGGG
    GGTTGGGGTC CGTGGTCAAT ATGGGGAGAG TGCAGCAGGA CCTGCGGGGG AGGAGTCTCC
    TCATCCATAA GACACTGTGA CAGTCCAGCA CCTTCAGGTG GAGGAAAATA CTGTCTTGGA
    GAAAGGAAAC GTTATCGCTC CTGTAATACA GATCCGTGTC CTTCAGGGTC CCGTGATTTT
    CGAGAAAAAC AATGTGCAGA CTTTGACAAT ATGCCTTTCC GTGGAAAATA TTATAACTGG
    AAACCCTACA CTGGAGGTGG GGTTAAACCA TGTGCATTAA ACTGTTTGGC TGAAGGTTAC
    AACTTTTACA CTGAACGTGC CCCTGCAGTA ATAGATGGAA CTCAATGCAA TGTTGATTCA
    CTGGATATCT GCATCAATGG AGAATGCAAG CATGTAGGTT GTGATAATAT TTTGGGTTCT
    GATGCTAAGG AGGATAGATG TCGTGTATGT GGAGGAGATG GGAGCACATG TGAAGCCATT
    GAAGGTTTCT TCAATGATTC ATTGCCCAGA GGAGGGTACA TGGAAGTTGT TCAAATTCCA
    AGAGGCTCAG TTCATATTGA AATAAAAGAA GTAGCAATTT CAAAGAACTA CATTGCTTTA
    AAATCTGAAG AGGATGACTA CTATATTAAT GGTGCCTGGA CTATTGACTG GCCTAGAAAG
    TTTGATGTTG CTGGGACAGC TTTCCATTAC AAGAGACCAA CAGATGAACC TGAATCTTTG
    GAAGCTTTAG GCCCCACGTC AGAAAATCTG ATAGTCATGA TTTTACTACA GGAACAGAAT
    TTGGGGCTAA GGTATAAATT TAATGTTCCC ATCTCTCGCA CTGGAAGTGG AGACAATGAA
    GTTGGCTTTG CATGGAATCA CCTGCCCTGG TCAGAATGTT CTGCCACGTG TGCTGGAGGT
    ACACAGAAAC AAGAGGTAGT GTGTAAAAGG CTGGATGACA ACTCCATTGT ACAGAACAAT
    TACTGTGACC CTGAGAGTAA GCCACCAGAA AACCAAAGAA CCTGCAACAC TGAGCCTTGC
    CCACCTGAAT GGTTTATAGG AGATTGGTCA GAATGTAGTA AGACCTGTGA TGGTGGAATG
    CGTTCACGGA CTGTTCTCTG TATCAGAAAG ATTGGACCTT CTGAGGAGGA GACACTGGAC
    AATGCCAACT GTTTAACACA CAGGCCTATC GAAAAAGAAC CCTGTAACAA TCAGTCTTGT
    CCACCTCAGT GGGTCGCTTT GGACTGGTCA GAATGCACTC CAAAATGTGG TCCAGGATTC
    AAGCATCGAA TTGTTCTGTG CAAAAGCAGT GACCTTTCAA AAACATTTTC AGCTGCACAA
    TGTCAAGAGG AAAGCAAGCC TCCAGTCCGC ATCCGTTGTA GTTTAGGCCG GTGTCCACCT
    CCTCGCTGGG TTACTGGAGA CTGGGGACAG TGTTCTGCAC AGTGTGGGTT AGGACAACAA
    ATGCGAACGG TGCAGTGCCT CTCATACACT GGACAAGCAT CGAGTGAGTG TCCAGAAACT
    CTTCGACCTC CATCAATGCA ACAGTGTGAA AGCAAATGTG ACAGTACTCC CATTTCCAAC
    ACGGAAGAGT GCAAAGATGT GAACAAAGTG GCTTATTGCC CCCTGGTACT GAAGTTCAAG
    TTCTGCAGCC GAGCATACTT CAGACAGATG TGCTGTAAGA CCTGCCAAGG ACACTGA

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

    RefSeq XP_019351615.1
    CDS497..3193
    Translation

    Target ORF information:

    RefSeq Version XM_019496070.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis ADAM metallopeptidase with thrombospondin type 1 motif 6 (ADAMTS6), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019496070.1

    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
    ATGAGTGACA CATCTGCTTT TCCAACTTCA CTTCCAAATA ATGACACATT AAGTAGTCAC 
    AGTCGACAGA AGAGATCAGT AAGCATTGAA CGGTTTGTGG AGACGCTGGT AGTAGCAGAC
    AAAATGATGG TGGGATACCA TGGTCGCAAA GACATTGAGC ATTACATTTT GAGTGTAATG
    AATATTGTTG CCAAACTTTA TCGTGATTCC AGTCTTGGAA ACGTTGTGAA TATTATAGTG
    ACACGGCTGA TTGTTCTTAC CGAAGATCAG CCAAACTTGG AGATAAACCA CCATGCAGAC
    AAGTCCCTCG ATAGCTTCTG TAAGTGGCAG AAATCCATTC TCTCCCACCA AAGTGATGGA
    AACACCATTC CAGAAAATGG GATTGCTCAC CATGATAATG CGGTTCTTAT TACTAGATAC
    GATATCTGCA CTTATAAAAA CAAGCCCTGT GGAACATTGG GCTTGGCCTC TGTGGCTGGA
    ATGTGTGAGC CTGAAAGGAG CTGCAGCATT AATGAAGACA TTGGCCTAGG TTCAGCTTTT
    ACCATTGCAC ATGAGATTGG TCACAATTTT GGCATGAACC ATGATGGAAT TGGAAATTCT
    TGTGGGACCA AAGGTCATGA AGCAGCAAAG CTTATGGCAG CTCACATTAC AGCAAACACC
    AACCCCTTTT CTTGGTCAGC CTGTAGCCGG GACTACATCA CCAGCTTTTT AGATTCGGGC
    CGTGGTACTT GCCTTGATAA TGAGCCTCCC AAGCGTGACT TTCTTTATCC AGCTGTGGCC
    CCAGGTCAGG TGTACGATGC TGATGAACAG TGTCGCTTCC AGTATGGAGC AACATCCCGC
    CAATGTAAAT ATGGGGAAGT GTGTAGAGAG CTCTGGTGCC TCAGCAAGAG TAACCGCTGT
    GTTACCAACA GCATTCCAGC AGCTGAGGGT ACTCTCTGCC AGACAGGGAG CATTGAGAAA
    GGGTGGTGTT ATCAGGGAGA GTGCGTACCT TTTGGCACTT GGCCCCAGAG CATAGATGGG
    GGTTGGGGTC CGTGGTCAAT ATGGGGAGAG TGCAGCAGGA CCTGCGGGGG AGGAGTCTCC
    TCATCCATAA GACACTGTGA CAGTCCAGCA CCTTCAGGTG GAGGAAAATA CTGTCTTGGA
    GAAAGGAAAC GTTATCGCTC CTGTAATACA GATCCGTGTC CTTCAGGGTC CCGTGATTTT
    CGAGAAAAAC AATGTGCAGA CTTTGACAAT ATGCCTTTCC GTGGAAAATA TTATAACTGG
    AAACCCTACA CTGGAGGTGG GGTTAAACCA TGTGCATTAA ACTGTTTGGC TGAAGGTTAC
    AACTTTTACA CTGAACGTGC CCCTGCAGTA ATAGATGGAA CTCAATGCAA TGTTGATTCA
    CTGGATATCT GCATCAATGG AGAATGCAAG CATGTAGGTT GTGATAATAT TTTGGGTTCT
    GATGCTAAGG AGGATAGATG TCGTGTATGT GGAGGAGATG GGAGCACATG TGAAGCCATT
    GAAGGTTTCT TCAATGATTC ATTGCCCAGA GGAGGGTACA TGGAAGTTGT TCAAATTCCA
    AGAGGCTCAG TTCATATTGA AATAAAAGAA GTAGCAATTT CAAAGAACTA CATTGCTTTA
    AAATCTGAAG AGGATGACTA CTATATTAAT GGTGCCTGGA CTATTGACTG GCCTAGAAAG
    TTTGATGTTG CTGGGACAGC TTTCCATTAC AAGAGACCAA CAGATGAACC TGAATCTTTG
    GAAGCTTTAG GCCCCACGTC AGAAAATCTG ATAGTCATGA TTTTACTACA GGAACAGAAT
    TTGGGGCTAA GGTATAAATT TAATGTTCCC ATCTCTCGCA CTGGAAGTGG AGACAATGAA
    GTTGGCTTTG CATGGAATCA CCTGCCCTGG TCAGAATGTT CTGCCACGTG TGCTGGAGGT
    ACACAGAAAC AAGAGGTAGT GTGTAAAAGG CTGGATGACA ACTCCATTGT ACAGAACAAT
    TACTGTGACC CTGAGAGTAA GCCACCAGAA AACCAAAGAA CCTGCAACAC TGAGCCTTGC
    CCACCTGAAT GGTTTATAGG AGATTGGTCA GAATGTAGTA AGACCTGTGA TGGTGGAATG
    CGTTCACGGA CTGTTCTCTG TATCAGAAAG ATTGGACCTT CTGAGGAGGA GACACTGGAC
    AATGCCAACT GTTTAACACA CAGGCCTATC GAAAAAGAAC CCTGTAACAA TCAGTCTTGT
    CCACCTCAGT GGGTCGCTTT GGACTGGTCA GAATGCACTC CAAAATGTGG TCCAGGATTC
    AAGCATCGAA TTGTTCTGTG CAAAAGCAGT GACCTTTCAA AAACATTTTC AGCTGCACAA
    TGTCAAGAGG AAAGCAAGCC TCCAGTCCGC ATCCGTTGTA GTTTAGGCCG GTGTCCACCT
    CCTCGCTGGG TTACTGGAGA CTGGGGACAG TGTTCTGCAC AGTGTGGGTT AGGACAACAA
    ATGCGAACGG TGCAGTGCCT CTCATACACT GGACAAGCAT CGAGTGAGTG TCCAGAAACT
    CTTCGACCTC CATCAATGCA ACAGTGTGAA AGCAAATGTG ACAGTACTCC CATTTCCAAC
    ACGGAAGAGT GCAAAGATGT GAACAAAGTG GCTTATTGCC CCCTGGTACT GAAGTTCAAG
    TTCTGCAGCC GAGCATACTT CAGACAGATG TGCTGTAAGA CCTGCCAAGG ACACTGA

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

    CloneID OAl66987
    Clone ID Related Accession (Same CDS sequence) XM_019496068.1
    Accession Version XM_019496068.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3363bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 6 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712138.1) 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 :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGGAAATTT TGTGGAAGAC GTTGACCTGG ATTTTGAGCC TAGTCATGGC TTCATCGGAA 
    TTTCACAGTG ACAACAGGCT TTCATATAGT TCTCAAGAGG AATTCCTGTC ATACCTTGAA
    CACTACCAAC TAACAATCCC AATAAGGGTT GATCAAAATG GAGCCTTCCT CAGCTTTACT
    GTGAAAAATG CTAAACCCTC AAGGAGGAGG AGGAGAAGTA CAGACTCTTA TGACCAAGAA
    CTGGCAGCAT CTAAATTATT TTTTAAACTT TCTGCCTATG GCAAGCACTT TCATTTAAAC
    CTGACTCTCA ACACAGATTT GGTGTCCAAA CACTTTACAG TAGAATACTG GGGGAAAGAT
    GGACCTCAAT GGAAACATGA TTTTTTAGAC CACTGTCATT ACACAGGATA TTTGCAAGAC
    CAGCATAGTA CAACTAAAGT GGCCTTAAGC AACTGCAATG GTCTGCATGG TGTTATTGCT
    ACAGAAGATG AAGAGTATTT TATTGAACCT TTAAGGAATA TAACTGAAAA TTCCAATAAT
    TTTAGTTATG AAAATGGTCA TCCTCATGTT ATTTACAAAA AGTCTACCAT GTACCAACGA
    CATCTCTATG ATCACACTCA CTGTGGTGTC TCAGAAGACC TCACAAGAAG GAGTAAACCT
    GGGTGGATGA GTGACACATC TGCTTTTCCA ACTTCACTTC CAAATAATGA CACATTAAGT
    AGTCACAGTC GACAGAAGAG ATCAGTAAGC ATTGAACGGT TTGTGGAGAC GCTGGTAGTA
    GCAGACAAAA TGATGGTGGG ATACCATGGT CGCAAAGACA TTGAGCATTA CATTTTGAGT
    GTAATGAATA TTGTTGCCAA ACTTTATCGT GATTCCAGTC TTGGAAACGT TGTGAATATT
    ATAGTGACAC GGCTGATTGT TCTTACCGAA GATCAGCCAA ACTTGGAGAT AAACCACCAT
    GCAGACAAGT CCCTCGATAG CTTCTGTAAG TGGCAGAAAT CCATTCTCTC CCACCAAAGT
    GATGGAAACA CCATTCCAGA AAATGGGATT GCTCACCATG ATAATGCGGT TCTTATTACT
    AGATACGATA TCTGCACTTA TAAAAACAAG CCCTGTGGAA CATTGGGCTT GGCCTCTGTG
    GCTGGAATGT GTGAGCCTGA AAGGAGCTGC AGCATTAATG AAGACATTGG CCTAGGTTCA
    GCTTTTACCA TTGCACATGA GATTGGTCAC AATTTTGGCA TGAACCATGA TGGAATTGGA
    AATTCTTGTG GGACCAAAGG TCATGAAGCA GCAAAGCTTA TGGCAGCTCA CATTACAGCA
    AACACCAACC CCTTTTCTTG GTCAGCCTGT AGCCGGGACT ACATCACCAG CTTTTTAGAT
    TCGGGCCGTG GTACTTGCCT TGATAATGAG CCTCCCAAGC GTGACTTTCT TTATCCAGCT
    GTGGCCCCAG GTCAGGTGTA CGATGCTGAT GAACAGTGTC GCTTCCAGTA TGGAGCAACA
    TCCCGCCAAT GTAAATATGG GGAAGTGTGT AGAGAGCTCT GGTGCCTCAG CAAGAGTAAC
    CGCTGTGTTA CCAACAGCAT TCCAGCAGCT GAGGGTACTC TCTGCCAGAC AGGGAGCATT
    GAGAAAGGGT GGTGTTATCA GGGAGAGTGC GTACCTTTTG GCACTTGGCC CCAGAGCATA
    GATGGGGGTT GGGGTCCGTG GTCAATATGG GGAGAGTGCA GCAGGACCTG CGGGGGAGGA
    GTCTCCTCAT CCATAAGACA CTGTGACAGT CCAGCACCTT CAGGTGGAGG AAAATACTGT
    CTTGGAGAAA GGAAACGTTA TCGCTCCTGT AATACAGATC CGTGTCCTTC AGGGTCCCGT
    GATTTTCGAG AAAAACAATG TGCAGACTTT GACAATATGC CTTTCCGTGG AAAATATTAT
    AACTGGAAAC CCTACACTGG AGGTGGGGTT AAACCATGTG CATTAAACTG TTTGGCTGAA
    GGTTACAACT TTTACACTGA ACGTGCCCCT GCAGTAATAG ATGGAACTCA ATGCAATGTT
    GATTCACTGG ATATCTGCAT CAATGGAGAA TGCAAGCATG TAGGTTGTGA TAATATTTTG
    GGTTCTGATG CTAAGGAGGA TAGATGTCGT GTATGTGGAG GAGATGGGAG CACATGTGAA
    GCCATTGAAG GTTTCTTCAA TGATTCATTG CCCAGAGGAG GGTACATGGA AGTTGTTCAA
    ATTCCAAGAG GCTCAGTTCA TATTGAAATA AAAGAAGTAG CAATTTCAAA GAACTACATT
    GCTTTAAAAT CTGAAGAGGA TGACTACTAT ATTAATGGTG CCTGGACTAT TGACTGGCCT
    AGAAAGTTTG ATGTTGCTGG GACAGCTTTC CATTACAAGA GACCAACAGA TGAACCTGAA
    TCTTTGGAAG CTTTAGGCCC CACGTCAGAA AATCTGATAG TCATGATTTT ACTACAGGAA
    CAGAATTTGG GGCTAAGGTA TAAATTTAAT GTTCCCATCT CTCGCACTGG AAGTGGAGAC
    AATGAAGTTG GCTTTGCATG GAATCACCTG CCCTGGTCAG AATGTTCTGC CACGTGTGCT
    GGAGGTACAC AGAAACAAGA GGTAGTGTGT AAAAGGCTGG ATGACAACTC CATTGTACAG
    AACAATTACT GTGACCCTGA GAGTAAGCCA CCAGAAAACC AAAGAACCTG CAACACTGAG
    CCTTGCCCAC CTGAATGGTT TATAGGAGAT TGGTCAGAAT GTAGTAAGAC CTGTGATGGT
    GGAATGCGTT CACGGACTGT TCTCTGTATC AGAAAGATTG GACCTTCTGA GGAGGAGACA
    CTGGACAATG CCAACTGTTT AACACACAGG CCTATCGAAA AAGAACCCTG TAACAATCAG
    TCTTGTCCAC CTCAGTGGGT CGCTTTGGAC TGGTCAGAAT GCACTCCAAA ATGTGGTCCA
    GGATTCAAGC ATCGAATTGT TCTGTGCAAA AGCAGTGACC TTTCAAAAAC ATTTTCAGCT
    GCACAATGTC AAGAGGAAAG CAAGCCTCCA GTCCGCATCC GTTGTAGTTT AGGCCGGTGT
    CCACCTCCTC GCTGGGTTAC TGGAGACTGG GGACAGTGTT CTGCACAGTG TGGGTTAGGA
    CAACAAATGC GAACGGTGCA GTGCCTCTCA TACACTGGAC AAGCATCGAG TGAGTGTCCA
    GAAACTCTTC GACCTCCATC AATGCAACAG TGTGAAAGCA AATGTGACAG TACTCCCATT
    TCCAACACGG AAGAGTGCAA AGATGTGAAC AAAGTGGCTT ATTGCCCCCT GGTACTGAAG
    TTCAAGTTCT GCAGCCGAGC ATACTTCAGA CAGATGTGCT GTAAGACCTG CCAAGGACAC
    TGA

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

    RefSeq XP_019351613.1
    CDS371..3733
    Translation

    Target ORF information:

    RefSeq Version XM_019496068.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis ADAM metallopeptidase with thrombospondin type 1 motif 6 (ADAMTS6), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019496068.1

    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
    ATGGAAATTT TGTGGAAGAC GTTGACCTGG ATTTTGAGCC TAGTCATGGC TTCATCGGAA 
    TTTCACAGTG ACAACAGGCT TTCATATAGT TCTCAAGAGG AATTCCTGTC ATACCTTGAA
    CACTACCAAC TAACAATCCC AATAAGGGTT GATCAAAATG GAGCCTTCCT CAGCTTTACT
    GTGAAAAATG CTAAACCCTC AAGGAGGAGG AGGAGAAGTA CAGACTCTTA TGACCAAGAA
    CTGGCAGCAT CTAAATTATT TTTTAAACTT TCTGCCTATG GCAAGCACTT TCATTTAAAC
    CTGACTCTCA ACACAGATTT GGTGTCCAAA CACTTTACAG TAGAATACTG GGGGAAAGAT
    GGACCTCAAT GGAAACATGA TTTTTTAGAC CACTGTCATT ACACAGGATA TTTGCAAGAC
    CAGCATAGTA CAACTAAAGT GGCCTTAAGC AACTGCAATG GTCTGCATGG TGTTATTGCT
    ACAGAAGATG AAGAGTATTT TATTGAACCT TTAAGGAATA TAACTGAAAA TTCCAATAAT
    TTTAGTTATG AAAATGGTCA TCCTCATGTT ATTTACAAAA AGTCTACCAT GTACCAACGA
    CATCTCTATG ATCACACTCA CTGTGGTGTC TCAGAAGACC TCACAAGAAG GAGTAAACCT
    GGGTGGATGA GTGACACATC TGCTTTTCCA ACTTCACTTC CAAATAATGA CACATTAAGT
    AGTCACAGTC GACAGAAGAG ATCAGTAAGC ATTGAACGGT TTGTGGAGAC GCTGGTAGTA
    GCAGACAAAA TGATGGTGGG ATACCATGGT CGCAAAGACA TTGAGCATTA CATTTTGAGT
    GTAATGAATA TTGTTGCCAA ACTTTATCGT GATTCCAGTC TTGGAAACGT TGTGAATATT
    ATAGTGACAC GGCTGATTGT TCTTACCGAA GATCAGCCAA ACTTGGAGAT AAACCACCAT
    GCAGACAAGT CCCTCGATAG CTTCTGTAAG TGGCAGAAAT CCATTCTCTC CCACCAAAGT
    GATGGAAACA CCATTCCAGA AAATGGGATT GCTCACCATG ATAATGCGGT TCTTATTACT
    AGATACGATA TCTGCACTTA TAAAAACAAG CCCTGTGGAA CATTGGGCTT GGCCTCTGTG
    GCTGGAATGT GTGAGCCTGA AAGGAGCTGC AGCATTAATG AAGACATTGG CCTAGGTTCA
    GCTTTTACCA TTGCACATGA GATTGGTCAC AATTTTGGCA TGAACCATGA TGGAATTGGA
    AATTCTTGTG GGACCAAAGG TCATGAAGCA GCAAAGCTTA TGGCAGCTCA CATTACAGCA
    AACACCAACC CCTTTTCTTG GTCAGCCTGT AGCCGGGACT ACATCACCAG CTTTTTAGAT
    TCGGGCCGTG GTACTTGCCT TGATAATGAG CCTCCCAAGC GTGACTTTCT TTATCCAGCT
    GTGGCCCCAG GTCAGGTGTA CGATGCTGAT GAACAGTGTC GCTTCCAGTA TGGAGCAACA
    TCCCGCCAAT GTAAATATGG GGAAGTGTGT AGAGAGCTCT GGTGCCTCAG CAAGAGTAAC
    CGCTGTGTTA CCAACAGCAT TCCAGCAGCT GAGGGTACTC TCTGCCAGAC AGGGAGCATT
    GAGAAAGGGT GGTGTTATCA GGGAGAGTGC GTACCTTTTG GCACTTGGCC CCAGAGCATA
    GATGGGGGTT GGGGTCCGTG GTCAATATGG GGAGAGTGCA GCAGGACCTG CGGGGGAGGA
    GTCTCCTCAT CCATAAGACA CTGTGACAGT CCAGCACCTT CAGGTGGAGG AAAATACTGT
    CTTGGAGAAA GGAAACGTTA TCGCTCCTGT AATACAGATC CGTGTCCTTC AGGGTCCCGT
    GATTTTCGAG AAAAACAATG TGCAGACTTT GACAATATGC CTTTCCGTGG AAAATATTAT
    AACTGGAAAC CCTACACTGG AGGTGGGGTT AAACCATGTG CATTAAACTG TTTGGCTGAA
    GGTTACAACT TTTACACTGA ACGTGCCCCT GCAGTAATAG ATGGAACTCA ATGCAATGTT
    GATTCACTGG ATATCTGCAT CAATGGAGAA TGCAAGCATG TAGGTTGTGA TAATATTTTG
    GGTTCTGATG CTAAGGAGGA TAGATGTCGT GTATGTGGAG GAGATGGGAG CACATGTGAA
    GCCATTGAAG GTTTCTTCAA TGATTCATTG CCCAGAGGAG GGTACATGGA AGTTGTTCAA
    ATTCCAAGAG GCTCAGTTCA TATTGAAATA AAAGAAGTAG CAATTTCAAA GAACTACATT
    GCTTTAAAAT CTGAAGAGGA TGACTACTAT ATTAATGGTG CCTGGACTAT TGACTGGCCT
    AGAAAGTTTG ATGTTGCTGG GACAGCTTTC CATTACAAGA GACCAACAGA TGAACCTGAA
    TCTTTGGAAG CTTTAGGCCC CACGTCAGAA AATCTGATAG TCATGATTTT ACTACAGGAA
    CAGAATTTGG GGCTAAGGTA TAAATTTAAT GTTCCCATCT CTCGCACTGG AAGTGGAGAC
    AATGAAGTTG GCTTTGCATG GAATCACCTG CCCTGGTCAG AATGTTCTGC CACGTGTGCT
    GGAGGTACAC AGAAACAAGA GGTAGTGTGT AAAAGGCTGG ATGACAACTC CATTGTACAG
    AACAATTACT GTGACCCTGA GAGTAAGCCA CCAGAAAACC AAAGAACCTG CAACACTGAG
    CCTTGCCCAC CTGAATGGTT TATAGGAGAT TGGTCAGAAT GTAGTAAGAC CTGTGATGGT
    GGAATGCGTT CACGGACTGT TCTCTGTATC AGAAAGATTG GACCTTCTGA GGAGGAGACA
    CTGGACAATG CCAACTGTTT AACACACAGG CCTATCGAAA AAGAACCCTG TAACAATCAG
    TCTTGTCCAC CTCAGTGGGT CGCTTTGGAC TGGTCAGAAT GCACTCCAAA ATGTGGTCCA
    GGATTCAAGC ATCGAATTGT TCTGTGCAAA AGCAGTGACC TTTCAAAAAC ATTTTCAGCT
    GCACAATGTC AAGAGGAAAG CAAGCCTCCA GTCCGCATCC GTTGTAGTTT AGGCCGGTGT
    CCACCTCCTC GCTGGGTTAC TGGAGACTGG GGACAGTGTT CTGCACAGTG TGGGTTAGGA
    CAACAAATGC GAACGGTGCA GTGCCTCTCA TACACTGGAC AAGCATCGAG TGAGTGTCCA
    GAAACTCTTC GACCTCCATC AATGCAACAG TGTGAAAGCA AATGTGACAG TACTCCCATT
    TCCAACACGG AAGAGTGCAA AGATGTGAAC AAAGTGGCTT ATTGCCCCCT GGTACTGAAG
    TTCAAGTTCT GCAGCCGAGC ATACTTCAGA CAGATGTGCT GTAAGACCTG CCAAGGACAC
    TGA

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

    CloneID OAl66988
    Clone ID Related Accession (Same CDS sequence) XM_019496069.1
    Accession Version XM_019496069.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3213bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 6 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017712138.1) 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 :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGGAAATTT TGTGGAAGAC GTTGACCTGG ATTTTGAGCC TAGTCATGGC TTCATCGGAA 
    TTTCACAGTG ACAACAGGCT TTCATATAGT TCTCAAGAGG AATTCCTGTC ATACCTTGAA
    CACTACCAAC TAACAATCCC AATAAGGGTT GATCAAAATG GAGCCTTCCT CAGCTTTACT
    GTGAAAAATG CTAAACCCTC AAGGAGGAGG AGGAGAAGTA CAGACTCTTA TGACCAAGAA
    CTGGCAGCAT CTAAATTATT TTTTAAACTT TCTGCCTATG GCAAGCACTT TCATTTAAAC
    CTGACTCTCA ACACAGATTT GGTGTCCAAA CACTTTACAG TAGAATACTG GGGGAAAGAT
    GGACCTCAAT GGAAACATGA TTTTTTAGAC CACTGTCATT ACACAGGATA TTTGCAAGAC
    CAGCATAGTA CAACTAAAGT GGCCTTAAGC AACTGCAATG GTCTGCATGG TGTTATTGCT
    ACAGAAGATG AAGAGTATTT TATTGAACCT TTAAGGAATA TAACTGAAAA TTCCAATAAT
    TTTAGTTATG AAAATGGTCA TCCTCATGTT ATTTACAAAA AGTCTACCAT GTACCAACGA
    CATCTCTATG ATCACACTCA CTGTGGTGTC TCAGAAGACC TCACAAGAAG GAGTAAACCT
    GGGTGGATGA GTGACACATC TGCTTTTCCA ACTTCACTTC CAAATAATGA CACATTAAGT
    AGTCACAGTC GACAGAAGAG ATCAGTAAGC ATTGAACGGT TTGTGGAGAC GCTGGTAGTA
    GCAGACAAAA TGATGGTGGG ATACCATGGT CGCAAAGACA TTGAGCATTA CATTTTGAGT
    GTAATGAATA TTGTTGCCAA ACTTTATCGT GATTCCAGTC TTGGAAACGT TGTGAATATT
    ATAGTGACAC GGCTGATTGT TCTTACCGAA GATCAGCCAA ACTTGGAGAT AAACCACCAT
    GCAGACAAGT CCCTCGATAG CTTCTGTAAG TGGCAGAAAT CCATTCTCTC CCACCAAAGT
    GATGGAAACA CCATTCCAGA AAATGGGATT GCTCACCATG ATAATGCGGT TCTTATTACT
    AGATACGATA TCTGCACTTA TAAAAACAAG CCCTGTGGAA CATTGGGCTT GGCCTCTGTG
    GCTGGAATGT GTGAGCCTGA AAGGAGCTGC AGCATTAATG AAGACATTGG CCTAGGTTCA
    GCTTTTACCA TTGCACATGA GATTGGTCAC AATTTTGGCA TGAACCATGA TGGAATTGGA
    AATTCTTGTG GGACCAAAGG TCATGAAGCA GCAAAGCTTA TGGCAGCTCA CATTACAGCA
    AACACCAACC CCTTTTCTTG GTCAGCCTGT AGCCGGGACT ACATCACCAG CTTTTTAGAT
    TCGGGCCGTG GTACTTGCCT TGATAATGAG CCTCCCAAGC GTGACTTTCT TTATCCAGCT
    GTGGCCCCAG GTCAGGTGTA CGATGCTGAT GAACAGTGTC GCTTCCAGTA TGGAGCAACA
    TCCCGCCAAT GTAAATATGG GTGTGTAGAG AGCTCTGGTG CCTCAGCAAG AGTAACCGCT
    GTGTTACCAA CAGCATTCCA GCAGCTGAGG GTACTCTCTG CCAGACAGGG AGCATTGAGA
    AAGGGACCTT CAGGTGGAGG AAAATACTGT CTTGGAGAAA GGAAACGTTA TCGCTCCTGT
    AATACAGATC CGTGTCCTTC AGGGTCCCGT GATTTTCGAG AAAAACAATG TGCAGACTTT
    GACAATATGC CTTTCCGTGG AAAATATTAT AACTGGAAAC CCTACACTGG AGGTGGGGTT
    AAACCATGTG CATTAAACTG TTTGGCTGAA GGTTACAACT TTTACACTGA ACGTGCCCCT
    GCAGTAATAG ATGGAACTCA ATGCAATGTT GATTCACTGG ATATCTGCAT CAATGGAGAA
    TGCAAGCATG TAGGTTGTGA TAATATTTTG GGTTCTGATG CTAAGGAGGA TAGATGTCGT
    GTATGTGGAG GAGATGGGAG CACATGTGAA GCCATTGAAG GTTTCTTCAA TGATTCATTG
    CCCAGAGGAG GGTACATGGA AGTTGTTCAA ATTCCAAGAG GCTCAGTTCA TATTGAAATA
    AAAGAAGTAG CAATTTCAAA GAACTACATT GCTTTAAAAT CTGAAGAGGA TGACTACTAT
    ATTAATGGTG CCTGGACTAT TGACTGGCCT AGAAAGTTTG ATGTTGCTGG GACAGCTTTC
    CATTACAAGA GACCAACAGA TGAACCTGAA TCTTTGGAAG CTTTAGGCCC CACGTCAGAA
    AATCTGATAG TCATGATTTT ACTACAGGAA CAGAATTTGG GGCTAAGGTA TAAATTTAAT
    GTTCCCATCT CTCGCACTGG AAGTGGAGAC AATGAAGTTG GCTTTGCATG GAATCACCTG
    CCCTGGTCAG AATGTTCTGC CACGTGTGCT GGAGGTACAC AGAAACAAGA GGTAGTGTGT
    AAAAGGCTGG ATGACAACTC CATTGTACAG AACAATTACT GTGACCCTGA GAGTAAGCCA
    CCAGAAAACC AAAGAACCTG CAACACTGAG CCTTGCCCAC CTGAATGGTT TATAGGAGAT
    TGGTCAGAAT GTAGTAAGAC CTGTGATGGT GGAATGCGTT CACGGACTGT TCTCTGTATC
    AGAAAGATTG GACCTTCTGA GGAGGAGACA CTGGACAATG CCAACTGTTT AACACACAGG
    CCTATCGAAA AAGAACCCTG TAACAATCAG TCTTGTCCAC CTCAGTGGGT CGCTTTGGAC
    TGGTCAGAAT GCACTCCAAA ATGTGGTCCA GGATTCAAGC ATCGAATTGT TCTGTGCAAA
    AGCAGTGACC TTTCAAAAAC ATTTTCAGCT GCACAATGTC AAGAGGAAAG CAAGCCTCCA
    GTCCGCATCC GTTGTAGTTT AGGCCGGTGT CCACCTCCTC GCTGGGTTAC TGGAGACTGG
    GGACAGTGTT CTGCACAGTG TGGGTTAGGA CAACAAATGC GAACGGTGCA GTGCCTCTCA
    TACACTGGAC AAGCATCGAG TGAGTGTCCA GAAACTCTTC GACCTCCATC AATGCAACAG
    TGTGAAAGCA AATGTGACAG TACTCCCATT TCCAACACGG AAGAGTGCAA AGATGTGAAC
    AAAGTGGCTT ATTGCCCCCT GGTACTGAAG TTCAAGTTCT GCAGCCGAGC ATACTTCAGA
    CAGATGTGCT GTAAGACCTG CCAAGGACAC TGA

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

    RefSeq XP_019351614.1
    CDS371..3583
    Translation

    Target ORF information:

    RefSeq Version XM_019496069.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis ADAM metallopeptidase with thrombospondin type 1 motif 6 (ADAMTS6), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019496069.1

    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
    ATGGAAATTT TGTGGAAGAC GTTGACCTGG ATTTTGAGCC TAGTCATGGC TTCATCGGAA 
    TTTCACAGTG ACAACAGGCT TTCATATAGT TCTCAAGAGG AATTCCTGTC ATACCTTGAA
    CACTACCAAC TAACAATCCC AATAAGGGTT GATCAAAATG GAGCCTTCCT CAGCTTTACT
    GTGAAAAATG CTAAACCCTC AAGGAGGAGG AGGAGAAGTA CAGACTCTTA TGACCAAGAA
    CTGGCAGCAT CTAAATTATT TTTTAAACTT TCTGCCTATG GCAAGCACTT TCATTTAAAC
    CTGACTCTCA ACACAGATTT GGTGTCCAAA CACTTTACAG TAGAATACTG GGGGAAAGAT
    GGACCTCAAT GGAAACATGA TTTTTTAGAC CACTGTCATT ACACAGGATA TTTGCAAGAC
    CAGCATAGTA CAACTAAAGT GGCCTTAAGC AACTGCAATG GTCTGCATGG TGTTATTGCT
    ACAGAAGATG AAGAGTATTT TATTGAACCT TTAAGGAATA TAACTGAAAA TTCCAATAAT
    TTTAGTTATG AAAATGGTCA TCCTCATGTT ATTTACAAAA AGTCTACCAT GTACCAACGA
    CATCTCTATG ATCACACTCA CTGTGGTGTC TCAGAAGACC TCACAAGAAG GAGTAAACCT
    GGGTGGATGA GTGACACATC TGCTTTTCCA ACTTCACTTC CAAATAATGA CACATTAAGT
    AGTCACAGTC GACAGAAGAG ATCAGTAAGC ATTGAACGGT TTGTGGAGAC GCTGGTAGTA
    GCAGACAAAA TGATGGTGGG ATACCATGGT CGCAAAGACA TTGAGCATTA CATTTTGAGT
    GTAATGAATA TTGTTGCCAA ACTTTATCGT GATTCCAGTC TTGGAAACGT TGTGAATATT
    ATAGTGACAC GGCTGATTGT TCTTACCGAA GATCAGCCAA ACTTGGAGAT AAACCACCAT
    GCAGACAAGT CCCTCGATAG CTTCTGTAAG TGGCAGAAAT CCATTCTCTC CCACCAAAGT
    GATGGAAACA CCATTCCAGA AAATGGGATT GCTCACCATG ATAATGCGGT TCTTATTACT
    AGATACGATA TCTGCACTTA TAAAAACAAG CCCTGTGGAA CATTGGGCTT GGCCTCTGTG
    GCTGGAATGT GTGAGCCTGA AAGGAGCTGC AGCATTAATG AAGACATTGG CCTAGGTTCA
    GCTTTTACCA TTGCACATGA GATTGGTCAC AATTTTGGCA TGAACCATGA TGGAATTGGA
    AATTCTTGTG GGACCAAAGG TCATGAAGCA GCAAAGCTTA TGGCAGCTCA CATTACAGCA
    AACACCAACC CCTTTTCTTG GTCAGCCTGT AGCCGGGACT ACATCACCAG CTTTTTAGAT
    TCGGGCCGTG GTACTTGCCT TGATAATGAG CCTCCCAAGC GTGACTTTCT TTATCCAGCT
    GTGGCCCCAG GTCAGGTGTA CGATGCTGAT GAACAGTGTC GCTTCCAGTA TGGAGCAACA
    TCCCGCCAAT GTAAATATGG GTGTGTAGAG AGCTCTGGTG CCTCAGCAAG AGTAACCGCT
    GTGTTACCAA CAGCATTCCA GCAGCTGAGG GTACTCTCTG CCAGACAGGG AGCATTGAGA
    AAGGGACCTT CAGGTGGAGG AAAATACTGT CTTGGAGAAA GGAAACGTTA TCGCTCCTGT
    AATACAGATC CGTGTCCTTC AGGGTCCCGT GATTTTCGAG AAAAACAATG TGCAGACTTT
    GACAATATGC CTTTCCGTGG AAAATATTAT AACTGGAAAC CCTACACTGG AGGTGGGGTT
    AAACCATGTG CATTAAACTG TTTGGCTGAA GGTTACAACT TTTACACTGA ACGTGCCCCT
    GCAGTAATAG ATGGAACTCA ATGCAATGTT GATTCACTGG ATATCTGCAT CAATGGAGAA
    TGCAAGCATG TAGGTTGTGA TAATATTTTG GGTTCTGATG CTAAGGAGGA TAGATGTCGT
    GTATGTGGAG GAGATGGGAG CACATGTGAA GCCATTGAAG GTTTCTTCAA TGATTCATTG
    CCCAGAGGAG GGTACATGGA AGTTGTTCAA ATTCCAAGAG GCTCAGTTCA TATTGAAATA
    AAAGAAGTAG CAATTTCAAA GAACTACATT GCTTTAAAAT CTGAAGAGGA TGACTACTAT
    ATTAATGGTG CCTGGACTAT TGACTGGCCT AGAAAGTTTG ATGTTGCTGG GACAGCTTTC
    CATTACAAGA GACCAACAGA TGAACCTGAA TCTTTGGAAG CTTTAGGCCC CACGTCAGAA
    AATCTGATAG TCATGATTTT ACTACAGGAA CAGAATTTGG GGCTAAGGTA TAAATTTAAT
    GTTCCCATCT CTCGCACTGG AAGTGGAGAC AATGAAGTTG GCTTTGCATG GAATCACCTG
    CCCTGGTCAG AATGTTCTGC CACGTGTGCT GGAGGTACAC AGAAACAAGA GGTAGTGTGT
    AAAAGGCTGG ATGACAACTC CATTGTACAG AACAATTACT GTGACCCTGA GAGTAAGCCA
    CCAGAAAACC AAAGAACCTG CAACACTGAG CCTTGCCCAC CTGAATGGTT TATAGGAGAT
    TGGTCAGAAT GTAGTAAGAC CTGTGATGGT GGAATGCGTT CACGGACTGT TCTCTGTATC
    AGAAAGATTG GACCTTCTGA GGAGGAGACA CTGGACAATG CCAACTGTTT AACACACAGG
    CCTATCGAAA AAGAACCCTG TAACAATCAG TCTTGTCCAC CTCAGTGGGT CGCTTTGGAC
    TGGTCAGAAT GCACTCCAAA ATGTGGTCCA GGATTCAAGC ATCGAATTGT TCTGTGCAAA
    AGCAGTGACC TTTCAAAAAC ATTTTCAGCT GCACAATGTC AAGAGGAAAG CAAGCCTCCA
    GTCCGCATCC GTTGTAGTTT AGGCCGGTGT CCACCTCCTC GCTGGGTTAC TGGAGACTGG
    GGACAGTGTT CTGCACAGTG TGGGTTAGGA CAACAAATGC GAACGGTGCA GTGCCTCTCA
    TACACTGGAC AAGCATCGAG TGAGTGTCCA GAAACTCTTC GACCTCCATC AATGCAACAG
    TGTGAAAGCA AATGTGACAG TACTCCCATT TCCAACACGG AAGAGTGCAA AGATGTGAAC
    AAAGTGGCTT ATTGCCCCCT GGTACTGAAG TTCAAGTTCT GCAGCCGAGC ATACTTCAGA
    CAGATGTGCT GTAAGACCTG CCAAGGACAC TGA

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