VWA3B cDNA ORF clone, Alligator mississippiensis(American alligator)

The following VWA3B gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the VWA3B 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
OAl53784 XM_019485108.1
Latest version!
Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $797.30
$1139.00
OAl53785 XM_019485109.1
Latest version!
Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $797.30
$1139.00
OAl53786 XM_019485110.1
Latest version!
Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $797.30
$1139.00
OAl53787 XM_019485111.1
Latest version!
Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $797.30
$1139.00
OAl53788 XM_019485112.1
Latest version!
Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAl53789 XM_019485113.1
Latest version!
Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X6, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OAl53790 XM_019485114.1
Latest version!
Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X7, 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 OAl53784
    Clone ID Related Accession (Same CDS sequence) XM_019485108.1
    Accession Version XM_019485108.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4128bp)
    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 von Willebrand factor A domain-containing protein 3B isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017709042.1) 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGCAAGTT
    CAGAGTATTT TAACAGTGTC CAACCAGCCT ATTTCTGGAG AAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGAA
    TCTGCTTGCT TCTTTTTATC AACACAAGGC TCATCGGCAT CTGGAACTCT GCTGTCTCCA
    AGTACCTCAG CTCACAGCTC ATCAAAGGAT CTTTGTTGCT CTCACACAGT TACTGTGGAT
    CCAAAGAGTG CCTCAGAACC TGTTGATGAC AACATCAGCC TTATCTCAAC TGCTGAGAGG
    CTGGAAGAGT TGGCAGGGCA GTTTCAGCAG CACTACATAA ATCAAAGAAA ACATCATCAG
    GTGTGCCTGA CAGAGGAGAC TGTGAGGAAT GGAACAGGTT ATGGGTAG

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

    RefSeq XP_019340653.1
    CDS127..4254
    Translation

    Target ORF information:

    RefSeq Version XM_019485108.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019485108.1

    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
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGCAAGTT
    CAGAGTATTT TAACAGTGTC CAACCAGCCT ATTTCTGGAG AAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGAA
    TCTGCTTGCT TCTTTTTATC AACACAAGGC TCATCGGCAT CTGGAACTCT GCTGTCTCCA
    AGTACCTCAG CTCACAGCTC ATCAAAGGAT CTTTGTTGCT CTCACACAGT TACTGTGGAT
    CCAAAGAGTG CCTCAGAACC TGTTGATGAC AACATCAGCC TTATCTCAAC TGCTGAGAGG
    CTGGAAGAGT TGGCAGGGCA GTTTCAGCAG CACTACATAA ATCAAAGAAA ACATCATCAG
    GTGTGCCTGA CAGAGGAGAC TGTGAGGAAT GGAACAGGTT ATGGGTAG

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

    CloneID OAl53785
    Clone ID Related Accession (Same CDS sequence) XM_019485109.1
    Accession Version XM_019485109.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4128bp)
    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 von Willebrand factor A domain-containing protein 3B isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017709042.1) 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGGTTCCT
    GGGGTTTGGT GCTGTGTTGG TTTGGGTGAG GTGGAGGAGT CAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGAA
    TCTGCTTGCT TCTTTTTATC AACACAAGGC TCATCGGCAT CTGGAACTCT GCTGTCTCCA
    AGTACCTCAG CTCACAGCTC ATCAAAGGAT CTTTGTTGCT CTCACACAGT TACTGTGGAT
    CCAAAGAGTG CCTCAGAACC TGTTGATGAC AACATCAGCC TTATCTCAAC TGCTGAGAGG
    CTGGAAGAGT TGGCAGGGCA GTTTCAGCAG CACTACATAA ATCAAAGAAA ACATCATCAG
    GTGTGCCTGA CAGAGGAGAC TGTGAGGAAT GGAACAGGTT ATGGGTAG

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

    RefSeq XP_019340654.1
    CDS127..4254
    Translation

    Target ORF information:

    RefSeq Version XM_019485109.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019485109.1

    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
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGGTTCCT
    GGGGTTTGGT GCTGTGTTGG TTTGGGTGAG GTGGAGGAGT CAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGAA
    TCTGCTTGCT TCTTTTTATC AACACAAGGC TCATCGGCAT CTGGAACTCT GCTGTCTCCA
    AGTACCTCAG CTCACAGCTC ATCAAAGGAT CTTTGTTGCT CTCACACAGT TACTGTGGAT
    CCAAAGAGTG CCTCAGAACC TGTTGATGAC AACATCAGCC TTATCTCAAC TGCTGAGAGG
    CTGGAAGAGT TGGCAGGGCA GTTTCAGCAG CACTACATAA ATCAAAGAAA ACATCATCAG
    GTGTGCCTGA CAGAGGAGAC TGTGAGGAAT GGAACAGGTT ATGGGTAG

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

    CloneID OAl53786
    Clone ID Related Accession (Same CDS sequence) XM_019485110.1
    Accession Version XM_019485110.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4098bp)
    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 von Willebrand factor A domain-containing protein 3B isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017709042.1) 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGCAAGTT
    CAGAGTATTT TAACAGTGTC CAACCAGCCT ATTTCTGGAG AAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGGC
    TCATCGGCAT CTGGAACTCT GCTGTCTCCA AGTACCTCAG CTCACAGCTC ATCAAAGGAT
    CTTTGTTGCT CTCACACAGT TACTGTGGAT CCAAAGAGTG CCTCAGAACC TGTTGATGAC
    AACATCAGCC TTATCTCAAC TGCTGAGAGG CTGGAAGAGT TGGCAGGGCA GTTTCAGCAG
    CACTACATAA ATCAAAGAAA ACATCATCAG GTGTGCCTGA CAGAGGAGAC TGTGAGGAAT
    GGAACAGGTT ATGGGTAG

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

    RefSeq XP_019340655.1
    CDS127..4224
    Translation

    Target ORF information:

    RefSeq Version XM_019485110.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019485110.1

    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
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGCAAGTT
    CAGAGTATTT TAACAGTGTC CAACCAGCCT ATTTCTGGAG AAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGGC
    TCATCGGCAT CTGGAACTCT GCTGTCTCCA AGTACCTCAG CTCACAGCTC ATCAAAGGAT
    CTTTGTTGCT CTCACACAGT TACTGTGGAT CCAAAGAGTG CCTCAGAACC TGTTGATGAC
    AACATCAGCC TTATCTCAAC TGCTGAGAGG CTGGAAGAGT TGGCAGGGCA GTTTCAGCAG
    CACTACATAA ATCAAAGAAA ACATCATCAG GTGTGCCTGA CAGAGGAGAC TGTGAGGAAT
    GGAACAGGTT ATGGGTAG

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

    CloneID OAl53787
    Clone ID Related Accession (Same CDS sequence) XM_019485111.1
    Accession Version XM_019485111.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4017bp)
    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 von Willebrand factor A domain-containing protein 3B isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017709042.1) 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGCAAGTT
    CAGAGTATTT TAACAGTGTC CAACCAGCCT ATTTCTGGAG AAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGTT
    ACTGTGGATC CAAAGAGTGC CTCAGAACCT GTTGATGACA ACATCAGCCT TATCTCAACT
    GCTGAGAGGC TGGAAGAGTT GGCAGGGCAG TTTCAGCAGC ACTACATAAA TCAAAGAAAA
    CATCATCAGG TGTGCCTGAC AGAGGAGACT GTGAGGAATG GAACAGGTTA TGGGTAG

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

    RefSeq XP_019340656.1
    CDS127..4143
    Translation

    Target ORF information:

    RefSeq Version XM_019485111.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019485111.1

    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
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGCAAGTT
    CAGAGTATTT TAACAGTGTC CAACCAGCCT ATTTCTGGAG AAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGTT
    ACTGTGGATC CAAAGAGTGC CTCAGAACCT GTTGATGACA ACATCAGCCT TATCTCAACT
    GCTGAGAGGC TGGAAGAGTT GGCAGGGCAG TTTCAGCAGC ACTACATAAA TCAAAGAAAA
    CATCATCAGG TGTGCCTGAC AGAGGAGACT GTGAGGAATG GAACAGGTTA TGGGTAG

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

    CloneID OAl53788
    Clone ID Related Accession (Same CDS sequence) XM_019485112.1
    Accession Version XM_019485112.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3903bp)
    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 von Willebrand factor A domain-containing protein 3B isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017709042.1) 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT ATTATGTGTC CACCTTGGGG 
    AAACTCGTGG CTTCACGGTA TGCAGATGGT CTTTTTCCTC AGTACATGAG AGCCCAGGAT
    GGCAGAGTAT ATAATCTGAC CGCCAAAAAG GAGCTAATTC TTAATTTTGT GGACTGTCTA
    ATTGGAGCTA TCGAGCTGTA CAAGCAGAGA ATGGAATGGT TAACCAGTGA AAGCCGGCAG
    ATATTTGGAG TGATTCAGGA ACAATGCATT GTCATTGTTT TGGATTTTGG CGCCACGTCT
    GGGATTGAGT TTGATCGGTG CCGTGATGCA CTTTCTTTGG TCCTCTTGGA ACAAGTGACC
    CACCTTGCCA AATTTAACCT CATTCGGGCT GCTCAAGATC CTATCAAGTG GCAGCAGAAA
    GCCGTTCCAG TGACTGAATG TTTTGTAGAG TTTGCTGTTA ACTGGCTCTG GGAGCTTGAC
    CGTACGCCAG CTCTCAGCCA CACCAGCTCC ACTGAGGCCC TGATGGAGGC TGTAAGTGAT
    GAGATGGTTG AAGCAGTTTA TTATTTTGCT GTGGGTGAGG TTCCTGAGGA TATGAAACAT
    CTACTCCTTC AGAAGTTTTC TGACAGTCCT TTCCCAATCC ATCCAGTATC TTTTAATGCC
    AGGGAAGAAG ATACTATTGT TTTCTTGAAG GAGCTGGGTC GCCTGACCTC GGGCAGATTC
    CATGCATTTG CTGAGAGAAC TGATTATACA AATGTCATCG AACCTGTCAT AAAGAGTGAG
    GAGGATGGAG AAAGTCTAAC TAGCTGGAAT ACAAGAAAAT TGAAAGGAAG GGTGCCTCTA
    GTTGCTGGTG TCAGAGAAGA TGTCTTTCTG GTCTGGAAGG AATTGGAAGA GGCCAGGAGT
    ACACTGAGGC AAGTTCAGAG TATTTTAACA GTGTCCAACC AGCCTATTTC TGGAGAAGCA
    TTCAAAACGA ATCATCCAGT GCCTGAGCCA AAACCTGAGG ATTATGTAAA TTCAAAAGAT
    TGGTTGCAGA AATATGGCCT GAAAGCTCAG AAGCTAACAT TATATGATGC ACTTGCTGAC
    TGTACTTTTC GCCATGTTGA TGGCATTGTT GACATAAAAG CCAAGCCAGA AGATGAATCT
    TTACAAACTG ATGCTGAAAC AAAGAAGAAA GTAATCCACG CAAAATACTG TGACAAATTT
    ATACATACCT ACTGGAAAGA TGGCTCTATG GTTCATGTGT ATGTCACTGT GGAAAAGTAC
    AAGCAGTATG AAGAGAAAAT GAGGAATGCT CTTCAACAAA TGGAAGGAAG GATTAAGTGG
    CTCCAGCGAG GGAGCAGAGG ACTCTTTGGC AACGTGCTTG AAGATCACAT CTGTATTCTC
    ATCGATACAT CTCAGTCTAT GATAGACAAA CTGCCATTGG TGAAAGAGAA AATATTTCAG
    CTCATGCAGG AGCAGCTTAG ACACAAAAGC AGCTTTAACT TTGTGAAATT TGATGCTCAA
    GCAGCAGCTT GGCAAGACAA ACTTGCTGAA GTTAATGAAG AGAATTTGCA GGATGCTTGG
    CTATGGATAA AAGGACTTGA GGTTGGAAGT TCTACCAATA CACTCAGTGC TCTTCAAATT
    GCTCTTGCTG ATCATGATGC TGAAGCCATT TATCTTCTTA CGGATGGGAG GCCTGATCAG
    CCACCAAAAT CAATTTTGGC TCAAGTTCAT CTTCATCATA AGGTTCCTAT TCATACCATA
    TCTTTCAACT GTGATGATAC AGAGGCTAAT AAATTTTTGC ATGAATTGTC TACTGAGACA
    GGTGGACGGT TTCATTATTA TAACATTTAT TTGAGGGATC CTGAATCTCC AGAGCCAATT
    GTGAGTGAAG ATATATGCCT TTTAAAAAGA GAAATTGAAC AGGGGAAGAA AGATCTAGAG
    AAAGTGAAGG CTTTCCATGC TGAATGTTTG ATGATAGATT GGTGTAATGG AGAAAAAGAG
    CCTGAAAACA ATCCTCACAA GCAGACTTTT ACTACTTCAT CTATAACCAT GCACATCCAG
    GAGCTGAATG CTTCTCCCAC CAGTAGACCA CAGTGTACAT TAGAAGAGCC AACATTGACT
    GCACACCACC AGATACTAAA TACATGGCAA ACTTGTAATG ACAGTCCAGC CATAAGGAAA
    AAGGCACTGT ATGCAGAACA AACAAAGACT AGTCTGCTCA GAACTCGAGG TTATGGAATA
    AAGTCTTGTA AAGGAAGTCC AGATGAGAAG ATATCTCCTG AAAGAAAGGA TTTTCACCTC
    AAAAACACAC TGAACCCTGC AGCCAGTTTT AAAGAAATGA ATACCCAAAA GGTGACAAAA
    AGAACATCTA AAGATTCTCT AGATATCTCT TCATCTCGTT GGCTAAAGAC TCATGGTTTA
    GTTGCTAGGC GACTCACCAT AATGGATGCC TTAGCCCCCA CAGCTGTTCC TCACAGTACT
    AAATACATCC CAGTTCTGGA AAAACATGTT GTTTCTAAAG TCTTTGATGA GGTGTTCCCC
    CTTGCCCACA TTAGTAATGG CAAGCAACAA ATCACATTAA TTAATCCTCA AGCAGTGAAT
    CTTGATACTT ACAAAGAGAA GCTGGAACAA GCAGTTAAAT TTTATGAAAG GCGCCTCAAT
    CTAATTACTT GGAGAGCACT ATCTCAAGAA GAAAGAGACA AGTTTGAGCA GGACAAGCCA
    GTCCGCTACA TGGAACATAA GGAAGCCTTG CTAGAGTCTT TAGAAAATCT AGGTTGGCCT
    GTTTCCTATG AAGATGTGAT GCTGTTGGAA GATGAAATTC TGGCAGGGTT AACATATATC
    CAACAGGCCT CTGATCTTCA GGAAGCTGCC AAAAAGGACA TTCAGAGGAC CGCTGCTTCA
    CCTGTCAACC ACAGTAAAAA GTTTCAGAAT CTTAAAGAAG AGAGTATAAG GTCACAAACT
    AAAAAAGGAA AAGTGTTTGA AACGCTCAAA GGCCAAAAGG TGATTGCAAG ATCAGACCTC
    ACAGGATTAT ATTTCCCAGG GACAGTGATG AAAAGTATCA GTTCCACCCG TGCACTTGTT
    GACTTCAGCT ATGGAGAGAC GCACATTGTA CCAATTAAAT TCATTATTAT TGTGGGGGGT
    GCTATGCCTT GCCCATCTTT GCAGGTTGGG GACTATGTGT TCTCCAGAAC TGGGATACAG
    ATGGGAGATT ATTATTATGC ACCTGCTGTT GTCATAGCAA CACCAAATAG AGTTCAAGCA
    GATGATAAAC TCTACACAGT TTTGATGTAC AACAATAGGA AAGAACACTG TATACGAAGT
    GGGCTTGTTA AAGTCAGCCA AGCTAAATAT GCTTCTTCCT GCCGATATAT AAAAATGGCC
    CAGGTGGTGG ATTACATGAT CCCAAACAAA CAAATTGTGA AGCCCATTGA TCAGTTGTCA
    CTGGAAGAAG AAGAAAAGAA AAGAAGTGGA AGGGAAGATG GAGGGAAAAA GAAAAAAAAA
    GGGACAACAG AGAGCAGAAG GAATCCAAGA GAGGAGATGT CAGACTCAGA GGAACTTTTG
    TTTATTCCCA GAAGGAGGGA AGTAAAAGGC AAAGGAAGGA ATTCACTGCC TCATGACAAA
    GTTGGAATTG AAGAATCTGC TTGCTTCTTT TTATCAACAC AAGGCTCATC GGCATCTGGA
    ACTCTGCTGT CTCCAAGTAC CTCAGCTCAC AGCTCATCAA AGGATCTTTG TTGCTCTCAC
    ACAGTTACTG TGGATCCAAA GAGTGCCTCA GAACCTGTTG ATGACAACAT CAGCCTTATC
    TCAACTGCTG AGAGGCTGGA AGAGTTGGCA GGGCAGTTTC AGCAGCACTA CATAAATCAA
    AGAAAACATC ATCAGGTGTG CCTGACAGAG GAGACTGTGA GGAATGGAAC AGGTTATGGG
    TAG

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

    RefSeq XP_019340657.1
    CDS127..4029
    Translation

    Target ORF information:

    RefSeq Version XM_019485112.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019485112.1

    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
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT ATTATGTGTC CACCTTGGGG 
    AAACTCGTGG CTTCACGGTA TGCAGATGGT CTTTTTCCTC AGTACATGAG AGCCCAGGAT
    GGCAGAGTAT ATAATCTGAC CGCCAAAAAG GAGCTAATTC TTAATTTTGT GGACTGTCTA
    ATTGGAGCTA TCGAGCTGTA CAAGCAGAGA ATGGAATGGT TAACCAGTGA AAGCCGGCAG
    ATATTTGGAG TGATTCAGGA ACAATGCATT GTCATTGTTT TGGATTTTGG CGCCACGTCT
    GGGATTGAGT TTGATCGGTG CCGTGATGCA CTTTCTTTGG TCCTCTTGGA ACAAGTGACC
    CACCTTGCCA AATTTAACCT CATTCGGGCT GCTCAAGATC CTATCAAGTG GCAGCAGAAA
    GCCGTTCCAG TGACTGAATG TTTTGTAGAG TTTGCTGTTA ACTGGCTCTG GGAGCTTGAC
    CGTACGCCAG CTCTCAGCCA CACCAGCTCC ACTGAGGCCC TGATGGAGGC TGTAAGTGAT
    GAGATGGTTG AAGCAGTTTA TTATTTTGCT GTGGGTGAGG TTCCTGAGGA TATGAAACAT
    CTACTCCTTC AGAAGTTTTC TGACAGTCCT TTCCCAATCC ATCCAGTATC TTTTAATGCC
    AGGGAAGAAG ATACTATTGT TTTCTTGAAG GAGCTGGGTC GCCTGACCTC GGGCAGATTC
    CATGCATTTG CTGAGAGAAC TGATTATACA AATGTCATCG AACCTGTCAT AAAGAGTGAG
    GAGGATGGAG AAAGTCTAAC TAGCTGGAAT ACAAGAAAAT TGAAAGGAAG GGTGCCTCTA
    GTTGCTGGTG TCAGAGAAGA TGTCTTTCTG GTCTGGAAGG AATTGGAAGA GGCCAGGAGT
    ACACTGAGGC AAGTTCAGAG TATTTTAACA GTGTCCAACC AGCCTATTTC TGGAGAAGCA
    TTCAAAACGA ATCATCCAGT GCCTGAGCCA AAACCTGAGG ATTATGTAAA TTCAAAAGAT
    TGGTTGCAGA AATATGGCCT GAAAGCTCAG AAGCTAACAT TATATGATGC ACTTGCTGAC
    TGTACTTTTC GCCATGTTGA TGGCATTGTT GACATAAAAG CCAAGCCAGA AGATGAATCT
    TTACAAACTG ATGCTGAAAC AAAGAAGAAA GTAATCCACG CAAAATACTG TGACAAATTT
    ATACATACCT ACTGGAAAGA TGGCTCTATG GTTCATGTGT ATGTCACTGT GGAAAAGTAC
    AAGCAGTATG AAGAGAAAAT GAGGAATGCT CTTCAACAAA TGGAAGGAAG GATTAAGTGG
    CTCCAGCGAG GGAGCAGAGG ACTCTTTGGC AACGTGCTTG AAGATCACAT CTGTATTCTC
    ATCGATACAT CTCAGTCTAT GATAGACAAA CTGCCATTGG TGAAAGAGAA AATATTTCAG
    CTCATGCAGG AGCAGCTTAG ACACAAAAGC AGCTTTAACT TTGTGAAATT TGATGCTCAA
    GCAGCAGCTT GGCAAGACAA ACTTGCTGAA GTTAATGAAG AGAATTTGCA GGATGCTTGG
    CTATGGATAA AAGGACTTGA GGTTGGAAGT TCTACCAATA CACTCAGTGC TCTTCAAATT
    GCTCTTGCTG ATCATGATGC TGAAGCCATT TATCTTCTTA CGGATGGGAG GCCTGATCAG
    CCACCAAAAT CAATTTTGGC TCAAGTTCAT CTTCATCATA AGGTTCCTAT TCATACCATA
    TCTTTCAACT GTGATGATAC AGAGGCTAAT AAATTTTTGC ATGAATTGTC TACTGAGACA
    GGTGGACGGT TTCATTATTA TAACATTTAT TTGAGGGATC CTGAATCTCC AGAGCCAATT
    GTGAGTGAAG ATATATGCCT TTTAAAAAGA GAAATTGAAC AGGGGAAGAA AGATCTAGAG
    AAAGTGAAGG CTTTCCATGC TGAATGTTTG ATGATAGATT GGTGTAATGG AGAAAAAGAG
    CCTGAAAACA ATCCTCACAA GCAGACTTTT ACTACTTCAT CTATAACCAT GCACATCCAG
    GAGCTGAATG CTTCTCCCAC CAGTAGACCA CAGTGTACAT TAGAAGAGCC AACATTGACT
    GCACACCACC AGATACTAAA TACATGGCAA ACTTGTAATG ACAGTCCAGC CATAAGGAAA
    AAGGCACTGT ATGCAGAACA AACAAAGACT AGTCTGCTCA GAACTCGAGG TTATGGAATA
    AAGTCTTGTA AAGGAAGTCC AGATGAGAAG ATATCTCCTG AAAGAAAGGA TTTTCACCTC
    AAAAACACAC TGAACCCTGC AGCCAGTTTT AAAGAAATGA ATACCCAAAA GGTGACAAAA
    AGAACATCTA AAGATTCTCT AGATATCTCT TCATCTCGTT GGCTAAAGAC TCATGGTTTA
    GTTGCTAGGC GACTCACCAT AATGGATGCC TTAGCCCCCA CAGCTGTTCC TCACAGTACT
    AAATACATCC CAGTTCTGGA AAAACATGTT GTTTCTAAAG TCTTTGATGA GGTGTTCCCC
    CTTGCCCACA TTAGTAATGG CAAGCAACAA ATCACATTAA TTAATCCTCA AGCAGTGAAT
    CTTGATACTT ACAAAGAGAA GCTGGAACAA GCAGTTAAAT TTTATGAAAG GCGCCTCAAT
    CTAATTACTT GGAGAGCACT ATCTCAAGAA GAAAGAGACA AGTTTGAGCA GGACAAGCCA
    GTCCGCTACA TGGAACATAA GGAAGCCTTG CTAGAGTCTT TAGAAAATCT AGGTTGGCCT
    GTTTCCTATG AAGATGTGAT GCTGTTGGAA GATGAAATTC TGGCAGGGTT AACATATATC
    CAACAGGCCT CTGATCTTCA GGAAGCTGCC AAAAAGGACA TTCAGAGGAC CGCTGCTTCA
    CCTGTCAACC ACAGTAAAAA GTTTCAGAAT CTTAAAGAAG AGAGTATAAG GTCACAAACT
    AAAAAAGGAA AAGTGTTTGA AACGCTCAAA GGCCAAAAGG TGATTGCAAG ATCAGACCTC
    ACAGGATTAT ATTTCCCAGG GACAGTGATG AAAAGTATCA GTTCCACCCG TGCACTTGTT
    GACTTCAGCT ATGGAGAGAC GCACATTGTA CCAATTAAAT TCATTATTAT TGTGGGGGGT
    GCTATGCCTT GCCCATCTTT GCAGGTTGGG GACTATGTGT TCTCCAGAAC TGGGATACAG
    ATGGGAGATT ATTATTATGC ACCTGCTGTT GTCATAGCAA CACCAAATAG AGTTCAAGCA
    GATGATAAAC TCTACACAGT TTTGATGTAC AACAATAGGA AAGAACACTG TATACGAAGT
    GGGCTTGTTA AAGTCAGCCA AGCTAAATAT GCTTCTTCCT GCCGATATAT AAAAATGGCC
    CAGGTGGTGG ATTACATGAT CCCAAACAAA CAAATTGTGA AGCCCATTGA TCAGTTGTCA
    CTGGAAGAAG AAGAAAAGAA AAGAAGTGGA AGGGAAGATG GAGGGAAAAA GAAAAAAAAA
    GGGACAACAG AGAGCAGAAG GAATCCAAGA GAGGAGATGT CAGACTCAGA GGAACTTTTG
    TTTATTCCCA GAAGGAGGGA AGTAAAAGGC AAAGGAAGGA ATTCACTGCC TCATGACAAA
    GTTGGAATTG AAGAATCTGC TTGCTTCTTT TTATCAACAC AAGGCTCATC GGCATCTGGA
    ACTCTGCTGT CTCCAAGTAC CTCAGCTCAC AGCTCATCAA AGGATCTTTG TTGCTCTCAC
    ACAGTTACTG TGGATCCAAA GAGTGCCTCA GAACCTGTTG ATGACAACAT CAGCCTTATC
    TCAACTGCTG AGAGGCTGGA AGAGTTGGCA GGGCAGTTTC AGCAGCACTA CATAAATCAA
    AGAAAACATC ATCAGGTGTG CCTGACAGAG GAGACTGTGA GGAATGGAAC AGGTTATGGG
    TAG

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

    CloneID OAl53789
    Clone ID Related Accession (Same CDS sequence) XM_019485113.1
    Accession Version XM_019485113.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3843bp)
    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 von Willebrand factor A domain-containing protein 3B isoform X6
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017709042.1) 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGCAAGTT
    CAGAGTATTT TAACAGTGTC CAACCAGCCT ATTTCTGGAG AAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGGT
    TAA

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

    RefSeq XP_019340658.1
    CDS127..3969
    Translation

    Target ORF information:

    RefSeq Version XM_019485113.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X6, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019485113.1

    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
    ATGACTAGCA AGCCCTGCAA GAAGCTTGCC TGGAATGACT TGGTTACTTC TGATGTAAAA 
    CATGGAGAAC AAGAAAAAAC TGATTCTCAC ATTGTGGCCA AGGGAAAATC TACAGAAAAA
    GACATGAAAC TTAGGAGAAT TCAGTGGGAC TTGGATGTAC AACCTCTCAT TTCATCTTCT
    AAGTGGCTTC AACTTTATGG GCTTAAGAGA AACAAGCTAT CCCTTTCTCA GATTTTATCA
    CAAATTGGAT TTCAGCACAG GGAAGATTAT GTGTCCACCT TGGGGAAACT CGTGGCTTCA
    CGGTATGCAG ATGGTCTTTT TCCTCAGTAC ATGAGAGCCC AGGATGGCAG AGTATATAAT
    CTGACCGCCA AAAAGGAGCT AATTCTTAAT TTTGTGGACT GTCTAATTGG AGCTATCGAG
    CTGTACAAGC AGAGAATGGA ATGGTTAACC AGTGAAAGCC GGCAGATATT TGGAGTGATT
    CAGGAACAAT GCATTGTCAT TGTTTTGGAT TTTGGCGCCA CGTCTGGGAT TGAGTTTGAT
    CGGTGCCGTG ATGCACTTTC TTTGGTCCTC TTGGAACAAG TGACCCACCT TGCCAAATTT
    AACCTCATTC GGGCTGCTCA AGATCCTATC AAGTGGCAGC AGAAAGCCGT TCCAGTGACT
    GAATGTTTTG TAGAGTTTGC TGTTAACTGG CTCTGGGAGC TTGACCGTAC GCCAGCTCTC
    AGCCACACCA GCTCCACTGA GGCCCTGATG GAGGCTGTAA GTGATGAGAT GGTTGAAGCA
    GTTTATTATT TTGCTGTGGG TGAGGTTCCT GAGGATATGA AACATCTACT CCTTCAGAAG
    TTTTCTGACA GTCCTTTCCC AATCCATCCA GTATCTTTTA ATGCCAGGGA AGAAGATACT
    ATTGTTTTCT TGAAGGAGCT GGGTCGCCTG ACCTCGGGCA GATTCCATGC ATTTGCTGAG
    AGAACTGATT ATACAAATGT CATCGAACCT GTCATAAAGA GTGAGGAGGA TGGAGAAAGT
    CTAACTAGCT GGAATACAAG AAAATTGAAA GGAAGGGTGC CTCTAGTTGC TGGTGTCAGA
    GAAGATGTCT TTCTGGTCTG GAAGGAATTG GAAGAGGCCA GGAGTACACT GAGGCAAGTT
    CAGAGTATTT TAACAGTGTC CAACCAGCCT ATTTCTGGAG AAGCATTCAA AACGAATCAT
    CCAGTGCCTG AGCCAAAACC TGAGGATTAT GTAAATTCAA AAGATTGGTT GCAGAAATAT
    GGCCTGAAAG CTCAGAAGCT AACATTATAT GATGCACTTG CTGACTGTAC TTTTCGCCAT
    GTTGATGGCA TTGTTGACAT AAAAGCCAAG CCAGAAGATG AATCTTTACA AACTGATGCT
    GAAACAAAGA AGAAAGTAAT CCACGCAAAA TACTGTGACA AATTTATACA TACCTACTGG
    AAAGATGGCT CTATGGTTCA TGTGTATGTC ACTGTGGAAA AGTACAAGCA GTATGAAGAG
    AAAATGAGGA ATGCTCTTCA ACAAATGGAA GGAAGGATTA AGTGGCTCCA GCGAGGGAGC
    AGAGGACTCT TTGGCAACGT GCTTGAAGAT CACATCTGTA TTCTCATCGA TACATCTCAG
    TCTATGATAG ACAAACTGCC ATTGGTGAAA GAGAAAATAT TTCAGCTCAT GCAGGAGCAG
    CTTAGACACA AAAGCAGCTT TAACTTTGTG AAATTTGATG CTCAAGCAGC AGCTTGGCAA
    GACAAACTTG CTGAAGTTAA TGAAGAGAAT TTGCAGGATG CTTGGCTATG GATAAAAGGA
    CTTGAGGTTG GAAGTTCTAC CAATACACTC AGTGCTCTTC AAATTGCTCT TGCTGATCAT
    GATGCTGAAG CCATTTATCT TCTTACGGAT GGGAGGCCTG ATCAGCCACC AAAATCAATT
    TTGGCTCAAG TTCATCTTCA TCATAAGGTT CCTATTCATA CCATATCTTT CAACTGTGAT
    GATACAGAGG CTAATAAATT TTTGCATGAA TTGTCTACTG AGACAGGTGG ACGGTTTCAT
    TATTATAACA TTTATTTGAG GGATCCTGAA TCTCCAGAGC CAATTGTGAG TGAAGATATA
    TGCCTTTTAA AAAGAGAAAT TGAACAGGGG AAGAAAGATC TAGAGAAAGT GAAGGCTTTC
    CATGCTGAAT GTTTGATGAT AGATTGGTGT AATGGAGAAA AAGAGCCTGA AAACAATCCT
    CACAAGCAGA CTTTTACTAC TTCATCTATA ACCATGCACA TCCAGGAGCT GAATGCTTCT
    CCCACCAGTA GACCACAGTG TACATTAGAA GAGCCAACAT TGACTGCACA CCACCAGATA
    CTAAATACAT GGCAAACTTG TAATGACAGT CCAGCCATAA GGAAAAAGGC ACTGTATGCA
    GAACAAACAA AGACTAGTCT GCTCAGAACT CGAGGTTATG GAATAAAGTC TTGTAAAGGA
    AGTCCAGATG AGAAGATATC TCCTGAAAGA AAGGATTTTC ACCTCAAAAA CACACTGAAC
    CCTGCAGCCA GTTTTAAAGA AATGAATACC CAAAAGGTGA CAAAAAGAAC ATCTAAAGAT
    TCTCTAGATA TCTCTTCATC TCGTTGGCTA AAGACTCATG GTTTAGTTGC TAGGCGACTC
    ACCATAATGG ATGCCTTAGC CCCCACAGCT GTTCCTCACA GTACTAAATA CATCCCAGTT
    CTGGAAAAAC ATGTTGTTTC TAAAGTCTTT GATGAGGTGT TCCCCCTTGC CCACATTAGT
    AATGGCAAGC AACAAATCAC ATTAATTAAT CCTCAAGCAG TGAATCTTGA TACTTACAAA
    GAGAAGCTGG AACAAGCAGT TAAATTTTAT GAAAGGCGCC TCAATCTAAT TACTTGGAGA
    GCACTATCTC AAGAAGAAAG AGACAAGTTT GAGCAGGACA AGCCAGTCCG CTACATGGAA
    CATAAGGAAG CCTTGCTAGA GTCTTTAGAA AATCTAGGTT GGCCTGTTTC CTATGAAGAT
    GTGATGCTGT TGGAAGATGA AATTCTGGCA GGGTTAACAT ATATCCAACA GGCCTCTGAT
    CTTCAGGAAG CTGCCAAAAA GGACATTCAG AGGACCGCTG CTTCACCTGT CAACCACAGT
    AAAAAGTTTC AGAATCTTAA AGAAGAGAGT ATAAGGTCAC AAACTAAAAA AGGAAAAGTG
    TTTGAAACGC TCAAAGGCCA AAAGGTGATT GCAAGATCAG ACCTCACAGG ATTATATTTC
    CCAGGGACAG TGATGAAAAG TATCAGTTCC ACCCGTGCAC TTGTTGACTT CAGCTATGGA
    GAGACGCACA TTGTACCAAT TAAATTCATT ATTATTGTGG GGGGTGCTAT GCCTTGCCCA
    TCTTTGCAGG TTGGGGACTA TGTGTTCTCC AGAACTGGGA TACAGATGGG AGATTATTAT
    TATGCACCTG CTGTTGTCAT AGCAACACCA AATAGAGTTC AAGCAGATGA TAAACTCTAC
    ACAGTTTTGA TGTACAACAA TAGGAAAGAA CACTGTATAC GAAGTGGGCT TGTTAAAGTC
    AGCCAAGCTA AATATGCTTC TTCCTGCCGA TATATAAAAA TGGCCCAGGT GGTGGATTAC
    ATGATCCCAA ACAAACAAAT TGTGAAGCCC ATTGATCAGT TGTCACTGGA AGAAGAAGAA
    AAGAAAAGAA GTGGAAGGGA AGATGGAGGG AAAAAGAAAA AAAAAGGGAC AACAGAGAGC
    AGAAGGAATC CAAGAGAGGA GATGTCAGAC TCAGAGGAAC TTTTGTTTAT TCCCAGAAGG
    AGGGAAGTAA AAGGCAAAGG AAGGAATTCA CTGCCTCATG ACAAAGTTGG AATTGAAGGT
    TAA

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

    CloneID OAl53790
    Clone ID Related Accession (Same CDS sequence) XM_019485114.1
    Accession Version XM_019485114.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3312bp)
    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 von Willebrand factor A domain-containing protein 3B isoform X7
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017709042.1) 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
    ATGAAACATC TACTCCTTCA GAAGTTTTCT GACAGTCCTT TCCCAATCCA TCCAGTATCT 
    TTTAATGCCA GGGAAGAAGA TACTATTGTT TTCTTGAAGG AGCTGGGTCG CCTGACCTCG
    GGCAGATTCC ATGCATTTGC TGAGAGAACT GATTATACAA ATGTCATCGA ACCTGTCATA
    AAGAGTGAGG AGGATGGAGA AAGTCTAACT AGCTGGAATA CAAGAAAATT GAAAGGAAGG
    GTGCCTCTAG TTGCTGGTGT CAGAGAAGAT GTCTTTCTGG TCTGGAAGGA ATTGGAAGAG
    GCCAGGAGTA CACTGAGGCA AGTTCAGAGT ATTTTAACAG TGTCCAACCA GCCTATTTCT
    GGAGAAGCAT TCAAAACGAA TCATCCAGTG CCTGAGCCAA AACCTGAGGA TTATGTAAAT
    TCAAAAGATT GGTTGCAGAA ATATGGCCTG AAAGCTCAGA AGCTAACATT ATATGATGCA
    CTTGCTGACT GTACTTTTCG CCATGTTGAT GGCATTGTTG ACATAAAAGC CAAGCCAGAA
    GATGAATCTT TACAAACTGA TGCTGAAACA AAGAAGAAAG TAATCCACGC AAAATACTGT
    GACAAATTTA TACATACCTA CTGGAAAGAT GGCTCTATGG TTCATGTGTA TGTCACTGTG
    GAAAAGTACA AGCAGTATGA AGAGAAAATG AGGAATGCTC TTCAACAAAT GGAAGGAAGG
    ATTAAGTGGC TCCAGCGAGG GAGCAGAGGA CTCTTTGGCA ACGTGCTTGA AGATCACATC
    TGTATTCTCA TCGATACATC TCAGTCTATG ATAGACAAAC TGCCATTGGT GAAAGAGAAA
    ATATTTCAGC TCATGCAGGA GCAGCTTAGA CACAAAAGCA GCTTTAACTT TGTGAAATTT
    GATGCTCAAG CAGCAGCTTG GCAAGACAAA CTTGCTGAAG TTAATGAAGA GAATTTGCAG
    GATGCTTGGC TATGGATAAA AGGACTTGAG GTTGGAAGTT CTACCAATAC ACTCAGTGCT
    CTTCAAATTG CTCTTGCTGA TCATGATGCT GAAGCCATTT ATCTTCTTAC GGATGGGAGG
    CCTGATCAGC CACCAAAATC AATTTTGGCT CAAGTTCATC TTCATCATAA GGTTCCTATT
    CATACCATAT CTTTCAACTG TGATGATACA GAGGCTAATA AATTTTTGCA TGAATTGTCT
    ACTGAGACAG GTGGACGGTT TCATTATTAT AACATTTATT TGAGGGATCC TGAATCTCCA
    GAGCCAATTG TGAGTGAAGA TATATGCCTT TTAAAAAGAG AAATTGAACA GGGGAAGAAA
    GATCTAGAGA AAGTGAAGGC TTTCCATGCT GAATGTTTGA TGATAGATTG GTGTAATGGA
    GAAAAAGAGC CTGAAAACAA TCCTCACAAG CAGACTTTTA CTACTTCATC TATAACCATG
    CACATCCAGG AGCTGAATGC TTCTCCCACC AGTAGACCAC AGTGTACATT AGAAGAGCCA
    ACATTGACTG CACACCACCA GATACTAAAT ACATGGCAAA CTTGTAATGA CAGTCCAGCC
    ATAAGGAAAA AGGCACTGTA TGCAGAACAA ACAAAGACTA GTCTGCTCAG AACTCGAGGT
    TATGGAATAA AGTCTTGTAA AGGAAGTCCA GATGAGAAGA TATCTCCTGA AAGAAAGGAT
    TTTCACCTCA AAAACACACT GAACCCTGCA GCCAGTTTTA AAGAAATGAA TACCCAAAAG
    GTGACAAAAA GAACATCTAA AGATTCTCTA GATATCTCTT CATCTCGTTG GCTAAAGACT
    CATGGTTTAG TTGCTAGGCG ACTCACCATA ATGGATGCCT TAGCCCCCAC AGCTGTTCCT
    CACAGTACTA AATACATCCC AGTTCTGGAA AAACATGTTG TTTCTAAAGT CTTTGATGAG
    GTGTTCCCCC TTGCCCACAT TAGTAATGGC AAGCAACAAA TCACATTAAT TAATCCTCAA
    GCAGTGAATC TTGATACTTA CAAAGAGAAG CTGGAACAAG CAGTTAAATT TTATGAAAGG
    CGCCTCAATC TAATTACTTG GAGAGCACTA TCTCAAGAAG AAAGAGACAA GTTTGAGCAG
    GACAAGCCAG TCCGCTACAT GGAACATAAG GAAGCCTTGC TAGAGTCTTT AGAAAATCTA
    GGTTGGCCTG TTTCCTATGA AGATGTGATG CTGTTGGAAG ATGAAATTCT GGCAGGGTTA
    ACATATATCC AACAGGCCTC TGATCTTCAG GAAGCTGCCA AAAAGGACAT TCAGAGGACC
    GCTGCTTCAC CTGTCAACCA CAGTAAAAAG TTTCAGAATC TTAAAGAAGA GAGTATAAGG
    TCACAAACTA AAAAAGGAAA AGTGTTTGAA ACGCTCAAAG GCCAAAAGGT GATTGCAAGA
    TCAGACCTCA CAGGATTATA TTTCCCAGGG ACAGTGATGA AAAGTATCAG TTCCACCCGT
    GCACTTGTTG ACTTCAGCTA TGGAGAGACG CACATTGTAC CAATTAAATT CATTATTATT
    GTGGGGGGTG CTATGCCTTG CCCATCTTTG CAGGTTGGGG ACTATGTGTT CTCCAGAACT
    GGGATACAGA TGGGAGATTA TTATTATGCA CCTGCTGTTG TCATAGCAAC ACCAAATAGA
    GTTCAAGCAG ATGATAAACT CTACACAGTT TTGATGTACA ACAATAGGAA AGAACACTGT
    ATACGAAGTG GGCTTGTTAA AGTCAGCCAA GCTAAATATG CTTCTTCCTG CCGATATATA
    AAAATGGCCC AGGTGGTGGA TTACATGATC CCAAACAAAC AAATTGTGAA GCCCATTGAT
    CAGTTGTCAC TGGAAGAAGA AGAAAAGAAA AGAAGTGGAA GGGAAGATGG AGGGAAAAAG
    AAAAAAAAAG GGACAACAGA GAGCAGAAGG AATCCAAGAG AGGAGATGTC AGACTCAGAG
    GAACTTTTGT TTATTCCCAG AAGGAGGGAA GTAAAAGGCA AAGGAAGGAA TTCACTGCCT
    CATGACAAAG TTGGAATTGA AGAATCTGCT TGCTTCTTTT TATCAACACA AGGCTCATCG
    GCATCTGGAA CTCTGCTGTC TCCAAGTACC TCAGCTCACA GCTCATCAAA GGATCTTTGT
    TGCTCTCACA CAGTTACTGT GGATCCAAAG AGTGCCTCAG AACCTGTTGA TGACAACATC
    AGCCTTATCT CAACTGCTGA GAGGCTGGAA GAGTTGGCAG GGCAGTTTCA GCAGCACTAC
    ATAAATCAAA GAAAACATCA TCAGGTGTGC CTGACAGAGG AGACTGTGAG GAATGGAACA
    GGTTATGGGT AG

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

    RefSeq XP_019340659.1
    CDS124..3435
    Translation

    Target ORF information:

    RefSeq Version XM_019485114.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis von Willebrand factor A domain containing 3B (VWA3B), transcript variant X7, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019485114.1

    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
    ATGAAACATC TACTCCTTCA GAAGTTTTCT GACAGTCCTT TCCCAATCCA TCCAGTATCT 
    TTTAATGCCA GGGAAGAAGA TACTATTGTT TTCTTGAAGG AGCTGGGTCG CCTGACCTCG
    GGCAGATTCC ATGCATTTGC TGAGAGAACT GATTATACAA ATGTCATCGA ACCTGTCATA
    AAGAGTGAGG AGGATGGAGA AAGTCTAACT AGCTGGAATA CAAGAAAATT GAAAGGAAGG
    GTGCCTCTAG TTGCTGGTGT CAGAGAAGAT GTCTTTCTGG TCTGGAAGGA ATTGGAAGAG
    GCCAGGAGTA CACTGAGGCA AGTTCAGAGT ATTTTAACAG TGTCCAACCA GCCTATTTCT
    GGAGAAGCAT TCAAAACGAA TCATCCAGTG CCTGAGCCAA AACCTGAGGA TTATGTAAAT
    TCAAAAGATT GGTTGCAGAA ATATGGCCTG AAAGCTCAGA AGCTAACATT ATATGATGCA
    CTTGCTGACT GTACTTTTCG CCATGTTGAT GGCATTGTTG ACATAAAAGC CAAGCCAGAA
    GATGAATCTT TACAAACTGA TGCTGAAACA AAGAAGAAAG TAATCCACGC AAAATACTGT
    GACAAATTTA TACATACCTA CTGGAAAGAT GGCTCTATGG TTCATGTGTA TGTCACTGTG
    GAAAAGTACA AGCAGTATGA AGAGAAAATG AGGAATGCTC TTCAACAAAT GGAAGGAAGG
    ATTAAGTGGC TCCAGCGAGG GAGCAGAGGA CTCTTTGGCA ACGTGCTTGA AGATCACATC
    TGTATTCTCA TCGATACATC TCAGTCTATG ATAGACAAAC TGCCATTGGT GAAAGAGAAA
    ATATTTCAGC TCATGCAGGA GCAGCTTAGA CACAAAAGCA GCTTTAACTT TGTGAAATTT
    GATGCTCAAG CAGCAGCTTG GCAAGACAAA CTTGCTGAAG TTAATGAAGA GAATTTGCAG
    GATGCTTGGC TATGGATAAA AGGACTTGAG GTTGGAAGTT CTACCAATAC ACTCAGTGCT
    CTTCAAATTG CTCTTGCTGA TCATGATGCT GAAGCCATTT ATCTTCTTAC GGATGGGAGG
    CCTGATCAGC CACCAAAATC AATTTTGGCT CAAGTTCATC TTCATCATAA GGTTCCTATT
    CATACCATAT CTTTCAACTG TGATGATACA GAGGCTAATA AATTTTTGCA TGAATTGTCT
    ACTGAGACAG GTGGACGGTT TCATTATTAT AACATTTATT TGAGGGATCC TGAATCTCCA
    GAGCCAATTG TGAGTGAAGA TATATGCCTT TTAAAAAGAG AAATTGAACA GGGGAAGAAA
    GATCTAGAGA AAGTGAAGGC TTTCCATGCT GAATGTTTGA TGATAGATTG GTGTAATGGA
    GAAAAAGAGC CTGAAAACAA TCCTCACAAG CAGACTTTTA CTACTTCATC TATAACCATG
    CACATCCAGG AGCTGAATGC TTCTCCCACC AGTAGACCAC AGTGTACATT AGAAGAGCCA
    ACATTGACTG CACACCACCA GATACTAAAT ACATGGCAAA CTTGTAATGA CAGTCCAGCC
    ATAAGGAAAA AGGCACTGTA TGCAGAACAA ACAAAGACTA GTCTGCTCAG AACTCGAGGT
    TATGGAATAA AGTCTTGTAA AGGAAGTCCA GATGAGAAGA TATCTCCTGA AAGAAAGGAT
    TTTCACCTCA AAAACACACT GAACCCTGCA GCCAGTTTTA AAGAAATGAA TACCCAAAAG
    GTGACAAAAA GAACATCTAA AGATTCTCTA GATATCTCTT CATCTCGTTG GCTAAAGACT
    CATGGTTTAG TTGCTAGGCG ACTCACCATA ATGGATGCCT TAGCCCCCAC AGCTGTTCCT
    CACAGTACTA AATACATCCC AGTTCTGGAA AAACATGTTG TTTCTAAAGT CTTTGATGAG
    GTGTTCCCCC TTGCCCACAT TAGTAATGGC AAGCAACAAA TCACATTAAT TAATCCTCAA
    GCAGTGAATC TTGATACTTA CAAAGAGAAG CTGGAACAAG CAGTTAAATT TTATGAAAGG
    CGCCTCAATC TAATTACTTG GAGAGCACTA TCTCAAGAAG AAAGAGACAA GTTTGAGCAG
    GACAAGCCAG TCCGCTACAT GGAACATAAG GAAGCCTTGC TAGAGTCTTT AGAAAATCTA
    GGTTGGCCTG TTTCCTATGA AGATGTGATG CTGTTGGAAG ATGAAATTCT GGCAGGGTTA
    ACATATATCC AACAGGCCTC TGATCTTCAG GAAGCTGCCA AAAAGGACAT TCAGAGGACC
    GCTGCTTCAC CTGTCAACCA CAGTAAAAAG TTTCAGAATC TTAAAGAAGA GAGTATAAGG
    TCACAAACTA AAAAAGGAAA AGTGTTTGAA ACGCTCAAAG GCCAAAAGGT GATTGCAAGA
    TCAGACCTCA CAGGATTATA TTTCCCAGGG ACAGTGATGA AAAGTATCAG TTCCACCCGT
    GCACTTGTTG ACTTCAGCTA TGGAGAGACG CACATTGTAC CAATTAAATT CATTATTATT
    GTGGGGGGTG CTATGCCTTG CCCATCTTTG CAGGTTGGGG ACTATGTGTT CTCCAGAACT
    GGGATACAGA TGGGAGATTA TTATTATGCA CCTGCTGTTG TCATAGCAAC ACCAAATAGA
    GTTCAAGCAG ATGATAAACT CTACACAGTT TTGATGTACA ACAATAGGAA AGAACACTGT
    ATACGAAGTG GGCTTGTTAA AGTCAGCCAA GCTAAATATG CTTCTTCCTG CCGATATATA
    AAAATGGCCC AGGTGGTGGA TTACATGATC CCAAACAAAC AAATTGTGAA GCCCATTGAT
    CAGTTGTCAC TGGAAGAAGA AGAAAAGAAA AGAAGTGGAA GGGAAGATGG AGGGAAAAAG
    AAAAAAAAAG GGACAACAGA GAGCAGAAGG AATCCAAGAG AGGAGATGTC AGACTCAGAG
    GAACTTTTGT TTATTCCCAG AAGGAGGGAA GTAAAAGGCA AAGGAAGGAA TTCACTGCCT
    CATGACAAAG TTGGAATTGA AGAATCTGCT TGCTTCTTTT TATCAACACA AGGCTCATCG
    GCATCTGGAA CTCTGCTGTC TCCAAGTACC TCAGCTCACA GCTCATCAAA GGATCTTTGT
    TGCTCTCACA CAGTTACTGT GGATCCAAAG AGTGCCTCAG AACCTGTTGA TGACAACATC
    AGCCTTATCT CAACTGCTGA GAGGCTGGAA GAGTTGGCAG GGCAGTTTCA GCAGCACTAC
    ATAAATCAAA GAAAACATCA TCAGGTGTGC CTGACAGAGG AGACTGTGAG GAATGGAACA
    GGTTATGGGT AG

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