ADAMTS17 cDNA ORF clone, Sus scrofa(Pig)

The following ADAMTS17 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ADAMTS17 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
OSe02487 XM_005659785.2
Latest version!
Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif, 17 (ADAMTS17), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
OSe31310 XM_013993230.1
Latest version!
Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif, 17 (ADAMTS17), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
OSe230324 XM_013993230.2
Latest version!
Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif 17 (ADAMTS17), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OSe230325 XM_021098449.1
Latest version!
Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif 17 (ADAMTS17), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OSe230326 XM_005659785.3
Latest version!
Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif 17 (ADAMTS17), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OSe230327 XM_021098456.1
Latest version!
Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif 17 (ADAMTS17), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00

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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 OSe02487
    Clone ID Related Accession (Same CDS sequence) XM_005659785.2
    Accession Version XM_005659785.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2199bp)
    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 1441814400000
    Organism Sus scrofa(Pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 17 isoform X2
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003609226.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Sep 11, 2015 this sequence version replaced XM_005659785.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Sus scrofa Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGAACCATG ACGACGACCA CTCCTCCTGC GCTGGCAGGT CTCACATCAT GTCGGGAGAG 
    TGGGTGAAAG GCCGGAACCC TAGCGACCTC TCCTGGTCCT CCTGCAGTCG AGATGACCTT
    GAAAACTTCC TCAAGTCCAA AGTCAGCACC TGTTTGCTGG TCACAGATCC CAGGAGCCAG
    CATGCTGTGC GCCTCCCGCA CAAGCTGCCG GGCATGCACT ACAGCGCCAA CGAGCAGTGC
    CAGATCCTAT TTGGCACCAA TGCCACCTTC TGTAGAAACC TGGAGCAGCA TCTGATGTGC
    GCGGGATTGT GGTGCCTGGT GGAAGGAGAT ACATCCTGCA AGACCAAGCT GGACCCTCCC
    TTGGACGGCA CAGAGTGTGG GGCAGACAAG TGGTGCCGCG CAGGGGAGTG TGTGAGCAAG
    ACGCCCATCC CAGAGCACGT GGACGGAGAC TGGAGCCCTT GGGGTGCCTG GAGCATGTGC
    AGCCGCACAT GCGGCACAGG AGCTCGCTTT CGGCAGAGGA AATGCGACAA CCCTCCCCCA
    GGGCCTGGAG GCACACACTG CTTGGGCGCC AGTGTGGAGC ATGCAGTCTG TGAGAACCTT
    CCTTGCCCCA AGGGTCTGCC CAGCTTCCGA GACCAGCAGT GCCAGACACA TGACCGGCTA
    AGCAGCAAGA AGAAGGGCCT GCTGACAGCA GTGGTGGTTG ATGATAAACC ATGCGAACTC
    CACTGCTTGC CCCTTGGGAA GGAGTCTCCG CTGCTGGTGG CCGACAGGGT TCTGGATGGC
    ACGCCCTGCG GACCCTACGA GACTGACCTC TGTGTGCACG GCAGGTGCCA GAAAATCGGC
    TGTGATGGCA TCATCGGGTC TGCAGCCAAA GAAGACCGGT GTGGAGTCTG CAGTGGGGAC
    GGCAAGACCT GCCGTGTGGT GAAAGGTGAC TTCAGCCACT CTCGGGGCAC AGGTTATATT
    GAAGCTGTCA TCATTCCAGC TGGAGCTCGA AGGATCCGCG TGGTGGAGGA TAAACCTGCT
    CACAGTTTTC TGGCTCTCAA AGACTCCAGT AAGAGATCCA TCAACAGTGA CTGGAAGATA
    GAGCTCCCTG GAGAATTCCA GATTGCAGGC ACGACGGTCC GCTATGTTAG AAGGGGCCTG
    TGGGAGAAAA TTTCCGCCAA GGGACCAACC AAAATGCCAC TGCATTTGAT GGTGTTGTTA
    TTTCATGACC AAAATTATGG AATTCATTAC GAATACACCA TTCCTGTAAA CTACACTGCT
    GAAAATCAAA GTGAGCCAGA AAAACCTCAG GACTCCTTGT TCATCTGGAC CCACAGCGGC
    TGGGAGGGGT GCAGTGTGCA GTGTGGAGGA GGGGAACGCA GAACTATTGT ATCCTGTACA
    CGGATTGTTA ACAAGACCAC AACTCTGGTG AATGACAGTG ACTGTCCTCA GGCTAGCCGT
    CCGGAGCCCC AGGTCCGCAG GTGCAACTCG CACCCATGCC AGTCACGGTG GGTGGCAGGC
    CCATGGAGCC CCTGCTCAGC CACCTGTGAG AAGGGCATCC AGCATCGGGA AGTGACCTGC
    GTGTACCAGC TGCAGAACGG CACACACGTC GCCACTCGGC CCCTCTACTG CCCGGTCCCA
    CGGCCATCGC CAGTGCAGAG CTGCGAAGGC CAGGACTGTC TGTCCATCTG GGAGGCATCC
    GAGTGGTCAC AGTGTTCTGC CAACTGCGGG AAAGGGACAC GGAAACGAAC TGTGACGTGC
    ACCAACTCAC AAGGAAAATG CGACGCGTCC AGGAGACCAA GAGCCGAGGA GGCCTGTGAG
    GACTATTCCG GCTGCTACGA GTGGAAAACC GGGAGCTGGT CCAAGTGCTC GTCAACCTGT
    GGGAAGGGCC TGCAGTCCCG TGTGGTCCAG TGCATGCACA AGGTCACAGG GCGCCATGGC
    AATGAGTGCC CCGCCCTCTC TAAGCCGGCA GCCTACAAAC AGTGCCACCA AGAAGTCTGC
    AATGACAAGA TCAACGTGAA CACGATCACC TCCCCTCGCC TAGCCGCCCT GACCTACAAA
    TGCACACGGG ACCAGTGGAC AGTGTATTGT AGGGTCATCC GAGAAAAGAA CCTCTGCCAG
    GATATGCGAT GGTACCAGCG CTGCTGCCAG ACATGCAGGG ACTTCTACGC AAACAAGATG
    CGCCAACAGC CACCACTGCC GCCGCCACCA AGCTCATGA

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

    RefSeq XP_005659842.1
    CDS101..2299
    Translation

    Target ORF information:

    RefSeq Version XM_005659785.2
    Organism Sus scrofa(Pig)
    Definition Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif, 17 (ADAMTS17), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005659785.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    ATGAACCATG ACGACGACCA CTCCTCCTGC GCTGGCAGGT CTCACATCAT GTCGGGAGAG 
    TGGGTGAAAG GCCGGAACCC TAGCGACCTC TCCTGGTCCT CCTGCAGTCG AGATGACCTT
    GAAAACTTCC TCAAGTCCAA AGTCAGCACC TGTTTGCTGG TCACAGATCC CAGGAGCCAG
    CATGCTGTGC GCCTCCCGCA CAAGCTGCCG GGCATGCACT ACAGCGCCAA CGAGCAGTGC
    CAGATCCTAT TTGGCACCAA TGCCACCTTC TGTAGAAACC TGGAGCAGCA TCTGATGTGC
    GCGGGATTGT GGTGCCTGGT GGAAGGAGAT ACATCCTGCA AGACCAAGCT GGACCCTCCC
    TTGGACGGCA CAGAGTGTGG GGCAGACAAG TGGTGCCGCG CAGGGGAGTG TGTGAGCAAG
    ACGCCCATCC CAGAGCACGT GGACGGAGAC TGGAGCCCTT GGGGTGCCTG GAGCATGTGC
    AGCCGCACAT GCGGCACAGG AGCTCGCTTT CGGCAGAGGA AATGCGACAA CCCTCCCCCA
    GGGCCTGGAG GCACACACTG CTTGGGCGCC AGTGTGGAGC ATGCAGTCTG TGAGAACCTT
    CCTTGCCCCA AGGGTCTGCC CAGCTTCCGA GACCAGCAGT GCCAGACACA TGACCGGCTA
    AGCAGCAAGA AGAAGGGCCT GCTGACAGCA GTGGTGGTTG ATGATAAACC ATGCGAACTC
    CACTGCTTGC CCCTTGGGAA GGAGTCTCCG CTGCTGGTGG CCGACAGGGT TCTGGATGGC
    ACGCCCTGCG GACCCTACGA GACTGACCTC TGTGTGCACG GCAGGTGCCA GAAAATCGGC
    TGTGATGGCA TCATCGGGTC TGCAGCCAAA GAAGACCGGT GTGGAGTCTG CAGTGGGGAC
    GGCAAGACCT GCCGTGTGGT GAAAGGTGAC TTCAGCCACT CTCGGGGCAC AGGTTATATT
    GAAGCTGTCA TCATTCCAGC TGGAGCTCGA AGGATCCGCG TGGTGGAGGA TAAACCTGCT
    CACAGTTTTC TGGCTCTCAA AGACTCCAGT AAGAGATCCA TCAACAGTGA CTGGAAGATA
    GAGCTCCCTG GAGAATTCCA GATTGCAGGC ACGACGGTCC GCTATGTTAG AAGGGGCCTG
    TGGGAGAAAA TTTCCGCCAA GGGACCAACC AAAATGCCAC TGCATTTGAT GGTGTTGTTA
    TTTCATGACC AAAATTATGG AATTCATTAC GAATACACCA TTCCTGTAAA CTACACTGCT
    GAAAATCAAA GTGAGCCAGA AAAACCTCAG GACTCCTTGT TCATCTGGAC CCACAGCGGC
    TGGGAGGGGT GCAGTGTGCA GTGTGGAGGA GGGGAACGCA GAACTATTGT ATCCTGTACA
    CGGATTGTTA ACAAGACCAC AACTCTGGTG AATGACAGTG ACTGTCCTCA GGCTAGCCGT
    CCGGAGCCCC AGGTCCGCAG GTGCAACTCG CACCCATGCC AGTCACGGTG GGTGGCAGGC
    CCATGGAGCC CCTGCTCAGC CACCTGTGAG AAGGGCATCC AGCATCGGGA AGTGACCTGC
    GTGTACCAGC TGCAGAACGG CACACACGTC GCCACTCGGC CCCTCTACTG CCCGGTCCCA
    CGGCCATCGC CAGTGCAGAG CTGCGAAGGC CAGGACTGTC TGTCCATCTG GGAGGCATCC
    GAGTGGTCAC AGTGTTCTGC CAACTGCGGG AAAGGGACAC GGAAACGAAC TGTGACGTGC
    ACCAACTCAC AAGGAAAATG CGACGCGTCC AGGAGACCAA GAGCCGAGGA GGCCTGTGAG
    GACTATTCCG GCTGCTACGA GTGGAAAACC GGGAGCTGGT CCAAGTGCTC GTCAACCTGT
    GGGAAGGGCC TGCAGTCCCG TGTGGTCCAG TGCATGCACA AGGTCACAGG GCGCCATGGC
    AATGAGTGCC CCGCCCTCTC TAAGCCGGCA GCCTACAAAC AGTGCCACCA AGAAGTCTGC
    AATGACAAGA TCAACGTGAA CACGATCACC TCCCCTCGCC TAGCCGCCCT GACCTACAAA
    TGCACACGGG ACCAGTGGAC AGTGTATTGT AGGGTCATCC GAGAAAAGAA CCTCTGCCAG
    GATATGCGAT GGTACCAGCG CTGCTGCCAG ACATGCAGGG ACTTCTACGC AAACAAGATG
    CGCCAACAGC CACCACTGCC GCCGCCACCA AGCTCATGA

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

    CloneID OSe31310
    Clone ID Related Accession (Same CDS sequence) XM_013993230.1
    Accession Version XM_013993230.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2268bp)
    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 1441814400000
    Organism Sus scrofa(Pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 17 isoform X1
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_003609226.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Sus scrofa Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGAACCATG ACGACGACCA CTCCTCCTGC GCTGGCAGGT CTCACATCAT GTCGGGAGAG 
    TGGGTGAAAG GCCGGAACCC TAGCGACCTC TCCTGGTCCT CCTGCAGTCG AGATGACCTT
    GAAAACTTCC TCAAGTCCAA AGTCAGCACC TGTTTGCTGG TCACAGATCC CAGGAGCCAG
    CATGCTGTGC GCCTCCCGCA CAAGCTGCCG GGCATGCACT ACAGCGCCAA CGAGCAGTGC
    CAGATCCTAT TTGGCACCAA TGCCACCTTC TGTAGAAACC TGGAGCAGCA TCTGATGTGC
    GCGGGATTGT GGTGCCTGGT GGAAGGAGAT ACATCCTGCA AGACCAAGCT GGACCCTCCC
    TTGGACGGCA CAGAGTGTGG GGCAGACAAG TGGTGCCGCG CAGGGGAGTG TGTGAGCAAG
    ACGCCCATCC CAGAGCACGT GGACGGAGAC TGGAGCCCTT GGGGTGCCTG GAGCATGTGC
    AGCCGCACAT GCGGCACAGG AGCTCGCTTT CGGCAGAGGA AATGCGACAA CCCTCCCCCA
    GGGCCTGGAG GCACACACTG CTTGGGCGCC AGTGTGGAGC ATGCAGTCTG TGAGAACCTT
    CCTTGCCCCA AGGGTCTGCC CAGCTTCCGA GACCAGCAGT GCCAGACACA TGACCGGCTA
    AGCAGCAAGA AGAAGGGCCT GCTGACAGCA GTGGTGGTTG ATGATAAACC ATGCGAACTC
    CACTGCTTGC CCCTTGGGAA GGAGTCTCCG CTGCTGGTGG CCGACAGGGT TCTGGATGGC
    ACGCCCTGCG GACCCTACGA GACTGACCTC TGTGTGCACG GCAGGTGCCA GAAAATCGGC
    TGTGATGGCA TCATCGGGTC TGCAGCCAAA GAAGACCGGT GTGGAGTCTG CAGTGGGGAC
    GGCAAGACCT GCCGTGTGGT GAAAGGTGAC TTCAGCCACT CTCGGGGCAC AGTCAAGAAT
    GATCTTTGTA CGAAGGTGTC CACGTGTGTG ATGGCAAAGG CCGTTCCCAA GTGTTTCTCA
    TGTTATATTG AAGCTGTCAT CATTCCAGCT GGAGCTCGAA GGATCCGCGT GGTGGAGGAT
    AAACCTGCTC ACAGTTTTCT GGCTCTCAAA GACTCCAGTA AGAGATCCAT CAACAGTGAC
    TGGAAGATAG AGCTCCCTGG AGAATTCCAG ATTGCAGGCA CGACGGTCCG CTATGTTAGA
    AGGGGCCTGT GGGAGAAAAT TTCCGCCAAG GGACCAACCA AAATGCCACT GCATTTGATG
    GTGTTGTTAT TTCATGACCA AAATTATGGA ATTCATTACG AATACACCAT TCCTGTAAAC
    TACACTGCTG AAAATCAAAG TGAGCCAGAA AAACCTCAGG ACTCCTTGTT CATCTGGACC
    CACAGCGGCT GGGAGGGGTG CAGTGTGCAG TGTGGAGGAG GGGAACGCAG AACTATTGTA
    TCCTGTACAC GGATTGTTAA CAAGACCACA ACTCTGGTGA ATGACAGTGA CTGTCCTCAG
    GCTAGCCGTC CGGAGCCCCA GGTCCGCAGG TGCAACTCGC ACCCATGCCA GTCACGGTGG
    GTGGCAGGCC CATGGAGCCC CTGCTCAGCC ACCTGTGAGA AGGGCATCCA GCATCGGGAA
    GTGACCTGCG TGTACCAGCT GCAGAACGGC ACACACGTCG CCACTCGGCC CCTCTACTGC
    CCGGTCCCAC GGCCATCGCC AGTGCAGAGC TGCGAAGGCC AGGACTGTCT GTCCATCTGG
    GAGGCATCCG AGTGGTCACA GTGTTCTGCC AACTGCGGGA AAGGGACACG GAAACGAACT
    GTGACGTGCA CCAACTCACA AGGAAAATGC GACGCGTCCA GGAGACCAAG AGCCGAGGAG
    GCCTGTGAGG ACTATTCCGG CTGCTACGAG TGGAAAACCG GGAGCTGGTC CAAGTGCTCG
    TCAACCTGTG GGAAGGGCCT GCAGTCCCGT GTGGTCCAGT GCATGCACAA GGTCACAGGG
    CGCCATGGCA ATGAGTGCCC CGCCCTCTCT AAGCCGGCAG CCTACAAACA GTGCCACCAA
    GAAGTCTGCA ATGACAAGAT CAACGTGAAC ACGATCACCT CCCCTCGCCT AGCCGCCCTG
    ACCTACAAAT GCACACGGGA CCAGTGGACA GTGTATTGTA GGGTCATCCG AGAAAAGAAC
    CTCTGCCAGG ATATGCGATG GTACCAGCGC TGCTGCCAGA CATGCAGGGA CTTCTACGCA
    AACAAGATGC GCCAACAGCC ACCACTGCCG CCGCCACCAA GCTCATGA

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

    RefSeq XP_013848684.1
    CDS102..2369
    Translation

    Target ORF information:

    RefSeq Version XM_013993230.1
    Organism Sus scrofa(Pig)
    Definition Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif, 17 (ADAMTS17), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013993230.1

    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
    ATGAACCATG ACGACGACCA CTCCTCCTGC GCTGGCAGGT CTCACATCAT GTCGGGAGAG 
    TGGGTGAAAG GCCGGAACCC TAGCGACCTC TCCTGGTCCT CCTGCAGTCG AGATGACCTT
    GAAAACTTCC TCAAGTCCAA AGTCAGCACC TGTTTGCTGG TCACAGATCC CAGGAGCCAG
    CATGCTGTGC GCCTCCCGCA CAAGCTGCCG GGCATGCACT ACAGCGCCAA CGAGCAGTGC
    CAGATCCTAT TTGGCACCAA TGCCACCTTC TGTAGAAACC TGGAGCAGCA TCTGATGTGC
    GCGGGATTGT GGTGCCTGGT GGAAGGAGAT ACATCCTGCA AGACCAAGCT GGACCCTCCC
    TTGGACGGCA CAGAGTGTGG GGCAGACAAG TGGTGCCGCG CAGGGGAGTG TGTGAGCAAG
    ACGCCCATCC CAGAGCACGT GGACGGAGAC TGGAGCCCTT GGGGTGCCTG GAGCATGTGC
    AGCCGCACAT GCGGCACAGG AGCTCGCTTT CGGCAGAGGA AATGCGACAA CCCTCCCCCA
    GGGCCTGGAG GCACACACTG CTTGGGCGCC AGTGTGGAGC ATGCAGTCTG TGAGAACCTT
    CCTTGCCCCA AGGGTCTGCC CAGCTTCCGA GACCAGCAGT GCCAGACACA TGACCGGCTA
    AGCAGCAAGA AGAAGGGCCT GCTGACAGCA GTGGTGGTTG ATGATAAACC ATGCGAACTC
    CACTGCTTGC CCCTTGGGAA GGAGTCTCCG CTGCTGGTGG CCGACAGGGT TCTGGATGGC
    ACGCCCTGCG GACCCTACGA GACTGACCTC TGTGTGCACG GCAGGTGCCA GAAAATCGGC
    TGTGATGGCA TCATCGGGTC TGCAGCCAAA GAAGACCGGT GTGGAGTCTG CAGTGGGGAC
    GGCAAGACCT GCCGTGTGGT GAAAGGTGAC TTCAGCCACT CTCGGGGCAC AGTCAAGAAT
    GATCTTTGTA CGAAGGTGTC CACGTGTGTG ATGGCAAAGG CCGTTCCCAA GTGTTTCTCA
    TGTTATATTG AAGCTGTCAT CATTCCAGCT GGAGCTCGAA GGATCCGCGT GGTGGAGGAT
    AAACCTGCTC ACAGTTTTCT GGCTCTCAAA GACTCCAGTA AGAGATCCAT CAACAGTGAC
    TGGAAGATAG AGCTCCCTGG AGAATTCCAG ATTGCAGGCA CGACGGTCCG CTATGTTAGA
    AGGGGCCTGT GGGAGAAAAT TTCCGCCAAG GGACCAACCA AAATGCCACT GCATTTGATG
    GTGTTGTTAT TTCATGACCA AAATTATGGA ATTCATTACG AATACACCAT TCCTGTAAAC
    TACACTGCTG AAAATCAAAG TGAGCCAGAA AAACCTCAGG ACTCCTTGTT CATCTGGACC
    CACAGCGGCT GGGAGGGGTG CAGTGTGCAG TGTGGAGGAG GGGAACGCAG AACTATTGTA
    TCCTGTACAC GGATTGTTAA CAAGACCACA ACTCTGGTGA ATGACAGTGA CTGTCCTCAG
    GCTAGCCGTC CGGAGCCCCA GGTCCGCAGG TGCAACTCGC ACCCATGCCA GTCACGGTGG
    GTGGCAGGCC CATGGAGCCC CTGCTCAGCC ACCTGTGAGA AGGGCATCCA GCATCGGGAA
    GTGACCTGCG TGTACCAGCT GCAGAACGGC ACACACGTCG CCACTCGGCC CCTCTACTGC
    CCGGTCCCAC GGCCATCGCC AGTGCAGAGC TGCGAAGGCC AGGACTGTCT GTCCATCTGG
    GAGGCATCCG AGTGGTCACA GTGTTCTGCC AACTGCGGGA AAGGGACACG GAAACGAACT
    GTGACGTGCA CCAACTCACA AGGAAAATGC GACGCGTCCA GGAGACCAAG AGCCGAGGAG
    GCCTGTGAGG ACTATTCCGG CTGCTACGAG TGGAAAACCG GGAGCTGGTC CAAGTGCTCG
    TCAACCTGTG GGAAGGGCCT GCAGTCCCGT GTGGTCCAGT GCATGCACAA GGTCACAGGG
    CGCCATGGCA ATGAGTGCCC CGCCCTCTCT AAGCCGGCAG CCTACAAACA GTGCCACCAA
    GAAGTCTGCA ATGACAAGAT CAACGTGAAC ACGATCACCT CCCCTCGCCT AGCCGCCCTG
    ACCTACAAAT GCACACGGGA CCAGTGGACA GTGTATTGTA GGGTCATCCG AGAAAAGAAC
    CTCTGCCAGG ATATGCGATG GTACCAGCGC TGCTGCCAGA CATGCAGGGA CTTCTACGCA
    AACAAGATGC GCCAACAGCC ACCACTGCCG CCGCCACCAA GCTCATGA

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

    CloneID OSe230324
    Clone ID Related Accession (Same CDS sequence) XM_013993230.2
    Accession Version XM_013993230.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3438bp)
    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 1494518400000
    Organism Sus scrofa(pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 17 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_010443.5) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On May 13, 2017 this sequence version replaced XM_013993230.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Sus scrofa Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 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
    ATGTGTGACG GCGCCCTGCT GCCTCCCCTT GTCCTGCCCT TGCTGCTGCT GCTGGTTTGG 
    GGACTGGACT CGGGTGCAGC GGTCGGCGAC GCGGCGGCCG ACGTGGAGGT GGTGCTCCCG
    CGGCGGGTGC GCCCAGACGC CGTGCACCTG CCGCAGCTGC CTGGCGCCCC AGGGCCGCGA
    AGACGTCGGC GACCCCGCGC GCCCCCCGCC GCCCCGCGTG CCCGGCCTGG CGAGCGCGCC
    CTGCTGCTGC ACCTGCCGGC CTTCGGGCGC GACCTGTACC TGCAGCTGCG TCGCGACCTC
    CGCTTTCTGT CCGGCGGTTT CGAGGTGGAG GAGGCTGGCG AAGCAGGGCG CCGTGGACGC
    CCCGCCGAAC TGTGCTTCTA CTCGGGCCGC GTGCTGGGCC ACCCCGGCTC CCTCGTCTCG
    CTCAGCACTT GCGGCGGCGG CCTGGTTGGA CTCATCCAGC TTGGGCAGGA GCAGGTGCTA
    ATCCAGCCCC TCAACAGTTC CCAGGGACAG GAGCATCTGA TCAGGCGCAG ATGGTCCTTG
    ACGCCCAGCC CCTCAGCCGA GGCCCAGATG CCGGGGCAGC CCTGCAAGGT CCTCACAGAA
    AAAAAGAAGC CAAAGAGGGG CCGGCTATCG AGAGACTGGC GGGGGCGGAG GAGTGCCATC
    CGGCTGACCA ATGAACACAC AGTGGAGACG CTGGTGGTGG CCGATGCCGA CATGGTGCAG
    TACCACGGGG CAGAGGCTGC CCAGAGGTTC ATCCTCACCG TCATGAACAT GGTGTACAAT
    ATGTTTCAGC ACGAAAGCCT TGGAATTAAA GTTAACATTC AAGTCACCAA GCTTGTCCTG
    CTACGACAGC GTCCTGCCAA GTTGTCCATT GGGCACCATG GTGAGCGGTC CCTGGAGAGC
    TTCTGTCACT GGCAGAATGA GGAGTACGGA GGCGCACGCT ACCTCGGCAA CAATCAGGTT
    CCAGGAGGCA AGGATGATAC ACCCCCTGTG GATGCCGCTG TATTCGTGAC CAGGACAGAT
    TTCTGCGTAC ATAAAGACGA ACCTTGTGAC ACCGTTGGAA TTGCTTACTT AGGAGGTGTG
    TGCAGTGCTA AGAGGAAATG TGTGCTTGCC GAGGACAATG GCCTCAATTT GGCCTTTACC
    ATCGCTCATG AGCTGGGCCA CAACTTGGGG ATGAACCATG ACGACGACCA CTCCTCCTGC
    GCTGGCAGGT CTCACATCAT GTCGGGAGAG TGGGTGAAAG GCCGGAACCC TAGCGACCTC
    TCCTGGTCCT CCTGCAGTCG AGATGACCTT GAAAACTTCC TCAAGTCCAA AGTCAGCACC
    TGTTTGCTGG TCACAGATCC CAGGAGCCAG CATGCTGTGC GCCTCCCGCA CAAGCTGCCG
    GGCATGCACT ACAGCGCCAA CGAGCAGTGC CAGATCCTAT TTGGCACCAA TGCCACCTTC
    TGTAGAAACC TGGAGCAGCA TCTGATGTGC GCGGGATTGT GGTGCCTGGT GGAAGGAGAT
    ACATCCTGCA AGACCAAGCT GGACCCTCCC TTGGACGGCA CAGAGTGTGG GGCAGACAAG
    TGGTGCCGCG CAGGGGAGTG TGTGAGCAAG ACGCCCATCC CAGAGCACGT GGACGGAGAC
    TGGAGCCCTT GGGGTGCCTG GAGCATGTGC AGCCGCACAT GCGGCACAGG AGCTCGCTTT
    CGGCAGAGGA AATGCGACAA CCCTCCCCCA GGGCCTGGAG GCACACACTG CTTGGGCGCC
    AGTGTGGAGC ATGCAGTCTG TGAGAACCTT CCTTGCCCCA AGGGTCTGCC CAGCTTCCGA
    GACCAGCAGT GCCAGACACA TGACCGGCTA AGCAGCAAGA AGAAGGGCCT GCTGACAGCA
    GTGGTGGTTG ATGATAAACC ATGCGAACTC CACTGCTTGC CCCTTGGGAA GGAGTCTCCG
    CTGCTGGTGG CCGACAGGGT TCTGGATGGC ACGCCCTGCG GACCCTACGA GACTGACCTC
    TGTGTGCACG GCAGGTGCCA GAAAATCGGC TGTGATGGCA TCATCGGGTC TGCAGCCAAA
    GAAGACCGGT GTGGAGTCTG CAGTGGGGAC GGCAAGACCT GCCGTGTGGT GAAAGGTGAC
    TTCAGCCACT CTCGGGGCAC AGTCAAGAAT GATCTTTGTA CGAAGGTGTC CACGTGTGTG
    ATGGCAAAGG CCGTTCCCAA GTGTTTCTCA TGTTATATTG AAGCTGTCAT CATTCCAGCT
    GGAGCTCGAA GGATCCGCGT GGTGGAGGAT AAACCTGCTC ACAGTTTTCT GGCTCTCAAA
    GACTCCAGTA AGAGATCCAT CAACAGTGAC TGGAAGATAG AGCTCCCTGG AGAATTCCAG
    ATTGCAGGCA CGACGGTCCG CTATGTTAGA AGGGGCCTGT GGGAGAAAAT TTCCGCCAAG
    GGACCAACCA AAATGCCACT GCATTTGATG GTGTTGTTAT TTCATGACCA AAATTATGGA
    ATTCATTACG AATACACCAT TCCTGTAAAC TACACTGCTG AAAATCAAAG TGAGCCAGAA
    AAACCTCAGG ACTCCTTGTT CATCTGGACC CACAGCGGCT GGGAGGGGTG CAGTGTGCAG
    TGTGGAGGAG GGGAACGCAG AACTATTGTA TCCTGTACAC GGATTGTTAA CAAGACCACA
    ACTCTGGTGA ATGACAGTGA CTGTCCTCAG GCTAGCCGTC CGGAGCCCCA GGTCCGCAGG
    TGCAACTCGC ACCCATGCCA GTCACGGTGG GTGGCAGGCC CATGGAGCCC CTGCTCAGCC
    ACCTGTGAGA AGGGCATCCA GCATCGGGAA GTGACCTGCG TGTACCAGCT GCAGAACGGC
    ACACACGTCG CCACTCGGCC CCTCTACTGC CCGGTCCCAC GGCCATCGCC AGTGCAGAGC
    TGCGAAGGCC AGGACTGTCT GTCCATCTGG GAGGCATCCG AGTGGTCACA GTGTTCTGCC
    AACTGCGGGA AAGGGACACG GAAACGAACT GTGACGTGCA CCAACTCACA AGGAAAATGC
    GACGCGTCCA GGAGACCAAG AGCCGAGGAG GCCTGTGAGG ACTATTCCGG CTGCTACGAG
    TGGAAAACCG GGAGCTGGTC CAAGTGCTCG TCAACCTGTG GGAAGGGCCT GCAGTCCCGT
    GTGGTCCAGT GCATGCACAA GGTCACAGGG CGCCATGGCA ATGAGTGCCC CGCCCTCTCT
    AAGCCGGCAG CCTACAAACA GTGCCACCAA GAAGTCTGCA ATGACAAGAT CAACGTGAAC
    ACGATCACCT CCCCTCGCCT AGCCGCCCTG ACCTACAAAT GCACACGGGA CCAGTGGACA
    GTGTATTGTA GGGTCATCCG AGAAAAGAAC CTCTGCCAGG ATATGCGATG GTACCAGCGC
    TGCTGCCAGA CATGCAGGGA CTTCTACGCA AACAAGATGC GCCAACAGCC ACCACTGCCG
    CCGCCACCAA GCTCATGA

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

    RefSeq XP_013848684.2
    CDS302..3739
    Translation

    Target ORF information:

    RefSeq Version XM_013993230.2
    Organism Sus scrofa(pig)
    Definition Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif 17 (ADAMTS17), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013993230.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGTGTGACG GCGCCCTGCT GCCTCCCCTT GTCCTGCCCT TGCTGCTGCT GCTGGTTTGG 
    GGACTGGACT CGGGTGCAGC GGTCGGCGAC GCGGCGGCCG ACGTGGAGGT GGTGCTCCCG
    CGGCGGGTGC GCCCAGACGC CGTGCACCTG CCGCAGCTGC CTGGCGCCCC AGGGCCGCGA
    AGACGTCGGC GACCCCGCGC GCCCCCCGCC GCCCCGCGTG CCCGGCCTGG CGAGCGCGCC
    CTGCTGCTGC ACCTGCCGGC CTTCGGGCGC GACCTGTACC TGCAGCTGCG TCGCGACCTC
    CGCTTTCTGT CCGGCGGTTT CGAGGTGGAG GAGGCTGGCG AAGCAGGGCG CCGTGGACGC
    CCCGCCGAAC TGTGCTTCTA CTCGGGCCGC GTGCTGGGCC ACCCCGGCTC CCTCGTCTCG
    CTCAGCACTT GCGGCGGCGG CCTGGTTGGA CTCATCCAGC TTGGGCAGGA GCAGGTGCTA
    ATCCAGCCCC TCAACAGTTC CCAGGGACAG GAGCATCTGA TCAGGCGCAG ATGGTCCTTG
    ACGCCCAGCC CCTCAGCCGA GGCCCAGATG CCGGGGCAGC CCTGCAAGGT CCTCACAGAA
    AAAAAGAAGC CAAAGAGGGG CCGGCTATCG AGAGACTGGC GGGGGCGGAG GAGTGCCATC
    CGGCTGACCA ATGAACACAC AGTGGAGACG CTGGTGGTGG CCGATGCCGA CATGGTGCAG
    TACCACGGGG CAGAGGCTGC CCAGAGGTTC ATCCTCACCG TCATGAACAT GGTGTACAAT
    ATGTTTCAGC ACGAAAGCCT TGGAATTAAA GTTAACATTC AAGTCACCAA GCTTGTCCTG
    CTACGACAGC GTCCTGCCAA GTTGTCCATT GGGCACCATG GTGAGCGGTC CCTGGAGAGC
    TTCTGTCACT GGCAGAATGA GGAGTACGGA GGCGCACGCT ACCTCGGCAA CAATCAGGTT
    CCAGGAGGCA AGGATGATAC ACCCCCTGTG GATGCCGCTG TATTCGTGAC CAGGACAGAT
    TTCTGCGTAC ATAAAGACGA ACCTTGTGAC ACCGTTGGAA TTGCTTACTT AGGAGGTGTG
    TGCAGTGCTA AGAGGAAATG TGTGCTTGCC GAGGACAATG GCCTCAATTT GGCCTTTACC
    ATCGCTCATG AGCTGGGCCA CAACTTGGGG ATGAACCATG ACGACGACCA CTCCTCCTGC
    GCTGGCAGGT CTCACATCAT GTCGGGAGAG TGGGTGAAAG GCCGGAACCC TAGCGACCTC
    TCCTGGTCCT CCTGCAGTCG AGATGACCTT GAAAACTTCC TCAAGTCCAA AGTCAGCACC
    TGTTTGCTGG TCACAGATCC CAGGAGCCAG CATGCTGTGC GCCTCCCGCA CAAGCTGCCG
    GGCATGCACT ACAGCGCCAA CGAGCAGTGC CAGATCCTAT TTGGCACCAA TGCCACCTTC
    TGTAGAAACC TGGAGCAGCA TCTGATGTGC GCGGGATTGT GGTGCCTGGT GGAAGGAGAT
    ACATCCTGCA AGACCAAGCT GGACCCTCCC TTGGACGGCA CAGAGTGTGG GGCAGACAAG
    TGGTGCCGCG CAGGGGAGTG TGTGAGCAAG ACGCCCATCC CAGAGCACGT GGACGGAGAC
    TGGAGCCCTT GGGGTGCCTG GAGCATGTGC AGCCGCACAT GCGGCACAGG AGCTCGCTTT
    CGGCAGAGGA AATGCGACAA CCCTCCCCCA GGGCCTGGAG GCACACACTG CTTGGGCGCC
    AGTGTGGAGC ATGCAGTCTG TGAGAACCTT CCTTGCCCCA AGGGTCTGCC CAGCTTCCGA
    GACCAGCAGT GCCAGACACA TGACCGGCTA AGCAGCAAGA AGAAGGGCCT GCTGACAGCA
    GTGGTGGTTG ATGATAAACC ATGCGAACTC CACTGCTTGC CCCTTGGGAA GGAGTCTCCG
    CTGCTGGTGG CCGACAGGGT TCTGGATGGC ACGCCCTGCG GACCCTACGA GACTGACCTC
    TGTGTGCACG GCAGGTGCCA GAAAATCGGC TGTGATGGCA TCATCGGGTC TGCAGCCAAA
    GAAGACCGGT GTGGAGTCTG CAGTGGGGAC GGCAAGACCT GCCGTGTGGT GAAAGGTGAC
    TTCAGCCACT CTCGGGGCAC AGTCAAGAAT GATCTTTGTA CGAAGGTGTC CACGTGTGTG
    ATGGCAAAGG CCGTTCCCAA GTGTTTCTCA TGTTATATTG AAGCTGTCAT CATTCCAGCT
    GGAGCTCGAA GGATCCGCGT GGTGGAGGAT AAACCTGCTC ACAGTTTTCT GGCTCTCAAA
    GACTCCAGTA AGAGATCCAT CAACAGTGAC TGGAAGATAG AGCTCCCTGG AGAATTCCAG
    ATTGCAGGCA CGACGGTCCG CTATGTTAGA AGGGGCCTGT GGGAGAAAAT TTCCGCCAAG
    GGACCAACCA AAATGCCACT GCATTTGATG GTGTTGTTAT TTCATGACCA AAATTATGGA
    ATTCATTACG AATACACCAT TCCTGTAAAC TACACTGCTG AAAATCAAAG TGAGCCAGAA
    AAACCTCAGG ACTCCTTGTT CATCTGGACC CACAGCGGCT GGGAGGGGTG CAGTGTGCAG
    TGTGGAGGAG GGGAACGCAG AACTATTGTA TCCTGTACAC GGATTGTTAA CAAGACCACA
    ACTCTGGTGA ATGACAGTGA CTGTCCTCAG GCTAGCCGTC CGGAGCCCCA GGTCCGCAGG
    TGCAACTCGC ACCCATGCCA GTCACGGTGG GTGGCAGGCC CATGGAGCCC CTGCTCAGCC
    ACCTGTGAGA AGGGCATCCA GCATCGGGAA GTGACCTGCG TGTACCAGCT GCAGAACGGC
    ACACACGTCG CCACTCGGCC CCTCTACTGC CCGGTCCCAC GGCCATCGCC AGTGCAGAGC
    TGCGAAGGCC AGGACTGTCT GTCCATCTGG GAGGCATCCG AGTGGTCACA GTGTTCTGCC
    AACTGCGGGA AAGGGACACG GAAACGAACT GTGACGTGCA CCAACTCACA AGGAAAATGC
    GACGCGTCCA GGAGACCAAG AGCCGAGGAG GCCTGTGAGG ACTATTCCGG CTGCTACGAG
    TGGAAAACCG GGAGCTGGTC CAAGTGCTCG TCAACCTGTG GGAAGGGCCT GCAGTCCCGT
    GTGGTCCAGT GCATGCACAA GGTCACAGGG CGCCATGGCA ATGAGTGCCC CGCCCTCTCT
    AAGCCGGCAG CCTACAAACA GTGCCACCAA GAAGTCTGCA ATGACAAGAT CAACGTGAAC
    ACGATCACCT CCCCTCGCCT AGCCGCCCTG ACCTACAAAT GCACACGGGA CCAGTGGACA
    GTGTATTGTA GGGTCATCCG AGAAAAGAAC CTCTGCCAGG ATATGCGATG GTACCAGCGC
    TGCTGCCAGA CATGCAGGGA CTTCTACGCA AACAAGATGC GCCAACAGCC ACCACTGCCG
    CCGCCACCAA GCTCATGA

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

    CloneID OSe230325
    Clone ID Related Accession (Same CDS sequence) XM_021098449.1
    Accession Version XM_021098449.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3435bp)
    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 1494518400000
    Organism Sus scrofa(pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 17 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_010443.5) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Sus scrofa Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 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
    ATGTGTGACG GCGCCCTGCT GCCTCCCCTT GTCCTGCCCT TGCTGCTGCT GCTGGTTTGG 
    GGACTGGACT CGGGTGCAGC GGTCGGCGAC GCGGCGGCCG ACGTGGAGGT GGTGCTCCCG
    CGGCGGGTGC GCCCAGACGC CGTGCACCTG CCGCAGCTGC CTGGCGCCCC AGGGCCGCGA
    AGACGTCGGC GACCCCGCGC GCCCCCCGCC GCCCCGCGTG CCCGGCCTGG CGAGCGCGCC
    CTGCTGCTGC ACCTGCCGGC CTTCGGGCGC GACCTGTACC TGCAGCTGCG TCGCGACCTC
    CGCTTTCTGT CCGGCGGTTT CGAGGTGGAG GAGGCTGGCG AAGCAGGGCG CCGTGGACGC
    CCCGCCGAAC TGTGCTTCTA CTCGGGCCGC GTGCTGGGCC ACCCCGGCTC CCTCGTCTCG
    CTCAGCACTT GCGGCGGCGG CCTGGTTGGA CTCATCCAGC TTGGGCAGGA GCAGGTGCTA
    ATCCAGCCCC TCAACAGTTC CCAGGGACAG GAGCATCTGA TCAGGCGCAG ATGGTCCTTG
    ACGCCCAGCC CCTCAGCCGA GGCCCAGATG CCGGGGCAGC CCTGCAAGGT CCTCACAGAA
    AAAAAGAAGC CAAAGAGGGG CCGGCTATCG AGAGACTGGC GGGGGCGGAG GAGTGCCATC
    CGGCTGACCA ATGAACACAC AGTGGAGACG CTGGTGGTGG CCGATGCCGA CATGGTGCAG
    TACCACGGGG CAGAGGCTGC CCAGAGGTTC ATCCTCACCG TCATGAACAT GGTGTACAAT
    ATGTTTCAGC ACGAAAGCCT TGGAATTAAA GTTAACATTC AAGTCACCAA GCTTGTCCTG
    CTACGACAGC GTCCTGCCAA GTTGTCCATT GGGCACCATG GTGAGCGGTC CCTGGAGAGC
    TTCTGTCACT GGCAGAATGA GGAGTACGGA GGCGCACGCT ACCTCGGCAA CAATCAGGTT
    CCAGGAGGCA AGGATGATAC ACCCCCTGTG GATGCCGCTG TATTCGTGAC CAGGACAGAT
    TTCTGCGTAC ATAAAGACGA ACCTTGTGAC ACCGTTGGAA TTGCTTACTT AGGAGGTGTG
    TGCAGTGCTA AGAGGAAATG TGTGCTTGCC GAGGACAATG GCCTCAATTT GGCCTTTACC
    ATCGCTCATG AGCTGGGCCA CAACTTGGGG ATGAACCATG ACGACGACCA CTCCTCCTGC
    GCTGGCAGGT CTCACATCAT GTCGGGAGAG TGGGTGAAAG GCCGGAACCC TAGCGACCTC
    TCCTGGTCCT CCTGCAGTCG AGATGACCTT GAAAACTTCC TCAAGTCCAA AGTCAGCACC
    TGTTTGCTGG TCACAGATCC CAGGAGCCAG CATGCTGTGC GCCTCCCGCA CAAGCTGCCG
    GGCATGCACT ACAGCGCCAA CGAGCAGTGC CAGATCCTAT TTGGCACCAA TGCCACCTTC
    TGTAGAAACC TGGAGCATCT GATGTGCGCG GGATTGTGGT GCCTGGTGGA AGGAGATACA
    TCCTGCAAGA CCAAGCTGGA CCCTCCCTTG GACGGCACAG AGTGTGGGGC AGACAAGTGG
    TGCCGCGCAG GGGAGTGTGT GAGCAAGACG CCCATCCCAG AGCACGTGGA CGGAGACTGG
    AGCCCTTGGG GTGCCTGGAG CATGTGCAGC CGCACATGCG GCACAGGAGC TCGCTTTCGG
    CAGAGGAAAT GCGACAACCC TCCCCCAGGG CCTGGAGGCA CACACTGCTT GGGCGCCAGT
    GTGGAGCATG CAGTCTGTGA GAACCTTCCT TGCCCCAAGG GTCTGCCCAG CTTCCGAGAC
    CAGCAGTGCC AGACACATGA CCGGCTAAGC AGCAAGAAGA AGGGCCTGCT GACAGCAGTG
    GTGGTTGATG ATAAACCATG CGAACTCCAC TGCTTGCCCC TTGGGAAGGA GTCTCCGCTG
    CTGGTGGCCG ACAGGGTTCT GGATGGCACG CCCTGCGGAC CCTACGAGAC TGACCTCTGT
    GTGCACGGCA GGTGCCAGAA AATCGGCTGT GATGGCATCA TCGGGTCTGC AGCCAAAGAA
    GACCGGTGTG GAGTCTGCAG TGGGGACGGC AAGACCTGCC GTGTGGTGAA AGGTGACTTC
    AGCCACTCTC GGGGCACAGT CAAGAATGAT CTTTGTACGA AGGTGTCCAC GTGTGTGATG
    GCAAAGGCCG TTCCCAAGTG TTTCTCATGT TATATTGAAG CTGTCATCAT TCCAGCTGGA
    GCTCGAAGGA TCCGCGTGGT GGAGGATAAA CCTGCTCACA GTTTTCTGGC TCTCAAAGAC
    TCCAGTAAGA GATCCATCAA CAGTGACTGG AAGATAGAGC TCCCTGGAGA ATTCCAGATT
    GCAGGCACGA CGGTCCGCTA TGTTAGAAGG GGCCTGTGGG AGAAAATTTC CGCCAAGGGA
    CCAACCAAAA TGCCACTGCA TTTGATGGTG TTGTTATTTC ATGACCAAAA TTATGGAATT
    CATTACGAAT ACACCATTCC TGTAAACTAC ACTGCTGAAA ATCAAAGTGA GCCAGAAAAA
    CCTCAGGACT CCTTGTTCAT CTGGACCCAC AGCGGCTGGG AGGGGTGCAG TGTGCAGTGT
    GGAGGAGGGG AACGCAGAAC TATTGTATCC TGTACACGGA TTGTTAACAA GACCACAACT
    CTGGTGAATG ACAGTGACTG TCCTCAGGCT AGCCGTCCGG AGCCCCAGGT CCGCAGGTGC
    AACTCGCACC CATGCCAGTC ACGGTGGGTG GCAGGCCCAT GGAGCCCCTG CTCAGCCACC
    TGTGAGAAGG GCATCCAGCA TCGGGAAGTG ACCTGCGTGT ACCAGCTGCA GAACGGCACA
    CACGTCGCCA CTCGGCCCCT CTACTGCCCG GTCCCACGGC CATCGCCAGT GCAGAGCTGC
    GAAGGCCAGG ACTGTCTGTC CATCTGGGAG GCATCCGAGT GGTCACAGTG TTCTGCCAAC
    TGCGGGAAAG GGACACGGAA ACGAACTGTG ACGTGCACCA ACTCACAAGG AAAATGCGAC
    GCGTCCAGGA GACCAAGAGC CGAGGAGGCC TGTGAGGACT ATTCCGGCTG CTACGAGTGG
    AAAACCGGGA GCTGGTCCAA GTGCTCGTCA ACCTGTGGGA AGGGCCTGCA GTCCCGTGTG
    GTCCAGTGCA TGCACAAGGT CACAGGGCGC CATGGCAATG AGTGCCCCGC CCTCTCTAAG
    CCGGCAGCCT ACAAACAGTG CCACCAAGAA GTCTGCAATG ACAAGATCAA CGTGAACACG
    ATCACCTCCC CTCGCCTAGC CGCCCTGACC TACAAATGCA CACGGGACCA GTGGACAGTG
    TATTGTAGGG TCATCCGAGA AAAGAACCTC TGCCAGGATA TGCGATGGTA CCAGCGCTGC
    TGCCAGACAT GCAGGGACTT CTACGCAAAC AAGATGCGCC AACAGCCACC ACTGCCGCCG
    CCACCAAGCT CATGA

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

    RefSeq XP_020954108.1
    CDS301..3735
    Translation

    Target ORF information:

    RefSeq Version XM_021098449.1
    Organism Sus scrofa(pig)
    Definition Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif 17 (ADAMTS17), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021098449.1

    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
    ATGTGTGACG GCGCCCTGCT GCCTCCCCTT GTCCTGCCCT TGCTGCTGCT GCTGGTTTGG 
    GGACTGGACT CGGGTGCAGC GGTCGGCGAC GCGGCGGCCG ACGTGGAGGT GGTGCTCCCG
    CGGCGGGTGC GCCCAGACGC CGTGCACCTG CCGCAGCTGC CTGGCGCCCC AGGGCCGCGA
    AGACGTCGGC GACCCCGCGC GCCCCCCGCC GCCCCGCGTG CCCGGCCTGG CGAGCGCGCC
    CTGCTGCTGC ACCTGCCGGC CTTCGGGCGC GACCTGTACC TGCAGCTGCG TCGCGACCTC
    CGCTTTCTGT CCGGCGGTTT CGAGGTGGAG GAGGCTGGCG AAGCAGGGCG CCGTGGACGC
    CCCGCCGAAC TGTGCTTCTA CTCGGGCCGC GTGCTGGGCC ACCCCGGCTC CCTCGTCTCG
    CTCAGCACTT GCGGCGGCGG CCTGGTTGGA CTCATCCAGC TTGGGCAGGA GCAGGTGCTA
    ATCCAGCCCC TCAACAGTTC CCAGGGACAG GAGCATCTGA TCAGGCGCAG ATGGTCCTTG
    ACGCCCAGCC CCTCAGCCGA GGCCCAGATG CCGGGGCAGC CCTGCAAGGT CCTCACAGAA
    AAAAAGAAGC CAAAGAGGGG CCGGCTATCG AGAGACTGGC GGGGGCGGAG GAGTGCCATC
    CGGCTGACCA ATGAACACAC AGTGGAGACG CTGGTGGTGG CCGATGCCGA CATGGTGCAG
    TACCACGGGG CAGAGGCTGC CCAGAGGTTC ATCCTCACCG TCATGAACAT GGTGTACAAT
    ATGTTTCAGC ACGAAAGCCT TGGAATTAAA GTTAACATTC AAGTCACCAA GCTTGTCCTG
    CTACGACAGC GTCCTGCCAA GTTGTCCATT GGGCACCATG GTGAGCGGTC CCTGGAGAGC
    TTCTGTCACT GGCAGAATGA GGAGTACGGA GGCGCACGCT ACCTCGGCAA CAATCAGGTT
    CCAGGAGGCA AGGATGATAC ACCCCCTGTG GATGCCGCTG TATTCGTGAC CAGGACAGAT
    TTCTGCGTAC ATAAAGACGA ACCTTGTGAC ACCGTTGGAA TTGCTTACTT AGGAGGTGTG
    TGCAGTGCTA AGAGGAAATG TGTGCTTGCC GAGGACAATG GCCTCAATTT GGCCTTTACC
    ATCGCTCATG AGCTGGGCCA CAACTTGGGG ATGAACCATG ACGACGACCA CTCCTCCTGC
    GCTGGCAGGT CTCACATCAT GTCGGGAGAG TGGGTGAAAG GCCGGAACCC TAGCGACCTC
    TCCTGGTCCT CCTGCAGTCG AGATGACCTT GAAAACTTCC TCAAGTCCAA AGTCAGCACC
    TGTTTGCTGG TCACAGATCC CAGGAGCCAG CATGCTGTGC GCCTCCCGCA CAAGCTGCCG
    GGCATGCACT ACAGCGCCAA CGAGCAGTGC CAGATCCTAT TTGGCACCAA TGCCACCTTC
    TGTAGAAACC TGGAGCATCT GATGTGCGCG GGATTGTGGT GCCTGGTGGA AGGAGATACA
    TCCTGCAAGA CCAAGCTGGA CCCTCCCTTG GACGGCACAG AGTGTGGGGC AGACAAGTGG
    TGCCGCGCAG GGGAGTGTGT GAGCAAGACG CCCATCCCAG AGCACGTGGA CGGAGACTGG
    AGCCCTTGGG GTGCCTGGAG CATGTGCAGC CGCACATGCG GCACAGGAGC TCGCTTTCGG
    CAGAGGAAAT GCGACAACCC TCCCCCAGGG CCTGGAGGCA CACACTGCTT GGGCGCCAGT
    GTGGAGCATG CAGTCTGTGA GAACCTTCCT TGCCCCAAGG GTCTGCCCAG CTTCCGAGAC
    CAGCAGTGCC AGACACATGA CCGGCTAAGC AGCAAGAAGA AGGGCCTGCT GACAGCAGTG
    GTGGTTGATG ATAAACCATG CGAACTCCAC TGCTTGCCCC TTGGGAAGGA GTCTCCGCTG
    CTGGTGGCCG ACAGGGTTCT GGATGGCACG CCCTGCGGAC CCTACGAGAC TGACCTCTGT
    GTGCACGGCA GGTGCCAGAA AATCGGCTGT GATGGCATCA TCGGGTCTGC AGCCAAAGAA
    GACCGGTGTG GAGTCTGCAG TGGGGACGGC AAGACCTGCC GTGTGGTGAA AGGTGACTTC
    AGCCACTCTC GGGGCACAGT CAAGAATGAT CTTTGTACGA AGGTGTCCAC GTGTGTGATG
    GCAAAGGCCG TTCCCAAGTG TTTCTCATGT TATATTGAAG CTGTCATCAT TCCAGCTGGA
    GCTCGAAGGA TCCGCGTGGT GGAGGATAAA CCTGCTCACA GTTTTCTGGC TCTCAAAGAC
    TCCAGTAAGA GATCCATCAA CAGTGACTGG AAGATAGAGC TCCCTGGAGA ATTCCAGATT
    GCAGGCACGA CGGTCCGCTA TGTTAGAAGG GGCCTGTGGG AGAAAATTTC CGCCAAGGGA
    CCAACCAAAA TGCCACTGCA TTTGATGGTG TTGTTATTTC ATGACCAAAA TTATGGAATT
    CATTACGAAT ACACCATTCC TGTAAACTAC ACTGCTGAAA ATCAAAGTGA GCCAGAAAAA
    CCTCAGGACT CCTTGTTCAT CTGGACCCAC AGCGGCTGGG AGGGGTGCAG TGTGCAGTGT
    GGAGGAGGGG AACGCAGAAC TATTGTATCC TGTACACGGA TTGTTAACAA GACCACAACT
    CTGGTGAATG ACAGTGACTG TCCTCAGGCT AGCCGTCCGG AGCCCCAGGT CCGCAGGTGC
    AACTCGCACC CATGCCAGTC ACGGTGGGTG GCAGGCCCAT GGAGCCCCTG CTCAGCCACC
    TGTGAGAAGG GCATCCAGCA TCGGGAAGTG ACCTGCGTGT ACCAGCTGCA GAACGGCACA
    CACGTCGCCA CTCGGCCCCT CTACTGCCCG GTCCCACGGC CATCGCCAGT GCAGAGCTGC
    GAAGGCCAGG ACTGTCTGTC CATCTGGGAG GCATCCGAGT GGTCACAGTG TTCTGCCAAC
    TGCGGGAAAG GGACACGGAA ACGAACTGTG ACGTGCACCA ACTCACAAGG AAAATGCGAC
    GCGTCCAGGA GACCAAGAGC CGAGGAGGCC TGTGAGGACT ATTCCGGCTG CTACGAGTGG
    AAAACCGGGA GCTGGTCCAA GTGCTCGTCA ACCTGTGGGA AGGGCCTGCA GTCCCGTGTG
    GTCCAGTGCA TGCACAAGGT CACAGGGCGC CATGGCAATG AGTGCCCCGC CCTCTCTAAG
    CCGGCAGCCT ACAAACAGTG CCACCAAGAA GTCTGCAATG ACAAGATCAA CGTGAACACG
    ATCACCTCCC CTCGCCTAGC CGCCCTGACC TACAAATGCA CACGGGACCA GTGGACAGTG
    TATTGTAGGG TCATCCGAGA AAAGAACCTC TGCCAGGATA TGCGATGGTA CCAGCGCTGC
    TGCCAGACAT GCAGGGACTT CTACGCAAAC AAGATGCGCC AACAGCCACC ACTGCCGCCG
    CCACCAAGCT CATGA

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

    CloneID OSe230326
    Clone ID Related Accession (Same CDS sequence) XM_005659785.3
    Accession Version XM_005659785.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3369bp)
    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 1494518400000
    Organism Sus scrofa(pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 17 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_010443.5) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On May 13, 2017 this sequence version replaced XM_005659785.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Sus scrofa Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 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
    ATGTGTGACG GCGCCCTGCT GCCTCCCCTT GTCCTGCCCT TGCTGCTGCT GCTGGTTTGG 
    GGACTGGACT CGGGTGCAGC GGTCGGCGAC GCGGCGGCCG ACGTGGAGGT GGTGCTCCCG
    CGGCGGGTGC GCCCAGACGC CGTGCACCTG CCGCAGCTGC CTGGCGCCCC AGGGCCGCGA
    AGACGTCGGC GACCCCGCGC GCCCCCCGCC GCCCCGCGTG CCCGGCCTGG CGAGCGCGCC
    CTGCTGCTGC ACCTGCCGGC CTTCGGGCGC GACCTGTACC TGCAGCTGCG TCGCGACCTC
    CGCTTTCTGT CCGGCGGTTT CGAGGTGGAG GAGGCTGGCG AAGCAGGGCG CCGTGGACGC
    CCCGCCGAAC TGTGCTTCTA CTCGGGCCGC GTGCTGGGCC ACCCCGGCTC CCTCGTCTCG
    CTCAGCACTT GCGGCGGCGG CCTGGTTGGA CTCATCCAGC TTGGGCAGGA GCAGGTGCTA
    ATCCAGCCCC TCAACAGTTC CCAGGGACAG GAGCATCTGA TCAGGCGCAG ATGGTCCTTG
    ACGCCCAGCC CCTCAGCCGA GGCCCAGATG CCGGGGCAGC CCTGCAAGGT CCTCACAGAA
    AAAAAGAAGC CAAAGAGGGG CCGGCTATCG AGAGACTGGC GGGGGCGGAG GAGTGCCATC
    CGGCTGACCA ATGAACACAC AGTGGAGACG CTGGTGGTGG CCGATGCCGA CATGGTGCAG
    TACCACGGGG CAGAGGCTGC CCAGAGGTTC ATCCTCACCG TCATGAACAT GGTGTACAAT
    ATGTTTCAGC ACGAAAGCCT TGGAATTAAA GTTAACATTC AAGTCACCAA GCTTGTCCTG
    CTACGACAGC GTCCTGCCAA GTTGTCCATT GGGCACCATG GTGAGCGGTC CCTGGAGAGC
    TTCTGTCACT GGCAGAATGA GGAGTACGGA GGCGCACGCT ACCTCGGCAA CAATCAGGTT
    CCAGGAGGCA AGGATGATAC ACCCCCTGTG GATGCCGCTG TATTCGTGAC CAGGACAGAT
    TTCTGCGTAC ATAAAGACGA ACCTTGTGAC ACCGTTGGAA TTGCTTACTT AGGAGGTGTG
    TGCAGTGCTA AGAGGAAATG TGTGCTTGCC GAGGACAATG GCCTCAATTT GGCCTTTACC
    ATCGCTCATG AGCTGGGCCA CAACTTGGGG ATGAACCATG ACGACGACCA CTCCTCCTGC
    GCTGGCAGGT CTCACATCAT GTCGGGAGAG TGGGTGAAAG GCCGGAACCC TAGCGACCTC
    TCCTGGTCCT CCTGCAGTCG AGATGACCTT GAAAACTTCC TCAAGTCCAA AGTCAGCACC
    TGTTTGCTGG TCACAGATCC CAGGAGCCAG CATGCTGTGC GCCTCCCGCA CAAGCTGCCG
    GGCATGCACT ACAGCGCCAA CGAGCAGTGC CAGATCCTAT TTGGCACCAA TGCCACCTTC
    TGTAGAAACC TGGAGCAGCA TCTGATGTGC GCGGGATTGT GGTGCCTGGT GGAAGGAGAT
    ACATCCTGCA AGACCAAGCT GGACCCTCCC TTGGACGGCA CAGAGTGTGG GGCAGACAAG
    TGGTGCCGCG CAGGGGAGTG TGTGAGCAAG ACGCCCATCC CAGAGCACGT GGACGGAGAC
    TGGAGCCCTT GGGGTGCCTG GAGCATGTGC AGCCGCACAT GCGGCACAGG AGCTCGCTTT
    CGGCAGAGGA AATGCGACAA CCCTCCCCCA GGGCCTGGAG GCACACACTG CTTGGGCGCC
    AGTGTGGAGC ATGCAGTCTG TGAGAACCTT CCTTGCCCCA AGGGTCTGCC CAGCTTCCGA
    GACCAGCAGT GCCAGACACA TGACCGGCTA AGCAGCAAGA AGAAGGGCCT GCTGACAGCA
    GTGGTGGTTG ATGATAAACC ATGCGAACTC CACTGCTTGC CCCTTGGGAA GGAGTCTCCG
    CTGCTGGTGG CCGACAGGGT TCTGGATGGC ACGCCCTGCG GACCCTACGA GACTGACCTC
    TGTGTGCACG GCAGGTGCCA GAAAATCGGC TGTGATGGCA TCATCGGGTC TGCAGCCAAA
    GAAGACCGGT GTGGAGTCTG CAGTGGGGAC GGCAAGACCT GCCGTGTGGT GAAAGGTGAC
    TTCAGCCACT CTCGGGGCAC AGGTTATATT GAAGCTGTCA TCATTCCAGC TGGAGCTCGA
    AGGATCCGCG TGGTGGAGGA TAAACCTGCT CACAGTTTTC TGGCTCTCAA AGACTCCAGT
    AAGAGATCCA TCAACAGTGA CTGGAAGATA GAGCTCCCTG GAGAATTCCA GATTGCAGGC
    ACGACGGTCC GCTATGTTAG AAGGGGCCTG TGGGAGAAAA TTTCCGCCAA GGGACCAACC
    AAAATGCCAC TGCATTTGAT GGTGTTGTTA TTTCATGACC AAAATTATGG AATTCATTAC
    GAATACACCA TTCCTGTAAA CTACACTGCT GAAAATCAAA GTGAGCCAGA AAAACCTCAG
    GACTCCTTGT TCATCTGGAC CCACAGCGGC TGGGAGGGGT GCAGTGTGCA GTGTGGAGGA
    GGGGAACGCA GAACTATTGT ATCCTGTACA CGGATTGTTA ACAAGACCAC AACTCTGGTG
    AATGACAGTG ACTGTCCTCA GGCTAGCCGT CCGGAGCCCC AGGTCCGCAG GTGCAACTCG
    CACCCATGCC AGTCACGGTG GGTGGCAGGC CCATGGAGCC CCTGCTCAGC CACCTGTGAG
    AAGGGCATCC AGCATCGGGA AGTGACCTGC GTGTACCAGC TGCAGAACGG CACACACGTC
    GCCACTCGGC CCCTCTACTG CCCGGTCCCA CGGCCATCGC CAGTGCAGAG CTGCGAAGGC
    CAGGACTGTC TGTCCATCTG GGAGGCATCC GAGTGGTCAC AGTGTTCTGC CAACTGCGGG
    AAAGGGACAC GGAAACGAAC TGTGACGTGC ACCAACTCAC AAGGAAAATG CGACGCGTCC
    AGGAGACCAA GAGCCGAGGA GGCCTGTGAG GACTATTCCG GCTGCTACGA GTGGAAAACC
    GGGAGCTGGT CCAAGTGCTC GTCAACCTGT GGGAAGGGCC TGCAGTCCCG TGTGGTCCAG
    TGCATGCACA AGGTCACAGG GCGCCATGGC AATGAGTGCC CCGCCCTCTC TAAGCCGGCA
    GCCTACAAAC AGTGCCACCA AGAAGTCTGC AATGACAAGA TCAACGTGAA CACGATCACC
    TCCCCTCGCC TAGCCGCCCT GACCTACAAA TGCACACGGG ACCAGTGGAC AGTGTATTGT
    AGGGTCATCC GAGAAAAGAA CCTCTGCCAG GATATGCGAT GGTACCAGCG CTGCTGCCAG
    ACATGCAGGG ACTTCTACGC AAACAAGATG CGCCAACAGC CACCACTGCC GCCGCCACCA
    AGCTCATGA

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

    RefSeq XP_005659842.2
    CDS299..3667
    Translation

    Target ORF information:

    RefSeq Version XM_005659785.3
    Organism Sus scrofa(pig)
    Definition Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif 17 (ADAMTS17), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005659785.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    ATGTGTGACG GCGCCCTGCT GCCTCCCCTT GTCCTGCCCT TGCTGCTGCT GCTGGTTTGG 
    GGACTGGACT CGGGTGCAGC GGTCGGCGAC GCGGCGGCCG ACGTGGAGGT GGTGCTCCCG
    CGGCGGGTGC GCCCAGACGC CGTGCACCTG CCGCAGCTGC CTGGCGCCCC AGGGCCGCGA
    AGACGTCGGC GACCCCGCGC GCCCCCCGCC GCCCCGCGTG CCCGGCCTGG CGAGCGCGCC
    CTGCTGCTGC ACCTGCCGGC CTTCGGGCGC GACCTGTACC TGCAGCTGCG TCGCGACCTC
    CGCTTTCTGT CCGGCGGTTT CGAGGTGGAG GAGGCTGGCG AAGCAGGGCG CCGTGGACGC
    CCCGCCGAAC TGTGCTTCTA CTCGGGCCGC GTGCTGGGCC ACCCCGGCTC CCTCGTCTCG
    CTCAGCACTT GCGGCGGCGG CCTGGTTGGA CTCATCCAGC TTGGGCAGGA GCAGGTGCTA
    ATCCAGCCCC TCAACAGTTC CCAGGGACAG GAGCATCTGA TCAGGCGCAG ATGGTCCTTG
    ACGCCCAGCC CCTCAGCCGA GGCCCAGATG CCGGGGCAGC CCTGCAAGGT CCTCACAGAA
    AAAAAGAAGC CAAAGAGGGG CCGGCTATCG AGAGACTGGC GGGGGCGGAG GAGTGCCATC
    CGGCTGACCA ATGAACACAC AGTGGAGACG CTGGTGGTGG CCGATGCCGA CATGGTGCAG
    TACCACGGGG CAGAGGCTGC CCAGAGGTTC ATCCTCACCG TCATGAACAT GGTGTACAAT
    ATGTTTCAGC ACGAAAGCCT TGGAATTAAA GTTAACATTC AAGTCACCAA GCTTGTCCTG
    CTACGACAGC GTCCTGCCAA GTTGTCCATT GGGCACCATG GTGAGCGGTC CCTGGAGAGC
    TTCTGTCACT GGCAGAATGA GGAGTACGGA GGCGCACGCT ACCTCGGCAA CAATCAGGTT
    CCAGGAGGCA AGGATGATAC ACCCCCTGTG GATGCCGCTG TATTCGTGAC CAGGACAGAT
    TTCTGCGTAC ATAAAGACGA ACCTTGTGAC ACCGTTGGAA TTGCTTACTT AGGAGGTGTG
    TGCAGTGCTA AGAGGAAATG TGTGCTTGCC GAGGACAATG GCCTCAATTT GGCCTTTACC
    ATCGCTCATG AGCTGGGCCA CAACTTGGGG ATGAACCATG ACGACGACCA CTCCTCCTGC
    GCTGGCAGGT CTCACATCAT GTCGGGAGAG TGGGTGAAAG GCCGGAACCC TAGCGACCTC
    TCCTGGTCCT CCTGCAGTCG AGATGACCTT GAAAACTTCC TCAAGTCCAA AGTCAGCACC
    TGTTTGCTGG TCACAGATCC CAGGAGCCAG CATGCTGTGC GCCTCCCGCA CAAGCTGCCG
    GGCATGCACT ACAGCGCCAA CGAGCAGTGC CAGATCCTAT TTGGCACCAA TGCCACCTTC
    TGTAGAAACC TGGAGCAGCA TCTGATGTGC GCGGGATTGT GGTGCCTGGT GGAAGGAGAT
    ACATCCTGCA AGACCAAGCT GGACCCTCCC TTGGACGGCA CAGAGTGTGG GGCAGACAAG
    TGGTGCCGCG CAGGGGAGTG TGTGAGCAAG ACGCCCATCC CAGAGCACGT GGACGGAGAC
    TGGAGCCCTT GGGGTGCCTG GAGCATGTGC AGCCGCACAT GCGGCACAGG AGCTCGCTTT
    CGGCAGAGGA AATGCGACAA CCCTCCCCCA GGGCCTGGAG GCACACACTG CTTGGGCGCC
    AGTGTGGAGC ATGCAGTCTG TGAGAACCTT CCTTGCCCCA AGGGTCTGCC CAGCTTCCGA
    GACCAGCAGT GCCAGACACA TGACCGGCTA AGCAGCAAGA AGAAGGGCCT GCTGACAGCA
    GTGGTGGTTG ATGATAAACC ATGCGAACTC CACTGCTTGC CCCTTGGGAA GGAGTCTCCG
    CTGCTGGTGG CCGACAGGGT TCTGGATGGC ACGCCCTGCG GACCCTACGA GACTGACCTC
    TGTGTGCACG GCAGGTGCCA GAAAATCGGC TGTGATGGCA TCATCGGGTC TGCAGCCAAA
    GAAGACCGGT GTGGAGTCTG CAGTGGGGAC GGCAAGACCT GCCGTGTGGT GAAAGGTGAC
    TTCAGCCACT CTCGGGGCAC AGGTTATATT GAAGCTGTCA TCATTCCAGC TGGAGCTCGA
    AGGATCCGCG TGGTGGAGGA TAAACCTGCT CACAGTTTTC TGGCTCTCAA AGACTCCAGT
    AAGAGATCCA TCAACAGTGA CTGGAAGATA GAGCTCCCTG GAGAATTCCA GATTGCAGGC
    ACGACGGTCC GCTATGTTAG AAGGGGCCTG TGGGAGAAAA TTTCCGCCAA GGGACCAACC
    AAAATGCCAC TGCATTTGAT GGTGTTGTTA TTTCATGACC AAAATTATGG AATTCATTAC
    GAATACACCA TTCCTGTAAA CTACACTGCT GAAAATCAAA GTGAGCCAGA AAAACCTCAG
    GACTCCTTGT TCATCTGGAC CCACAGCGGC TGGGAGGGGT GCAGTGTGCA GTGTGGAGGA
    GGGGAACGCA GAACTATTGT ATCCTGTACA CGGATTGTTA ACAAGACCAC AACTCTGGTG
    AATGACAGTG ACTGTCCTCA GGCTAGCCGT CCGGAGCCCC AGGTCCGCAG GTGCAACTCG
    CACCCATGCC AGTCACGGTG GGTGGCAGGC CCATGGAGCC CCTGCTCAGC CACCTGTGAG
    AAGGGCATCC AGCATCGGGA AGTGACCTGC GTGTACCAGC TGCAGAACGG CACACACGTC
    GCCACTCGGC CCCTCTACTG CCCGGTCCCA CGGCCATCGC CAGTGCAGAG CTGCGAAGGC
    CAGGACTGTC TGTCCATCTG GGAGGCATCC GAGTGGTCAC AGTGTTCTGC CAACTGCGGG
    AAAGGGACAC GGAAACGAAC TGTGACGTGC ACCAACTCAC AAGGAAAATG CGACGCGTCC
    AGGAGACCAA GAGCCGAGGA GGCCTGTGAG GACTATTCCG GCTGCTACGA GTGGAAAACC
    GGGAGCTGGT CCAAGTGCTC GTCAACCTGT GGGAAGGGCC TGCAGTCCCG TGTGGTCCAG
    TGCATGCACA AGGTCACAGG GCGCCATGGC AATGAGTGCC CCGCCCTCTC TAAGCCGGCA
    GCCTACAAAC AGTGCCACCA AGAAGTCTGC AATGACAAGA TCAACGTGAA CACGATCACC
    TCCCCTCGCC TAGCCGCCCT GACCTACAAA TGCACACGGG ACCAGTGGAC AGTGTATTGT
    AGGGTCATCC GAGAAAAGAA CCTCTGCCAG GATATGCGAT GGTACCAGCG CTGCTGCCAG
    ACATGCAGGG ACTTCTACGC AAACAAGATG CGCCAACAGC CACCACTGCC GCCGCCACCA
    AGCTCATGA

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

    CloneID OSe230327
    Clone ID Related Accession (Same CDS sequence) XM_021098456.1
    Accession Version XM_021098456.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3366bp)
    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 1494518400000
    Organism Sus scrofa(pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 17 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_010443.5) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Sus scrofa Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 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
    ATGTGTGACG GCGCCCTGCT GCCTCCCCTT GTCCTGCCCT TGCTGCTGCT GCTGGTTTGG 
    GGACTGGACT CGGGTGCAGC GGTCGGCGAC GCGGCGGCCG ACGTGGAGGT GGTGCTCCCG
    CGGCGGGTGC GCCCAGACGC CGTGCACCTG CCGCAGCTGC CTGGCGCCCC AGGGCCGCGA
    AGACGTCGGC GACCCCGCGC GCCCCCCGCC GCCCCGCGTG CCCGGCCTGG CGAGCGCGCC
    CTGCTGCTGC ACCTGCCGGC CTTCGGGCGC GACCTGTACC TGCAGCTGCG TCGCGACCTC
    CGCTTTCTGT CCGGCGGTTT CGAGGTGGAG GAGGCTGGCG AAGCAGGGCG CCGTGGACGC
    CCCGCCGAAC TGTGCTTCTA CTCGGGCCGC GTGCTGGGCC ACCCCGGCTC CCTCGTCTCG
    CTCAGCACTT GCGGCGGCGG CCTGGTTGGA CTCATCCAGC TTGGGCAGGA GCAGGTGCTA
    ATCCAGCCCC TCAACAGTTC CCAGGGACAG GAGCATCTGA TCAGGCGCAG ATGGTCCTTG
    ACGCCCAGCC CCTCAGCCGA GGCCCAGATG CCGGGGCAGC CCTGCAAGGT CCTCACAGAA
    AAAAAGAAGC CAAAGAGGGG CCGGCTATCG AGAGACTGGC GGGGGCGGAG GAGTGCCATC
    CGGCTGACCA ATGAACACAC AGTGGAGACG CTGGTGGTGG CCGATGCCGA CATGGTGCAG
    TACCACGGGG CAGAGGCTGC CCAGAGGTTC ATCCTCACCG TCATGAACAT GGTGTACAAT
    ATGTTTCAGC ACGAAAGCCT TGGAATTAAA GTTAACATTC AAGTCACCAA GCTTGTCCTG
    CTACGACAGC GTCCTGCCAA GTTGTCCATT GGGCACCATG GTGAGCGGTC CCTGGAGAGC
    TTCTGTCACT GGCAGAATGA GGAGTACGGA GGCGCACGCT ACCTCGGCAA CAATCAGGTT
    CCAGGAGGCA AGGATGATAC ACCCCCTGTG GATGCCGCTG TATTCGTGAC CAGGACAGAT
    TTCTGCGTAC ATAAAGACGA ACCTTGTGAC ACCGTTGGAA TTGCTTACTT AGGAGGTGTG
    TGCAGTGCTA AGAGGAAATG TGTGCTTGCC GAGGACAATG GCCTCAATTT GGCCTTTACC
    ATCGCTCATG AGCTGGGCCA CAACTTGGGG ATGAACCATG ACGACGACCA CTCCTCCTGC
    GCTGGCAGGT CTCACATCAT GTCGGGAGAG TGGGTGAAAG GCCGGAACCC TAGCGACCTC
    TCCTGGTCCT CCTGCAGTCG AGATGACCTT GAAAACTTCC TCAAGTCCAA AGTCAGCACC
    TGTTTGCTGG TCACAGATCC CAGGAGCCAG CATGCTGTGC GCCTCCCGCA CAAGCTGCCG
    GGCATGCACT ACAGCGCCAA CGAGCAGTGC CAGATCCTAT TTGGCACCAA TGCCACCTTC
    TGTAGAAACC TGGAGCATCT GATGTGCGCG GGATTGTGGT GCCTGGTGGA AGGAGATACA
    TCCTGCAAGA CCAAGCTGGA CCCTCCCTTG GACGGCACAG AGTGTGGGGC AGACAAGTGG
    TGCCGCGCAG GGGAGTGTGT GAGCAAGACG CCCATCCCAG AGCACGTGGA CGGAGACTGG
    AGCCCTTGGG GTGCCTGGAG CATGTGCAGC CGCACATGCG GCACAGGAGC TCGCTTTCGG
    CAGAGGAAAT GCGACAACCC TCCCCCAGGG CCTGGAGGCA CACACTGCTT GGGCGCCAGT
    GTGGAGCATG CAGTCTGTGA GAACCTTCCT TGCCCCAAGG GTCTGCCCAG CTTCCGAGAC
    CAGCAGTGCC AGACACATGA CCGGCTAAGC AGCAAGAAGA AGGGCCTGCT GACAGCAGTG
    GTGGTTGATG ATAAACCATG CGAACTCCAC TGCTTGCCCC TTGGGAAGGA GTCTCCGCTG
    CTGGTGGCCG ACAGGGTTCT GGATGGCACG CCCTGCGGAC CCTACGAGAC TGACCTCTGT
    GTGCACGGCA GGTGCCAGAA AATCGGCTGT GATGGCATCA TCGGGTCTGC AGCCAAAGAA
    GACCGGTGTG GAGTCTGCAG TGGGGACGGC AAGACCTGCC GTGTGGTGAA AGGTGACTTC
    AGCCACTCTC GGGGCACAGG TTATATTGAA GCTGTCATCA TTCCAGCTGG AGCTCGAAGG
    ATCCGCGTGG TGGAGGATAA ACCTGCTCAC AGTTTTCTGG CTCTCAAAGA CTCCAGTAAG
    AGATCCATCA ACAGTGACTG GAAGATAGAG CTCCCTGGAG AATTCCAGAT TGCAGGCACG
    ACGGTCCGCT ATGTTAGAAG GGGCCTGTGG GAGAAAATTT CCGCCAAGGG ACCAACCAAA
    ATGCCACTGC ATTTGATGGT GTTGTTATTT CATGACCAAA ATTATGGAAT TCATTACGAA
    TACACCATTC CTGTAAACTA CACTGCTGAA AATCAAAGTG AGCCAGAAAA ACCTCAGGAC
    TCCTTGTTCA TCTGGACCCA CAGCGGCTGG GAGGGGTGCA GTGTGCAGTG TGGAGGAGGG
    GAACGCAGAA CTATTGTATC CTGTACACGG ATTGTTAACA AGACCACAAC TCTGGTGAAT
    GACAGTGACT GTCCTCAGGC TAGCCGTCCG GAGCCCCAGG TCCGCAGGTG CAACTCGCAC
    CCATGCCAGT CACGGTGGGT GGCAGGCCCA TGGAGCCCCT GCTCAGCCAC CTGTGAGAAG
    GGCATCCAGC ATCGGGAAGT GACCTGCGTG TACCAGCTGC AGAACGGCAC ACACGTCGCC
    ACTCGGCCCC TCTACTGCCC GGTCCCACGG CCATCGCCAG TGCAGAGCTG CGAAGGCCAG
    GACTGTCTGT CCATCTGGGA GGCATCCGAG TGGTCACAGT GTTCTGCCAA CTGCGGGAAA
    GGGACACGGA AACGAACTGT GACGTGCACC AACTCACAAG GAAAATGCGA CGCGTCCAGG
    AGACCAAGAG CCGAGGAGGC CTGTGAGGAC TATTCCGGCT GCTACGAGTG GAAAACCGGG
    AGCTGGTCCA AGTGCTCGTC AACCTGTGGG AAGGGCCTGC AGTCCCGTGT GGTCCAGTGC
    ATGCACAAGG TCACAGGGCG CCATGGCAAT GAGTGCCCCG CCCTCTCTAA GCCGGCAGCC
    TACAAACAGT GCCACCAAGA AGTCTGCAAT GACAAGATCA ACGTGAACAC GATCACCTCC
    CCTCGCCTAG CCGCCCTGAC CTACAAATGC ACACGGGACC AGTGGACAGT GTATTGTAGG
    GTCATCCGAG AAAAGAACCT CTGCCAGGAT ATGCGATGGT ACCAGCGCTG CTGCCAGACA
    TGCAGGGACT TCTACGCAAA CAAGATGCGC CAACAGCCAC CACTGCCGCC GCCACCAAGC
    TCATGA

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

    RefSeq XP_020954115.1
    CDS298..3663
    Translation

    Target ORF information:

    RefSeq Version XM_021098456.1
    Organism Sus scrofa(pig)
    Definition Sus scrofa ADAM metallopeptidase with thrombospondin type 1 motif 17 (ADAMTS17), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021098456.1

    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
    ATGTGTGACG GCGCCCTGCT GCCTCCCCTT GTCCTGCCCT TGCTGCTGCT GCTGGTTTGG 
    GGACTGGACT CGGGTGCAGC GGTCGGCGAC GCGGCGGCCG ACGTGGAGGT GGTGCTCCCG
    CGGCGGGTGC GCCCAGACGC CGTGCACCTG CCGCAGCTGC CTGGCGCCCC AGGGCCGCGA
    AGACGTCGGC GACCCCGCGC GCCCCCCGCC GCCCCGCGTG CCCGGCCTGG CGAGCGCGCC
    CTGCTGCTGC ACCTGCCGGC CTTCGGGCGC GACCTGTACC TGCAGCTGCG TCGCGACCTC
    CGCTTTCTGT CCGGCGGTTT CGAGGTGGAG GAGGCTGGCG AAGCAGGGCG CCGTGGACGC
    CCCGCCGAAC TGTGCTTCTA CTCGGGCCGC GTGCTGGGCC ACCCCGGCTC CCTCGTCTCG
    CTCAGCACTT GCGGCGGCGG CCTGGTTGGA CTCATCCAGC TTGGGCAGGA GCAGGTGCTA
    ATCCAGCCCC TCAACAGTTC CCAGGGACAG GAGCATCTGA TCAGGCGCAG ATGGTCCTTG
    ACGCCCAGCC CCTCAGCCGA GGCCCAGATG CCGGGGCAGC CCTGCAAGGT CCTCACAGAA
    AAAAAGAAGC CAAAGAGGGG CCGGCTATCG AGAGACTGGC GGGGGCGGAG GAGTGCCATC
    CGGCTGACCA ATGAACACAC AGTGGAGACG CTGGTGGTGG CCGATGCCGA CATGGTGCAG
    TACCACGGGG CAGAGGCTGC CCAGAGGTTC ATCCTCACCG TCATGAACAT GGTGTACAAT
    ATGTTTCAGC ACGAAAGCCT TGGAATTAAA GTTAACATTC AAGTCACCAA GCTTGTCCTG
    CTACGACAGC GTCCTGCCAA GTTGTCCATT GGGCACCATG GTGAGCGGTC CCTGGAGAGC
    TTCTGTCACT GGCAGAATGA GGAGTACGGA GGCGCACGCT ACCTCGGCAA CAATCAGGTT
    CCAGGAGGCA AGGATGATAC ACCCCCTGTG GATGCCGCTG TATTCGTGAC CAGGACAGAT
    TTCTGCGTAC ATAAAGACGA ACCTTGTGAC ACCGTTGGAA TTGCTTACTT AGGAGGTGTG
    TGCAGTGCTA AGAGGAAATG TGTGCTTGCC GAGGACAATG GCCTCAATTT GGCCTTTACC
    ATCGCTCATG AGCTGGGCCA CAACTTGGGG ATGAACCATG ACGACGACCA CTCCTCCTGC
    GCTGGCAGGT CTCACATCAT GTCGGGAGAG TGGGTGAAAG GCCGGAACCC TAGCGACCTC
    TCCTGGTCCT CCTGCAGTCG AGATGACCTT GAAAACTTCC TCAAGTCCAA AGTCAGCACC
    TGTTTGCTGG TCACAGATCC CAGGAGCCAG CATGCTGTGC GCCTCCCGCA CAAGCTGCCG
    GGCATGCACT ACAGCGCCAA CGAGCAGTGC CAGATCCTAT TTGGCACCAA TGCCACCTTC
    TGTAGAAACC TGGAGCATCT GATGTGCGCG GGATTGTGGT GCCTGGTGGA AGGAGATACA
    TCCTGCAAGA CCAAGCTGGA CCCTCCCTTG GACGGCACAG AGTGTGGGGC AGACAAGTGG
    TGCCGCGCAG GGGAGTGTGT GAGCAAGACG CCCATCCCAG AGCACGTGGA CGGAGACTGG
    AGCCCTTGGG GTGCCTGGAG CATGTGCAGC CGCACATGCG GCACAGGAGC TCGCTTTCGG
    CAGAGGAAAT GCGACAACCC TCCCCCAGGG CCTGGAGGCA CACACTGCTT GGGCGCCAGT
    GTGGAGCATG CAGTCTGTGA GAACCTTCCT TGCCCCAAGG GTCTGCCCAG CTTCCGAGAC
    CAGCAGTGCC AGACACATGA CCGGCTAAGC AGCAAGAAGA AGGGCCTGCT GACAGCAGTG
    GTGGTTGATG ATAAACCATG CGAACTCCAC TGCTTGCCCC TTGGGAAGGA GTCTCCGCTG
    CTGGTGGCCG ACAGGGTTCT GGATGGCACG CCCTGCGGAC CCTACGAGAC TGACCTCTGT
    GTGCACGGCA GGTGCCAGAA AATCGGCTGT GATGGCATCA TCGGGTCTGC AGCCAAAGAA
    GACCGGTGTG GAGTCTGCAG TGGGGACGGC AAGACCTGCC GTGTGGTGAA AGGTGACTTC
    AGCCACTCTC GGGGCACAGG TTATATTGAA GCTGTCATCA TTCCAGCTGG AGCTCGAAGG
    ATCCGCGTGG TGGAGGATAA ACCTGCTCAC AGTTTTCTGG CTCTCAAAGA CTCCAGTAAG
    AGATCCATCA ACAGTGACTG GAAGATAGAG CTCCCTGGAG AATTCCAGAT TGCAGGCACG
    ACGGTCCGCT ATGTTAGAAG GGGCCTGTGG GAGAAAATTT CCGCCAAGGG ACCAACCAAA
    ATGCCACTGC ATTTGATGGT GTTGTTATTT CATGACCAAA ATTATGGAAT TCATTACGAA
    TACACCATTC CTGTAAACTA CACTGCTGAA AATCAAAGTG AGCCAGAAAA ACCTCAGGAC
    TCCTTGTTCA TCTGGACCCA CAGCGGCTGG GAGGGGTGCA GTGTGCAGTG TGGAGGAGGG
    GAACGCAGAA CTATTGTATC CTGTACACGG ATTGTTAACA AGACCACAAC TCTGGTGAAT
    GACAGTGACT GTCCTCAGGC TAGCCGTCCG GAGCCCCAGG TCCGCAGGTG CAACTCGCAC
    CCATGCCAGT CACGGTGGGT GGCAGGCCCA TGGAGCCCCT GCTCAGCCAC CTGTGAGAAG
    GGCATCCAGC ATCGGGAAGT GACCTGCGTG TACCAGCTGC AGAACGGCAC ACACGTCGCC
    ACTCGGCCCC TCTACTGCCC GGTCCCACGG CCATCGCCAG TGCAGAGCTG CGAAGGCCAG
    GACTGTCTGT CCATCTGGGA GGCATCCGAG TGGTCACAGT GTTCTGCCAA CTGCGGGAAA
    GGGACACGGA AACGAACTGT GACGTGCACC AACTCACAAG GAAAATGCGA CGCGTCCAGG
    AGACCAAGAG CCGAGGAGGC CTGTGAGGAC TATTCCGGCT GCTACGAGTG GAAAACCGGG
    AGCTGGTCCA AGTGCTCGTC AACCTGTGGG AAGGGCCTGC AGTCCCGTGT GGTCCAGTGC
    ATGCACAAGG TCACAGGGCG CCATGGCAAT GAGTGCCCCG CCCTCTCTAA GCCGGCAGCC
    TACAAACAGT GCCACCAAGA AGTCTGCAAT GACAAGATCA ACGTGAACAC GATCACCTCC
    CCTCGCCTAG CCGCCCTGAC CTACAAATGC ACACGGGACC AGTGGACAGT GTATTGTAGG
    GTCATCCGAG AAAAGAACCT CTGCCAGGAT ATGCGATGGT ACCAGCGCTG CTGCCAGACA
    TGCAGGGACT TCTACGCAAA CAAGATGCGC CAACAGCCAC CACTGCCGCC GCCACCAAGC
    TCATGA

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