Adamts14 cDNA ORF clone, Cavia porcellus(domestic guinea pig)

The following Adamts14 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Adamts14 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
ODo17245 XM_003473591.4
Latest version!
Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 14 (Adamts14), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ODo31255 XM_013156907.2
Latest version!
Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 14 (Adamts14), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ODo31256 XM_013156908.2
Latest version!
Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 14 (Adamts14), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ODo31257 XM_013156909.2
Latest version!
Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 14 (Adamts14), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
View Old Accession Versions >>
ODo31255 XM_013156907.1 Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 14 (Adamts14), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ODo31256 XM_013156908.1 Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 14 (Adamts14), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ODo31257 XM_013156909.1 Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 14 (Adamts14), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
ODo17245 XM_003473591.3 Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 14 (Adamts14), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
Hide Old Accession Versions >>

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID ODo17245
    Clone ID Related Accession (Same CDS sequence) XM_003473591.4 , XM_003473591.3
    Accession Version XM_003473591.4 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3669bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1516204800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 14 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176404.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jan 19, 2018 this sequence version replaced XM_003473591.3. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Cavia porcellus Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG GTACGCGCCT GTCACTGGCA TGTGTCACCC CCTGAGAAGC
    TGTGCCCTCA ACCATGAGGA TGGCTTTTCT TCTGCTTTTG TGGTGGCCCA TGAGACTGGC
    CACGTGCTTG GAATGGAACA TGATGGGCAG GGGAATGGCT GCTCCGACGA GACCAGCCTG
    GGCAGCGTCA TGGCGCCCCT GGTGCAGGCC GCCTTCCACC GCTTCCACTG GTCCCGCTGT
    AGCAAGCTGG AACTCAGCCG CTACCTCCCG TCCTACGACT GCCTCCTCGA TGACCCCTTT
    GATCCCGCCT GGCCCCAGCC CCCAGAGCTG CCTGGGATTG ACTACTCGAT GGATGAGCAG
    TGCCGCTTTG ACTTCGGCAC TGGATATCAG ACCTGCTTGG CATTCAGGAC TTTTGAACCC
    TGCAAGCAGT TGTGGTGCAG CCACCCTGAT AACCCGTACT TCTGCAAGAC CAAGAAGGGG
    CCCCCGCTGG ATGGAACTGA ATGTGAACCA GGCAAGTGGT GCTTCAAAGG TCACTGCATC
    TGGAAGTCGC CAGAGCAGAT GTATGGCCAG GATGGAGGCT GGAGTCCCTG GTCCACGTTT
    GGGTCGTGTT CTCGGTCTTG CGGAGGTGGA GTGCGATCCC GCAGTCGGAG CTGTGACAAC
    CCCCCCCCAG CCTATGGAGG CCGCTCCTGT TCAGGACCCT TGTTCGAGTA CCAGATCTGC
    AACAGTGAGG ACTGTCCCGG GCCCTACGAG GACTTCCGGG CCCAGCAGTG TGCCAAGCGC
    AACTCCTACT ACATCCACCA GAATGCCAAG CACAGCTGGC TCCCCTATGA GCCGAATGAT
    GACACCCAGA AGTGTGAGCT GATCTGCCAG TCAGCGGACA CGGGCGAGGT GGTGTACATG
    AACCAAGTGG TCCACGATGG GACACGCTGC AGCTACCGGG ACCCGTACAG TGTCTGTGCC
    CGTGGCGAGT GTGTGCCCTT TGGCTGTGAC AAGGAGATGG GGTCCATGAA GGCAGATGAC
    AAGTGCGGAG TTTGTGGCGG TGACAATTCC CACTGCAGGA CCGTGAAGGG GACGCTGGGC
    AAAGCCTCCA AGCAGGCAGC AGCTCACAAA CTGGTGCAGA TACCAGCGGG AGCCAGACAC
    ATCCAGATTG AGACGCTGGA GAAGGCGCCC CACCGCATCG CCGTGAAGAA CCAGGTCACC
    GGCAGCTTCA TCCTCAACCC CAAGGGCAAG GAAGCCTTGA GCCAGACCTT TACCGCGCTG
    GGCTTGGAGT GGGAACATGA GGTGGAAGAT ACCAAGGACA GCCTCAAGAC CAGCGGGCCC
    TTGCCTGAAG CCATCGCTGT CCTGGTGCTC CCCCCAGCTG AGGGTAGCCC CCGAGGCAGC
    CTGGCCTATA AGTACATCAT CCACGAGGAC CTGCTGCCCC TCATCGGGAG CAACAACGTG
    CTTCTGGAGG AGACGGATAC CTACGAGTGG GCGCTCAAGA GCTGGGCCCC TTGCACCAAG
    GCCTGTGGAG GAGGTATCCA GTTCACCAAG TATGGCTGCC GGCGCAGACA GGACCACCAC
    ATGGTGCACC AGCACCTGTG TGACCCCCGG AAGAGGCCCA AGCCTATCCG CCGGCGCTGC
    AACCAGCACC CGTGCCCCCA GCCCGGATGG GTGACGGAAG AATGGAGTGC CTGCAGCCGG
    AGCTGCGGGA AGCTGGGGGT GCAGACTCGG GGGGTACAGT GCCTGCTGCC CCTCTCCAAC
    GGCACCCGTA AGGCCATGCC AGCCAAGGCC TGTCCTGGTA CCCGGCCTGA GGCCCGGAGG
    CCCTGCCTCC GCATTCCCTG CCCAGCCCAG TGGCGAATGG GAGCCTGGTC CCAGTGCTCT
    GCCACCTGTG GAGAGGGCAT CCAGCAGCGG CAGGTGGTGT GCAGGACCAC GGCCAACAGC
    CTCAGGCAGT GCGAGGGCGA CAAACCAGAC ACCGTGCAGG TCTGCAGCCT GCCCGCCTGT
    GAAGGAAGTC TCCATAACTC CACAGCAACA GCAGAGATCC AGGAACTCGT GACCCTAGCG
    GGACAGCAAG TGTCAGAGGC AGGGTCCTTG CCTCCCATAA ACAAGATATC GCCAACAGAG
    CCCTGCGCGG GAGACAGGTC CATCTTCTGC CAGATGGAAG TGCTTGATCA CCACTGTGCC
    ATCCCTGGCT ACCACCAGCT GTGCTGTGAG TCCTGCTCCA AGAGGGTCTC AGGCCCCAAC
    ACCAGCCTAG ACCCTGACCT GGCCTCTACA CCCACCTCCC CCACTCCTGG GAGCCCCTTA
    CCACAACCCA AGGCCACTCG TGACATCATG GAGCCTACCA TGGAGCCAGC AGGACCTGAT
    GACCATCAGC ATGGCCGACC CACACAGCTC CCAGGGCCAC CAGACATGAG GTCCTCAGTC
    ATCCAGCCTC ATTCTGTCCC GCAGACCCTG AGCCCCAGAG CATTTAGGGA CACTTCCCCT
    ACCACGCCCC AGAGACCACC TTGGGGTTGG ACCCCAGCAT CTGTGACAGC CTCTGAGGAC
    CATGGGCAGC CCAGAGAGGA ATCGAGGCAT CCAGGAACCG GCCTTCCCAC CACCTCCCCC
    GTAACATGA

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

    RefSeq XP_003473639.2
    CDS215..3883
    Translation

    Target ORF information:

    RefSeq Version XM_003473591.4
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 14 (Adamts14), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003473591.4

    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
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG GTACGCGCCT GTCACTGGCA TGTGTCACCC CCTGAGAAGC
    TGTGCCCTCA ACCATGAGGA TGGCTTTTCT TCTGCTTTTG TGGTGGCCCA TGAGACTGGC
    CACGTGCTTG GAATGGAACA TGATGGGCAG GGGAATGGCT GCTCCGACGA GACCAGCCTG
    GGCAGCGTCA TGGCGCCCCT GGTGCAGGCC GCCTTCCACC GCTTCCACTG GTCCCGCTGT
    AGCAAGCTGG AACTCAGCCG CTACCTCCCG TCCTACGACT GCCTCCTCGA TGACCCCTTT
    GATCCCGCCT GGCCCCAGCC CCCAGAGCTG CCTGGGATTG ACTACTCGAT GGATGAGCAG
    TGCCGCTTTG ACTTCGGCAC TGGATATCAG ACCTGCTTGG CATTCAGGAC TTTTGAACCC
    TGCAAGCAGT TGTGGTGCAG CCACCCTGAT AACCCGTACT TCTGCAAGAC CAAGAAGGGG
    CCCCCGCTGG ATGGAACTGA ATGTGAACCA GGCAAGTGGT GCTTCAAAGG TCACTGCATC
    TGGAAGTCGC CAGAGCAGAT GTATGGCCAG GATGGAGGCT GGAGTCCCTG GTCCACGTTT
    GGGTCGTGTT CTCGGTCTTG CGGAGGTGGA GTGCGATCCC GCAGTCGGAG CTGTGACAAC
    CCCCCCCCAG CCTATGGAGG CCGCTCCTGT TCAGGACCCT TGTTCGAGTA CCAGATCTGC
    AACAGTGAGG ACTGTCCCGG GCCCTACGAG GACTTCCGGG CCCAGCAGTG TGCCAAGCGC
    AACTCCTACT ACATCCACCA GAATGCCAAG CACAGCTGGC TCCCCTATGA GCCGAATGAT
    GACACCCAGA AGTGTGAGCT GATCTGCCAG TCAGCGGACA CGGGCGAGGT GGTGTACATG
    AACCAAGTGG TCCACGATGG GACACGCTGC AGCTACCGGG ACCCGTACAG TGTCTGTGCC
    CGTGGCGAGT GTGTGCCCTT TGGCTGTGAC AAGGAGATGG GGTCCATGAA GGCAGATGAC
    AAGTGCGGAG TTTGTGGCGG TGACAATTCC CACTGCAGGA CCGTGAAGGG GACGCTGGGC
    AAAGCCTCCA AGCAGGCAGC AGCTCACAAA CTGGTGCAGA TACCAGCGGG AGCCAGACAC
    ATCCAGATTG AGACGCTGGA GAAGGCGCCC CACCGCATCG CCGTGAAGAA CCAGGTCACC
    GGCAGCTTCA TCCTCAACCC CAAGGGCAAG GAAGCCTTGA GCCAGACCTT TACCGCGCTG
    GGCTTGGAGT GGGAACATGA GGTGGAAGAT ACCAAGGACA GCCTCAAGAC CAGCGGGCCC
    TTGCCTGAAG CCATCGCTGT CCTGGTGCTC CCCCCAGCTG AGGGTAGCCC CCGAGGCAGC
    CTGGCCTATA AGTACATCAT CCACGAGGAC CTGCTGCCCC TCATCGGGAG CAACAACGTG
    CTTCTGGAGG AGACGGATAC CTACGAGTGG GCGCTCAAGA GCTGGGCCCC TTGCACCAAG
    GCCTGTGGAG GAGGTATCCA GTTCACCAAG TATGGCTGCC GGCGCAGACA GGACCACCAC
    ATGGTGCACC AGCACCTGTG TGACCCCCGG AAGAGGCCCA AGCCTATCCG CCGGCGCTGC
    AACCAGCACC CGTGCCCCCA GCCCGGATGG GTGACGGAAG AATGGAGTGC CTGCAGCCGG
    AGCTGCGGGA AGCTGGGGGT GCAGACTCGG GGGGTACAGT GCCTGCTGCC CCTCTCCAAC
    GGCACCCGTA AGGCCATGCC AGCCAAGGCC TGTCCTGGTA CCCGGCCTGA GGCCCGGAGG
    CCCTGCCTCC GCATTCCCTG CCCAGCCCAG TGGCGAATGG GAGCCTGGTC CCAGTGCTCT
    GCCACCTGTG GAGAGGGCAT CCAGCAGCGG CAGGTGGTGT GCAGGACCAC GGCCAACAGC
    CTCAGGCAGT GCGAGGGCGA CAAACCAGAC ACCGTGCAGG TCTGCAGCCT GCCCGCCTGT
    GAAGGAAGTC TCCATAACTC CACAGCAACA GCAGAGATCC AGGAACTCGT GACCCTAGCG
    GGACAGCAAG TGTCAGAGGC AGGGTCCTTG CCTCCCATAA ACAAGATATC GCCAACAGAG
    CCCTGCGCGG GAGACAGGTC CATCTTCTGC CAGATGGAAG TGCTTGATCA CCACTGTGCC
    ATCCCTGGCT ACCACCAGCT GTGCTGTGAG TCCTGCTCCA AGAGGGTCTC AGGCCCCAAC
    ACCAGCCTAG ACCCTGACCT GGCCTCTACA CCCACCTCCC CCACTCCTGG GAGCCCCTTA
    CCACAACCCA AGGCCACTCG TGACATCATG GAGCCTACCA TGGAGCCAGC AGGACCTGAT
    GACCATCAGC ATGGCCGACC CACACAGCTC CCAGGGCCAC CAGACATGAG GTCCTCAGTC
    ATCCAGCCTC ATTCTGTCCC GCAGACCCTG AGCCCCAGAG CATTTAGGGA CACTTCCCCT
    ACCACGCCCC AGAGACCACC TTGGGGTTGG ACCCCAGCAT CTGTGACAGC CTCTGAGGAC
    CATGGGCAGC CCAGAGAGGA ATCGAGGCAT CCAGGAACCG GCCTTCCCAC CACCTCCCCC
    GTAACATGA

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

    CloneID ODo17245
    Clone ID Related Accession (Same CDS sequence) XM_003473591.4 , XM_003473591.3
    Accession Version XM_003473591.3 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3669bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1436716800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 14 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176404.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jul 14, 2015 this sequence version replaced XM_003473591.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Cavia porcellus Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG GTACGCGCCT GTCACTGGCA TGTGTCACCC CCTGAGAAGC
    TGTGCCCTCA ACCATGAGGA TGGCTTTTCT TCTGCTTTTG TGGTGGCCCA TGAGACTGGC
    CACGTGCTTG GAATGGAACA TGATGGGCAG GGGAATGGCT GCTCCGACGA GACCAGCCTG
    GGCAGCGTCA TGGCGCCCCT GGTGCAGGCC GCCTTCCACC GCTTCCACTG GTCCCGCTGT
    AGCAAGCTGG AACTCAGCCG CTACCTCCCG TCCTACGACT GCCTCCTCGA TGACCCCTTT
    GATCCCGCCT GGCCCCAGCC CCCAGAGCTG CCTGGGATTG ACTACTCGAT GGATGAGCAG
    TGCCGCTTTG ACTTCGGCAC TGGATATCAG ACCTGCTTGG CATTCAGGAC TTTTGAACCC
    TGCAAGCAGT TGTGGTGCAG CCACCCTGAT AACCCGTACT TCTGCAAGAC CAAGAAGGGG
    CCCCCGCTGG ATGGAACTGA ATGTGAACCA GGCAAGTGGT GCTTCAAAGG TCACTGCATC
    TGGAAGTCGC CAGAGCAGAT GTATGGCCAG GATGGAGGCT GGAGTCCCTG GTCCACGTTT
    GGGTCGTGTT CTCGGTCTTG CGGAGGTGGA GTGCGATCCC GCAGTCGGAG CTGTGACAAC
    CCCCCCCCAG CCTATGGAGG CCGCTCCTGT TCAGGACCCT TGTTCGAGTA CCAGATCTGC
    AACAGTGAGG ACTGTCCCGG GCCCTACGAG GACTTCCGGG CCCAGCAGTG TGCCAAGCGC
    AACTCCTACT ACATCCACCA GAATGCCAAG CACAGCTGGC TCCCCTATGA GCCGAATGAT
    GACACCCAGA AGTGTGAGCT GATCTGCCAG TCAGCGGACA CGGGCGAGGT GGTGTACATG
    AACCAAGTGG TCCACGATGG GACACGCTGC AGCTACCGGG ACCCGTACAG TGTCTGTGCC
    CGTGGCGAGT GTGTGCCCTT TGGCTGTGAC AAGGAGATGG GGTCCATGAA GGCAGATGAC
    AAGTGCGGAG TTTGTGGCGG TGACAATTCC CACTGCAGGA CCGTGAAGGG GACGCTGGGC
    AAAGCCTCCA AGCAGGCAGC AGCTCACAAA CTGGTGCAGA TACCAGCGGG AGCCAGACAC
    ATCCAGATTG AGACGCTGGA GAAGGCGCCC CACCGCATCG CCGTGAAGAA CCAGGTCACC
    GGCAGCTTCA TCCTCAACCC CAAGGGCAAG GAAGCCTTGA GCCAGACCTT TACCGCGCTG
    GGCTTGGAGT GGGAACATGA GGTGGAAGAT ACCAAGGACA GCCTCAAGAC CAGCGGGCCC
    TTGCCTGAAG CCATCGCTGT CCTGGTGCTC CCCCCAGCTG AGGGTAGCCC CCGAGGCAGC
    CTGGCCTATA AGTACATCAT CCACGAGGAC CTGCTGCCCC TCATCGGGAG CAACAACGTG
    CTTCTGGAGG AGACGGATAC CTACGAGTGG GCGCTCAAGA GCTGGGCCCC TTGCACCAAG
    GCCTGTGGAG GAGGTATCCA GTTCACCAAG TATGGCTGCC GGCGCAGACA GGACCACCAC
    ATGGTGCACC AGCACCTGTG TGACCCCCGG AAGAGGCCCA AGCCTATCCG CCGGCGCTGC
    AACCAGCACC CGTGCCCCCA GCCCGGATGG GTGACGGAAG AATGGAGTGC CTGCAGCCGG
    AGCTGCGGGA AGCTGGGGGT GCAGACTCGG GGGGTACAGT GCCTGCTGCC CCTCTCCAAC
    GGCACCCGTA AGGCCATGCC AGCCAAGGCC TGTCCTGGTA CCCGGCCTGA GGCCCGGAGG
    CCCTGCCTCC GCATTCCCTG CCCAGCCCAG TGGCGAATGG GAGCCTGGTC CCAGTGCTCT
    GCCACCTGTG GAGAGGGCAT CCAGCAGCGG CAGGTGGTGT GCAGGACCAC GGCCAACAGC
    CTCAGGCAGT GCGAGGGCGA CAAACCAGAC ACCGTGCAGG TCTGCAGCCT GCCCGCCTGT
    GAAGGAAGTC TCCATAACTC CACAGCAACA GCAGAGATCC AGGAACTCGT GACCCTAGCG
    GGACAGCAAG TGTCAGAGGC AGGGTCCTTG CCTCCCATAA ACAAGATATC GCCAACAGAG
    CCCTGCGCGG GAGACAGGTC CATCTTCTGC CAGATGGAAG TGCTTGATCA CCACTGTGCC
    ATCCCTGGCT ACCACCAGCT GTGCTGTGAG TCCTGCTCCA AGAGGGTCTC AGGCCCCAAC
    ACCAGCCTAG ACCCTGACCT GGCCTCTACA CCCACCTCCC CCACTCCTGG GAGCCCCTTA
    CCACAACCCA AGGCCACTCG TGACATCATG GAGCCTACCA TGGAGCCAGC AGGACCTGAT
    GACCATCAGC ATGGCCGACC CACACAGCTC CCAGGGCCAC CAGACATGAG GTCCTCAGTC
    ATCCAGCCTC ATTCTGTCCC GCAGACCCTG AGCCCCAGAG CATTTAGGGA CACTTCCCCT
    ACCACGCCCC AGAGACCACC TTGGGGTTGG ACCCCAGCAT CTGTGACAGC CTCTGAGGAC
    CATGGGCAGC CCAGAGAGGA ATCGAGGCAT CCAGGAACCG GCCTTCCCAC CACCTCCCCC
    GTAACATGA

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

    RefSeq XP_003473639.2
    CDS189..3857
    Translation

    Target ORF information:

    RefSeq Version XM_003473591.3
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 14 (Adamts14), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003473591.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG GTACGCGCCT GTCACTGGCA TGTGTCACCC CCTGAGAAGC
    TGTGCCCTCA ACCATGAGGA TGGCTTTTCT TCTGCTTTTG TGGTGGCCCA TGAGACTGGC
    CACGTGCTTG GAATGGAACA TGATGGGCAG GGGAATGGCT GCTCCGACGA GACCAGCCTG
    GGCAGCGTCA TGGCGCCCCT GGTGCAGGCC GCCTTCCACC GCTTCCACTG GTCCCGCTGT
    AGCAAGCTGG AACTCAGCCG CTACCTCCCG TCCTACGACT GCCTCCTCGA TGACCCCTTT
    GATCCCGCCT GGCCCCAGCC CCCAGAGCTG CCTGGGATTG ACTACTCGAT GGATGAGCAG
    TGCCGCTTTG ACTTCGGCAC TGGATATCAG ACCTGCTTGG CATTCAGGAC TTTTGAACCC
    TGCAAGCAGT TGTGGTGCAG CCACCCTGAT AACCCGTACT TCTGCAAGAC CAAGAAGGGG
    CCCCCGCTGG ATGGAACTGA ATGTGAACCA GGCAAGTGGT GCTTCAAAGG TCACTGCATC
    TGGAAGTCGC CAGAGCAGAT GTATGGCCAG GATGGAGGCT GGAGTCCCTG GTCCACGTTT
    GGGTCGTGTT CTCGGTCTTG CGGAGGTGGA GTGCGATCCC GCAGTCGGAG CTGTGACAAC
    CCCCCCCCAG CCTATGGAGG CCGCTCCTGT TCAGGACCCT TGTTCGAGTA CCAGATCTGC
    AACAGTGAGG ACTGTCCCGG GCCCTACGAG GACTTCCGGG CCCAGCAGTG TGCCAAGCGC
    AACTCCTACT ACATCCACCA GAATGCCAAG CACAGCTGGC TCCCCTATGA GCCGAATGAT
    GACACCCAGA AGTGTGAGCT GATCTGCCAG TCAGCGGACA CGGGCGAGGT GGTGTACATG
    AACCAAGTGG TCCACGATGG GACACGCTGC AGCTACCGGG ACCCGTACAG TGTCTGTGCC
    CGTGGCGAGT GTGTGCCCTT TGGCTGTGAC AAGGAGATGG GGTCCATGAA GGCAGATGAC
    AAGTGCGGAG TTTGTGGCGG TGACAATTCC CACTGCAGGA CCGTGAAGGG GACGCTGGGC
    AAAGCCTCCA AGCAGGCAGC AGCTCACAAA CTGGTGCAGA TACCAGCGGG AGCCAGACAC
    ATCCAGATTG AGACGCTGGA GAAGGCGCCC CACCGCATCG CCGTGAAGAA CCAGGTCACC
    GGCAGCTTCA TCCTCAACCC CAAGGGCAAG GAAGCCTTGA GCCAGACCTT TACCGCGCTG
    GGCTTGGAGT GGGAACATGA GGTGGAAGAT ACCAAGGACA GCCTCAAGAC CAGCGGGCCC
    TTGCCTGAAG CCATCGCTGT CCTGGTGCTC CCCCCAGCTG AGGGTAGCCC CCGAGGCAGC
    CTGGCCTATA AGTACATCAT CCACGAGGAC CTGCTGCCCC TCATCGGGAG CAACAACGTG
    CTTCTGGAGG AGACGGATAC CTACGAGTGG GCGCTCAAGA GCTGGGCCCC TTGCACCAAG
    GCCTGTGGAG GAGGTATCCA GTTCACCAAG TATGGCTGCC GGCGCAGACA GGACCACCAC
    ATGGTGCACC AGCACCTGTG TGACCCCCGG AAGAGGCCCA AGCCTATCCG CCGGCGCTGC
    AACCAGCACC CGTGCCCCCA GCCCGGATGG GTGACGGAAG AATGGAGTGC CTGCAGCCGG
    AGCTGCGGGA AGCTGGGGGT GCAGACTCGG GGGGTACAGT GCCTGCTGCC CCTCTCCAAC
    GGCACCCGTA AGGCCATGCC AGCCAAGGCC TGTCCTGGTA CCCGGCCTGA GGCCCGGAGG
    CCCTGCCTCC GCATTCCCTG CCCAGCCCAG TGGCGAATGG GAGCCTGGTC CCAGTGCTCT
    GCCACCTGTG GAGAGGGCAT CCAGCAGCGG CAGGTGGTGT GCAGGACCAC GGCCAACAGC
    CTCAGGCAGT GCGAGGGCGA CAAACCAGAC ACCGTGCAGG TCTGCAGCCT GCCCGCCTGT
    GAAGGAAGTC TCCATAACTC CACAGCAACA GCAGAGATCC AGGAACTCGT GACCCTAGCG
    GGACAGCAAG TGTCAGAGGC AGGGTCCTTG CCTCCCATAA ACAAGATATC GCCAACAGAG
    CCCTGCGCGG GAGACAGGTC CATCTTCTGC CAGATGGAAG TGCTTGATCA CCACTGTGCC
    ATCCCTGGCT ACCACCAGCT GTGCTGTGAG TCCTGCTCCA AGAGGGTCTC AGGCCCCAAC
    ACCAGCCTAG ACCCTGACCT GGCCTCTACA CCCACCTCCC CCACTCCTGG GAGCCCCTTA
    CCACAACCCA AGGCCACTCG TGACATCATG GAGCCTACCA TGGAGCCAGC AGGACCTGAT
    GACCATCAGC ATGGCCGACC CACACAGCTC CCAGGGCCAC CAGACATGAG GTCCTCAGTC
    ATCCAGCCTC ATTCTGTCCC GCAGACCCTG AGCCCCAGAG CATTTAGGGA CACTTCCCCT
    ACCACGCCCC AGAGACCACC TTGGGGTTGG ACCCCAGCAT CTGTGACAGC CTCTGAGGAC
    CATGGGCAGC CCAGAGAGGA ATCGAGGCAT CCAGGAACCG GCCTTCCCAC CACCTCCCCC
    GTAACATGA

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

    CloneID ODo31255
    Clone ID Related Accession (Same CDS sequence) XM_013156907.1 , XM_013156907.2
    Accession Version XM_013156907.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3678bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1436716800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 14 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176404.1) 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 :: Cavia porcellus Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCA GCTCACAAAC TGGTGCAGAT ACCAGCGGGA
    GCCAGACACA TCCAGATTGA GACGCTGGAG AAGGCGCCCC ACCGCATCGC CGTGAAGAAC
    CAGGTCACCG GCAGCTTCAT CCTCAACCCC AAGGGCAAGG AAGCCTTGAG CCAGACCTTT
    ACCGCGCTGG GCTTGGAGTG GGAACATGAG GTGGAAGATA CCAAGGACAG CCTCAAGACC
    AGCGGGCCCT TGCCTGAAGC CATCGCTGTC CTGGTGCTCC CCCCAGCTGA GGGTAGCCCC
    CGAGGCAGCC TGGCCTATAA GTACATCATC CACGAGGACC TGCTGCCCCT CATCGGGAGC
    AACAACGTGC TTCTGGAGGA GACGGATACC TACGAGTGGG CGCTCAAGAG CTGGGCCCCT
    TGCACCAAGG CCTGTGGAGG AGGTATCCAG TTCACCAAGT ATGGCTGCCG GCGCAGACAG
    GACCACCACA TGGTGCACCA GCACCTGTGT GACCCCCGGA AGAGGCCCAA GCCTATCCGC
    CGGCGCTGCA ACCAGCACCC GTGCCCCCAG CCCGGATGGG TGACGGAAGA ATGGAGTGCC
    TGCAGCCGGA GCTGCGGGAA GCTGGGGGTG CAGACTCGGG GGGTACAGTG CCTGCTGCCC
    CTCTCCAACG GCACCCGTAA GGCCATGCCA GCCAAGGCCT GTCCTGGTAC CCGGCCTGAG
    GCCCGGAGGC CCTGCCTCCG CATTCCCTGC CCAGCCCAGT GGCGAATGGG AGCCTGGTCC
    CAGTGCTCTG CCACCTGTGG AGAGGGCATC CAGCAGCGGC AGGTGGTGTG CAGGACCACG
    GCCAACAGCC TCAGGCAGTG CGAGGGCGAC AAACCAGACA CCGTGCAGGT CTGCAGCCTG
    CCCGCCTGTG AAGGAAGTCT CCATAACTCC ACAGCAACAG CAGAGATCCA GGAACTCGTG
    ACCCTAGCGG GACAGCAAGT GTCAGAGGCA GGGTCCTTGC CTCCCATAAA CAAGATATCG
    CCAACAGAGC CCTGCGCGGG AGACAGGTCC ATCTTCTGCC AGATGGAAGT GCTTGATCAC
    CACTGTGCCA TCCCTGGCTA CCACCAGCTG TGCTGTGAGT CCTGCTCCAA GAGGGTCTCA
    GGCCCCAACA CCAGCCTAGA CCCTGACCTG GCCTCTACAC CCACCTCCCC CACTCCTGGG
    AGCCCCTTAC CACAACCCAA GGCCACTCGT GACATCATGG AGCCTACCAT GGAGCCAGCA
    GGACCTGATG ACCATCAGCA TGGCCGACCC ACACAGCTCC CAGGGCCACC AGACATGAGG
    TCCTCAGTCA TCCAGCCTCA TTCTGTCCCG CAGACCCTGA GCCCCAGAGC ATTTAGGGAC
    ACTTCCCCTA CCACGCCCCA GAGACCACCT TGGGGTTGGA CCCCAGCATC TGTGACAGCC
    TCTGAGGACC ATGGGCAGCC CAGAGAGGAA TCGAGGCATC CAGGAACCGG CCTTCCCACC
    ACCTCCCCCG TAACATGA

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

    RefSeq XP_013012361.1
    CDS189..3866
    Translation

    Target ORF information:

    RefSeq Version XM_013156907.1
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 14 (Adamts14), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013156907.1

    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
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCA GCTCACAAAC TGGTGCAGAT ACCAGCGGGA
    GCCAGACACA TCCAGATTGA GACGCTGGAG AAGGCGCCCC ACCGCATCGC CGTGAAGAAC
    CAGGTCACCG GCAGCTTCAT CCTCAACCCC AAGGGCAAGG AAGCCTTGAG CCAGACCTTT
    ACCGCGCTGG GCTTGGAGTG GGAACATGAG GTGGAAGATA CCAAGGACAG CCTCAAGACC
    AGCGGGCCCT TGCCTGAAGC CATCGCTGTC CTGGTGCTCC CCCCAGCTGA GGGTAGCCCC
    CGAGGCAGCC TGGCCTATAA GTACATCATC CACGAGGACC TGCTGCCCCT CATCGGGAGC
    AACAACGTGC TTCTGGAGGA GACGGATACC TACGAGTGGG CGCTCAAGAG CTGGGCCCCT
    TGCACCAAGG CCTGTGGAGG AGGTATCCAG TTCACCAAGT ATGGCTGCCG GCGCAGACAG
    GACCACCACA TGGTGCACCA GCACCTGTGT GACCCCCGGA AGAGGCCCAA GCCTATCCGC
    CGGCGCTGCA ACCAGCACCC GTGCCCCCAG CCCGGATGGG TGACGGAAGA ATGGAGTGCC
    TGCAGCCGGA GCTGCGGGAA GCTGGGGGTG CAGACTCGGG GGGTACAGTG CCTGCTGCCC
    CTCTCCAACG GCACCCGTAA GGCCATGCCA GCCAAGGCCT GTCCTGGTAC CCGGCCTGAG
    GCCCGGAGGC CCTGCCTCCG CATTCCCTGC CCAGCCCAGT GGCGAATGGG AGCCTGGTCC
    CAGTGCTCTG CCACCTGTGG AGAGGGCATC CAGCAGCGGC AGGTGGTGTG CAGGACCACG
    GCCAACAGCC TCAGGCAGTG CGAGGGCGAC AAACCAGACA CCGTGCAGGT CTGCAGCCTG
    CCCGCCTGTG AAGGAAGTCT CCATAACTCC ACAGCAACAG CAGAGATCCA GGAACTCGTG
    ACCCTAGCGG GACAGCAAGT GTCAGAGGCA GGGTCCTTGC CTCCCATAAA CAAGATATCG
    CCAACAGAGC CCTGCGCGGG AGACAGGTCC ATCTTCTGCC AGATGGAAGT GCTTGATCAC
    CACTGTGCCA TCCCTGGCTA CCACCAGCTG TGCTGTGAGT CCTGCTCCAA GAGGGTCTCA
    GGCCCCAACA CCAGCCTAGA CCCTGACCTG GCCTCTACAC CCACCTCCCC CACTCCTGGG
    AGCCCCTTAC CACAACCCAA GGCCACTCGT GACATCATGG AGCCTACCAT GGAGCCAGCA
    GGACCTGATG ACCATCAGCA TGGCCGACCC ACACAGCTCC CAGGGCCACC AGACATGAGG
    TCCTCAGTCA TCCAGCCTCA TTCTGTCCCG CAGACCCTGA GCCCCAGAGC ATTTAGGGAC
    ACTTCCCCTA CCACGCCCCA GAGACCACCT TGGGGTTGGA CCCCAGCATC TGTGACAGCC
    TCTGAGGACC ATGGGCAGCC CAGAGAGGAA TCGAGGCATC CAGGAACCGG CCTTCCCACC
    ACCTCCCCCG TAACATGA

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

    CloneID ODo31255
    Clone ID Related Accession (Same CDS sequence) XM_013156907.1 , XM_013156907.2
    Accession Version XM_013156907.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3678bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1516204800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 14 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176404.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jan 19, 2018 this sequence version replaced XM_013156907.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Cavia porcellus Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCA GCTCACAAAC TGGTGCAGAT ACCAGCGGGA
    GCCAGACACA TCCAGATTGA GACGCTGGAG AAGGCGCCCC ACCGCATCGC CGTGAAGAAC
    CAGGTCACCG GCAGCTTCAT CCTCAACCCC AAGGGCAAGG AAGCCTTGAG CCAGACCTTT
    ACCGCGCTGG GCTTGGAGTG GGAACATGAG GTGGAAGATA CCAAGGACAG CCTCAAGACC
    AGCGGGCCCT TGCCTGAAGC CATCGCTGTC CTGGTGCTCC CCCCAGCTGA GGGTAGCCCC
    CGAGGCAGCC TGGCCTATAA GTACATCATC CACGAGGACC TGCTGCCCCT CATCGGGAGC
    AACAACGTGC TTCTGGAGGA GACGGATACC TACGAGTGGG CGCTCAAGAG CTGGGCCCCT
    TGCACCAAGG CCTGTGGAGG AGGTATCCAG TTCACCAAGT ATGGCTGCCG GCGCAGACAG
    GACCACCACA TGGTGCACCA GCACCTGTGT GACCCCCGGA AGAGGCCCAA GCCTATCCGC
    CGGCGCTGCA ACCAGCACCC GTGCCCCCAG CCCGGATGGG TGACGGAAGA ATGGAGTGCC
    TGCAGCCGGA GCTGCGGGAA GCTGGGGGTG CAGACTCGGG GGGTACAGTG CCTGCTGCCC
    CTCTCCAACG GCACCCGTAA GGCCATGCCA GCCAAGGCCT GTCCTGGTAC CCGGCCTGAG
    GCCCGGAGGC CCTGCCTCCG CATTCCCTGC CCAGCCCAGT GGCGAATGGG AGCCTGGTCC
    CAGTGCTCTG CCACCTGTGG AGAGGGCATC CAGCAGCGGC AGGTGGTGTG CAGGACCACG
    GCCAACAGCC TCAGGCAGTG CGAGGGCGAC AAACCAGACA CCGTGCAGGT CTGCAGCCTG
    CCCGCCTGTG AAGGAAGTCT CCATAACTCC ACAGCAACAG CAGAGATCCA GGAACTCGTG
    ACCCTAGCGG GACAGCAAGT GTCAGAGGCA GGGTCCTTGC CTCCCATAAA CAAGATATCG
    CCAACAGAGC CCTGCGCGGG AGACAGGTCC ATCTTCTGCC AGATGGAAGT GCTTGATCAC
    CACTGTGCCA TCCCTGGCTA CCACCAGCTG TGCTGTGAGT CCTGCTCCAA GAGGGTCTCA
    GGCCCCAACA CCAGCCTAGA CCCTGACCTG GCCTCTACAC CCACCTCCCC CACTCCTGGG
    AGCCCCTTAC CACAACCCAA GGCCACTCGT GACATCATGG AGCCTACCAT GGAGCCAGCA
    GGACCTGATG ACCATCAGCA TGGCCGACCC ACACAGCTCC CAGGGCCACC AGACATGAGG
    TCCTCAGTCA TCCAGCCTCA TTCTGTCCCG CAGACCCTGA GCCCCAGAGC ATTTAGGGAC
    ACTTCCCCTA CCACGCCCCA GAGACCACCT TGGGGTTGGA CCCCAGCATC TGTGACAGCC
    TCTGAGGACC ATGGGCAGCC CAGAGAGGAA TCGAGGCATC CAGGAACCGG CCTTCCCACC
    ACCTCCCCCG TAACATGA

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

    RefSeq XP_013012361.1
    CDS215..3892
    Translation

    Target ORF information:

    RefSeq Version XM_013156907.2
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 14 (Adamts14), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013156907.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCA GCTCACAAAC TGGTGCAGAT ACCAGCGGGA
    GCCAGACACA TCCAGATTGA GACGCTGGAG AAGGCGCCCC ACCGCATCGC CGTGAAGAAC
    CAGGTCACCG GCAGCTTCAT CCTCAACCCC AAGGGCAAGG AAGCCTTGAG CCAGACCTTT
    ACCGCGCTGG GCTTGGAGTG GGAACATGAG GTGGAAGATA CCAAGGACAG CCTCAAGACC
    AGCGGGCCCT TGCCTGAAGC CATCGCTGTC CTGGTGCTCC CCCCAGCTGA GGGTAGCCCC
    CGAGGCAGCC TGGCCTATAA GTACATCATC CACGAGGACC TGCTGCCCCT CATCGGGAGC
    AACAACGTGC TTCTGGAGGA GACGGATACC TACGAGTGGG CGCTCAAGAG CTGGGCCCCT
    TGCACCAAGG CCTGTGGAGG AGGTATCCAG TTCACCAAGT ATGGCTGCCG GCGCAGACAG
    GACCACCACA TGGTGCACCA GCACCTGTGT GACCCCCGGA AGAGGCCCAA GCCTATCCGC
    CGGCGCTGCA ACCAGCACCC GTGCCCCCAG CCCGGATGGG TGACGGAAGA ATGGAGTGCC
    TGCAGCCGGA GCTGCGGGAA GCTGGGGGTG CAGACTCGGG GGGTACAGTG CCTGCTGCCC
    CTCTCCAACG GCACCCGTAA GGCCATGCCA GCCAAGGCCT GTCCTGGTAC CCGGCCTGAG
    GCCCGGAGGC CCTGCCTCCG CATTCCCTGC CCAGCCCAGT GGCGAATGGG AGCCTGGTCC
    CAGTGCTCTG CCACCTGTGG AGAGGGCATC CAGCAGCGGC AGGTGGTGTG CAGGACCACG
    GCCAACAGCC TCAGGCAGTG CGAGGGCGAC AAACCAGACA CCGTGCAGGT CTGCAGCCTG
    CCCGCCTGTG AAGGAAGTCT CCATAACTCC ACAGCAACAG CAGAGATCCA GGAACTCGTG
    ACCCTAGCGG GACAGCAAGT GTCAGAGGCA GGGTCCTTGC CTCCCATAAA CAAGATATCG
    CCAACAGAGC CCTGCGCGGG AGACAGGTCC ATCTTCTGCC AGATGGAAGT GCTTGATCAC
    CACTGTGCCA TCCCTGGCTA CCACCAGCTG TGCTGTGAGT CCTGCTCCAA GAGGGTCTCA
    GGCCCCAACA CCAGCCTAGA CCCTGACCTG GCCTCTACAC CCACCTCCCC CACTCCTGGG
    AGCCCCTTAC CACAACCCAA GGCCACTCGT GACATCATGG AGCCTACCAT GGAGCCAGCA
    GGACCTGATG ACCATCAGCA TGGCCGACCC ACACAGCTCC CAGGGCCACC AGACATGAGG
    TCCTCAGTCA TCCAGCCTCA TTCTGTCCCG CAGACCCTGA GCCCCAGAGC ATTTAGGGAC
    ACTTCCCCTA CCACGCCCCA GAGACCACCT TGGGGTTGGA CCCCAGCATC TGTGACAGCC
    TCTGAGGACC ATGGGCAGCC CAGAGAGGAA TCGAGGCATC CAGGAACCGG CCTTCCCACC
    ACCTCCCCCG TAACATGA

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

    CloneID ODo31256
    Clone ID Related Accession (Same CDS sequence) XM_013156908.1 , XM_013156908.2
    Accession Version XM_013156908.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3675bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1436716800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 14 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176404.1) 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 :: Cavia porcellus Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCA GCTCACAAAC TGGTGCAGAT ACCAGCGGGA
    GCCAGACACA TCCAGATTGA GACGCTGGAG AAGGCGCCCC ACCGCATCGC CGTGAAGAAC
    CAGGTCACCG GCAGCTTCAT CCTCAACCCC AAGGGCAAGG AAGCCTTGAG CCAGACCTTT
    ACCGCGCTGG GCTTGGAGTG GGAACATGAG GTGGAAGATA CCAAGGACAG CCTCAAGACC
    AGCGGGCCCT TGCCTGAAGC CATCGCTGTC CTGGTGCTCC CCCCAGCTGA GGGTAGCCCC
    CGAGGCAGCC TGGCCTATAA GTACATCATC CACGAGGACC TGCTGCCCCT CATCGGGAGC
    AACAACGTGC TTCTGGAGGA GACGGATACC TACGAGTGGG CGCTCAAGAG CTGGGCCCCT
    TGCACCAAGG CCTGTGGAGG AGGTATCCAG TTCACCAAGT ATGGCTGCCG GCGCAGACAG
    GACCACCACA TGGTGCACCA GCACCTGTGT GACCCCCGGA AGAGGCCCAA GCCTATCCGC
    CGGCGCTGCA ACCAGCACCC GTGCCCCCAG CCCGGATGGG TGACGGAAGA ATGGAGTGCC
    TGCAGCCGGA GCTGCGGGAA GCTGGGGGTG CAGACTCGGG GGGTACAGTG CCTGCTGCCC
    CTCTCCAACG GCACCCGTAA GGCCATGCCA GCCAAGGCCT GTCCTGGTAC CCGGCCTGAG
    GCCCGGAGGC CCTGCCTCCG CATTCCCTGC CCAGCCCAGT GGCGAATGGG AGCCTGGTCC
    CAGTGCTCTG CCACCTGTGG AGAGGGCATC CAGCAGCGGC AGGTGGTGTG CAGGACCACG
    GCCAACAGCC TCAGGCAGTG CGAGGGCGAC AAACCAGACA CCGTGCAGGT CTGCAGCCTG
    CCCGCCTGTG AAGGAAGTCT CCATAACTCC ACAGCAACAG CAGAGATCCA GGAACTCGTG
    ACCCTAGCGG GACAGCAAGT GTCAGAGGCA GGGTCCTTGC CTCCCATAAA CAAGATATCG
    CCAAAGCCCT GCGCGGGAGA CAGGTCCATC TTCTGCCAGA TGGAAGTGCT TGATCACCAC
    TGTGCCATCC CTGGCTACCA CCAGCTGTGC TGTGAGTCCT GCTCCAAGAG GGTCTCAGGC
    CCCAACACCA GCCTAGACCC TGACCTGGCC TCTACACCCA CCTCCCCCAC TCCTGGGAGC
    CCCTTACCAC AACCCAAGGC CACTCGTGAC ATCATGGAGC CTACCATGGA GCCAGCAGGA
    CCTGATGACC ATCAGCATGG CCGACCCACA CAGCTCCCAG GGCCACCAGA CATGAGGTCC
    TCAGTCATCC AGCCTCATTC TGTCCCGCAG ACCCTGAGCC CCAGAGCATT TAGGGACACT
    TCCCCTACCA CGCCCCAGAG ACCACCTTGG GGTTGGACCC CAGCATCTGT GACAGCCTCT
    GAGGACCATG GGCAGCCCAG AGAGGAATCG AGGCATCCAG GAACCGGCCT TCCCACCACC
    TCCCCCGTAA CATGA

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

    RefSeq XP_013012362.1
    CDS189..3863
    Translation

    Target ORF information:

    RefSeq Version XM_013156908.1
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 14 (Adamts14), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013156908.1

    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
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCA GCTCACAAAC TGGTGCAGAT ACCAGCGGGA
    GCCAGACACA TCCAGATTGA GACGCTGGAG AAGGCGCCCC ACCGCATCGC CGTGAAGAAC
    CAGGTCACCG GCAGCTTCAT CCTCAACCCC AAGGGCAAGG AAGCCTTGAG CCAGACCTTT
    ACCGCGCTGG GCTTGGAGTG GGAACATGAG GTGGAAGATA CCAAGGACAG CCTCAAGACC
    AGCGGGCCCT TGCCTGAAGC CATCGCTGTC CTGGTGCTCC CCCCAGCTGA GGGTAGCCCC
    CGAGGCAGCC TGGCCTATAA GTACATCATC CACGAGGACC TGCTGCCCCT CATCGGGAGC
    AACAACGTGC TTCTGGAGGA GACGGATACC TACGAGTGGG CGCTCAAGAG CTGGGCCCCT
    TGCACCAAGG CCTGTGGAGG AGGTATCCAG TTCACCAAGT ATGGCTGCCG GCGCAGACAG
    GACCACCACA TGGTGCACCA GCACCTGTGT GACCCCCGGA AGAGGCCCAA GCCTATCCGC
    CGGCGCTGCA ACCAGCACCC GTGCCCCCAG CCCGGATGGG TGACGGAAGA ATGGAGTGCC
    TGCAGCCGGA GCTGCGGGAA GCTGGGGGTG CAGACTCGGG GGGTACAGTG CCTGCTGCCC
    CTCTCCAACG GCACCCGTAA GGCCATGCCA GCCAAGGCCT GTCCTGGTAC CCGGCCTGAG
    GCCCGGAGGC CCTGCCTCCG CATTCCCTGC CCAGCCCAGT GGCGAATGGG AGCCTGGTCC
    CAGTGCTCTG CCACCTGTGG AGAGGGCATC CAGCAGCGGC AGGTGGTGTG CAGGACCACG
    GCCAACAGCC TCAGGCAGTG CGAGGGCGAC AAACCAGACA CCGTGCAGGT CTGCAGCCTG
    CCCGCCTGTG AAGGAAGTCT CCATAACTCC ACAGCAACAG CAGAGATCCA GGAACTCGTG
    ACCCTAGCGG GACAGCAAGT GTCAGAGGCA GGGTCCTTGC CTCCCATAAA CAAGATATCG
    CCAAAGCCCT GCGCGGGAGA CAGGTCCATC TTCTGCCAGA TGGAAGTGCT TGATCACCAC
    TGTGCCATCC CTGGCTACCA CCAGCTGTGC TGTGAGTCCT GCTCCAAGAG GGTCTCAGGC
    CCCAACACCA GCCTAGACCC TGACCTGGCC TCTACACCCA CCTCCCCCAC TCCTGGGAGC
    CCCTTACCAC AACCCAAGGC CACTCGTGAC ATCATGGAGC CTACCATGGA GCCAGCAGGA
    CCTGATGACC ATCAGCATGG CCGACCCACA CAGCTCCCAG GGCCACCAGA CATGAGGTCC
    TCAGTCATCC AGCCTCATTC TGTCCCGCAG ACCCTGAGCC CCAGAGCATT TAGGGACACT
    TCCCCTACCA CGCCCCAGAG ACCACCTTGG GGTTGGACCC CAGCATCTGT GACAGCCTCT
    GAGGACCATG GGCAGCCCAG AGAGGAATCG AGGCATCCAG GAACCGGCCT TCCCACCACC
    TCCCCCGTAA CATGA

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

    CloneID ODo31256
    Clone ID Related Accession (Same CDS sequence) XM_013156908.1 , XM_013156908.2
    Accession Version XM_013156908.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3675bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1516204800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 14 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176404.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jan 19, 2018 this sequence version replaced XM_013156908.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Cavia porcellus Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCA GCTCACAAAC TGGTGCAGAT ACCAGCGGGA
    GCCAGACACA TCCAGATTGA GACGCTGGAG AAGGCGCCCC ACCGCATCGC CGTGAAGAAC
    CAGGTCACCG GCAGCTTCAT CCTCAACCCC AAGGGCAAGG AAGCCTTGAG CCAGACCTTT
    ACCGCGCTGG GCTTGGAGTG GGAACATGAG GTGGAAGATA CCAAGGACAG CCTCAAGACC
    AGCGGGCCCT TGCCTGAAGC CATCGCTGTC CTGGTGCTCC CCCCAGCTGA GGGTAGCCCC
    CGAGGCAGCC TGGCCTATAA GTACATCATC CACGAGGACC TGCTGCCCCT CATCGGGAGC
    AACAACGTGC TTCTGGAGGA GACGGATACC TACGAGTGGG CGCTCAAGAG CTGGGCCCCT
    TGCACCAAGG CCTGTGGAGG AGGTATCCAG TTCACCAAGT ATGGCTGCCG GCGCAGACAG
    GACCACCACA TGGTGCACCA GCACCTGTGT GACCCCCGGA AGAGGCCCAA GCCTATCCGC
    CGGCGCTGCA ACCAGCACCC GTGCCCCCAG CCCGGATGGG TGACGGAAGA ATGGAGTGCC
    TGCAGCCGGA GCTGCGGGAA GCTGGGGGTG CAGACTCGGG GGGTACAGTG CCTGCTGCCC
    CTCTCCAACG GCACCCGTAA GGCCATGCCA GCCAAGGCCT GTCCTGGTAC CCGGCCTGAG
    GCCCGGAGGC CCTGCCTCCG CATTCCCTGC CCAGCCCAGT GGCGAATGGG AGCCTGGTCC
    CAGTGCTCTG CCACCTGTGG AGAGGGCATC CAGCAGCGGC AGGTGGTGTG CAGGACCACG
    GCCAACAGCC TCAGGCAGTG CGAGGGCGAC AAACCAGACA CCGTGCAGGT CTGCAGCCTG
    CCCGCCTGTG AAGGAAGTCT CCATAACTCC ACAGCAACAG CAGAGATCCA GGAACTCGTG
    ACCCTAGCGG GACAGCAAGT GTCAGAGGCA GGGTCCTTGC CTCCCATAAA CAAGATATCG
    CCAAAGCCCT GCGCGGGAGA CAGGTCCATC TTCTGCCAGA TGGAAGTGCT TGATCACCAC
    TGTGCCATCC CTGGCTACCA CCAGCTGTGC TGTGAGTCCT GCTCCAAGAG GGTCTCAGGC
    CCCAACACCA GCCTAGACCC TGACCTGGCC TCTACACCCA CCTCCCCCAC TCCTGGGAGC
    CCCTTACCAC AACCCAAGGC CACTCGTGAC ATCATGGAGC CTACCATGGA GCCAGCAGGA
    CCTGATGACC ATCAGCATGG CCGACCCACA CAGCTCCCAG GGCCACCAGA CATGAGGTCC
    TCAGTCATCC AGCCTCATTC TGTCCCGCAG ACCCTGAGCC CCAGAGCATT TAGGGACACT
    TCCCCTACCA CGCCCCAGAG ACCACCTTGG GGTTGGACCC CAGCATCTGT GACAGCCTCT
    GAGGACCATG GGCAGCCCAG AGAGGAATCG AGGCATCCAG GAACCGGCCT TCCCACCACC
    TCCCCCGTAA CATGA

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

    RefSeq XP_013012362.1
    CDS215..3889
    Translation

    Target ORF information:

    RefSeq Version XM_013156908.2
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 14 (Adamts14), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013156908.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCA GCTCACAAAC TGGTGCAGAT ACCAGCGGGA
    GCCAGACACA TCCAGATTGA GACGCTGGAG AAGGCGCCCC ACCGCATCGC CGTGAAGAAC
    CAGGTCACCG GCAGCTTCAT CCTCAACCCC AAGGGCAAGG AAGCCTTGAG CCAGACCTTT
    ACCGCGCTGG GCTTGGAGTG GGAACATGAG GTGGAAGATA CCAAGGACAG CCTCAAGACC
    AGCGGGCCCT TGCCTGAAGC CATCGCTGTC CTGGTGCTCC CCCCAGCTGA GGGTAGCCCC
    CGAGGCAGCC TGGCCTATAA GTACATCATC CACGAGGACC TGCTGCCCCT CATCGGGAGC
    AACAACGTGC TTCTGGAGGA GACGGATACC TACGAGTGGG CGCTCAAGAG CTGGGCCCCT
    TGCACCAAGG CCTGTGGAGG AGGTATCCAG TTCACCAAGT ATGGCTGCCG GCGCAGACAG
    GACCACCACA TGGTGCACCA GCACCTGTGT GACCCCCGGA AGAGGCCCAA GCCTATCCGC
    CGGCGCTGCA ACCAGCACCC GTGCCCCCAG CCCGGATGGG TGACGGAAGA ATGGAGTGCC
    TGCAGCCGGA GCTGCGGGAA GCTGGGGGTG CAGACTCGGG GGGTACAGTG CCTGCTGCCC
    CTCTCCAACG GCACCCGTAA GGCCATGCCA GCCAAGGCCT GTCCTGGTAC CCGGCCTGAG
    GCCCGGAGGC CCTGCCTCCG CATTCCCTGC CCAGCCCAGT GGCGAATGGG AGCCTGGTCC
    CAGTGCTCTG CCACCTGTGG AGAGGGCATC CAGCAGCGGC AGGTGGTGTG CAGGACCACG
    GCCAACAGCC TCAGGCAGTG CGAGGGCGAC AAACCAGACA CCGTGCAGGT CTGCAGCCTG
    CCCGCCTGTG AAGGAAGTCT CCATAACTCC ACAGCAACAG CAGAGATCCA GGAACTCGTG
    ACCCTAGCGG GACAGCAAGT GTCAGAGGCA GGGTCCTTGC CTCCCATAAA CAAGATATCG
    CCAAAGCCCT GCGCGGGAGA CAGGTCCATC TTCTGCCAGA TGGAAGTGCT TGATCACCAC
    TGTGCCATCC CTGGCTACCA CCAGCTGTGC TGTGAGTCCT GCTCCAAGAG GGTCTCAGGC
    CCCAACACCA GCCTAGACCC TGACCTGGCC TCTACACCCA CCTCCCCCAC TCCTGGGAGC
    CCCTTACCAC AACCCAAGGC CACTCGTGAC ATCATGGAGC CTACCATGGA GCCAGCAGGA
    CCTGATGACC ATCAGCATGG CCGACCCACA CAGCTCCCAG GGCCACCAGA CATGAGGTCC
    TCAGTCATCC AGCCTCATTC TGTCCCGCAG ACCCTGAGCC CCAGAGCATT TAGGGACACT
    TCCCCTACCA CGCCCCAGAG ACCACCTTGG GGTTGGACCC CAGCATCTGT GACAGCCTCT
    GAGGACCATG GGCAGCCCAG AGAGGAATCG AGGCATCCAG GAACCGGCCT TCCCACCACC
    TCCCCCGTAA CATGA

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

    CloneID ODo31257
    Clone ID Related Accession (Same CDS sequence) XM_013156909.1 , XM_013156909.2
    Accession Version XM_013156909.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3675bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1436716800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 14 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176404.1) 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 :: Cavia porcellus Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCT CACAAACTGG TGCAGATACC AGCGGGAGCC
    AGACACATCC AGATTGAGAC GCTGGAGAAG GCGCCCCACC GCATCGCCGT GAAGAACCAG
    GTCACCGGCA GCTTCATCCT CAACCCCAAG GGCAAGGAAG CCTTGAGCCA GACCTTTACC
    GCGCTGGGCT TGGAGTGGGA ACATGAGGTG GAAGATACCA AGGACAGCCT CAAGACCAGC
    GGGCCCTTGC CTGAAGCCAT CGCTGTCCTG GTGCTCCCCC CAGCTGAGGG TAGCCCCCGA
    GGCAGCCTGG CCTATAAGTA CATCATCCAC GAGGACCTGC TGCCCCTCAT CGGGAGCAAC
    AACGTGCTTC TGGAGGAGAC GGATACCTAC GAGTGGGCGC TCAAGAGCTG GGCCCCTTGC
    ACCAAGGCCT GTGGAGGAGG TATCCAGTTC ACCAAGTATG GCTGCCGGCG CAGACAGGAC
    CACCACATGG TGCACCAGCA CCTGTGTGAC CCCCGGAAGA GGCCCAAGCC TATCCGCCGG
    CGCTGCAACC AGCACCCGTG CCCCCAGCCC GGATGGGTGA CGGAAGAATG GAGTGCCTGC
    AGCCGGAGCT GCGGGAAGCT GGGGGTGCAG ACTCGGGGGG TACAGTGCCT GCTGCCCCTC
    TCCAACGGCA CCCGTAAGGC CATGCCAGCC AAGGCCTGTC CTGGTACCCG GCCTGAGGCC
    CGGAGGCCCT GCCTCCGCAT TCCCTGCCCA GCCCAGTGGC GAATGGGAGC CTGGTCCCAG
    TGCTCTGCCA CCTGTGGAGA GGGCATCCAG CAGCGGCAGG TGGTGTGCAG GACCACGGCC
    AACAGCCTCA GGCAGTGCGA GGGCGACAAA CCAGACACCG TGCAGGTCTG CAGCCTGCCC
    GCCTGTGAAG GAAGTCTCCA TAACTCCACA GCAACAGCAG AGATCCAGGA ACTCGTGACC
    CTAGCGGGAC AGCAAGTGTC AGAGGCAGGG TCCTTGCCTC CCATAAACAA GATATCGCCA
    ACAGAGCCCT GCGCGGGAGA CAGGTCCATC TTCTGCCAGA TGGAAGTGCT TGATCACCAC
    TGTGCCATCC CTGGCTACCA CCAGCTGTGC TGTGAGTCCT GCTCCAAGAG GGTCTCAGGC
    CCCAACACCA GCCTAGACCC TGACCTGGCC TCTACACCCA CCTCCCCCAC TCCTGGGAGC
    CCCTTACCAC AACCCAAGGC CACTCGTGAC ATCATGGAGC CTACCATGGA GCCAGCAGGA
    CCTGATGACC ATCAGCATGG CCGACCCACA CAGCTCCCAG GGCCACCAGA CATGAGGTCC
    TCAGTCATCC AGCCTCATTC TGTCCCGCAG ACCCTGAGCC CCAGAGCATT TAGGGACACT
    TCCCCTACCA CGCCCCAGAG ACCACCTTGG GGTTGGACCC CAGCATCTGT GACAGCCTCT
    GAGGACCATG GGCAGCCCAG AGAGGAATCG AGGCATCCAG GAACCGGCCT TCCCACCACC
    TCCCCCGTAA CATGA

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

    RefSeq XP_013012363.1
    CDS189..3863
    Translation

    Target ORF information:

    RefSeq Version XM_013156909.1
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif, 14 (Adamts14), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013156909.1

    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
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCT CACAAACTGG TGCAGATACC AGCGGGAGCC
    AGACACATCC AGATTGAGAC GCTGGAGAAG GCGCCCCACC GCATCGCCGT GAAGAACCAG
    GTCACCGGCA GCTTCATCCT CAACCCCAAG GGCAAGGAAG CCTTGAGCCA GACCTTTACC
    GCGCTGGGCT TGGAGTGGGA ACATGAGGTG GAAGATACCA AGGACAGCCT CAAGACCAGC
    GGGCCCTTGC CTGAAGCCAT CGCTGTCCTG GTGCTCCCCC CAGCTGAGGG TAGCCCCCGA
    GGCAGCCTGG CCTATAAGTA CATCATCCAC GAGGACCTGC TGCCCCTCAT CGGGAGCAAC
    AACGTGCTTC TGGAGGAGAC GGATACCTAC GAGTGGGCGC TCAAGAGCTG GGCCCCTTGC
    ACCAAGGCCT GTGGAGGAGG TATCCAGTTC ACCAAGTATG GCTGCCGGCG CAGACAGGAC
    CACCACATGG TGCACCAGCA CCTGTGTGAC CCCCGGAAGA GGCCCAAGCC TATCCGCCGG
    CGCTGCAACC AGCACCCGTG CCCCCAGCCC GGATGGGTGA CGGAAGAATG GAGTGCCTGC
    AGCCGGAGCT GCGGGAAGCT GGGGGTGCAG ACTCGGGGGG TACAGTGCCT GCTGCCCCTC
    TCCAACGGCA CCCGTAAGGC CATGCCAGCC AAGGCCTGTC CTGGTACCCG GCCTGAGGCC
    CGGAGGCCCT GCCTCCGCAT TCCCTGCCCA GCCCAGTGGC GAATGGGAGC CTGGTCCCAG
    TGCTCTGCCA CCTGTGGAGA GGGCATCCAG CAGCGGCAGG TGGTGTGCAG GACCACGGCC
    AACAGCCTCA GGCAGTGCGA GGGCGACAAA CCAGACACCG TGCAGGTCTG CAGCCTGCCC
    GCCTGTGAAG GAAGTCTCCA TAACTCCACA GCAACAGCAG AGATCCAGGA ACTCGTGACC
    CTAGCGGGAC AGCAAGTGTC AGAGGCAGGG TCCTTGCCTC CCATAAACAA GATATCGCCA
    ACAGAGCCCT GCGCGGGAGA CAGGTCCATC TTCTGCCAGA TGGAAGTGCT TGATCACCAC
    TGTGCCATCC CTGGCTACCA CCAGCTGTGC TGTGAGTCCT GCTCCAAGAG GGTCTCAGGC
    CCCAACACCA GCCTAGACCC TGACCTGGCC TCTACACCCA CCTCCCCCAC TCCTGGGAGC
    CCCTTACCAC AACCCAAGGC CACTCGTGAC ATCATGGAGC CTACCATGGA GCCAGCAGGA
    CCTGATGACC ATCAGCATGG CCGACCCACA CAGCTCCCAG GGCCACCAGA CATGAGGTCC
    TCAGTCATCC AGCCTCATTC TGTCCCGCAG ACCCTGAGCC CCAGAGCATT TAGGGACACT
    TCCCCTACCA CGCCCCAGAG ACCACCTTGG GGTTGGACCC CAGCATCTGT GACAGCCTCT
    GAGGACCATG GGCAGCCCAG AGAGGAATCG AGGCATCCAG GAACCGGCCT TCCCACCACC
    TCCCCCGTAA CATGA

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

    CloneID ODo31257
    Clone ID Related Accession (Same CDS sequence) XM_013156909.1 , XM_013156909.2
    Accession Version XM_013156909.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3675bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 1516204800000
    Organism Cavia porcellus(domestic guinea pig)
    Product A disintegrin and metalloproteinase with thrombospondin motifs 14 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NT_176404.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jan 19, 2018 this sequence version replaced XM_013156909.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Cavia porcellus Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCT CACAAACTGG TGCAGATACC AGCGGGAGCC
    AGACACATCC AGATTGAGAC GCTGGAGAAG GCGCCCCACC GCATCGCCGT GAAGAACCAG
    GTCACCGGCA GCTTCATCCT CAACCCCAAG GGCAAGGAAG CCTTGAGCCA GACCTTTACC
    GCGCTGGGCT TGGAGTGGGA ACATGAGGTG GAAGATACCA AGGACAGCCT CAAGACCAGC
    GGGCCCTTGC CTGAAGCCAT CGCTGTCCTG GTGCTCCCCC CAGCTGAGGG TAGCCCCCGA
    GGCAGCCTGG CCTATAAGTA CATCATCCAC GAGGACCTGC TGCCCCTCAT CGGGAGCAAC
    AACGTGCTTC TGGAGGAGAC GGATACCTAC GAGTGGGCGC TCAAGAGCTG GGCCCCTTGC
    ACCAAGGCCT GTGGAGGAGG TATCCAGTTC ACCAAGTATG GCTGCCGGCG CAGACAGGAC
    CACCACATGG TGCACCAGCA CCTGTGTGAC CCCCGGAAGA GGCCCAAGCC TATCCGCCGG
    CGCTGCAACC AGCACCCGTG CCCCCAGCCC GGATGGGTGA CGGAAGAATG GAGTGCCTGC
    AGCCGGAGCT GCGGGAAGCT GGGGGTGCAG ACTCGGGGGG TACAGTGCCT GCTGCCCCTC
    TCCAACGGCA CCCGTAAGGC CATGCCAGCC AAGGCCTGTC CTGGTACCCG GCCTGAGGCC
    CGGAGGCCCT GCCTCCGCAT TCCCTGCCCA GCCCAGTGGC GAATGGGAGC CTGGTCCCAG
    TGCTCTGCCA CCTGTGGAGA GGGCATCCAG CAGCGGCAGG TGGTGTGCAG GACCACGGCC
    AACAGCCTCA GGCAGTGCGA GGGCGACAAA CCAGACACCG TGCAGGTCTG CAGCCTGCCC
    GCCTGTGAAG GAAGTCTCCA TAACTCCACA GCAACAGCAG AGATCCAGGA ACTCGTGACC
    CTAGCGGGAC AGCAAGTGTC AGAGGCAGGG TCCTTGCCTC CCATAAACAA GATATCGCCA
    ACAGAGCCCT GCGCGGGAGA CAGGTCCATC TTCTGCCAGA TGGAAGTGCT TGATCACCAC
    TGTGCCATCC CTGGCTACCA CCAGCTGTGC TGTGAGTCCT GCTCCAAGAG GGTCTCAGGC
    CCCAACACCA GCCTAGACCC TGACCTGGCC TCTACACCCA CCTCCCCCAC TCCTGGGAGC
    CCCTTACCAC AACCCAAGGC CACTCGTGAC ATCATGGAGC CTACCATGGA GCCAGCAGGA
    CCTGATGACC ATCAGCATGG CCGACCCACA CAGCTCCCAG GGCCACCAGA CATGAGGTCC
    TCAGTCATCC AGCCTCATTC TGTCCCGCAG ACCCTGAGCC CCAGAGCATT TAGGGACACT
    TCCCCTACCA CGCCCCAGAG ACCACCTTGG GGTTGGACCC CAGCATCTGT GACAGCCTCT
    GAGGACCATG GGCAGCCCAG AGAGGAATCG AGGCATCCAG GAACCGGCCT TCCCACCACC
    TCCCCCGTAA CATGA

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

    RefSeq XP_013012363.1
    CDS215..3889
    Translation

    Target ORF information:

    RefSeq Version XM_013156909.2
    Organism Cavia porcellus(domestic guinea pig)
    Definition Cavia porcellus ADAM metallopeptidase with thrombospondin type 1 motif 14 (Adamts14), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013156909.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCTTCGC TCCGCGCGCT GCTGTCCTGT CTGATCCCCT TGTACTGCGC GCTCTGCGCA 
    GCTGCGGACA GCCAGACCTC AGGGCCGCGT CTGTCTAGAA AGCTCAGTGA CTATGCTGTG
    ACTGTGCCCT GCAGTACAGA TTTTCAGGGA CGCTTCCTCT CCCACGTAGT GTCTGGCCCA
    GCGGCTGCAT CGGCAGGGAG CATAGGAGTG GACAGGACAC CCATCCCACC ACTGCGCTCC
    AGGGTGGCTC GCAGCCCTGT TGTGAGCCCA GACAGACGGA CTTTGCCACC TGGCAGGATG
    CAGCGCTACT TCCTCTACTT CAACGTGACC GTTTTTGGGA AGGAGCTGCA TTTGCGCCTT
    CGGCCCAACC GAAGGCTGGT GGTGCCTGGG GCCTCAGTGG AGTGGCAGGA GGATTTTCAG
    GAGCTGTTCC GGCATCCTTT GCAGCAGGAG TGTGTGTACA CTGGAGGTGT CACTGGAATG
    CCAGGGGCAG CTGTTGCCAT CAGCAACTGT GATGGATTGG CGGGCCTCAT CCGCACTGAC
    AGCACCGACT ACTTCATCGA GCCTCTGGAG CGGGGCCAGC AGGAGAAGGA GGCTGGCGGG
    AGGACCCACG TGGTGTACCG CCGCGAAGCC GTGCAGCGGG ACAGAGGAGA GCCTCACCAA
    GTCCTTCACA ATGAAGCCTT TGGCCCGGGT GACCTTCCCA ACCTGCTGAG CCTGGTAGGG
    GACCAGCTGG GCGACACGGA GCGGAAGCGG CGCCACGCCA AGCCGGGCAG CTACAGCATC
    GAGGTGCTAC TGGTGGTGGA CGACTCGGTG GTTCGCTTCC ACGGCAGGGA GCATGTGCAG
    AACTACGTGC TCACCCTCAT GAACATCGTG GATGAGATTT ACCACGATGA GTCCCTGGGT
    GCCCACATGA ACATTGCCCT TGTCCGTTTG ATCATGGTTG GCTACCGGCA GTCTCTGAAC
    CTGATTGAAC GCGGGAATCC TGCACGCAGC CTGGAGCAGG TGTGTCGCTG GGCACAATCC
    CAGCAGCGCC AGGACCCTGG CCATGCTGAG CATCACGACC ACGTCATCTT CCTCACCCGG
    CAGAACTTTG GGCCCTCAGG TATGCAAGGG TACGCGCCTG TCACTGGCAT GTGTCACCCC
    CTGAGAAGCT GTGCCCTCAA CCATGAGGAT GGCTTTTCTT CTGCTTTTGT GGTGGCCCAT
    GAGACTGGCC ACGTGCTTGG AATGGAACAT GATGGGCAGG GGAATGGCTG CTCCGACGAG
    ACCAGCCTGG GCAGCGTCAT GGCGCCCCTG GTGCAGGCCG CCTTCCACCG CTTCCACTGG
    TCCCGCTGTA GCAAGCTGGA ACTCAGCCGC TACCTCCCGT CCTACGACTG CCTCCTCGAT
    GACCCCTTTG ATCCCGCCTG GCCCCAGCCC CCAGAGCTGC CTGGGATTGA CTACTCGATG
    GATGAGCAGT GCCGCTTTGA CTTCGGCACT GGATATCAGA CCTGCTTGGC ATTCAGGACT
    TTTGAACCCT GCAAGCAGTT GTGGTGCAGC CACCCTGATA ACCCGTACTT CTGCAAGACC
    AAGAAGGGGC CCCCGCTGGA TGGAACTGAA TGTGAACCAG GCAAGTGGTG CTTCAAAGGT
    CACTGCATCT GGAAGTCGCC AGAGCAGATG TATGGCCAGG ATGGAGGCTG GAGTCCCTGG
    TCCACGTTTG GGTCGTGTTC TCGGTCTTGC GGAGGTGGAG TGCGATCCCG CAGTCGGAGC
    TGTGACAACC CCCCCCCAGC CTATGGAGGC CGCTCCTGTT CAGGACCCTT GTTCGAGTAC
    CAGATCTGCA ACAGTGAGGA CTGTCCCGGG CCCTACGAGG ACTTCCGGGC CCAGCAGTGT
    GCCAAGCGCA ACTCCTACTA CATCCACCAG AATGCCAAGC ACAGCTGGCT CCCCTATGAG
    CCGAATGATG ACACCCAGAA GTGTGAGCTG ATCTGCCAGT CAGCGGACAC GGGCGAGGTG
    GTGTACATGA ACCAAGTGGT CCACGATGGG ACACGCTGCA GCTACCGGGA CCCGTACAGT
    GTCTGTGCCC GTGGCGAGTG TGTGCCCTTT GGCTGTGACA AGGAGATGGG GTCCATGAAG
    GCAGATGACA AGTGCGGAGT TTGTGGCGGT GACAATTCCC ACTGCAGGAC CGTGAAGGGG
    ACGCTGGGCA AAGCCTCCAA GCAGGCAGCT CACAAACTGG TGCAGATACC AGCGGGAGCC
    AGACACATCC AGATTGAGAC GCTGGAGAAG GCGCCCCACC GCATCGCCGT GAAGAACCAG
    GTCACCGGCA GCTTCATCCT CAACCCCAAG GGCAAGGAAG CCTTGAGCCA GACCTTTACC
    GCGCTGGGCT TGGAGTGGGA ACATGAGGTG GAAGATACCA AGGACAGCCT CAAGACCAGC
    GGGCCCTTGC CTGAAGCCAT CGCTGTCCTG GTGCTCCCCC CAGCTGAGGG TAGCCCCCGA
    GGCAGCCTGG CCTATAAGTA CATCATCCAC GAGGACCTGC TGCCCCTCAT CGGGAGCAAC
    AACGTGCTTC TGGAGGAGAC GGATACCTAC GAGTGGGCGC TCAAGAGCTG GGCCCCTTGC
    ACCAAGGCCT GTGGAGGAGG TATCCAGTTC ACCAAGTATG GCTGCCGGCG CAGACAGGAC
    CACCACATGG TGCACCAGCA CCTGTGTGAC CCCCGGAAGA GGCCCAAGCC TATCCGCCGG
    CGCTGCAACC AGCACCCGTG CCCCCAGCCC GGATGGGTGA CGGAAGAATG GAGTGCCTGC
    AGCCGGAGCT GCGGGAAGCT GGGGGTGCAG ACTCGGGGGG TACAGTGCCT GCTGCCCCTC
    TCCAACGGCA CCCGTAAGGC CATGCCAGCC AAGGCCTGTC CTGGTACCCG GCCTGAGGCC
    CGGAGGCCCT GCCTCCGCAT TCCCTGCCCA GCCCAGTGGC GAATGGGAGC CTGGTCCCAG
    TGCTCTGCCA CCTGTGGAGA GGGCATCCAG CAGCGGCAGG TGGTGTGCAG GACCACGGCC
    AACAGCCTCA GGCAGTGCGA GGGCGACAAA CCAGACACCG TGCAGGTCTG CAGCCTGCCC
    GCCTGTGAAG GAAGTCTCCA TAACTCCACA GCAACAGCAG AGATCCAGGA ACTCGTGACC
    CTAGCGGGAC AGCAAGTGTC AGAGGCAGGG TCCTTGCCTC CCATAAACAA GATATCGCCA
    ACAGAGCCCT GCGCGGGAGA CAGGTCCATC TTCTGCCAGA TGGAAGTGCT TGATCACCAC
    TGTGCCATCC CTGGCTACCA CCAGCTGTGC TGTGAGTCCT GCTCCAAGAG GGTCTCAGGC
    CCCAACACCA GCCTAGACCC TGACCTGGCC TCTACACCCA CCTCCCCCAC TCCTGGGAGC
    CCCTTACCAC AACCCAAGGC CACTCGTGAC ATCATGGAGC CTACCATGGA GCCAGCAGGA
    CCTGATGACC ATCAGCATGG CCGACCCACA CAGCTCCCAG GGCCACCAGA CATGAGGTCC
    TCAGTCATCC AGCCTCATTC TGTCCCGCAG ACCCTGAGCC CCAGAGCATT TAGGGACACT
    TCCCCTACCA CGCCCCAGAG ACCACCTTGG GGTTGGACCC CAGCATCTGT GACAGCCTCT
    GAGGACCATG GGCAGCCCAG AGAGGAATCG AGGCATCCAG GAACCGGCCT TCCCACCACC
    TCCCCCGTAA CATGA

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