COL27A1B cDNA ORF clone, Danio rerio(Zebrafish)

The following COL27A1B gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the COL27A1B 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
ODa43244 XM_009301947.1
Latest version!
Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 12-14 $510.30
$729.00
ODa142658 XM_021476201.1
Latest version!
Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
ODa59099 XM_017356118.2
Latest version!
Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
ODa59100 XM_017356119.1
Latest version!
Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
ODa38392 NM_001080575.1
Latest version!
Danio rerio collagen, type XXVII, alpha 1b (col27a1b), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $881.30
$1259.00
View Old Accession Versions >>
ODa59099 XM_017356118.1 Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
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 ODa43244
    Clone ID Related Accession (Same CDS sequence) XM_009301947.1
    Accession Version XM_009301947.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2940bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-06-23
    Organism Danio rerio(Zebrafish)
    Product collagen alpha-1(XXVII) chain B isoform X3
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.6) 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 :: Danio rerio Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGATTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCGA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA GTGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAGAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAACT
    GAGGAAACGC TGGATCCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATACATCTA CCATTCAAAC CCCCAAAGTT
    GTAACAGATT TTAACGAAAG ACATCTTTCA CTAACACGAG ATGAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGGTA ACACAGCCCA CATTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCAAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAA AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTATTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACGTTTG ACTTGGAACC GACCCAGTAT
    TCCTTCTTGG AGTTAACCGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GACCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AGTAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAG AAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCTGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGGT TTACCTGGGA AGGCTGGCGA TCAGGGCTTA CCGGGAGAAC CAGGAGAGAA
    GGGTGCAGTC GGGTCTCCTG GGAATATTGG AGAGCAAGGC CTGATTGGAC CCCGAGGTGA

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

    RefSeq XP_009300222.1
    CDS375..3314
    Translation

    Target ORF information:

    RefSeq Version XM_009301947.1
    Organism Danio rerio(Zebrafish)
    Definition Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_009301947.1

    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
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGATTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCGA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA GTGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAGAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAACT
    GAGGAAACGC TGGATCCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATACATCTA CCATTCAAAC CCCCAAAGTT
    GTAACAGATT TTAACGAAAG ACATCTTTCA CTAACACGAG ATGAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGGTA ACACAGCCCA CATTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCAAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAA AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTATTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACGTTTG ACTTGGAACC GACCCAGTAT
    TCCTTCTTGG AGTTAACCGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GACCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AGTAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAG AAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCTGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGGT TTACCTGGGA AGGCTGGCGA TCAGGGCTTA CCGGGAGAAC CAGGAGAGAA
    GGGTGCAGTC GGGTCTCCTG GGAATATTGG AGAGCAAGGC CTGATTGGAC CCCGAGGTGA

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

    CloneID ODa142658
    Clone ID Related Accession (Same CDS sequence) XM_021476201.1
    Accession Version XM_021476201.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2652bp)
    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 2017-06-14
    Organism Danio rerio(zebrafish)
    Product collagen alpha-1(XXVII) chain B isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.7) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    ATGAAGGGAG AGCCTGGAAT GACTGGAAAT CCTGGGATGC TTGGTGAGAG GGGTCCTGTT 
    GGTTTCGTCG GGCCTTTTGG TGAGATGGGA CTTGCTGGAG AAAAGGGAGA TCGTGGTGAG
    ACGGGTCAGC CTGGGCCACC TGGAGAAAAG GGAGCCATGG GTCACCCAGG GGCTCCAGGA
    GAGAGAGGCC TGTCTGGACC AGCAGGTGCT CCAGGGCCTC ATGGATCTAG GGGCCTCAGT
    GGCACCAGGG GGCCAAAAGG CACAAGGGGT GCAAGGGGAC CAGATGGACC AGTTGGAGAG
    AAAGGAATGA TGGGAATGAA GGGTCCTGAA GGTCCACCAG GAAAACAAGG TTTAAGCGGA
    CAAATGGGTA AAATTGGAGA AACTGGTGAA GCAGGACCTA CCGGATTTAC TGGTGTTCAA
    GGACCAACTG GACCTCCTGG AGCAAAAGGC ATCTTAGGAG AACCTGGTCC TCAAGGATCA
    CCGGGAGTGT TGGGTCCATT GGGTGAGATT GGAGCAATAG GTTTACCTGG GAAGGCTGGC
    GATCAGGGCT TACCGGGAGA ACCAGGAGAG AAGGGTGCAG TCGGGTCTCC TGGGAATATT
    GGAGAGCAAG GCCTGATTGG ACCCCGAGGT GACCCTGGAG TCGATGGAGA GGCTGGTCCA
    AGTGGTCCCG ATGGAGCCAA GGGTGAACAG GGGGATGTTG GACTGGAGGG AGAATCAGGC
    GAAAAAGGAG TCATCGGATT TAAAGGAACA GAGGGACGTA CTGGTGATCC TGGCTTAATA
    GGCGTCAAGG GCCCTGAAGG CAAAATAGGG AAAACTGGTG AGAGGGGAAA ACCTGGAGAG
    AAGGGAAGCA AAGGTCATCA AGGTCAACTT GGCGAGATGG GTGCTTTGGG TGAGCAAGGT
    GACACGGGTT TCATCGGGCC AAAAGGAAGC AGAGGAACTA CTGGATTTAT GGGTGCGACG
    GGAAAAATGG GTCAGCACGG AGAGCCAGGT TTGGTGGGAT ATGAAGGTCA TCAAGGGCCA
    CAAGGTTCAT TGGGATCCCC GGGACCAAAA GGTGAAAAGG GAGAGCAAGG CGATGACGGG
    AAGGTTGAAG GTCCACCTGG TCCTTCTGGT GACATCGGAC CTGTTGGCAA CAGAGGAGAC
    AGAGGAGAAC CTGGTGACCC TGGATACCCA GGCCTTGAAG GTGTTCAAGG AGAAAGAGGA
    AAAGAGGGGG CTCCTGGAGT CCCTGGGAAT TCAGGGCCTA GAGGTTTTCC AGGGCCCAAA
    GGATCTAAAG GCAATAAAGG TCCAAAAGGC AAAAACAGTC CTCGTGGTGA ATCTGGAAAC
    CGAGGGTCTC CTGGTCCTGT TGGTGTTCCT GGGCCCAGAG GGGTCATCGG TCGAGAGGGT
    TTTGAGGGGG ATCCTGGACC CGATGGAGCT GCTGGGAAAG ATGGAGCTAA AGGAATGCCA
    GGTGATCTTG GACATGATGG GGATGTTGGG CTGCCTGGAA AACCGGGTCC TCAAGGAAAT
    GCAGGAGCAC CAGGTCTACC AGGAGTTCAA GGCTCTTTTG GGCCAAAGGG GGAAAGGGGC
    ATCCCTGGCC AATCTGGACC TCCAGGCAAA AGAGGACTGA ACGGAGGAAT GGGATTTCCT
    GGAAAACAAG GCGACCAAGG CTTCAAAGGA CAACCTGGTG ATGCTGGTGA ACAGGGATTT
    CCTGGAGTTC TTGGAATATT TGGACCACAG GGGCCTCCTG GAGACTTCGG TCCAGTGGGT
    GTGCAAGGAC CTAAGGGTCC TCAGGGTTTA ATGGGGATGC AAGGAGCCAT CGGACCAGTT
    GGGATCATTG GGCCGAGTGG TAACCCAGGA CCGCAAGGAG ACAAAGGAAA CAAAGGGGAA
    ATGGGTGTTC AGGGACCCAG GGGGCCTCCA GGTCCTCGTG GACCACCGGG ACCTCCAGGG
    CTTCCTGCTG TAGCCTTTTC TCATGAAAAT GAGGCCCTTG GTGCTGCTTT ACATGTTTTT
    GATTCCCGCT CCGCAATAAG ATCTGAAATG TATCAGGATA CTGACCTTCC GCTGCTGGAT
    CAAGGAAGCG AGATTTTTAA GACTCTTCAC TACCTCAGCA TCCTGATCCA CAGTATCAAA
    AACCCGCTGG GAACGCAGGA GAATCCGGCC AGAATGTGCA GGGATCTGCT TGAATGCGAG
    CACCGGTTGA ATGATGGCAC TTATTGGATA GATCCTAACC TGGGCTGCTC CTCTGACAAC
    ATTGAAGTGA CCTGTAGCTT CACCAATGGA GGTCAAACCT GCCTTAAGCC AGTCACTGCA
    TCCAAGCTGG AGATCGGAGT CAGTCTGATC CAGATGAACT TCATCCACCT CCTGAGCTCT
    GAGGCTGTGC AGATCATCAC CGTTCACTGT CTGAACATCT CCGTTTGGGC ATCGGAAGAC
    TCCAAAACAC CTTCCTCCAG CATGGTATAC TTTAAAGCCT GGGATGGACA GATAATCGAG
    GCTGGAGGAT TCATCGAGCC TGATTTGCTA AAGGATGAGT GCTGGATCAC AGATGGTAGA
    TGGCATCAAA CACAGTTCAT TTTCCGGACG CAGGACCCAA ACTTACTACC CATTGTGGAG
    ATCTACAACT TGCCCAGCAC TAAACCTGGC TCACATTACC ACCTGGAGGT GGGCCCTGTG
    TGCTTTTTAT AA

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

    RefSeq XP_021331876.1
    CDS106..2757
    Translation

    Target ORF information:

    RefSeq Version XM_021476201.1
    Organism Danio rerio(zebrafish)
    Definition Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021476201.1

    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
    ATGAAGGGAG AGCCTGGAAT GACTGGAAAT CCTGGGATGC TTGGTGAGAG GGGTCCTGTT 
    GGTTTCGTCG GGCCTTTTGG TGAGATGGGA CTTGCTGGAG AAAAGGGAGA TCGTGGTGAG
    ACGGGTCAGC CTGGGCCACC TGGAGAAAAG GGAGCCATGG GTCACCCAGG GGCTCCAGGA
    GAGAGAGGCC TGTCTGGACC AGCAGGTGCT CCAGGGCCTC ATGGATCTAG GGGCCTCAGT
    GGCACCAGGG GGCCAAAAGG CACAAGGGGT GCAAGGGGAC CAGATGGACC AGTTGGAGAG
    AAAGGAATGA TGGGAATGAA GGGTCCTGAA GGTCCACCAG GAAAACAAGG TTTAAGCGGA
    CAAATGGGTA AAATTGGAGA AACTGGTGAA GCAGGACCTA CCGGATTTAC TGGTGTTCAA
    GGACCAACTG GACCTCCTGG AGCAAAAGGC ATCTTAGGAG AACCTGGTCC TCAAGGATCA
    CCGGGAGTGT TGGGTCCATT GGGTGAGATT GGAGCAATAG GTTTACCTGG GAAGGCTGGC
    GATCAGGGCT TACCGGGAGA ACCAGGAGAG AAGGGTGCAG TCGGGTCTCC TGGGAATATT
    GGAGAGCAAG GCCTGATTGG ACCCCGAGGT GACCCTGGAG TCGATGGAGA GGCTGGTCCA
    AGTGGTCCCG ATGGAGCCAA GGGTGAACAG GGGGATGTTG GACTGGAGGG AGAATCAGGC
    GAAAAAGGAG TCATCGGATT TAAAGGAACA GAGGGACGTA CTGGTGATCC TGGCTTAATA
    GGCGTCAAGG GCCCTGAAGG CAAAATAGGG AAAACTGGTG AGAGGGGAAA ACCTGGAGAG
    AAGGGAAGCA AAGGTCATCA AGGTCAACTT GGCGAGATGG GTGCTTTGGG TGAGCAAGGT
    GACACGGGTT TCATCGGGCC AAAAGGAAGC AGAGGAACTA CTGGATTTAT GGGTGCGACG
    GGAAAAATGG GTCAGCACGG AGAGCCAGGT TTGGTGGGAT ATGAAGGTCA TCAAGGGCCA
    CAAGGTTCAT TGGGATCCCC GGGACCAAAA GGTGAAAAGG GAGAGCAAGG CGATGACGGG
    AAGGTTGAAG GTCCACCTGG TCCTTCTGGT GACATCGGAC CTGTTGGCAA CAGAGGAGAC
    AGAGGAGAAC CTGGTGACCC TGGATACCCA GGCCTTGAAG GTGTTCAAGG AGAAAGAGGA
    AAAGAGGGGG CTCCTGGAGT CCCTGGGAAT TCAGGGCCTA GAGGTTTTCC AGGGCCCAAA
    GGATCTAAAG GCAATAAAGG TCCAAAAGGC AAAAACAGTC CTCGTGGTGA ATCTGGAAAC
    CGAGGGTCTC CTGGTCCTGT TGGTGTTCCT GGGCCCAGAG GGGTCATCGG TCGAGAGGGT
    TTTGAGGGGG ATCCTGGACC CGATGGAGCT GCTGGGAAAG ATGGAGCTAA AGGAATGCCA
    GGTGATCTTG GACATGATGG GGATGTTGGG CTGCCTGGAA AACCGGGTCC TCAAGGAAAT
    GCAGGAGCAC CAGGTCTACC AGGAGTTCAA GGCTCTTTTG GGCCAAAGGG GGAAAGGGGC
    ATCCCTGGCC AATCTGGACC TCCAGGCAAA AGAGGACTGA ACGGAGGAAT GGGATTTCCT
    GGAAAACAAG GCGACCAAGG CTTCAAAGGA CAACCTGGTG ATGCTGGTGA ACAGGGATTT
    CCTGGAGTTC TTGGAATATT TGGACCACAG GGGCCTCCTG GAGACTTCGG TCCAGTGGGT
    GTGCAAGGAC CTAAGGGTCC TCAGGGTTTA ATGGGGATGC AAGGAGCCAT CGGACCAGTT
    GGGATCATTG GGCCGAGTGG TAACCCAGGA CCGCAAGGAG ACAAAGGAAA CAAAGGGGAA
    ATGGGTGTTC AGGGACCCAG GGGGCCTCCA GGTCCTCGTG GACCACCGGG ACCTCCAGGG
    CTTCCTGCTG TAGCCTTTTC TCATGAAAAT GAGGCCCTTG GTGCTGCTTT ACATGTTTTT
    GATTCCCGCT CCGCAATAAG ATCTGAAATG TATCAGGATA CTGACCTTCC GCTGCTGGAT
    CAAGGAAGCG AGATTTTTAA GACTCTTCAC TACCTCAGCA TCCTGATCCA CAGTATCAAA
    AACCCGCTGG GAACGCAGGA GAATCCGGCC AGAATGTGCA GGGATCTGCT TGAATGCGAG
    CACCGGTTGA ATGATGGCAC TTATTGGATA GATCCTAACC TGGGCTGCTC CTCTGACAAC
    ATTGAAGTGA CCTGTAGCTT CACCAATGGA GGTCAAACCT GCCTTAAGCC AGTCACTGCA
    TCCAAGCTGG AGATCGGAGT CAGTCTGATC CAGATGAACT TCATCCACCT CCTGAGCTCT
    GAGGCTGTGC AGATCATCAC CGTTCACTGT CTGAACATCT CCGTTTGGGC ATCGGAAGAC
    TCCAAAACAC CTTCCTCCAG CATGGTATAC TTTAAAGCCT GGGATGGACA GATAATCGAG
    GCTGGAGGAT TCATCGAGCC TGATTTGCTA AAGGATGAGT GCTGGATCAC AGATGGTAGA
    TGGCATCAAA CACAGTTCAT TTTCCGGACG CAGGACCCAA ACTTACTACC CATTGTGGAG
    ATCTACAACT TGCCCAGCAC TAAACCTGGC TCACATTACC ACCTGGAGGT GGGCCCTGTG
    TGCTTTTTAT AA

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

    CloneID ODa59099
    Clone ID Related Accession (Same CDS sequence) XM_017356118.1 , XM_017356118.2
    Accession Version XM_017356118.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3777bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-06-23
    Organism Danio rerio(Zebrafish)
    Product collagen alpha-1(XXVII) chain B isoform X1
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.6) 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 :: Danio rerio Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGATTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCGA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA GTGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAGAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAACT
    GAGGAAACGC TGGATCCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATACATCTA CCATTCAAAC CCCCAAAGTT
    GTAACAGATT TTAACGAAAG ACATCTTTCA CTAACACGAG ATGAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGGTA ACACAGCCCA CATTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCAAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAA AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTATTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACGTTTG ACTTGGAACC GACCCAGTAT
    TCCTTCTTGG AGTTAACCGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GACCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AGTAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAG AAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCTGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGTG AGATTGGAGC AATAGGTTTA CCTGGGAAGG CTGGCGATCA GGGCTTACCG
    GGAGAACCAG GAGAGAAGGG TGCAGTCGGG TCTCCTGGGA ATATTGGAGA GCAAGGCCTG
    ATTGGACCCC GAGGTGACCC TGGAGTCGAT GGAGAGGCTG GTCCAAGTGG TCCCGATGGA
    GCCAAGGGTG AACAGGGGGA TGTTGGACTG GAGGGAGAAT CAGGCGAAAA AGGAGTCATC
    GGATTTAAAG GAACAGAGGG ACGTACTGGT GATCCTGGCT TAATAGGCGT CAAGGGCCCT
    GAAGGCAAAA TAGGGAAAAC TGGTGAGAGG GGAAAACCTG GAGAGAAGGG AAGCAAAGGT
    CATCAAGGTC AACTTGGCGA GATGGGTGCT TTGGGTGAGC AAGGTGACAC GGGTTTCATC
    GGGCCAAAAG GAAGCAGAGG AACTACTGGA TTTATGGGTG CGACGGGAAA AATGGGTCAG
    CACGGAGAGC CAGGTTTGGT GGGATATGAA GGTCATCAAG GGCCACAAGG TTCATTGGGA
    TCCCCGGGAC CAAAAGGTGA AAAGGGAGAG CAAGGCGATG ACGGGAAGGT TGAAGGTCCA
    CCTGGTCCTT CTGGTGACAT CGGACCTGTT GGCAACAGAG GAGACAGAGG AGAACCTGGT
    GACCCTGGAT ACCCAGGCCT TGAAGGTGTT CAAGGAGAAA GAGGAAAAGA GGGGGCTCCT
    GGAGTCCCTG GGAATTCAGG GCCTAGAGGT TTTCCAGGGC CCAAAGGATC TAAAGGCAAT
    AAAGGTCCAA AAGGCAAAAA CAGTCCTCGT GGTGAATCTG GAAACCGAGG GTCTCCTGGT
    CCTGTTGGTG TTCCTGGGCC CAGAGGGGTC ATCGGTCGAG AGGGTTTTGA GGGGGATCCT
    GGACCCGATG GAGCTGCTGG GAAAGATGGA GCTAAAGGAA TGCCAGTAAG ACAATGA

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

    RefSeq XP_017211607.1
    CDS375..4151
    Translation

    Target ORF information:

    RefSeq Version XM_017356118.1
    Organism Danio rerio(Zebrafish)
    Definition Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017356118.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGATTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCGA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA GTGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAGAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAACT
    GAGGAAACGC TGGATCCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATACATCTA CCATTCAAAC CCCCAAAGTT
    GTAACAGATT TTAACGAAAG ACATCTTTCA CTAACACGAG ATGAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGGTA ACACAGCCCA CATTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCAAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAA AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTATTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACGTTTG ACTTGGAACC GACCCAGTAT
    TCCTTCTTGG AGTTAACCGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GACCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AGTAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAG AAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCTGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGTG AGATTGGAGC AATAGGTTTA CCTGGGAAGG CTGGCGATCA GGGCTTACCG
    GGAGAACCAG GAGAGAAGGG TGCAGTCGGG TCTCCTGGGA ATATTGGAGA GCAAGGCCTG
    ATTGGACCCC GAGGTGACCC TGGAGTCGAT GGAGAGGCTG GTCCAAGTGG TCCCGATGGA
    GCCAAGGGTG AACAGGGGGA TGTTGGACTG GAGGGAGAAT CAGGCGAAAA AGGAGTCATC
    GGATTTAAAG GAACAGAGGG ACGTACTGGT GATCCTGGCT TAATAGGCGT CAAGGGCCCT
    GAAGGCAAAA TAGGGAAAAC TGGTGAGAGG GGAAAACCTG GAGAGAAGGG AAGCAAAGGT
    CATCAAGGTC AACTTGGCGA GATGGGTGCT TTGGGTGAGC AAGGTGACAC GGGTTTCATC
    GGGCCAAAAG GAAGCAGAGG AACTACTGGA TTTATGGGTG CGACGGGAAA AATGGGTCAG
    CACGGAGAGC CAGGTTTGGT GGGATATGAA GGTCATCAAG GGCCACAAGG TTCATTGGGA
    TCCCCGGGAC CAAAAGGTGA AAAGGGAGAG CAAGGCGATG ACGGGAAGGT TGAAGGTCCA
    CCTGGTCCTT CTGGTGACAT CGGACCTGTT GGCAACAGAG GAGACAGAGG AGAACCTGGT
    GACCCTGGAT ACCCAGGCCT TGAAGGTGTT CAAGGAGAAA GAGGAAAAGA GGGGGCTCCT
    GGAGTCCCTG GGAATTCAGG GCCTAGAGGT TTTCCAGGGC CCAAAGGATC TAAAGGCAAT
    AAAGGTCCAA AAGGCAAAAA CAGTCCTCGT GGTGAATCTG GAAACCGAGG GTCTCCTGGT
    CCTGTTGGTG TTCCTGGGCC CAGAGGGGTC ATCGGTCGAG AGGGTTTTGA GGGGGATCCT
    GGACCCGATG GAGCTGCTGG GAAAGATGGA GCTAAAGGAA TGCCAGTAAG ACAATGA

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

    CloneID ODa59099
    Clone ID Related Accession (Same CDS sequence) XM_017356118.1 , XM_017356118.2
    Accession Version XM_017356118.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3777bp)
    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 2017-06-14
    Organism Danio rerio(zebrafish)
    Product collagen alpha-1(XXVII) chain B isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.7) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 15, 2017 this sequence version replaced XM_017356118.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGATTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCGA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA GTGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAGAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAACT
    GAGGAAACGC TGGATCCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATACATCTA CCATTCAAAC CCCCAAAGTT
    GTAACAGATT TTAACGAAAG ACATCTTTCA CTAACACGAG ATGAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGGTA ACACAGCCCA CATTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCAAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAA AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTATTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACGTTTG ACTTGGAACC GACCCAGTAT
    TCCTTCTTGG AGTTAACCGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GACCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AGTAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAG AAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCTGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGTG AGATTGGAGC AATAGGTTTA CCTGGGAAGG CTGGCGATCA GGGCTTACCG
    GGAGAACCAG GAGAGAAGGG TGCAGTCGGG TCTCCTGGGA ATATTGGAGA GCAAGGCCTG
    ATTGGACCCC GAGGTGACCC TGGAGTCGAT GGAGAGGCTG GTCCAAGTGG TCCCGATGGA
    GCCAAGGGTG AACAGGGGGA TGTTGGACTG GAGGGAGAAT CAGGCGAAAA AGGAGTCATC
    GGATTTAAAG GAACAGAGGG ACGTACTGGT GATCCTGGCT TAATAGGCGT CAAGGGCCCT
    GAAGGCAAAA TAGGGAAAAC TGGTGAGAGG GGAAAACCTG GAGAGAAGGG AAGCAAAGGT
    CATCAAGGTC AACTTGGCGA GATGGGTGCT TTGGGTGAGC AAGGTGACAC GGGTTTCATC
    GGGCCAAAAG GAAGCAGAGG AACTACTGGA TTTATGGGTG CGACGGGAAA AATGGGTCAG
    CACGGAGAGC CAGGTTTGGT GGGATATGAA GGTCATCAAG GGCCACAAGG TTCATTGGGA
    TCCCCGGGAC CAAAAGGTGA AAAGGGAGAG CAAGGCGATG ACGGGAAGGT TGAAGGTCCA
    CCTGGTCCTT CTGGTGACAT CGGACCTGTT GGCAACAGAG GAGACAGAGG AGAACCTGGT
    GACCCTGGAT ACCCAGGCCT TGAAGGTGTT CAAGGAGAAA GAGGAAAAGA GGGGGCTCCT
    GGAGTCCCTG GGAATTCAGG GCCTAGAGGT TTTCCAGGGC CCAAAGGATC TAAAGGCAAT
    AAAGGTCCAA AAGGCAAAAA CAGTCCTCGT GGTGAATCTG GAAACCGAGG GTCTCCTGGT
    CCTGTTGGTG TTCCTGGGCC CAGAGGGGTC ATCGGTCGAG AGGGTTTTGA GGGGGATCCT
    GGACCCGATG GAGCTGCTGG GAAAGATGGA GCTAAAGGAA TGCCAGTAAG ACAATGA

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

    RefSeq XP_017211607.1
    CDS419..4195
    Translation

    Target ORF information:

    RefSeq Version XM_017356118.2
    Organism Danio rerio(zebrafish)
    Definition Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017356118.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGATTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCGA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA GTGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAGAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAACT
    GAGGAAACGC TGGATCCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATACATCTA CCATTCAAAC CCCCAAAGTT
    GTAACAGATT TTAACGAAAG ACATCTTTCA CTAACACGAG ATGAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGGTA ACACAGCCCA CATTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCAAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAA AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTATTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACGTTTG ACTTGGAACC GACCCAGTAT
    TCCTTCTTGG AGTTAACCGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GACCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AGTAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAG AAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCTGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGTG AGATTGGAGC AATAGGTTTA CCTGGGAAGG CTGGCGATCA GGGCTTACCG
    GGAGAACCAG GAGAGAAGGG TGCAGTCGGG TCTCCTGGGA ATATTGGAGA GCAAGGCCTG
    ATTGGACCCC GAGGTGACCC TGGAGTCGAT GGAGAGGCTG GTCCAAGTGG TCCCGATGGA
    GCCAAGGGTG AACAGGGGGA TGTTGGACTG GAGGGAGAAT CAGGCGAAAA AGGAGTCATC
    GGATTTAAAG GAACAGAGGG ACGTACTGGT GATCCTGGCT TAATAGGCGT CAAGGGCCCT
    GAAGGCAAAA TAGGGAAAAC TGGTGAGAGG GGAAAACCTG GAGAGAAGGG AAGCAAAGGT
    CATCAAGGTC AACTTGGCGA GATGGGTGCT TTGGGTGAGC AAGGTGACAC GGGTTTCATC
    GGGCCAAAAG GAAGCAGAGG AACTACTGGA TTTATGGGTG CGACGGGAAA AATGGGTCAG
    CACGGAGAGC CAGGTTTGGT GGGATATGAA GGTCATCAAG GGCCACAAGG TTCATTGGGA
    TCCCCGGGAC CAAAAGGTGA AAAGGGAGAG CAAGGCGATG ACGGGAAGGT TGAAGGTCCA
    CCTGGTCCTT CTGGTGACAT CGGACCTGTT GGCAACAGAG GAGACAGAGG AGAACCTGGT
    GACCCTGGAT ACCCAGGCCT TGAAGGTGTT CAAGGAGAAA GAGGAAAAGA GGGGGCTCCT
    GGAGTCCCTG GGAATTCAGG GCCTAGAGGT TTTCCAGGGC CCAAAGGATC TAAAGGCAAT
    AAAGGTCCAA AAGGCAAAAA CAGTCCTCGT GGTGAATCTG GAAACCGAGG GTCTCCTGGT
    CCTGTTGGTG TTCCTGGGCC CAGAGGGGTC ATCGGTCGAG AGGGTTTTGA GGGGGATCCT
    GGACCCGATG GAGCTGCTGG GAAAGATGGA GCTAAAGGAA TGCCAGTAAG ACAATGA

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

    CloneID ODa59100
    Clone ID Related Accession (Same CDS sequence) XM_017356119.1
    Accession Version XM_017356119.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3486bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-06-23
    Organism Danio rerio(Zebrafish)
    Product collagen alpha-1(XXVII) chain B isoform X2
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007116.6) 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 :: Danio rerio Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGATTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCGA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA GTGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAGAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAACT
    GAGGAAACGC TGGATCCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATACATCTA CCATTCAAAC CCCCAAAGTT
    GTAACAGATT TTAACGAAAG ACATCTTTCA CTAACACGAG ATGAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGGTA ACACAGCCCA CATTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCAAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAA AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTATTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACGTTTG ACTTGGAACC GACCCAGTAT
    TCCTTCTTGG AGTTAACCGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GACCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AGTAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAG AAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCTGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGTG AGATTGGAGC AATAGGTTTA CCTGGGAAGG CTGGCGATCA GGGCTTACCG
    GGAGAACCAG GAGAGAAGGG TGCAGTCGGG TCTCCTGGGA ATATTGGAGA GCAAGGCCTG
    ATTGGACCCC GAGGTGACCC TGGAGTCGAT GGAGAGGCTG GTCCAAGTGG TCCCGATGGA
    GCCAAGGGTG AACAGGGGGA TGTTGGACTG GAGGGAGAAT CAGGCGAAAA AGGAGTCATC
    GGATTTAAAG GAACAGAGGG ACGTACTGGT GATCCTGGCT TAATAGGCGT CAAGGGCCCT
    GAAGGCAAAA TAGGGAAAAC TGGTGAGAGG GGAAAACCTG GAGAGAAGGG AAGCAAAGGT
    CATCAAGGTC AACTTGGCGA GATGGGTGCT TTGGGTGAGC AAGGTGACAC GGGTTTCATC
    GGGCCAAAAG GAAGCAGAGG AACTACTGGA TTTATGGGTG CGACGGGAAA AATGGGTCAG
    CACGGAGAGC CAGGTTTGGT GGGATATGAA GGTCATCAAG GGCCACAAGG TTCATTGGGA
    TCCCCGGGAC CAAAAGGTGA AAAGGGAGAG CAAGGCGATG ACGGGAAGGT TGAAGGTCCA
    CCTGGTCCTT CTGGTGACAT CGTGAGGACC TGTTGGCAAC AGAGGAGACA GAGGAGAACC
    TGGTGA

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

    RefSeq XP_017211608.1
    CDS375..3860
    Translation

    Target ORF information:

    RefSeq Version XM_017356119.1
    Organism Danio rerio(Zebrafish)
    Definition Danio rerio collagen, type XXVII, alpha 1b (col27a1b), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017356119.1

    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
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGATTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCGA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA GTGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAGAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAACT
    GAGGAAACGC TGGATCCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATACATCTA CCATTCAAAC CCCCAAAGTT
    GTAACAGATT TTAACGAAAG ACATCTTTCA CTAACACGAG ATGAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGGTA ACACAGCCCA CATTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCAAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAA AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTATTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACGTTTG ACTTGGAACC GACCCAGTAT
    TCCTTCTTGG AGTTAACCGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GACCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AGTAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAG AAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCTGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGTG AGATTGGAGC AATAGGTTTA CCTGGGAAGG CTGGCGATCA GGGCTTACCG
    GGAGAACCAG GAGAGAAGGG TGCAGTCGGG TCTCCTGGGA ATATTGGAGA GCAAGGCCTG
    ATTGGACCCC GAGGTGACCC TGGAGTCGAT GGAGAGGCTG GTCCAAGTGG TCCCGATGGA
    GCCAAGGGTG AACAGGGGGA TGTTGGACTG GAGGGAGAAT CAGGCGAAAA AGGAGTCATC
    GGATTTAAAG GAACAGAGGG ACGTACTGGT GATCCTGGCT TAATAGGCGT CAAGGGCCCT
    GAAGGCAAAA TAGGGAAAAC TGGTGAGAGG GGAAAACCTG GAGAGAAGGG AAGCAAAGGT
    CATCAAGGTC AACTTGGCGA GATGGGTGCT TTGGGTGAGC AAGGTGACAC GGGTTTCATC
    GGGCCAAAAG GAAGCAGAGG AACTACTGGA TTTATGGGTG CGACGGGAAA AATGGGTCAG
    CACGGAGAGC CAGGTTTGGT GGGATATGAA GGTCATCAAG GGCCACAAGG TTCATTGGGA
    TCCCCGGGAC CAAAAGGTGA AAAGGGAGAG CAAGGCGATG ACGGGAAGGT TGAAGGTCCA
    CCTGGTCCTT CTGGTGACAT CGTGAGGACC TGTTGGCAAC AGAGGAGACA GAGGAGAACC
    TGGTGA

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

    CloneID ODa38392
    Clone ID Related Accession (Same CDS sequence) NM_001080575.1
    Accession Version NM_001080575.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4977bp)
    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 2019-11-23
    Organism Danio rerio(zebrafish)
    Product collagen alpha-1(XXVII) chain B precursor
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from EF032484.1. On Mar 11, 2007 this sequence version replaced XM_683038.2. ##Evidence-Data-START## Transcript exon combination :: EF032484.1 [ECO:0000332] RNAseq introns :: mixed/partial sample support SAMEA2168446, SAMEA2168447 [ECO:0000350] ##Evidence-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGGTTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCAA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA ATGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAAAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAAAT
    GAGGAAACGC TGGATTCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATAGATCTA CCATTCAAAC TCCCAAAGTT
    GTAACAGATA TCAACGAAAG ACATCTTTCA CTAACACGAG ATAAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGATA ACCCAGCCCA CACTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCGAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAC AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTTTTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACTTTTG ACTTGGAACC GACCCAGTAT
    TCCCTCTTGG AGTTAACTGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GTCCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AATAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAA TAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCCGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGTG AGATTGGAGC AATAGGTTTA CCTGGGAAGG CTGGCGATCA GGGCTTACCG
    GGAGAACCAG GAGAGAAGGG TGCAGTCGGG TCTCCTGGGA ATATTGGAGA GCAAGGCCTG
    ATTGGACCTC GAGGTGACCC TGGAGTCGAT GGAGAGGCTG GTCCAAGTGG TCCCGATGGA
    GCCAAGGGTG AACAGGGGGA TGTTGGACTG GAGGGAGAAT CAGGCGAAAA AGGAGTCATC
    GGATTTAAAG GAACAGAGGG ACGTACTGGT GATCCTGGCT TAATAGGCGT CAAGGGCCCT
    GAAGGCAAAC CAGGGAAAAT TGGTGAGAGG GGAAAACCTG GAGAGAAGGG CAGCAAAGGT
    CATCAAGGTC AACTTGGCGA GATGGGTGCT TTGGGTGAGC AAGGTGACAC GGGTTTCATC
    GGGCCAAAAG GAAGCAGAGG AACTACTGGA TTTATGGGTG CTCCGGGAAA AATGGGTCAG
    CAGGGAGAGC CAGGTTTGGT GGGATATGAA GGTCATCAAG GGCCACAAGG TTCATTGGGA
    TCCCCGGGAC CAAAAGGTGA AAAGGGAGAG CAAGGCGATG ACGGGAAGGT TGAAGGTCCA
    CCTGGTCCTT CTGGTGACAT CGGACCTGTT GGCAACAGAG GAGACAGAGG AGAACCTGGT
    GACCCTGGAT ACCCAGGCCT TGAAGGTGTT CAAGGAGAAA GAGGAAAAGA GGGGGCTCCT
    GGAGTCCCTG GGAATTCAGG GCCTAGAGGT TTTCCAGGGC CCAAAGGATC TAAAGGCAAT
    AAAGGTCCAA AAGGCAAAAA CAGTCCTCGT GGTGAATCTG GAAACCGAGG GTCTCCTGGT
    CCTGTTGGTG TTCCTGGGCC CAGAGGGGTC ATTGGTAGAG AGGGTTTTGA GGGGGAACCT
    GGACTGGATG GAGCTGCTGG GAAAGATGGA GCTAAAGGAA TGCCAGGTGA TCTTGGACGT
    GATGGGGATG TTGGGCTGCC TGGAAAACCG GGTCCTCAAG GAAATGCAGG AGCACCAGGT
    CTACCAGGAG TTCAAGGCTC TTTTGGGCCA AAGGGGGAAA GGGGCATCAC TGGTCATTCT
    GGACCTCCAG GCAAAAGAGG ACTGAACGGA GGAATGGGAT TTCCTGGAAA ACAAGGCGAC
    CAAGGCTTCA AAGGACAACC TGGTGATGCT GGTGAACAGG GATTTCCTGG AGTTCTTGGA
    ATATTTGGAC CACAGGGGCC TCCTGGAGAC TTCGGTCCAG TGGGTATACA GGGTCCAAAG
    GGTCCTCAGG GTTTAATGGG GATGCAAGGA GCCATCGGAC CAGTTGGGAT CATTGGGCCG
    AGTGGAAACC CAGGACCACA AGGAGACAAA GGAAACAAAG GGGAAATGGG TGTTCAGGGA
    CCCAGGGGGC CTCCAGGTCC TCGTGGACCA CCGGGACCTC CAGGGCTTCC TGCTGTAGCC
    TTCTCTCATG AAAATGAGGC CCTTGGTGCT GCTTTACATG TTTTTGATTC CCGCTCCGCA
    TTAAGATCTG AAATGTATCA GGATACTGAC CTTCCACTGC TGGATCAAGG AAGCGAGATT
    TTTAAGACTC TTCACTACCT CAGCATCCTG ATCCACAGTA TCAAAAACCC GCTGGGAACG
    CAGGAGAATC CGGCCAGAAT GTGCAGGGAT CTGCTTGAAT GCGAGCACCG GTTGAATGAT
    GGCACTTATT GGATAGATCC TAACCTGGGC TGCTCCTCTG ACAACATTGA AGTGACCTGT
    AGCTTCACCA GTGGAGGTCA AACCTGCCTT AAGCCAGTCA CTGCTTCCAA GCTGGAGATC
    GGAGTCAGTC TGATCCAGAT GAACTTCATC CACCTCCTGA GCTCTGAGGC TGTGCAGATC
    ATCACCGTTC ACTGTCTGAA CGTCTCCGTT TGGGCATCGG AAGACTCCAA AACACCTTCC
    TCCAGCATGG TATACTTTAA AGCCTGGGAT GGACAGATAA TCGAGGCTGG AGGATTCATC
    GAGCCTGATT TGCTGAAGGA TGAGTGCTGG ATCACAGATG GTAGATGGCA TCAAACACAG
    TTCATTTTCC GGACGCAGGA CCCAAACTTA CTACCCATTG TGGAGATCTA CAACTTGCCC
    AGCACTAAAC CTGGCTCACA TTACCACCTG GAGGTGGGCC CTGTGTGCTT TTTATAA

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

    RefSeq NP_001074044.1
    CDS1..4977
    Translation

    Target ORF information:

    RefSeq Version NM_001080575.1
    Organism Danio rerio(zebrafish)
    Definition Danio rerio collagen, type XXVII, alpha 1b (col27a1b), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001080575.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    ATGGAGCCGG ACAATACCCC GAGCTCCAGA CTCAGAGCAG CTGGGGTCGG GGGGAGAGCA 
    GTGTTTTTCT GCATGGTTCT TTACTGTACA TGCTGTTTGA GGCTCGCACA AGCACAATCT
    GCAGATGTGG ACGTGCTGCA AAGACTGGGA TTGGTTGGGA AAAGACCACC TCAAGGCTTC
    ATCCCTATTA AATCAGGAGT CATCCTAACC ACAAGGGCAA GAATTGACGT CCCGGTGAGC
    TCCGTCATTC CTGTGTCACT GGGCTCGACG TTCTCTATCA TCCTCAGCGT ATGTTCCCAT
    CGCATAAACA ATGCTTTCCT TTTCACCATT GTGACAAAGA GGAAAAGACT GCACCTAGGG
    GTGCAGTTCA TCCCTGGACA GATATTAGTC TACCTAGGCC AAAACAGCTC TGTAAATTTT
    GATTACAATG TTCACAATGG CCAGTGGCAC AACCTGGCTT TGGAAATCCA AGGCCAAAAG
    GTTACTTTAT ATACTTCCTG TGGGAATACA AGCATACAGG CAAATCTGGA TTTTCAAAAT
    GAGGAAACGC TGGATTCAGA GGGCTCCTTT CGCTTGGGAA AAATGAGCCA GAACTCAGTG
    CAGTTCGAAG GAGCCATCTG CCAGTTTGAC ATTCATCCCT CTGCTCAGGC AGCTCACAAT
    TATTGCAAGT ACATTAAAAA ACAATGCAGG GAGGCGGATA CTTATCGGCC AAACCTTCCT
    CCTCTTCTAC CACTATTACC CCTGGACCCT AATAGATCTA CCATTCAAAC TCCCAAAGTT
    GTAACAGATA TCAACGAAAG ACATCTTTCA CTAACACGAG ATAAGATGAA TATTAATCAT
    GAAGGCCAAA CCACGGTGCC ACCAATGATA ACCCAGCCCA CACTACAGCT CCCCCTGCAG
    ACCACAGCGC AAACTACTGC CTCCATTAGG AACAGGACTT CACAAATATC TCCGAAGCCA
    ACTCAACAAA ACAGGAAGAA AGCAAAAAAA GAACGTAACA AGTTACATAT TTTAAAAGAG
    CACCAGATTT CTGTCACTGA CAGTCCAACA AGTCAACAAC AAAACCAAGT AGATATTCCA
    ACCACAACAA CACCTGAACT TTCTAGTACA TTCAGGGTGT CAGAAATGAC GACATTAGCA
    GCACAGAGAC CTCTGCCAAA GGAAACCTCC TTTTTTGAAG CCAAAGCCAC CTTTTTTGAG
    TCTGTAACCC CTGCAGCTAT GGATGGTTTG CAAACTTTTG ACTTGGAACC GACCCAGTAT
    TCCCTCTTGG AGTTAACTGG ACTGAAAGGA GAACCCGGAC TACCGGGACC ACCAGGACCT
    CCGGGCCAGC CAGGATTACC GGGAAAGAGA GGTCCCCGGG GTCCCTCTGG TCCGCATGGA
    AAACCAGGAC CCCCAGGGAC TCCTGGACCT AAGGGAAAAA AGGGAAATCC TGGAATCTCA
    CCTGGCAGAG CACCAAGTGG AATAAAGGGC GACCCTGGAT TAGTAGGTCT GCCTGGACAA
    CCCGGTCAAC CCGGTCGTAA AGGACAGAAA GGCCATCCTG GTCCCTCTGG CCACCCTGGA
    GACCAAGGAA TAAGAGGACC GGATGGAAGT CCAGGTGCCA AAGGTTATCC TGGCAGGCAG
    GGCTTACCTG GGCCTATAGG AAATATGGGA CCAAAAGGCG TACGGGGCTT CATTGGAATC
    CCAGGCATCT TCGGTCTCCC TGGAGCTGAC GGAGAAAGAG GTTTACCCGG TGTTCCTGGG
    AAGAAGGGCA AGATGGGTAG GCCGGGCTTT CCAGGAGATT TTGGGGAGCG AGGACCACCA
    GGACCTGATG GAAACCCAGG GGAAATCGGC GCCCCGGGGC CTGTTGGCAT CCCTGGATTT
    ATTGGTGATA TGGGCCCTGT TGGAATGGTC GGTCCTCCTG GACTAATAGG ACCAAAGGGT
    GTCCCAGGAA ACCCAGGAGA GCCCGGACTG AAAGGTGATA AGGGTGAGCT CGGATTGCCA
    GGTGAACCCG GGGAACCTGG ATTTCAAGGT GACAAGGGTA TTCAGGGCTC ACCGGGTTTA
    CCAGGAGTTC AAGGAAAGCC AGGACCACAG GGGAAGATTG GAGATCGAGG TCCAGACGGT
    TTGCCCGGCC CACTTGGTCC TGAGGGTTTT CCAGGGGATA TTGGACCACC AGGACAGAAT
    GGTGTTGAGG GCCCAAAGGG GAATGCAGGA GTGAGAGGCA TTCCAGGCCC TGGAGGACTC
    CCTGGACTCG AGGGAGATCA GGGACCAGTG GGACCAGCAG GGGCTCCAGG ACTAGAGGGC
    AGACCTGGGA GGAAAGGTAT CTCTGGCAAT CCAGGGGAGG AAGGGATGAA GGGAGAGCCT
    GGAATGACTG GAAATCCTGG GATGCTTGGT GAGAGGGGTC CTGTTGGTTT CGTCGGGCCT
    TTTGGTGAGA TGGGACTTGC TGGAGAAAAG GGAGATCGTG GTGAGACGGG TCAGCCTGGG
    CCACCTGGAG AAAAGGGAGC CATGGGTCAC CCAGGGGCTC CAGGAGAGAG AGGCCTGTCT
    GGACCAGCAG GTGCTCCAGG GCCTCATGGA TCTAGGGGCC TCAGTGGCAC CAGGGGGCCA
    AAAGGCACAA GGGGTGCAAG GGGACCAGAT GGACCAGTTG GAGAGAAAGG AATGATGGGA
    ATGAAGGGTC CTGAAGGTCC ACCAGGAAAA CAAGGTTTAA GCGGACAAAT GGGTAAAATT
    GGAGAAACTG GTGAAGCAGG ACCTACCGGA TTTACTGGTG TTCAAGGACC AACTGGACCT
    CCTGGAGCAA AAGGCATCTT AGGAGAACCT GGTCCTCAAG GATCACCGGG AGTGTTGGGT
    CCATTGGGTG AGATTGGAGC AATAGGTTTA CCTGGGAAGG CTGGCGATCA GGGCTTACCG
    GGAGAACCAG GAGAGAAGGG TGCAGTCGGG TCTCCTGGGA ATATTGGAGA GCAAGGCCTG
    ATTGGACCTC GAGGTGACCC TGGAGTCGAT GGAGAGGCTG GTCCAAGTGG TCCCGATGGA
    GCCAAGGGTG AACAGGGGGA TGTTGGACTG GAGGGAGAAT CAGGCGAAAA AGGAGTCATC
    GGATTTAAAG GAACAGAGGG ACGTACTGGT GATCCTGGCT TAATAGGCGT CAAGGGCCCT
    GAAGGCAAAC CAGGGAAAAT TGGTGAGAGG GGAAAACCTG GAGAGAAGGG CAGCAAAGGT
    CATCAAGGTC AACTTGGCGA GATGGGTGCT TTGGGTGAGC AAGGTGACAC GGGTTTCATC
    GGGCCAAAAG GAAGCAGAGG AACTACTGGA TTTATGGGTG CTCCGGGAAA AATGGGTCAG
    CAGGGAGAGC CAGGTTTGGT GGGATATGAA GGTCATCAAG GGCCACAAGG TTCATTGGGA
    TCCCCGGGAC CAAAAGGTGA AAAGGGAGAG CAAGGCGATG ACGGGAAGGT TGAAGGTCCA
    CCTGGTCCTT CTGGTGACAT CGGACCTGTT GGCAACAGAG GAGACAGAGG AGAACCTGGT
    GACCCTGGAT ACCCAGGCCT TGAAGGTGTT CAAGGAGAAA GAGGAAAAGA GGGGGCTCCT
    GGAGTCCCTG GGAATTCAGG GCCTAGAGGT TTTCCAGGGC CCAAAGGATC TAAAGGCAAT
    AAAGGTCCAA AAGGCAAAAA CAGTCCTCGT GGTGAATCTG GAAACCGAGG GTCTCCTGGT
    CCTGTTGGTG TTCCTGGGCC CAGAGGGGTC ATTGGTAGAG AGGGTTTTGA GGGGGAACCT
    GGACTGGATG GAGCTGCTGG GAAAGATGGA GCTAAAGGAA TGCCAGGTGA TCTTGGACGT
    GATGGGGATG TTGGGCTGCC TGGAAAACCG GGTCCTCAAG GAAATGCAGG AGCACCAGGT
    CTACCAGGAG TTCAAGGCTC TTTTGGGCCA AAGGGGGAAA GGGGCATCAC TGGTCATTCT
    GGACCTCCAG GCAAAAGAGG ACTGAACGGA GGAATGGGAT TTCCTGGAAA ACAAGGCGAC
    CAAGGCTTCA AAGGACAACC TGGTGATGCT GGTGAACAGG GATTTCCTGG AGTTCTTGGA
    ATATTTGGAC CACAGGGGCC TCCTGGAGAC TTCGGTCCAG TGGGTATACA GGGTCCAAAG
    GGTCCTCAGG GTTTAATGGG GATGCAAGGA GCCATCGGAC CAGTTGGGAT CATTGGGCCG
    AGTGGAAACC CAGGACCACA AGGAGACAAA GGAAACAAAG GGGAAATGGG TGTTCAGGGA
    CCCAGGGGGC CTCCAGGTCC TCGTGGACCA CCGGGACCTC CAGGGCTTCC TGCTGTAGCC
    TTCTCTCATG AAAATGAGGC CCTTGGTGCT GCTTTACATG TTTTTGATTC CCGCTCCGCA
    TTAAGATCTG AAATGTATCA GGATACTGAC CTTCCACTGC TGGATCAAGG AAGCGAGATT
    TTTAAGACTC TTCACTACCT CAGCATCCTG ATCCACAGTA TCAAAAACCC GCTGGGAACG
    CAGGAGAATC CGGCCAGAAT GTGCAGGGAT CTGCTTGAAT GCGAGCACCG GTTGAATGAT
    GGCACTTATT GGATAGATCC TAACCTGGGC TGCTCCTCTG ACAACATTGA AGTGACCTGT
    AGCTTCACCA GTGGAGGTCA AACCTGCCTT AAGCCAGTCA CTGCTTCCAA GCTGGAGATC
    GGAGTCAGTC TGATCCAGAT GAACTTCATC CACCTCCTGA GCTCTGAGGC TGTGCAGATC
    ATCACCGTTC ACTGTCTGAA CGTCTCCGTT TGGGCATCGG AAGACTCCAA AACACCTTCC
    TCCAGCATGG TATACTTTAA AGCCTGGGAT GGACAGATAA TCGAGGCTGG AGGATTCATC
    GAGCCTGATT TGCTGAAGGA TGAGTGCTGG ATCACAGATG GTAGATGGCA TCAAACACAG
    TTCATTTTCC GGACGCAGGA CCCAAACTTA CTACCCATTG TGGAGATCTA CAACTTGCCC
    AGCACTAAAC CTGGCTCACA TTACCACCTG GAGGTGGGCC CTGTGTGCTT TTTATAA

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