igfn1.2 cDNA ORF clone, Danio rerio(zebrafish)

  • Gene

  • Clones

  • gRNAs

The following igfn1.2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the igfn1.2 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
ODa143175 XM_021477357.1
Latest version!
Danio rerio immunoglobulin-like and fibronectin type III domain containing 1, tandem duplicate 2 (igfn1.2), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00
ODa59567 XM_017356765.1
Latest version!
Danio rerio immunoglobulin-like and fibronectin type III domain containing 1, tandem duplicate 2 (igfn1.2), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00

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

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

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

  • Reference Sequences (Refseq)
    CloneID ODa143175
    Clone ID Related Accession (Same CDS sequence) XM_021477357.1
    Accession Version XM_021477357.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3540bp)
    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 immunoglobulin-like and fibronectin type III domain-containing protein 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007117.7) 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## ##RefSeq-Attributes-START## ab initio :: 20% of CDS bases ##RefSeq-Attributes-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
    ATGAAAAAAG GCAGATCAGG GGTTGTCAAG AGGAAACAAG AACAATGTAA AGAGGGGGAA 
    ATTGATCCAA GGTTTTGGGA GGTGTTGCTG AGCGCTGCCA GGAAAGATTA TGAACGTATT
    TGTCACGAAT ATGGAGTCAC TGACTTCAGG TGGATGCTGA GAAAACTAAA CCAGAAGAGG
    AAGGAAAGAG AGGCAGAGCA GTCCAAGGTC TCTTTTACTA TAATGCCTGA CGTGGAGTTT
    AGCAGGACTC TCAAAGACAC GAAAGTGGCA GAAGGGCAGG ATGCAGTGTT TGAGTGTGCC
    TTATTGGACC CTGTCCCACA AATCACCTGG TGCGTCAATG ATGTCTCTGT AGAGAATGGA
    GATAAATATG TTATCACAGT GTCGGAAGAC CAGCAAGTGC ACAAACTAGC AGTGAAAAAC
    TGCACAAAAG ATGACAAGGG AGTCTATTCG GCTATTGCTG GTCTCAGATC AAGCCAGGGG
    ACTTTGGATG TGGAAGCCAG TGGTACAAGT GACGCAGATG AACTTGCAAA ACATTTAGCT
    GAGGATAAAG CCAGACTGCA GAGGGAAAAG AATGAAGCAG CTAGGAGGGC ACAGGCTGAA
    AAGGATGAAG CAGCCAGGAG GGCACAGGCA GAGCGAGATG AAGCGGCTAG AAAGGCCAAG
    AAAGAGCAAG ATGATGCCAG GAGAGCCCAA GCTGAAAGAG ATGAAGCCGC CAGGAGGGCC
    AAGGCAGACC AAGATAAAGC CTCCAGGAAG GCAAAGGCTG ACCAGGATGA AGCTGCCAGG
    AAGGCTCAAG AAGAGCAAGA TGAGGCAGCC AAGAGGTCGC AAGCTGAAAG AGATGAAGCG
    GCCCGGAGAG CTCAGGCTGA AAGAGATGAG GCAGCCAGGA GGGCACATGC CGACCGAGAA
    GCGGCTGAAA AAAGGGCAGC CATGATGGCA AAGAAAGAAG AACAAAATGG CAGTGGAGGA
    TCTATCCTGG TAGATGTCGA TGAAGGTGAT GGATCAGAGA TGAACAATGG AGGAGATGGA
    ACTAGGAAAG ATGGAAAAGG AGATGGTTTA GATGTAGATG GTTCAAGAGG AGATGGATCA
    AGTGAGAAGC GCACAAAACG TGCAAGAGAC AGTGAATTGG TTCCTAACTG CATCACAGAA
    CATGGAGTCC ACTTTCTGAA AGGCTTGTCA GATGCTGTTG TAAACATTGG AGAATCAGCA
    GAGTTAGGGT GCAAACTTAG CAGTGAAGAT AGCACTGGAT TATGGTACAA AGATGGCAAA
    AAGCTGGTGT CTGAGGATGG GATTACAGTT GTTAAAGATG GGGCTCACCA CAAACTAATC
    ATCCATAAAT GCCAAGAAGG AGATGCTGGG AAATACAAGT TTGAGGCTGA AGGACGTAAA
    TCAGAGGCTT CATTAACTGT TGAAGATCCA CCCAAAATTG ATGCAGATGC CTTGGGTAAA
    TTCTCAGAAC CCATTGTTGT GAAAGCAGGA GAAAATGCTT CCTTCAAGCT GCCATTTTCA
    GGAAAAGAGC CATTCAAGAT CCAGTGGTTT AAAGGGGACG AAGAGCTGCT GGAGGGTCAC
    GGAGTCAGGA TTGAAAAGTC TTCAGCTCAC AGTCGCGTAC TTCTTACTAA GTGTCAGCGC
    AAAGACACCG GAGAGATCAA GATCAAAGTC AAAAATGAAT TTGCCACCAT GGAAGCAGCA
    TCAAAACTCA TTGTACTTGA CAGGCCAAGT CCACCACAAG GACCTGTGGA AATTGTAGAA
    AGCTCCTTGT CTGCTATCGA GTTTAAATGG AGATCCCCGA AGGATGATGG GGGTTGCCCT
    GTCACTAATT ACAACCTGGA GCGTCAACAG CTGGGACGGA ACACCTGGAC TAAAATTGGA
    GACATTCCTG GACAGCCTGT CTACAGAGAC ACGAACACTG AACGTGGTCG AAAGTACTGC
    TACAGAATCC GCGCAAAAAA CTCAGAGGGC CTCAGTGACA TCATGACAAC TAATGACATA
    GCTGCGGGCA CTTTGGGTGA GATTCCTCAA GTCCGTCTAT GTTTTCTTAG TCTTCAGAAA
    AAGGAAATGT CATTCCCTGG CTCTCCTGCT CCTCCTAAAG TGGTCAGTGC CTTTAAAGAC
    TGTGTTAATT TGGCCTGGCT TCCTCCCTCC AACACTGTAG GAGGCAGTAT CATTGGCTAC
    AATGTGGAAA AACGAAAAAA GGGCAGCAAT TTTTGGAGTC AAGCAAACCT AAAAGATGAA
    CCAATCAGAG AGAAGAAGTA CGCAGTAAAA GATGTAATGG AAGGTGTAGA GTACGAGTTC
    AGAGTTTCTG CTGTTAACAC ATGTGGCCCT GGAGAACCAA GCGGACCCTC TGAATGCGTG
    ATTGCAAGAG ACCCCAAAAA GCCTCCCGGT AAGGTCAAAG AACTTAAAAT TAGTGGATCA
    AGCTACACCA GCCTGTCTCT GTCCTGGACT AAACCCACAG AAGTCAAAGG TGAGGAAGAT
    GAAGCAAAGG GCTATTTTGT GGAAATCAGG CCTGCAGAGC AACTGGAGTG GAGCCGCTGC
    AATACAAATG CTGTGAATCA GACCTCCTTT ACTGTTGTGG GATTGAAGTC AATGGCTATG
    TATTGGGTTC AAGTGATTGC CACCAATGAA GGAGGAGAGG GGCTTCCGCA GAGCTTTGAC
    AATTATATCA TCGCCATGCC TCCTCCGGGT ACAGATTCTT ATTTATTTAA ATGTGTTTGC
    TTCTGTGTCA GTTTTGAGGC CTCTCCATTA CCAGACATTA CATGGCTAAA AGACGGTTTT
    CCTGTAGGCA AACGTGTGAC GATTGCTAAT TTTGAAAAAG GTTCTCAGCT ATTTATTTAC
    ACCTCAGAGC TGTCTGACAC TGGCATCTAT ACAGTCAATG TGAAGAACAC GGTGGGCCAG
    GACACCTTCG CTATTGAAAT AAGAGTCACT GATGACCCCA AGCCTCCAGG TCCAGTAGAA
    CTGGAACAAA ATGTCCACGA CACTGTGACT CTGTCATGGA CTCCATCCCC TGATGAGAAA
    CGAGACAATC ATCTACATTA CATGGTGATG AAGCGGGACT CTGTCAAGCA GACATGGCGC
    ACAGTGGTCG ATCGCTTGTT CAACAACAAA TTCACAGTCA TTAACATCTT GCCAGGACGA
    GAGTACACTT TCAGAGTGTT TGCCAAGAAT GATATAGGTC TCTCGGAGCC ATCAGTGTCT
    CCTGTTTGGG GAACCACCAA AAAAAGAGAA AAACACACAT ACAGCATGCC TGTATCAAAG
    ACCATAGACT TCCAGGCAGC CCCCAGATTT ATTGTCCCAT TGAAACTCCA TGCTGCTCCG
    CCGGGTTATG AGTGCCACAT GAGCTGTGCT GTTACCGGCA ACCCGACCCC ACATATCACC
    TGGTACCACA ACAACATCAG CCTCAACACA AACCCAAACT ACTACATCAC CAATGTGTGT
    GGGGTTTGTT CCCTGCTGAT CCTGAGGGTT GAACGCAAAG ACATTGGAGA GTACAAGGTT
    GTGGCCGAAA GCCCTCTTGG TCATGATGAG AGCGCCACCA AGCTCATAAT CAAAGAGTGA

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

    RefSeq XP_021333032.1
    CDS1..3540
    Translation

    Target ORF information:

    RefSeq Version XM_021477357.1
    Organism Danio rerio(zebrafish)
    Definition Danio rerio immunoglobulin-like and fibronectin type III domain containing 1, tandem duplicate 2 (igfn1.2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021477357.1

    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
    ATGAAAAAAG GCAGATCAGG GGTTGTCAAG AGGAAACAAG AACAATGTAA AGAGGGGGAA 
    ATTGATCCAA GGTTTTGGGA GGTGTTGCTG AGCGCTGCCA GGAAAGATTA TGAACGTATT
    TGTCACGAAT ATGGAGTCAC TGACTTCAGG TGGATGCTGA GAAAACTAAA CCAGAAGAGG
    AAGGAAAGAG AGGCAGAGCA GTCCAAGGTC TCTTTTACTA TAATGCCTGA CGTGGAGTTT
    AGCAGGACTC TCAAAGACAC GAAAGTGGCA GAAGGGCAGG ATGCAGTGTT TGAGTGTGCC
    TTATTGGACC CTGTCCCACA AATCACCTGG TGCGTCAATG ATGTCTCTGT AGAGAATGGA
    GATAAATATG TTATCACAGT GTCGGAAGAC CAGCAAGTGC ACAAACTAGC AGTGAAAAAC
    TGCACAAAAG ATGACAAGGG AGTCTATTCG GCTATTGCTG GTCTCAGATC AAGCCAGGGG
    ACTTTGGATG TGGAAGCCAG TGGTACAAGT GACGCAGATG AACTTGCAAA ACATTTAGCT
    GAGGATAAAG CCAGACTGCA GAGGGAAAAG AATGAAGCAG CTAGGAGGGC ACAGGCTGAA
    AAGGATGAAG CAGCCAGGAG GGCACAGGCA GAGCGAGATG AAGCGGCTAG AAAGGCCAAG
    AAAGAGCAAG ATGATGCCAG GAGAGCCCAA GCTGAAAGAG ATGAAGCCGC CAGGAGGGCC
    AAGGCAGACC AAGATAAAGC CTCCAGGAAG GCAAAGGCTG ACCAGGATGA AGCTGCCAGG
    AAGGCTCAAG AAGAGCAAGA TGAGGCAGCC AAGAGGTCGC AAGCTGAAAG AGATGAAGCG
    GCCCGGAGAG CTCAGGCTGA AAGAGATGAG GCAGCCAGGA GGGCACATGC CGACCGAGAA
    GCGGCTGAAA AAAGGGCAGC CATGATGGCA AAGAAAGAAG AACAAAATGG CAGTGGAGGA
    TCTATCCTGG TAGATGTCGA TGAAGGTGAT GGATCAGAGA TGAACAATGG AGGAGATGGA
    ACTAGGAAAG ATGGAAAAGG AGATGGTTTA GATGTAGATG GTTCAAGAGG AGATGGATCA
    AGTGAGAAGC GCACAAAACG TGCAAGAGAC AGTGAATTGG TTCCTAACTG CATCACAGAA
    CATGGAGTCC ACTTTCTGAA AGGCTTGTCA GATGCTGTTG TAAACATTGG AGAATCAGCA
    GAGTTAGGGT GCAAACTTAG CAGTGAAGAT AGCACTGGAT TATGGTACAA AGATGGCAAA
    AAGCTGGTGT CTGAGGATGG GATTACAGTT GTTAAAGATG GGGCTCACCA CAAACTAATC
    ATCCATAAAT GCCAAGAAGG AGATGCTGGG AAATACAAGT TTGAGGCTGA AGGACGTAAA
    TCAGAGGCTT CATTAACTGT TGAAGATCCA CCCAAAATTG ATGCAGATGC CTTGGGTAAA
    TTCTCAGAAC CCATTGTTGT GAAAGCAGGA GAAAATGCTT CCTTCAAGCT GCCATTTTCA
    GGAAAAGAGC CATTCAAGAT CCAGTGGTTT AAAGGGGACG AAGAGCTGCT GGAGGGTCAC
    GGAGTCAGGA TTGAAAAGTC TTCAGCTCAC AGTCGCGTAC TTCTTACTAA GTGTCAGCGC
    AAAGACACCG GAGAGATCAA GATCAAAGTC AAAAATGAAT TTGCCACCAT GGAAGCAGCA
    TCAAAACTCA TTGTACTTGA CAGGCCAAGT CCACCACAAG GACCTGTGGA AATTGTAGAA
    AGCTCCTTGT CTGCTATCGA GTTTAAATGG AGATCCCCGA AGGATGATGG GGGTTGCCCT
    GTCACTAATT ACAACCTGGA GCGTCAACAG CTGGGACGGA ACACCTGGAC TAAAATTGGA
    GACATTCCTG GACAGCCTGT CTACAGAGAC ACGAACACTG AACGTGGTCG AAAGTACTGC
    TACAGAATCC GCGCAAAAAA CTCAGAGGGC CTCAGTGACA TCATGACAAC TAATGACATA
    GCTGCGGGCA CTTTGGGTGA GATTCCTCAA GTCCGTCTAT GTTTTCTTAG TCTTCAGAAA
    AAGGAAATGT CATTCCCTGG CTCTCCTGCT CCTCCTAAAG TGGTCAGTGC CTTTAAAGAC
    TGTGTTAATT TGGCCTGGCT TCCTCCCTCC AACACTGTAG GAGGCAGTAT CATTGGCTAC
    AATGTGGAAA AACGAAAAAA GGGCAGCAAT TTTTGGAGTC AAGCAAACCT AAAAGATGAA
    CCAATCAGAG AGAAGAAGTA CGCAGTAAAA GATGTAATGG AAGGTGTAGA GTACGAGTTC
    AGAGTTTCTG CTGTTAACAC ATGTGGCCCT GGAGAACCAA GCGGACCCTC TGAATGCGTG
    ATTGCAAGAG ACCCCAAAAA GCCTCCCGGT AAGGTCAAAG AACTTAAAAT TAGTGGATCA
    AGCTACACCA GCCTGTCTCT GTCCTGGACT AAACCCACAG AAGTCAAAGG TGAGGAAGAT
    GAAGCAAAGG GCTATTTTGT GGAAATCAGG CCTGCAGAGC AACTGGAGTG GAGCCGCTGC
    AATACAAATG CTGTGAATCA GACCTCCTTT ACTGTTGTGG GATTGAAGTC AATGGCTATG
    TATTGGGTTC AAGTGATTGC CACCAATGAA GGAGGAGAGG GGCTTCCGCA GAGCTTTGAC
    AATTATATCA TCGCCATGCC TCCTCCGGGT ACAGATTCTT ATTTATTTAA ATGTGTTTGC
    TTCTGTGTCA GTTTTGAGGC CTCTCCATTA CCAGACATTA CATGGCTAAA AGACGGTTTT
    CCTGTAGGCA AACGTGTGAC GATTGCTAAT TTTGAAAAAG GTTCTCAGCT ATTTATTTAC
    ACCTCAGAGC TGTCTGACAC TGGCATCTAT ACAGTCAATG TGAAGAACAC GGTGGGCCAG
    GACACCTTCG CTATTGAAAT AAGAGTCACT GATGACCCCA AGCCTCCAGG TCCAGTAGAA
    CTGGAACAAA ATGTCCACGA CACTGTGACT CTGTCATGGA CTCCATCCCC TGATGAGAAA
    CGAGACAATC ATCTACATTA CATGGTGATG AAGCGGGACT CTGTCAAGCA GACATGGCGC
    ACAGTGGTCG ATCGCTTGTT CAACAACAAA TTCACAGTCA TTAACATCTT GCCAGGACGA
    GAGTACACTT TCAGAGTGTT TGCCAAGAAT GATATAGGTC TCTCGGAGCC ATCAGTGTCT
    CCTGTTTGGG GAACCACCAA AAAAAGAGAA AAACACACAT ACAGCATGCC TGTATCAAAG
    ACCATAGACT TCCAGGCAGC CCCCAGATTT ATTGTCCCAT TGAAACTCCA TGCTGCTCCG
    CCGGGTTATG AGTGCCACAT GAGCTGTGCT GTTACCGGCA ACCCGACCCC ACATATCACC
    TGGTACCACA ACAACATCAG CCTCAACACA AACCCAAACT ACTACATCAC CAATGTGTGT
    GGGGTTTGTT CCCTGCTGAT CCTGAGGGTT GAACGCAAAG ACATTGGAGA GTACAAGGTT
    GTGGCCGAAA GCCCTCTTGG TCATGATGAG AGCGCCACCA AGCTCATAAT CAAAGAGTGA

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

    CloneID ODa59567
    Clone ID Related Accession (Same CDS sequence) XM_017356765.1
    Accession Version XM_017356765.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3954bp)
    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 immunoglobulin-like and fibronectin type III domain-containing protein 1
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007117.6) 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 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## ##RefSeq-Attributes-START## ab initio :: 46% of CDS bases ##RefSeq-Attributes-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
    ATGCCAAATC CAGCAGGAAA AACAGGCGTG GCAATTAGGA AGAGATCCAA AGTGCCTGGT 
    GTTATGGTCA CACAGTATGT CGAGGAACTT CCGCCTGGAT GTACTACGCC TGATTTCATC
    AGAAAACCCA TAGCATTAAC TATTCAGGAA GGCAAACTGG CCTTTTTCAA AGCTGTTGTT
    AATGGATGTC CAGTTCCAGA AGTTACATGG GGACGAAACA AGGAAGACAT CTCTAATTCA
    ACCAAATACG TTACACGATT TGATGATAAG AATGAAGAAT ATATTTTGGA GATACCAAAT
    GTAGATTCAG ATCAAGCAGA CACATACAAG TGTTTTGCTA TAAATCCGTT TGGAAAAGCT
    ATTTGCACTG CTGCACTGAA TGTCATTGAG GTTGGATTCA AGAAAAGGAA GCCAGCCCCC
    AAAAGTGACC CAGATGAGTT CCGAAAAATG CTGAAGAAAA CGGTTGTCAA GAGGAAACAA
    GAACAATGTA AAGAGGGGGA AATTGATCCA AGGTTTTGGG AGGTGTTGCT GAGCGCTGCC
    AGGAAAGATT ATGAACGTAT TTGTCACGAA TATGGAGTCA CTGACTTCAG GTGGATGCTG
    AGAAAACTAA ACCAGAAGAG GAAGGAAAGA GAGGCAGAGC AGTCCAAGTA TGTGGAGAAA
    GTCCACAGCA TGAAACAGAT TGAGGTGAAA ACTGACGGCA CAGCAGAATT TGAGCTAGAT
    ATGAAGCTAA AGGATCCTAA CAGCAAAATC TTACTCTACA AAGACGGGGA AATGCTTGAC
    TATGGAGATG GAACGGATGA TACTGCAAAA CATAATATGC AACAATTTGG TGAAACATAT
    TTGTTCAGCA TTAGAGATGT TGGCCCAGAG GATGCTGGCT TGTATCAAGT GGATGTAGAA
    GATGCAAACA TGTTCTCAAC TTCTCTAGCA TTGCCTGACG TGGAGTTTAG CAGGACTCTC
    AAAGACACGA AAGTGGCAGA AGGGCAGGAT GCAGTGTTTG AGTGTGCCTT ATTGGACCCT
    GTCCCACAAA TCACCTGGTG CGTCAATGAT GTCTCTGTAG AGAATGGAGA TAAATATGTT
    ATCACAGTGT CGGAAGACCA GCAAGTGCAC AAACTAGCAG TGAAAAACTG CACAAAAGAT
    GACAAGGGAG TCTATTCGGC TATTGCTGGT CTCAGATCAA GCCAGGGGAC TTTGGATGTG
    GAAGCCAGTG GTACAAGTGA CGCAGATGAA CTTGCAAAAC ATTTAGCTGA GGATAAAGCC
    AGACTGCAGA GGGAAAAGAA TGAAGCAGCT AGGAGGGCAC AGGCTGAAAA GGATGAAGCA
    GCCAGGAGGG CACAGGCAGA GCGAGATGAA GCGGCTAGAA AGGCCAAGAA AGAGCAAGAT
    GATGCCAGGA GAGCCCAAGC TGAAAGAGAT GAAGCCGCCA GGAGGGCCAA GGCAGACCAA
    GATAAAGCCT CCAGGAAGGC AAAGGCTGAC CAGGATGAAG CTGCCAGGAA GGCTCAAGAA
    GAGCAAGATG AGGCAGCCAA GAGGTCGCAA GCTGAAAGAG ATGAAGCGGC CCGGAGAGCT
    CAGGCTGAAA GAGATGAGGC AGCCAGGAGG GCACATGCCG ACCGAGAAGC GGCTGAAAAA
    AGGGCAGCCA TGATGGCAAA GAAAGAAGAA CAAAATGGCA GTGGAGGATC TATCCTGGTA
    GATGTCGATG AAGGTGATGG ATCAGAGATG AACAATGGAG GAGATGGAAC TAGGAAAGAT
    GGAAAAGGAG ATGGTTTAGA TGTAGATGGT TCAAGAGGAG ATGGATCAAG TGAGAAGCGC
    ACAAAACGTG CAAGAGACAG TGAATTGGTT CCTAACTGCA TCACAGAACA TGGAGTCCAC
    TTTCTGAAAG GCTTGTCAGA TGCTGTTGTA AACATTGGAG AATCAGCAGA GTTAGGGTGC
    AAACTTAGCA GTGAAGATAG CACTGGATTA TGGTACAAAG ATGGCAAAAA GCTGGTGTCT
    GAGGATGGGA TTACAGTTGT TAAAGATGGG GCTCACCACA AACTAATCAT CCATAAATGC
    CAAGAAGGAG ATGCTGGGAA ATACAAGTTT GAGGCTGAAG GACGTAAATC AGAGGCTTCA
    TTAACTGTTG AAGATCCACC CAAAATTGAT GCAGATGCCT TGGGTAAATT CTCAGAACCC
    ATTGTTGTGA AAGCAGGAGA AAATGCTTCC TTCAAGCTGC CATTTTCAGG AAAAGAGCCA
    TTCAAGATCC AGTGGTTTAA AGGGGACGAA GAGCTGCTGG AGGGTCACGG AGTCAGGATT
    GAAAAGTCTT CAGCTCACAG TCGCGTACTT CTTACTAAGT GTCAGCGCAA AGACACCGGA
    GAGATCAAGA TCAAAGTCAA AAATGAATTT GCCACCATGG AAGCAGCATC AAAACTCATT
    GTACTTGACA GGCCAAGTCC ACCACAAGGA CCTGTGGAAA TTGTAGAAAG CTCCTTGTCT
    GCTATCGAGT TTAAATGGAG ATCCCCGAAG GATGATGGGG GTTGCCCTGT CACTAATTAC
    AACCTGGAGC GTCAACAGCT GGGACGGAAC ACCTGGACTA AAATTGGAGA CATTCCTGGA
    CAGCCTGTCT ACAGAGACAC GAACACTGAA CGTGGTCGAA AGTACTGCTA CAGAATCCGC
    GCAAAAAACT CAGAGGGCCT CAGTGACATC ATGACAACTA ATGACATAGC TGCGGGCACT
    TTGGCATTCC CTGGCTCTCC TGCTCCTCCT AAAGTGGTCA GTGCCTTTAA AGACTGTGTT
    AATTTGGCCT GGCTTCCTCC CTCCAACACT GTAGGAGGCA GTATCATTGG CTACAATGTG
    GAAAAACGAA AAAAGGGCAG CAATTTTTGG AGTCAAGCAA ACCTAAAAGA TGAACCAATC
    AGAGAGAAGA AGTACGCAGT AAAAGATGTA ATGGAAGGTG TAGAGTACGA GTTCAGAGTT
    TCTGCTGTTA ACACATGTGG CCCTGGAGAA CCAAGCGGAC CCTCTGAATG CGTGATTGCA
    AGAGACCCCA AAAAGCCTCC CGGTAAGGTC AAAGAACTTA AAATTAGTGG ATCAAGCTAC
    ACCAGCCTGT CTCTGTCCTG GACTAAACCC ACAGAAGTCA AAGGTGAGGA AGATGAAGCA
    AAGGGCTATT TTGTGGAAAT CAGGCCTGCA GAGCAACTGG AGTGGAGCCG CTGCAATACA
    AATGCTGTGA ATCAGACCTC CTTTACTGTT GTGGGATTGA AGTCAATGGC TATGTATTGG
    GTTCAAGTGA TTGCCACCAA TGAAGGAGGA GAGGGGCTTC CGCAGAGCTT TGACAATTAT
    ATCATCGCCA TGCCTCCTCC GGTAAAGCCA AAGTTCACTG ACAAAAAAAT GAAAAGCTTT
    ATGGTTGTTA AAGCTGGAAA CACTGTTCGT GTCAGTGTCA GTTTTGAGCC ACAGGCCTCT
    CCATTACCAG ACATTACATG GCTAAAAGAC GGTTTTCCTG TAGGCAAACG TGTGACGATT
    GCTAATTTTG AAAAAGGTTC TCAGCTATTT ATTTACACCT CAGAGCTGTC TGACACTGGC
    ATCTATACAG TCAATGTGAA GAACACGGTG GGCCAGGACA CCTTCGCTAT TGAAATAAGA
    GTCACTGATG ACCCCAAGCC TCCAGGTCCA GTAGAACTGG AACAAAATGT CCACGACACT
    GTGACTCTGT CATGGACTCC ATCCCCTGAT GAGAAACGAG ACAATCATCT ACATTACATG
    GTGATGAAGC GGGACTCTGT CAAGCAGACA TGGCGCACAG TGGTCGATCG CTTGTTCAAC
    AACAAATTCA CAGTCATTAA CATCTTGCCA GGACGAGAGT ACACTTTCAG AGTGTTTGCC
    AAGAATGATA TAGGTCTCTC GGAGCCATCA GTGTCTCCTG TTTGGGGAAC CACCAAAAAA
    AGAGGTTTAT ACCTCTGGGA CTTAGTGCTG CTGTCCCTGA CATATAGCCA CTAA

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

    RefSeq XP_017212254.1
    CDS1..3954
    Translation

    Target ORF information:

    RefSeq Version XM_017356765.1
    Organism Danio rerio(Zebrafish)
    Definition Danio rerio immunoglobulin-like and fibronectin type III domain containing 1, tandem duplicate 2 (igfn1.2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017356765.1

    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
    ATGCCAAATC CAGCAGGAAA AACAGGCGTG GCAATTAGGA AGAGATCCAA AGTGCCTGGT 
    GTTATGGTCA CACAGTATGT CGAGGAACTT CCGCCTGGAT GTACTACGCC TGATTTCATC
    AGAAAACCCA TAGCATTAAC TATTCAGGAA GGCAAACTGG CCTTTTTCAA AGCTGTTGTT
    AATGGATGTC CAGTTCCAGA AGTTACATGG GGACGAAACA AGGAAGACAT CTCTAATTCA
    ACCAAATACG TTACACGATT TGATGATAAG AATGAAGAAT ATATTTTGGA GATACCAAAT
    GTAGATTCAG ATCAAGCAGA CACATACAAG TGTTTTGCTA TAAATCCGTT TGGAAAAGCT
    ATTTGCACTG CTGCACTGAA TGTCATTGAG GTTGGATTCA AGAAAAGGAA GCCAGCCCCC
    AAAAGTGACC CAGATGAGTT CCGAAAAATG CTGAAGAAAA CGGTTGTCAA GAGGAAACAA
    GAACAATGTA AAGAGGGGGA AATTGATCCA AGGTTTTGGG AGGTGTTGCT GAGCGCTGCC
    AGGAAAGATT ATGAACGTAT TTGTCACGAA TATGGAGTCA CTGACTTCAG GTGGATGCTG
    AGAAAACTAA ACCAGAAGAG GAAGGAAAGA GAGGCAGAGC AGTCCAAGTA TGTGGAGAAA
    GTCCACAGCA TGAAACAGAT TGAGGTGAAA ACTGACGGCA CAGCAGAATT TGAGCTAGAT
    ATGAAGCTAA AGGATCCTAA CAGCAAAATC TTACTCTACA AAGACGGGGA AATGCTTGAC
    TATGGAGATG GAACGGATGA TACTGCAAAA CATAATATGC AACAATTTGG TGAAACATAT
    TTGTTCAGCA TTAGAGATGT TGGCCCAGAG GATGCTGGCT TGTATCAAGT GGATGTAGAA
    GATGCAAACA TGTTCTCAAC TTCTCTAGCA TTGCCTGACG TGGAGTTTAG CAGGACTCTC
    AAAGACACGA AAGTGGCAGA AGGGCAGGAT GCAGTGTTTG AGTGTGCCTT ATTGGACCCT
    GTCCCACAAA TCACCTGGTG CGTCAATGAT GTCTCTGTAG AGAATGGAGA TAAATATGTT
    ATCACAGTGT CGGAAGACCA GCAAGTGCAC AAACTAGCAG TGAAAAACTG CACAAAAGAT
    GACAAGGGAG TCTATTCGGC TATTGCTGGT CTCAGATCAA GCCAGGGGAC TTTGGATGTG
    GAAGCCAGTG GTACAAGTGA CGCAGATGAA CTTGCAAAAC ATTTAGCTGA GGATAAAGCC
    AGACTGCAGA GGGAAAAGAA TGAAGCAGCT AGGAGGGCAC AGGCTGAAAA GGATGAAGCA
    GCCAGGAGGG CACAGGCAGA GCGAGATGAA GCGGCTAGAA AGGCCAAGAA AGAGCAAGAT
    GATGCCAGGA GAGCCCAAGC TGAAAGAGAT GAAGCCGCCA GGAGGGCCAA GGCAGACCAA
    GATAAAGCCT CCAGGAAGGC AAAGGCTGAC CAGGATGAAG CTGCCAGGAA GGCTCAAGAA
    GAGCAAGATG AGGCAGCCAA GAGGTCGCAA GCTGAAAGAG ATGAAGCGGC CCGGAGAGCT
    CAGGCTGAAA GAGATGAGGC AGCCAGGAGG GCACATGCCG ACCGAGAAGC GGCTGAAAAA
    AGGGCAGCCA TGATGGCAAA GAAAGAAGAA CAAAATGGCA GTGGAGGATC TATCCTGGTA
    GATGTCGATG AAGGTGATGG ATCAGAGATG AACAATGGAG GAGATGGAAC TAGGAAAGAT
    GGAAAAGGAG ATGGTTTAGA TGTAGATGGT TCAAGAGGAG ATGGATCAAG TGAGAAGCGC
    ACAAAACGTG CAAGAGACAG TGAATTGGTT CCTAACTGCA TCACAGAACA TGGAGTCCAC
    TTTCTGAAAG GCTTGTCAGA TGCTGTTGTA AACATTGGAG AATCAGCAGA GTTAGGGTGC
    AAACTTAGCA GTGAAGATAG CACTGGATTA TGGTACAAAG ATGGCAAAAA GCTGGTGTCT
    GAGGATGGGA TTACAGTTGT TAAAGATGGG GCTCACCACA AACTAATCAT CCATAAATGC
    CAAGAAGGAG ATGCTGGGAA ATACAAGTTT GAGGCTGAAG GACGTAAATC AGAGGCTTCA
    TTAACTGTTG AAGATCCACC CAAAATTGAT GCAGATGCCT TGGGTAAATT CTCAGAACCC
    ATTGTTGTGA AAGCAGGAGA AAATGCTTCC TTCAAGCTGC CATTTTCAGG AAAAGAGCCA
    TTCAAGATCC AGTGGTTTAA AGGGGACGAA GAGCTGCTGG AGGGTCACGG AGTCAGGATT
    GAAAAGTCTT CAGCTCACAG TCGCGTACTT CTTACTAAGT GTCAGCGCAA AGACACCGGA
    GAGATCAAGA TCAAAGTCAA AAATGAATTT GCCACCATGG AAGCAGCATC AAAACTCATT
    GTACTTGACA GGCCAAGTCC ACCACAAGGA CCTGTGGAAA TTGTAGAAAG CTCCTTGTCT
    GCTATCGAGT TTAAATGGAG ATCCCCGAAG GATGATGGGG GTTGCCCTGT CACTAATTAC
    AACCTGGAGC GTCAACAGCT GGGACGGAAC ACCTGGACTA AAATTGGAGA CATTCCTGGA
    CAGCCTGTCT ACAGAGACAC GAACACTGAA CGTGGTCGAA AGTACTGCTA CAGAATCCGC
    GCAAAAAACT CAGAGGGCCT CAGTGACATC ATGACAACTA ATGACATAGC TGCGGGCACT
    TTGGCATTCC CTGGCTCTCC TGCTCCTCCT AAAGTGGTCA GTGCCTTTAA AGACTGTGTT
    AATTTGGCCT GGCTTCCTCC CTCCAACACT GTAGGAGGCA GTATCATTGG CTACAATGTG
    GAAAAACGAA AAAAGGGCAG CAATTTTTGG AGTCAAGCAA ACCTAAAAGA TGAACCAATC
    AGAGAGAAGA AGTACGCAGT AAAAGATGTA ATGGAAGGTG TAGAGTACGA GTTCAGAGTT
    TCTGCTGTTA ACACATGTGG CCCTGGAGAA CCAAGCGGAC CCTCTGAATG CGTGATTGCA
    AGAGACCCCA AAAAGCCTCC CGGTAAGGTC AAAGAACTTA AAATTAGTGG ATCAAGCTAC
    ACCAGCCTGT CTCTGTCCTG GACTAAACCC ACAGAAGTCA AAGGTGAGGA AGATGAAGCA
    AAGGGCTATT TTGTGGAAAT CAGGCCTGCA GAGCAACTGG AGTGGAGCCG CTGCAATACA
    AATGCTGTGA ATCAGACCTC CTTTACTGTT GTGGGATTGA AGTCAATGGC TATGTATTGG
    GTTCAAGTGA TTGCCACCAA TGAAGGAGGA GAGGGGCTTC CGCAGAGCTT TGACAATTAT
    ATCATCGCCA TGCCTCCTCC GGTAAAGCCA AAGTTCACTG ACAAAAAAAT GAAAAGCTTT
    ATGGTTGTTA AAGCTGGAAA CACTGTTCGT GTCAGTGTCA GTTTTGAGCC ACAGGCCTCT
    CCATTACCAG ACATTACATG GCTAAAAGAC GGTTTTCCTG TAGGCAAACG TGTGACGATT
    GCTAATTTTG AAAAAGGTTC TCAGCTATTT ATTTACACCT CAGAGCTGTC TGACACTGGC
    ATCTATACAG TCAATGTGAA GAACACGGTG GGCCAGGACA CCTTCGCTAT TGAAATAAGA
    GTCACTGATG ACCCCAAGCC TCCAGGTCCA GTAGAACTGG AACAAAATGT CCACGACACT
    GTGACTCTGT CATGGACTCC ATCCCCTGAT GAGAAACGAG ACAATCATCT ACATTACATG
    GTGATGAAGC GGGACTCTGT CAAGCAGACA TGGCGCACAG TGGTCGATCG CTTGTTCAAC
    AACAAATTCA CAGTCATTAA CATCTTGCCA GGACGAGAGT ACACTTTCAG AGTGTTTGCC
    AAGAATGATA TAGGTCTCTC GGAGCCATCA GTGTCTCCTG TTTGGGGAAC CACCAAAAAA
    AGAGGTTTAT ACCTCTGGGA CTTAGTGCTG CTGTCCCTGA CATATAGCCA CTAA

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