C2orf16 cDNA ORF clone, Homo sapiens(human)

The following C2orf16 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the C2orf16 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
OHu16591 NM_032266.3
Latest version!
Homo sapiens chromosome 2 open reading frame 16 (C2orf16), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $951.30
$1359.00

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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 OHu16591
    Clone ID Related Accession (Same CDS sequence) NM_032266.3
    Accession Version NM_032266.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5955bp)
    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 2019-05-03
    Organism Homo sapiens(human)
    Product uncharacterized protein C2orf16
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from CR749335.1, AC074091.6 and AL834384.1. On Jul 24, 2007 this sequence version replaced NM_032266.2. ##Evidence-Data-START## Transcript is intronless :: CR749335.1 [ECO:0000345] ##Evidence-Data-END## ##RefSeq-Attributes-START## RefSeq Select criteria :: based on single protein-coding transcript ##RefSeq-Attributes-END## COMPLETENESS: complete on the 3' 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
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    5701
    5761
    5821
    5881
    5941
    ATGGAGCTGA CACCAGGGGC CCAACAGCAA GGTATAAATT ATCAAGAGTT GACTTCAGGA 
    TGGCAAGATG TGAAATCAAT GATGTTGGTA CCAGAGCCAA CTAGGAAGTT CCCATCAGGA
    CCACTGTTGA CTAGTGTCAG ATTTTCAAAT TTGTCTCCAG AATCACAGCA ACAGGATGTG
    AAATCTTTGG AGTTTACTGT AGAGCCAAAG TTGCAAAGCG TAAAACATGT GAAATTATCT
    TCAGTGTCTC TGCAGCAAAC TATAAAATCT GTGGAATTAG CACCAGGGTC ACTGCCTCAA
    AGAGTGAAAT ATGGGGAGCA AACTCCAAGA ACAAATTATC AAATCATGGA ATCCTCTGAA
    CTAATCCCTA GACCAGGGCA TCAGTTTGCA AAATATGCAG AGATGATCCC ACAGCCAAAG
    TATCAAATCC CTAAATCTGC AAATTTGATT TCAATACCAA TTTATCACGC CACAGAATCT
    TCAGAAATGG CACAAGGATT GGCATATAAA GGCATAGATA CTGTAGAGAA ATCTGTGGGG
    TTGACCCCAA AGCTAACAGG TAGAGCTAAG GAATCCTTAG GGATGCTGCT GCAGCCAGAT
    CTTCAGGTAC CAAAATTTGT TGATCTGACT CCAATGGTAA GGGATCAAGG CTCAAAATTC
    TTAGGATTAA CTCCAGAGAA AAGCTACCAA ATCCTAGAAA CTATGGAATT GCTCTCTCAG
    TCACGGCCCC GAGTTAAGGA TGTGGGGGAG TTATATATGA AGCCACTGCA GCAAACTGTG
    GAATATGAAG GGATTACTCC GGAACTCAAG CATTACTTTA CAGAAGCTAT GGGGTTGACC
    GCTGAGGCAA GGATACAAGC AAATGAATTC TTTGGAATGA CCCCAAAGCC AACAAGTCAA
    GCCACTGGAT TTGCAGAGAG ATCCCCAAGG CTCTGTCCTC AAAACTTAGA ATGTGTGGAG
    GTGATCTCTG AGAAAAGACT GCAAGGGGAA GAATCTGTGG TATTGATTCC AAAGTCATTA
    CATCACGTCC CAGATTCTGC TTCAGGGATG ACACCTGGGT TAGGACATCG AGTTCCTGAA
    TCTGTGGAGT TGACTTCTAA GTCAGGAGTG CAGGTAGAGA AAACTTTGCA ATTAACCCCC
    AAACCACAGC ATCATGTGGG ATCTCCAGGG ATAATATCAG GGTTAGGACA TCAAGTCCCA
    GAATCTGTAA ATCTGACCTG TAAGCAATGG CTACAAATGG AGGAATCTTT AGAGGTGCCC
    CTGAAGCAAA CAAGTCAAGT TATAGGACAT GAAGAATCTG TAGAGCTCAC CTCTGAGGCA
    CGGCAGCACA GGGAGGTATC AATGGGGCTA ACAAAGTCAA AGAATCAAAG TATGAAATCT
    CCAGGGACAA CCCCAGGACC ACTGGGTCGA ATTGTAGAAT TTATGAGGAT TAGTCCAGAG
    CCACTAGATC AAGTCACAGA ATCTGCAAGG ACACAGCTTC AAGTTGCTCA ATCTGAAGAG
    GTAATCCTCA TAGATGTCCC AAAAGTTGTT CAATCTGTGA AAGTGACCCC TGGACCACCA
    TTTCAAATTG TAAAGTCTGT GACGATACCA AGGCCAACCC CTCAAATGGT AGAATATATT
    GAGTTGACTC CAAAACTGCA ATATGTGAGA CCTTCAGAGC ACCACACAGG GCCATGTTTG
    CAAGATGTGA AATCTACAAA ATTAATCACA AAGCCAAAAC ACCAGATTTT GGAAACAGTG
    GAGTTGACAG GGTTTCAAAT TGTAAAAACT ATGTTAATCC CAGGGCCATC CCTTCAAATC
    GTAAAATCTG AGGAGTTAGC ACCAGGACCA ATTCCTCAGG TTGTAGAACC AATAGGAGTA
    GCCCTAGAAT CAGGAATTGA AGCAATAAAT TGTGTGGATT TACTTCCAAG GCCACATCTT
    CAAGAACTGA TAGTACCTGC AGAATTAACT CCAAGTCCAT GTACTCAAGT GAAGTCTGCA
    GAATTAACCT CACCGCAAAC ATCTCCATTT GAGGAACATA CAATATTGAC TCATAAACAA
    GGGCTTCAGG CTGTGAAATC TACAGTGATA AAAACAGAGC CTCCTAAAGT TATGGAAACT
    GAGGATTTGA ATCTAGGACA CGTGTGTCAG AATAGGGACT GTCAGAAGTT AACATCAGAA
    GAGTTACAAG TAGGGACTGA CTTCTCTAGG TTCCTACAAA GCTCTTCAAC CACACTCATT
    TCAAGCTCTG TCAGAACAGC ATCTGAATTA GGAGGACTTT GGGATTCTGG GATACAGGAA
    GTATCCAGAG CTTTGGATAT AAAAAACCCT GGGACAGATA TTTTGCAGCC TGAAGAGACC
    TATATAGACC CTACTATGAT ACAATCTTTA ACTTTTCCTT TGGCCCTTCA TAATCAAAGC
    TCCGATAAGA CAGCTAACAT TGTGGAAAAC CCATGTCCTG AGATTCTAGG AGTGGATGTA
    ATATCTAAAG AGACAACTAA GAGGAAGCAA ATGGAGGAGC TAGAGAACTC ACTTCAGAGA
    CATCTACCAC AAAGCTGGAG ATCACGATCT AGGACATTCC AGGCAGAATC AGGGGTTCAG
    AAAGGTCTCA TCAAGTCTTT CCCGGGCAGA CAACACAATG TCTGGGAGAG TCATGCCTGG
    AGGCAGCGAC TACCAAGAAA ATATCTCTCC ACTATGCTAA TGCTGGGGAA TATTTTAGGG
    ACCACTATGG AAAGGAAGCT TTGTTCTCAA ACATCTTTAG CAGAAAGAGC CACTGCAGAT
    ACCTGTCAAT CTATTCAGAA TTTATTTGGG ATTCCAGCTG AACTGATGGA ACCTTCCCAG
    AGCCTGCCAG AGAAGGGTCC AGTTACTATT TCTCAGCCTT CTGTGGTCAA AAACTATATT
    CAGAGACATA CTTTTTATCA TGGTCATAAG AAAAGAATGG CCTTAAGGAT ATGGACACGT
    GGCTCCACAT CTTCCATAAT ACAGCAATAC TCTGGGACTA GAGTGAGAAT AAAGAAGACA
    AACTCAACGT TCAATGGTAT ATCCCAAGAA GTCATTCAAC ATATGCCTGT CTCATGTGCA
    GGGGGCCAGC TTCCTGTCCT GGTAAAGTCA GAGTCTTCCC TCAGCATATT TTACGATAGA
    GAAGATCTTG TTCCAATGGA AGAAAGTGAG GACTCACAGA GTGATTCCCA GACAAGGATT
    TCTGAGTCCC AACACTCCCT CAAGCCAAAT TATCTTTCCC AGGCCAAGAC TGACTTCTCA
    GAACAGTTCC AGTTGCTAGA AGATCTGCAG CTAAAAATAG CAGCAAAACT CTTAAGGAGT
    CAAATACCCC CCGATGTGCC TCCACCTCTA GCTTCAGGTC TAGTCCTAAA ATACCCTATC
    TGCCTACAGT GTGGCCGATG TTCAGGACTT AATTGCCATC ATAAATTACA GACCACTTCG
    GGGCCTTATC TTCTTATCTA TCCACAGCTC CACCTTGTAC GCACTCCTGA AGGCCATGGT
    GAGGTTCGGT TGCATCTTGG CTTTAGGCTG AGAATTGGGA AAAGATCCCA AATCTCAAAG
    TATCGTGAAA GAGATAGACC CGTCATACGG AGAAGCCCTA TATCACCATC ACAAAGGAAA
    GCTAAAATCT ATACTCAAGC TTCCAAGAGT CCTACTTCCA CAATAGATTT GCAGTCTGGG
    CCTTCCCAGT CCCCTGCTCC TGTACAAGTC TACATCAGGC GAGGACAACG CAGCAGGCCT
    GACTTAGTAG AAAAGACAAA AACTAGAGCA CCTGGGCACT ATGAATTCAC TCAAGTTCAC
    AACCTACCAG AGAGTGACTC TGAAAGCACT CAGAATGAAA AACGGGCTAA AGTGAGAACC
    AAAAAGACCT CTGATTCAAA ATATCCAATG AAGAGAATCA CCAAGCGACT TAGAAAACAC
    AGAAAGTTCT ACACAAACAG TAGAACCACA ATAGAGAGTC CTTCTAGGGA ATTAGCAGCC
    CATTTAAGAA GGAAGAGGAT TGGAGCAACT CAGACAAGTA CTGCCTCTTT AAAAAGACAA
    CCTAAGAAAC CTTCCCAACC CAAGTTCATG CAACTGCTTT TTCAGAGCCT AAAGCGGGCA
    TTCCAAACAG CACACAGAGT TATAGCTTCT GTTGGGCGGA AGCCTGTGGA CGGGACAAGG
    CCAGACAATT TGTGGGCAAG CAAAAACTAT TATCCAAAAC AAAATGCCAG GGACTATTGC
    TTACCAAGCA GTATCAAAAG AGACAAGAGG TCAGCTGACA AGCTAACGCC AGCAGGCTCA
    ACCATTAAGC AGGAGGACAT ATTGTGGGGA GGAACGGTCC AGTGCAGATC AGCTCAACAG
    CCAAGAAGAG CTTACTCTTT CCAACCCAGA CCTCTTCGAC TGCCCAAGCC CACAGATTCC
    CAAAGTGGTA TTGCTTTCCA AACTGCCTCA GTGGGGCAGC CTCTGAGAAC TGTTCAAAAG
    GACAGTAGTA GCAGATCAAA GAAAAACTTC TATAGAAATG AAACCTCCAG CCAGGAGTCT
    AAGAACTTGT CCACACCAGG AACCAGAGTT CAGGCCCGAG GAAGAATCCT ACCTGGTTCC
    CCTGTGAAGA GAACCTGGCA CCGACATCTT AAAGACAAAC TCACACACAA GGAGCATAAC
    CACCCCAGCT TCTATAGGGA GAGAACCCCA CGCGGTCCTT CTGAGAGAAC CCGTCATAAC
    CCCTCTTGGA GAAACCATCG CAGTCCCTCT GAGAGAAGCC AACGCAGTTC CTTGGAGAGA
    AGACATCACA GTCCCTCTCA GAGGAGCCAC TGCAGTCCCT CTAGGAAAAA CCATTCCAGT
    CCTTCTGAGA GAAGCTGGCG CAGTCCGTCT CAGAGAAATC ACTGCAGTCC CCCCGAGAGG
    AGCTGTCACA GTCTCTCTGA AAGGGGCCTT CACAGTCCCT CTCAGAGGAG CCATCGCGGT
    CCCTCTCAGA GAAGACATCA CAGTCCCTCA GAGAGAAGCC ATCGCAGTCC CTCAGAGAGA
    AGCCATCGCA GTTCCTCTGA GAGAAGACAT CGCAGTCCCT CCCAGAGGAG CCATCGCGGT
    CCCTCAGAGA GAAGCCATTG CAGTCCCTCT GAGAGAAGAC ATCGCAGTCC CTCTCAGAGG
    AGCCATCGTG GTCCCTCTGA GAGAAGACAT CACAGTCCCT CTAAGAGAAG CCATCGCAGT
    CCCGCTCGGA GGAGCCATCG CAGTCCCTCA GAGAGAAGCC ATCACAGTCC CTCTGAGAGA
    AGCCATCACA GTCCCTCTGA GAGAAGACAT CACAGTCCCT CTGAGAGAAG CCATTGCAGT
    CCCTCTGAGA GAAGCCATTG CAGTCCCTCT GAGAGAAGAC ATCGCAGTCC CTCTGAGAGA
    AGACATCACA GTCCCTCAGA GAAAAGCCAT CACAGTCCCT CTGAGAGAAG CCATCACAGT
    CCCTCTGAGA GAAGACGTCA CAGTCCCTTG GAGAGGAGCC GTCACAGTCT CTTGGAGAGG
    AGCCATCGCA GTCCCTCTGA GAGGAGATCT CACAGGTCCT TTGAGAGGAG CCATCGTAGG
    ATTTCTGAGA GAAGTCACAG TCCCTCAGAG AAGAGCCACC TCAGTCCCTT GGAAAGAAGC
    CGTTGCAGTC CCTCTGAGAG GAGAGGACAC AGTTCCTCTG GGAAAACCTG TCACAGTCCC
    TCTGAGAGAA GCCATCGCAG TCCCTCCGGG ATGAGGCAAG GGAGGACCTC TGAGAGGAGC
    CATCGCAGTT CCTGTGAGAG AACCCGTCAC AGTCCCTCTG AGATGAGGCC AGGGAGGCCC
    TCTGGGAGGA ACCATTGCAG TCCCTCTGAG AGGAGCCGAC GCAGTCCCCT TAAGGAGGGA
    CTCAAGTACA GTTTCCCTGG AGAGAGGCCC AGCCATAGTT TGTCTAGAGA TTTCAAGAAT
    CAAACAACTC TCCTCGGGAC CACACATAAA AATCCCAAAG CAGGGCAAGT GTGGAGGCCT
    GAAGCTACTC GATGA

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

    RefSeq NP_115642.3
    CDS52..6006
    Translation

    Target ORF information:

    RefSeq Version NM_032266.3
    Organism Homo sapiens(human)
    Definition Homo sapiens chromosome 2 open reading frame 16 (C2orf16), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_032266.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    5701
    5761
    5821
    5881
    5941
    ATGGAGCTGA CACCAGGGGC CCAACAGCAA GGTATAAATT ATCAAGAGTT GACTTCAGGA 
    TGGCAAGATG TGAAATCAAT GATGTTGGTA CCAGAGCCAA CTAGGAAGTT CCCATCAGGA
    CCACTGTTGA CTAGTGTCAG ATTTTCAAAT TTGTCTCCAG AATCACAGCA ACAGGATGTG
    AAATCTTTGG AGTTTACTGT AGAGCCAAAG TTGCAAAGCG TAAAACATGT GAAATTATCT
    TCAGTGTCTC TGCAGCAAAC TATAAAATCT GTGGAATTAG CACCAGGGTC ACTGCCTCAA
    AGAGTGAAAT ATGGGGAGCA AACTCCAAGA ACAAATTATC AAATCATGGA ATCCTCTGAA
    CTAATCCCTA GACCAGGGCA TCAGTTTGCA AAATATGCAG AGATGATCCC ACAGCCAAAG
    TATCAAATCC CTAAATCTGC AAATTTGATT TCAATACCAA TTTATCACGC CACAGAATCT
    TCAGAAATGG CACAAGGATT GGCATATAAA GGCATAGATA CTGTAGAGAA ATCTGTGGGG
    TTGACCCCAA AGCTAACAGG TAGAGCTAAG GAATCCTTAG GGATGCTGCT GCAGCCAGAT
    CTTCAGGTAC CAAAATTTGT TGATCTGACT CCAATGGTAA GGGATCAAGG CTCAAAATTC
    TTAGGATTAA CTCCAGAGAA AAGCTACCAA ATCCTAGAAA CTATGGAATT GCTCTCTCAG
    TCACGGCCCC GAGTTAAGGA TGTGGGGGAG TTATATATGA AGCCACTGCA GCAAACTGTG
    GAATATGAAG GGATTACTCC GGAACTCAAG CATTACTTTA CAGAAGCTAT GGGGTTGACC
    GCTGAGGCAA GGATACAAGC AAATGAATTC TTTGGAATGA CCCCAAAGCC AACAAGTCAA
    GCCACTGGAT TTGCAGAGAG ATCCCCAAGG CTCTGTCCTC AAAACTTAGA ATGTGTGGAG
    GTGATCTCTG AGAAAAGACT GCAAGGGGAA GAATCTGTGG TATTGATTCC AAAGTCATTA
    CATCACGTCC CAGATTCTGC TTCAGGGATG ACACCTGGGT TAGGACATCG AGTTCCTGAA
    TCTGTGGAGT TGACTTCTAA GTCAGGAGTG CAGGTAGAGA AAACTTTGCA ATTAACCCCC
    AAACCACAGC ATCATGTGGG ATCTCCAGGG ATAATATCAG GGTTAGGACA TCAAGTCCCA
    GAATCTGTAA ATCTGACCTG TAAGCAATGG CTACAAATGG AGGAATCTTT AGAGGTGCCC
    CTGAAGCAAA CAAGTCAAGT TATAGGACAT GAAGAATCTG TAGAGCTCAC CTCTGAGGCA
    CGGCAGCACA GGGAGGTATC AATGGGGCTA ACAAAGTCAA AGAATCAAAG TATGAAATCT
    CCAGGGACAA CCCCAGGACC ACTGGGTCGA ATTGTAGAAT TTATGAGGAT TAGTCCAGAG
    CCACTAGATC AAGTCACAGA ATCTGCAAGG ACACAGCTTC AAGTTGCTCA ATCTGAAGAG
    GTAATCCTCA TAGATGTCCC AAAAGTTGTT CAATCTGTGA AAGTGACCCC TGGACCACCA
    TTTCAAATTG TAAAGTCTGT GACGATACCA AGGCCAACCC CTCAAATGGT AGAATATATT
    GAGTTGACTC CAAAACTGCA ATATGTGAGA CCTTCAGAGC ACCACACAGG GCCATGTTTG
    CAAGATGTGA AATCTACAAA ATTAATCACA AAGCCAAAAC ACCAGATTTT GGAAACAGTG
    GAGTTGACAG GGTTTCAAAT TGTAAAAACT ATGTTAATCC CAGGGCCATC CCTTCAAATC
    GTAAAATCTG AGGAGTTAGC ACCAGGACCA ATTCCTCAGG TTGTAGAACC AATAGGAGTA
    GCCCTAGAAT CAGGAATTGA AGCAATAAAT TGTGTGGATT TACTTCCAAG GCCACATCTT
    CAAGAACTGA TAGTACCTGC AGAATTAACT CCAAGTCCAT GTACTCAAGT GAAGTCTGCA
    GAATTAACCT CACCGCAAAC ATCTCCATTT GAGGAACATA CAATATTGAC TCATAAACAA
    GGGCTTCAGG CTGTGAAATC TACAGTGATA AAAACAGAGC CTCCTAAAGT TATGGAAACT
    GAGGATTTGA ATCTAGGACA CGTGTGTCAG AATAGGGACT GTCAGAAGTT AACATCAGAA
    GAGTTACAAG TAGGGACTGA CTTCTCTAGG TTCCTACAAA GCTCTTCAAC CACACTCATT
    TCAAGCTCTG TCAGAACAGC ATCTGAATTA GGAGGACTTT GGGATTCTGG GATACAGGAA
    GTATCCAGAG CTTTGGATAT AAAAAACCCT GGGACAGATA TTTTGCAGCC TGAAGAGACC
    TATATAGACC CTACTATGAT ACAATCTTTA ACTTTTCCTT TGGCCCTTCA TAATCAAAGC
    TCCGATAAGA CAGCTAACAT TGTGGAAAAC CCATGTCCTG AGATTCTAGG AGTGGATGTA
    ATATCTAAAG AGACAACTAA GAGGAAGCAA ATGGAGGAGC TAGAGAACTC ACTTCAGAGA
    CATCTACCAC AAAGCTGGAG ATCACGATCT AGGACATTCC AGGCAGAATC AGGGGTTCAG
    AAAGGTCTCA TCAAGTCTTT CCCGGGCAGA CAACACAATG TCTGGGAGAG TCATGCCTGG
    AGGCAGCGAC TACCAAGAAA ATATCTCTCC ACTATGCTAA TGCTGGGGAA TATTTTAGGG
    ACCACTATGG AAAGGAAGCT TTGTTCTCAA ACATCTTTAG CAGAAAGAGC CACTGCAGAT
    ACCTGTCAAT CTATTCAGAA TTTATTTGGG ATTCCAGCTG AACTGATGGA ACCTTCCCAG
    AGCCTGCCAG AGAAGGGTCC AGTTACTATT TCTCAGCCTT CTGTGGTCAA AAACTATATT
    CAGAGACATA CTTTTTATCA TGGTCATAAG AAAAGAATGG CCTTAAGGAT ATGGACACGT
    GGCTCCACAT CTTCCATAAT ACAGCAATAC TCTGGGACTA GAGTGAGAAT AAAGAAGACA
    AACTCAACGT TCAATGGTAT ATCCCAAGAA GTCATTCAAC ATATGCCTGT CTCATGTGCA
    GGGGGCCAGC TTCCTGTCCT GGTAAAGTCA GAGTCTTCCC TCAGCATATT TTACGATAGA
    GAAGATCTTG TTCCAATGGA AGAAAGTGAG GACTCACAGA GTGATTCCCA GACAAGGATT
    TCTGAGTCCC AACACTCCCT CAAGCCAAAT TATCTTTCCC AGGCCAAGAC TGACTTCTCA
    GAACAGTTCC AGTTGCTAGA AGATCTGCAG CTAAAAATAG CAGCAAAACT CTTAAGGAGT
    CAAATACCCC CCGATGTGCC TCCACCTCTA GCTTCAGGTC TAGTCCTAAA ATACCCTATC
    TGCCTACAGT GTGGCCGATG TTCAGGACTT AATTGCCATC ATAAATTACA GACCACTTCG
    GGGCCTTATC TTCTTATCTA TCCACAGCTC CACCTTGTAC GCACTCCTGA AGGCCATGGT
    GAGGTTCGGT TGCATCTTGG CTTTAGGCTG AGAATTGGGA AAAGATCCCA AATCTCAAAG
    TATCGTGAAA GAGATAGACC CGTCATACGG AGAAGCCCTA TATCACCATC ACAAAGGAAA
    GCTAAAATCT ATACTCAAGC TTCCAAGAGT CCTACTTCCA CAATAGATTT GCAGTCTGGG
    CCTTCCCAGT CCCCTGCTCC TGTACAAGTC TACATCAGGC GAGGACAACG CAGCAGGCCT
    GACTTAGTAG AAAAGACAAA AACTAGAGCA CCTGGGCACT ATGAATTCAC TCAAGTTCAC
    AACCTACCAG AGAGTGACTC TGAAAGCACT CAGAATGAAA AACGGGCTAA AGTGAGAACC
    AAAAAGACCT CTGATTCAAA ATATCCAATG AAGAGAATCA CCAAGCGACT TAGAAAACAC
    AGAAAGTTCT ACACAAACAG TAGAACCACA ATAGAGAGTC CTTCTAGGGA ATTAGCAGCC
    CATTTAAGAA GGAAGAGGAT TGGAGCAACT CAGACAAGTA CTGCCTCTTT AAAAAGACAA
    CCTAAGAAAC CTTCCCAACC CAAGTTCATG CAACTGCTTT TTCAGAGCCT AAAGCGGGCA
    TTCCAAACAG CACACAGAGT TATAGCTTCT GTTGGGCGGA AGCCTGTGGA CGGGACAAGG
    CCAGACAATT TGTGGGCAAG CAAAAACTAT TATCCAAAAC AAAATGCCAG GGACTATTGC
    TTACCAAGCA GTATCAAAAG AGACAAGAGG TCAGCTGACA AGCTAACGCC AGCAGGCTCA
    ACCATTAAGC AGGAGGACAT ATTGTGGGGA GGAACGGTCC AGTGCAGATC AGCTCAACAG
    CCAAGAAGAG CTTACTCTTT CCAACCCAGA CCTCTTCGAC TGCCCAAGCC CACAGATTCC
    CAAAGTGGTA TTGCTTTCCA AACTGCCTCA GTGGGGCAGC CTCTGAGAAC TGTTCAAAAG
    GACAGTAGTA GCAGATCAAA GAAAAACTTC TATAGAAATG AAACCTCCAG CCAGGAGTCT
    AAGAACTTGT CCACACCAGG AACCAGAGTT CAGGCCCGAG GAAGAATCCT ACCTGGTTCC
    CCTGTGAAGA GAACCTGGCA CCGACATCTT AAAGACAAAC TCACACACAA GGAGCATAAC
    CACCCCAGCT TCTATAGGGA GAGAACCCCA CGCGGTCCTT CTGAGAGAAC CCGTCATAAC
    CCCTCTTGGA GAAACCATCG CAGTCCCTCT GAGAGAAGCC AACGCAGTTC CTTGGAGAGA
    AGACATCACA GTCCCTCTCA GAGGAGCCAC TGCAGTCCCT CTAGGAAAAA CCATTCCAGT
    CCTTCTGAGA GAAGCTGGCG CAGTCCGTCT CAGAGAAATC ACTGCAGTCC CCCCGAGAGG
    AGCTGTCACA GTCTCTCTGA AAGGGGCCTT CACAGTCCCT CTCAGAGGAG CCATCGCGGT
    CCCTCTCAGA GAAGACATCA CAGTCCCTCA GAGAGAAGCC ATCGCAGTCC CTCAGAGAGA
    AGCCATCGCA GTTCCTCTGA GAGAAGACAT CGCAGTCCCT CCCAGAGGAG CCATCGCGGT
    CCCTCAGAGA GAAGCCATTG CAGTCCCTCT GAGAGAAGAC ATCGCAGTCC CTCTCAGAGG
    AGCCATCGTG GTCCCTCTGA GAGAAGACAT CACAGTCCCT CTAAGAGAAG CCATCGCAGT
    CCCGCTCGGA GGAGCCATCG CAGTCCCTCA GAGAGAAGCC ATCACAGTCC CTCTGAGAGA
    AGCCATCACA GTCCCTCTGA GAGAAGACAT CACAGTCCCT CTGAGAGAAG CCATTGCAGT
    CCCTCTGAGA GAAGCCATTG CAGTCCCTCT GAGAGAAGAC ATCGCAGTCC CTCTGAGAGA
    AGACATCACA GTCCCTCAGA GAAAAGCCAT CACAGTCCCT CTGAGAGAAG CCATCACAGT
    CCCTCTGAGA GAAGACGTCA CAGTCCCTTG GAGAGGAGCC GTCACAGTCT CTTGGAGAGG
    AGCCATCGCA GTCCCTCTGA GAGGAGATCT CACAGGTCCT TTGAGAGGAG CCATCGTAGG
    ATTTCTGAGA GAAGTCACAG TCCCTCAGAG AAGAGCCACC TCAGTCCCTT GGAAAGAAGC
    CGTTGCAGTC CCTCTGAGAG GAGAGGACAC AGTTCCTCTG GGAAAACCTG TCACAGTCCC
    TCTGAGAGAA GCCATCGCAG TCCCTCCGGG ATGAGGCAAG GGAGGACCTC TGAGAGGAGC
    CATCGCAGTT CCTGTGAGAG AACCCGTCAC AGTCCCTCTG AGATGAGGCC AGGGAGGCCC
    TCTGGGAGGA ACCATTGCAG TCCCTCTGAG AGGAGCCGAC GCAGTCCCCT TAAGGAGGGA
    CTCAAGTACA GTTTCCCTGG AGAGAGGCCC AGCCATAGTT TGTCTAGAGA TTTCAAGAAT
    CAAACAACTC TCCTCGGGAC CACACATAAA AATCCCAAAG CAGGGCAAGT GTGGAGGCCT
    GAAGCTACTC GATGA

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

  • PubMed

    Genomic study in Mexicans identifies a new locus for triglycerides and refines European lipid loci.
    Journal of medical genetics50(5)298-308(2013 May)
    Weissglas-Volkov D,Aguilar-Salinas CA,Nikkola E,Deere KA,Cruz-Bautista I,Arellano-Campos O,Mu?oz-Hernandez LL,Gomez-Munguia L,Ordo?ez-S?nchez ML,Reddy PM,Lusis AJ,Matikainen N,Taskinen MR,Riba L,Cantor RM,Sinsheimer JS,Tusie-Luna T,Pajukanta P


    Genome-wide association study identifies novel loci associated with concentrations of four plasma phospholipid fatty acids in the de novo lipogenesis pathway: results from the Cohorts for Heart and Aging Research in Genomic Epidemiology (CHARGE) consortium.
    Circulation. Cardiovascular genetics6(2)171-83(2013 Apr)
    Wu JH,Lemaitre RN,Manichaikul A,Guan W,Tanaka T,Foy M,Kabagambe EK,Djousse L,Siscovick D,Fretts AM,Johnson C,King IB,Psaty BM,McKnight B,Rich SS,Chen YD,Nettleton JA,Tang W,Bandinelli S,Jacobs DR Jr,Browning BL,Laurie CC,Gu X,Tsai MY,Steffen LM,Ferrucci L,Fornage M,Mozaffarian D


    Genome-wide association study identifies loci influencing concentrations of liver enzymes in plasma.
    Nature genetics43(11)1131-8(2011 Oct)
    Chambers JC,Zhang W,Sehmi J,Li X,Wass MN,Van der Harst P,Holm H,Sanna S,Kavousi M,Baumeister SE,Coin LJ,Deng G,Gieger C,Heard-Costa NL,Hottenga JJ,K?hnel B,Kumar V,Lagou V,Liang L,Luan J,Vidal PM,Mateo Leach I,O'Reilly PF,Peden JF,Rahmioglu N,Soininen P,Speliotes EK,Yuan X,Thorleifsson G,Alizadeh BZ,Atwood LD,Borecki IB,Brown MJ,Charoen P,Cucca F,Das D,de Geus EJ,Dixon AL,D?ring A,Ehret G,Eyjolfsson GI,Farrall M,Forouhi NG,Friedrich N,Goessling W,Gudbjartsson DF,Harris TB,Hartikainen AL,Heath S,Hirschfield GM,Hofman A,Homuth G,Hypp?nen E,Janssen HL,Johnson T,Kangas AJ,Kema IP,K?hn JP,Lai S,Lathrop M,Lerch MM,Li Y,Liang TJ,Lin JP,Loos RJ,Martin NG,Moffatt MF,Montgomery GW,Munroe PB,Musunuru K,Nakamura Y,O'Donnell CJ,Olafsson I,Penninx BW,Pouta A,Prins BP,Prokopenko I,Puls R,Ruokonen A,Savolainen MJ,Schlessinger D,Schouten JN,Seedorf U,Sen-Chowdhry S,Siminovitch KA,Smit JH,Spector TD,Tan W,Teslovich TM,Tukiainen T,Uitterlinden AG,Van der Klauw MM,Vasan RS,Wallace C,Wallaschofski H,Wichmann HE,Willemsen G,W?rtz P,Xu C,Yerges-Armstrong LM,,,,,,,,Abecasis GR,Ahmadi KR,Boomsma DI,Caulfield M,Cookson WO,van Duijn CM,Froguel P,Matsuda K,McCarthy MI,Meisinger C,Mooser V,Pietil?inen KH,Schumann G,Snieder H,Sternberg MJ,Stolk RP,Thomas HC,Thorsteinsdottir U,Uda M,Waeber G,Wareham NJ,Waterworth DM,Watkins H,Whitfield JB,Witteman JC,Wolffenbuttel BH,Fox CS,Ala-Korpela M,Stefansson K,Vollenweider P,V?lzke H,Schadt EE,Scott J,J?rvelin MR,Elliott P,Kooner JS


    Proteomic characterization of the human sperm nucleus.
    Proteomics11(13)2714-26(2011 Jul)
    de Mateo S,Castillo J,Estanyol JM,Ballesc? JL,Oliva R


    A bivariate genome-wide approach to metabolic syndrome: STAMPEED consortium.
    Diabetes60(4)1329-39(2011 Apr)
    Kraja AT,Vaidya D,Pankow JS,Goodarzi MO,Assimes TL,Kullo IJ,Sovio U,Mathias RA,Sun YV,Franceschini N,Absher D,Li G,Zhang Q,Feitosa MF,Glazer NL,Haritunians T,Hartikainen AL,Knowles JW,North KE,Iribarren C,Kral B,Yanek L,O'Reilly PF,McCarthy MI,Jaquish C,Couper DJ,Chakravarti A,Psaty BM,Becker LC,Province MA,Boerwinkle E,Quertermous T,Palotie L,Jarvelin MR,Becker DM,Kardia SL,Rotter JI,Chen YD,Borecki IB