ANO8 cDNA ORF clone, Homo sapiens(human)

The following ANO8 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ANO8 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
OHu15595 NM_020959.3
Latest version!
Homo sapiens anoctamin 8 (ANO8), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $874.30
$1249.00
OHu88600 XM_017027048.1
Latest version!
Homo sapiens anoctamin 8 (ANO8), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $559.30
$799.00
View Old Accession Versions >>
OHu15595 NM_020959.2 Homo sapiens anoctamin 8 (ANO8), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $874.30
$1249.00
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 OHu15595
    Clone ID Related Accession (Same CDS sequence) NM_020959.2 , NM_020959.3
    Accession Version NM_020959.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3699bp)
    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 2017-10-01
    Organism Homo sapiens(human)
    Product anoctamin-8
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from AB046843.2, AC010463.6 and AI860149.1. On May 7, 2009 this sequence version replaced NM_020959.1. ##Evidence-Data-START## Transcript exon combination :: AB046843.2 [ECO:0000332] RNAseq introns :: mixed/partial sample support SAMEA1965299, SAMEA1966682 [ECO:0000350] ##Evidence-Data-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
    ATGGCCGAGG CCGCCTCCGG CGCCGGGGGC ACGTCCCTGG AGGGCGAGCG TGGCAAGAGG 
    CCCCCGCCGG AGGGCGAGCC TGCAGCCCCG GCGTCCGGAG TTCTGGATAA GCTTTTCGGA
    AAGCGGCTCC TGCAGGCTGG TCGCTACCTG GTGTCCCACA AGGCGTGGAT GAAGACGGTG
    CCTACAGAGA ACTGCGACGT GCTGATGACC TTCCCAGACA CGACCGATGA CCACACGCTG
    CTATGGCTGC TGAACCACAT CCGCGTGGGC ATTCCCGAGC TCATCGTGCA AGTCCGCCAC
    CACCGCCACA CGCGTGCCTA CGCCTTCTTT GTCACCGCCA CGTATGAGAG CCTACTCCGA
    GGGGCCGACG AGCTGGGTCT GCGCAAAGCA GTGAAGGCCG AGTTTGGCGG GGGCACCCGC
    GGCTTCTCCT GCGAGGAGGA CTTTATCTAT GAGAATGTGG AGAGCGAGCT ACGCTTCTTC
    ACCTCCCAGG AACGCCAGAG CATCATCCGC TTCTGGCTGC AGAATTTGCG TGCCAAGCAG
    GGAGAAGCAC TCCACAACGT GCGCTTCCTG GAGGACCAGC CAATCATCCC GGAGCTGGCA
    GCACGTGGGA TCATCCAGCA GGTGTTCCCT GTCCACGAGC AGCGTATTCT GAACCGCCTC
    ATGAAGTCAT GGGTGCAGGC CGTGTGTGAA AACCAGCCTC TAGATGACAT CTGTGATTAC
    TTTGGTGTGA AAATTGCCAT GTACTTCGCC TGGCTGGGCT TCTACACGTC GGCTATGGTA
    TACCCAGCTG TCTTCGGGTC TGTCCTGTAC ACATTCACAG AGGCTGATCA GACAAGCCGG
    GATGTTTCCT GCGTGGTCTT TGCCCTCTTC AACGTGATCT GGTCGACGCT GTTCCTAGAG
    GAATGGAAGC GGAGAGGGGC TGAGCTGGCA TATAAGTGGG GGACGCTGGA CTCACCTGGG
    GAAGCCGTGG AGGAGCCACG CCCCCAGTTC AGGGGCGTGC GACGTATCAG CCCCATCACG
    CGGGCCGAGG AGTTCTACTA CCCGCCCTGG AAGCGGCTGC TCTTCCAGCT GCTTGTGAGC
    CTCCCCCTGT GCCTGGCGTG CCTCGTCTGT GTCTTCTTGC TCATGCTTGG CTGCTTCCAG
    CTGCAGGAGC TGGTGCTGAG CGTGAAGGGG TTGCCCCGTC TCGCCCGATT CCTGCCTAAG
    GTCATGCTGG CCCTGCTTGT CAGTGTGAGT GCCGAGGGCT ACAAGAAGCT AGCCATCTGG
    CTCAATGACA TGGAAAATTA CCGGCTGGAG AGCGCCTATG AGAAGCACCT CATCATCAAA
    GTTGTCCTGT TCCAGTTTGT CAACTCGTAC CTGAGCCTCT TCTACATCGG TTTCTACCTC
    AAGGACATGG AGCGCTTGAA AGAGATGCTG GCCACGCTGC TGATCACCCG CCAGTTCCTC
    CAGAACGTGC GCGAGGTCCT GCAGCCGCAC CTGTACCGGC GCCTGGGCCG CGGCGAGCTG
    GGCCTGCGGG CCGTCTGGGA GCTGGCCCGA GCCCTGCTTG GCCTCCTGAG CCTCCGGCGC
    CCTGCGCCCC GCCGCCTCGA ACCCCAGGCG GATGAGGGCG GGGGCGGCGG CAGCGGGGGC
    GGGGGCCGCA GGTGCCTCAG CGGGGGCTGC GGGGCGCCGG AGGAGGAGGA GGAGGCGGCG
    CTGGTGGAGC GGCGGCGGGC GGGGGAAGGC GGGGAGGAGG GGGACGGGCC TCCAGGGGGC
    AAGGAGGAGG ACGAGGACGA CGAGGAGGAG GAGGACGAGG AGGAAGAGGA GGACGAGGAG
    GAGGGCGAGG AAGGGGGCCT CCTGGACTGC GGGCTCCGGC TGAAGAAGGT CAGCTTCGCT
    GAGCGCGGCG CGGGGCGGCG TCGGCCCGGC CCAAGCCCGG AGGCCCTCCT GGAGGAAGGG
    AGCCCCACTA TGGTGGAGAA GGGGCTGGAG CCGGGAGTGT TCACCCTGGC CGAGGAGGAC
    GACGAGGCGG AGGGGGCTCC CGGCAGCCCT GAACGGGAGC CCCCGGCCAT CTTGTTCCGC
    CGGGCCGGGG GCGAGGGCCG AGACCAGGGG CCCGACGGGG GCCCGGACCC GGAACCCGGC
    TCCAACAGCG ATTCGACCCG TAGGCAGAGA CGGCAGAACC GGTCGTCTTG GATTGACCCG
    CCGGAGGAGG AACACTCGCC CCAGCTCACC CAGGCAGAGC TGGAGAGCTG TATGAAGAAG
    TACGAGGACA CGTTCCAGGA CTACCAGGAG ATGTTCGTGC AGTTCGGCTA CGTTGTGCTC
    TTCTCGTCCG CCTTCCCCCT GGCGGCGCTG TGCGCCCTGG TCAACAACCT CATTGAGATC
    CGCAGCGACG CCTTCAAGCT GTGCACCGGG CTGCAGCGGC CCTTCGGCCA GCGCGTGGAA
    AGCATCGGCC AGTGGCAGAA GGTGATGGAG GCCATGGGTG TCCTAGCGAT TGTGGTCAAC
    TGCTACTTAA TCGGCCAGTG CGGGCAGCTG CAGCGCCTCT TCCCCTGGCT GAGCCCGGAG
    GCAGCCATCG TGTCGGTGGT AGTGCTCGAG CACTTCGCTC TGCTCCTCAA GTACCTCATC
    CACGTGGCCA TCCCCGATAT CCCGGGCTGG GTGGCCGAGG AAATGGCCAA GCTGGAGTAC
    CAGCGCCGCG AGGCCTTTAA GAGACACGAG CGCCAGGCCC AGCATCGCTA CCAGCAGCAG
    CAGCGCAGGC GGCGGGAGGA GGAGGAGCGA CAGCGCCATG CAGAGCACCA TGCCCGGCGG
    GAGCATGATT CTGGTGGCCG AGAGGAGGCG AGGGCCGAGG GCTCTGGGCT GGACCCTGCC
    ACCTCCTCCG AGAAGGCCTC TGCCAAGGCC AAGGGCAGCA CTGCGGGTGG CCACGGGCCT
    GAACGGCCCA AGCGCCCAGG GTCCCTGCTG GCACCCAACA ACGTCATGAA GTTGAAGCAG
    ATCATCCCAC TGCAGGGCAA ATTCCTCTCG TCAGGGGCCA CATCCTCACT GGCTGCTGCA
    GGGGCCGGAG CCACCACCCG GCCTCCCCCT GCCCAGTCAC CCACAGGCAG CGACACCCGC
    CTGCCTGCCT TCCTCAGCTT CAAGTTCCTC AAGTCACCCG AGACCCGGCG GGACTCTGAG
    CGCAGCCACT CACCGCCCAA AGCCTTCCAT GCTGGCAAGC TCTTCCCCTT TGGTGGCACC
    CGGGCTGAGC CTGGGTCCAA CGGGGCGGGC GGGCAGGCCC GGCCAGATGG GACCCCCAGC
    AGTGGCAGCA GCCGGGTTCA GAGGAGTGGG CCGGTGGACG AGGCCCTGGC TGAGGAGCTG
    GAAGCCCCCC GGCCCGAAGA GGAAGGCTCA GGGACAGCGC TGGCCCCCGT GGGCGCCCCT
    GCCCTCCGCA CCCGCCGCAG CCGGAGCCCC GCGCCGCCGC CGCCAATGCC GCTGCCCCGG
    CCCCCGACAC CGCCCGCAGG CTGCTGGCAG TGGGACGGGC CCTGGGGCTG CGGGGGCGAG
    GGTGCCGCCC CCCGCCAGGC CCTGGCCGCT GCCGAGTGCC CACCCTGTGC CATGGCCGGG
    CCCCCACCCG CCCCCCAGCC CCTGCCGGGA GACGCCAGCT TTTACAGCCT CCCGCCCCCA
    CCGCTACCGC CCACCTCGGA TCCCCTCGAG ACCCCAGCGC CCTCCCCTAG CCCCAGCCCC
    AGCCCCCAGG CCGTGTGCTG GCCCAGCGGC TGGCATTAG

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

    RefSeq NP_066010.1
    CDS160..3858
    Translation

    Target ORF information:

    RefSeq Version NM_020959.2
    Organism Homo sapiens(human)
    Definition Homo sapiens anoctamin 8 (ANO8), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_020959.2

    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
    ATGGCCGAGG CCGCCTCCGG CGCCGGGGGC ACGTCCCTGG AGGGCGAGCG TGGCAAGAGG 
    CCCCCGCCGG AGGGCGAGCC TGCAGCCCCG GCGTCCGGAG TTCTGGATAA GCTTTTCGGA
    AAGCGGCTCC TGCAGGCTGG TCGCTACCTG GTGTCCCACA AGGCGTGGAT GAAGACGGTG
    CCTACAGAGA ACTGCGACGT GCTGATGACC TTCCCAGACA CGACCGATGA CCACACGCTG
    CTATGGCTGC TGAACCACAT CCGCGTGGGC ATTCCCGAGC TCATCGTGCA AGTCCGCCAC
    CACCGCCACA CGCGTGCCTA CGCCTTCTTT GTCACCGCCA CGTATGAGAG CCTACTCCGA
    GGGGCCGACG AGCTGGGTCT GCGCAAAGCA GTGAAGGCCG AGTTTGGCGG GGGCACCCGC
    GGCTTCTCCT GCGAGGAGGA CTTTATCTAT GAGAATGTGG AGAGCGAGCT ACGCTTCTTC
    ACCTCCCAGG AACGCCAGAG CATCATCCGC TTCTGGCTGC AGAATTTGCG TGCCAAGCAG
    GGAGAAGCAC TCCACAACGT GCGCTTCCTG GAGGACCAGC CAATCATCCC GGAGCTGGCA
    GCACGTGGGA TCATCCAGCA GGTGTTCCCT GTCCACGAGC AGCGTATTCT GAACCGCCTC
    ATGAAGTCAT GGGTGCAGGC CGTGTGTGAA AACCAGCCTC TAGATGACAT CTGTGATTAC
    TTTGGTGTGA AAATTGCCAT GTACTTCGCC TGGCTGGGCT TCTACACGTC GGCTATGGTA
    TACCCAGCTG TCTTCGGGTC TGTCCTGTAC ACATTCACAG AGGCTGATCA GACAAGCCGG
    GATGTTTCCT GCGTGGTCTT TGCCCTCTTC AACGTGATCT GGTCGACGCT GTTCCTAGAG
    GAATGGAAGC GGAGAGGGGC TGAGCTGGCA TATAAGTGGG GGACGCTGGA CTCACCTGGG
    GAAGCCGTGG AGGAGCCACG CCCCCAGTTC AGGGGCGTGC GACGTATCAG CCCCATCACG
    CGGGCCGAGG AGTTCTACTA CCCGCCCTGG AAGCGGCTGC TCTTCCAGCT GCTTGTGAGC
    CTCCCCCTGT GCCTGGCGTG CCTCGTCTGT GTCTTCTTGC TCATGCTTGG CTGCTTCCAG
    CTGCAGGAGC TGGTGCTGAG CGTGAAGGGG TTGCCCCGTC TCGCCCGATT CCTGCCTAAG
    GTCATGCTGG CCCTGCTTGT CAGTGTGAGT GCCGAGGGCT ACAAGAAGCT AGCCATCTGG
    CTCAATGACA TGGAAAATTA CCGGCTGGAG AGCGCCTATG AGAAGCACCT CATCATCAAA
    GTTGTCCTGT TCCAGTTTGT CAACTCGTAC CTGAGCCTCT TCTACATCGG TTTCTACCTC
    AAGGACATGG AGCGCTTGAA AGAGATGCTG GCCACGCTGC TGATCACCCG CCAGTTCCTC
    CAGAACGTGC GCGAGGTCCT GCAGCCGCAC CTGTACCGGC GCCTGGGCCG CGGCGAGCTG
    GGCCTGCGGG CCGTCTGGGA GCTGGCCCGA GCCCTGCTTG GCCTCCTGAG CCTCCGGCGC
    CCTGCGCCCC GCCGCCTCGA ACCCCAGGCG GATGAGGGCG GGGGCGGCGG CAGCGGGGGC
    GGGGGCCGCA GGTGCCTCAG CGGGGGCTGC GGGGCGCCGG AGGAGGAGGA GGAGGCGGCG
    CTGGTGGAGC GGCGGCGGGC GGGGGAAGGC GGGGAGGAGG GGGACGGGCC TCCAGGGGGC
    AAGGAGGAGG ACGAGGACGA CGAGGAGGAG GAGGACGAGG AGGAAGAGGA GGACGAGGAG
    GAGGGCGAGG AAGGGGGCCT CCTGGACTGC GGGCTCCGGC TGAAGAAGGT CAGCTTCGCT
    GAGCGCGGCG CGGGGCGGCG TCGGCCCGGC CCAAGCCCGG AGGCCCTCCT GGAGGAAGGG
    AGCCCCACTA TGGTGGAGAA GGGGCTGGAG CCGGGAGTGT TCACCCTGGC CGAGGAGGAC
    GACGAGGCGG AGGGGGCTCC CGGCAGCCCT GAACGGGAGC CCCCGGCCAT CTTGTTCCGC
    CGGGCCGGGG GCGAGGGCCG AGACCAGGGG CCCGACGGGG GCCCGGACCC GGAACCCGGC
    TCCAACAGCG ATTCGACCCG TAGGCAGAGA CGGCAGAACC GGTCGTCTTG GATTGACCCG
    CCGGAGGAGG AACACTCGCC CCAGCTCACC CAGGCAGAGC TGGAGAGCTG TATGAAGAAG
    TACGAGGACA CGTTCCAGGA CTACCAGGAG ATGTTCGTGC AGTTCGGCTA CGTTGTGCTC
    TTCTCGTCCG CCTTCCCCCT GGCGGCGCTG TGCGCCCTGG TCAACAACCT CATTGAGATC
    CGCAGCGACG CCTTCAAGCT GTGCACCGGG CTGCAGCGGC CCTTCGGCCA GCGCGTGGAA
    AGCATCGGCC AGTGGCAGAA GGTGATGGAG GCCATGGGTG TCCTAGCGAT TGTGGTCAAC
    TGCTACTTAA TCGGCCAGTG CGGGCAGCTG CAGCGCCTCT TCCCCTGGCT GAGCCCGGAG
    GCAGCCATCG TGTCGGTGGT AGTGCTCGAG CACTTCGCTC TGCTCCTCAA GTACCTCATC
    CACGTGGCCA TCCCCGATAT CCCGGGCTGG GTGGCCGAGG AAATGGCCAA GCTGGAGTAC
    CAGCGCCGCG AGGCCTTTAA GAGACACGAG CGCCAGGCCC AGCATCGCTA CCAGCAGCAG
    CAGCGCAGGC GGCGGGAGGA GGAGGAGCGA CAGCGCCATG CAGAGCACCA TGCCCGGCGG
    GAGCATGATT CTGGTGGCCG AGAGGAGGCG AGGGCCGAGG GCTCTGGGCT GGACCCTGCC
    ACCTCCTCCG AGAAGGCCTC TGCCAAGGCC AAGGGCAGCA CTGCGGGTGG CCACGGGCCT
    GAACGGCCCA AGCGCCCAGG GTCCCTGCTG GCACCCAACA ACGTCATGAA GTTGAAGCAG
    ATCATCCCAC TGCAGGGCAA ATTCCTCTCG TCAGGGGCCA CATCCTCACT GGCTGCTGCA
    GGGGCCGGAG CCACCACCCG GCCTCCCCCT GCCCAGTCAC CCACAGGCAG CGACACCCGC
    CTGCCTGCCT TCCTCAGCTT CAAGTTCCTC AAGTCACCCG AGACCCGGCG GGACTCTGAG
    CGCAGCCACT CACCGCCCAA AGCCTTCCAT GCTGGCAAGC TCTTCCCCTT TGGTGGCACC
    CGGGCTGAGC CTGGGTCCAA CGGGGCGGGC GGGCAGGCCC GGCCAGATGG GACCCCCAGC
    AGTGGCAGCA GCCGGGTTCA GAGGAGTGGG CCGGTGGACG AGGCCCTGGC TGAGGAGCTG
    GAAGCCCCCC GGCCCGAAGA GGAAGGCTCA GGGACAGCGC TGGCCCCCGT GGGCGCCCCT
    GCCCTCCGCA CCCGCCGCAG CCGGAGCCCC GCGCCGCCGC CGCCAATGCC GCTGCCCCGG
    CCCCCGACAC CGCCCGCAGG CTGCTGGCAG TGGGACGGGC CCTGGGGCTG CGGGGGCGAG
    GGTGCCGCCC CCCGCCAGGC CCTGGCCGCT GCCGAGTGCC CACCCTGTGC CATGGCCGGG
    CCCCCACCCG CCCCCCAGCC CCTGCCGGGA GACGCCAGCT TTTACAGCCT CCCGCCCCCA
    CCGCTACCGC CCACCTCGGA TCCCCTCGAG ACCCCAGCGC CCTCCCCTAG CCCCAGCCCC
    AGCCCCCAGG CCGTGTGCTG GCCCAGCGGC TGGCATTAG

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

    CloneID OHu15595
    Clone ID Related Accession (Same CDS sequence) NM_020959.2 , NM_020959.3
    Accession Version NM_020959.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3699bp)
    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 2019-08-05
    Organism Homo sapiens(human)
    Product anoctamin-8
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from AC010463.6, AB046843.2 and AI860149.1. On Nov 23, 2018 this sequence version replaced NM_020959.2. ##Evidence-Data-START## Transcript exon combination :: AB046843.2 [ECO:0000332] RNAseq introns :: mixed/partial sample support SAMEA1965299, SAMEA1966682 [ECO:0000350] ##Evidence-Data-END## ##RefSeq-Attributes-START## MANE Ensembl match :: ENST00000159087.7/ ENSP00000159087.4 RefSeq Select criteria :: based on conservation, longest protein ##RefSeq-Attributes-END## COMPLETENESS: full length.

    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
    ATGGCCGAGG CCGCCTCCGG CGCCGGGGGC ACGTCCCTGG AGGGCGAGCG TGGCAAGAGG 
    CCCCCGCCGG AGGGCGAGCC TGCAGCCCCG GCGTCCGGAG TTCTGGATAA GCTTTTCGGA
    AAGCGGCTCC TGCAGGCTGG TCGCTACCTG GTGTCCCACA AGGCGTGGAT GAAGACGGTG
    CCTACAGAGA ACTGCGACGT GCTGATGACC TTCCCAGACA CGACCGATGA CCACACGCTG
    CTATGGCTGC TGAACCACAT CCGCGTGGGC ATTCCCGAGC TCATCGTGCA AGTCCGCCAC
    CACCGCCACA CGCGTGCCTA CGCCTTCTTT GTCACCGCCA CGTATGAGAG CCTACTCCGA
    GGGGCCGACG AGCTGGGTCT GCGCAAAGCA GTGAAGGCCG AGTTTGGCGG GGGCACCCGC
    GGCTTCTCCT GCGAGGAGGA CTTTATCTAT GAGAATGTGG AGAGCGAGCT ACGCTTCTTC
    ACCTCCCAGG AACGCCAGAG CATCATCCGC TTCTGGCTGC AGAATTTGCG TGCCAAGCAG
    GGAGAAGCAC TCCACAACGT GCGCTTCCTG GAGGACCAGC CAATCATCCC GGAGCTGGCA
    GCACGTGGGA TCATCCAGCA GGTGTTCCCT GTCCACGAGC AGCGTATTCT GAACCGCCTC
    ATGAAGTCAT GGGTGCAGGC CGTGTGTGAA AACCAGCCTC TAGATGACAT CTGTGATTAC
    TTTGGTGTGA AAATTGCCAT GTACTTCGCC TGGCTGGGCT TCTACACGTC GGCTATGGTA
    TACCCAGCTG TCTTCGGGTC TGTCCTGTAC ACATTCACAG AGGCTGATCA GACAAGCCGG
    GATGTTTCCT GCGTGGTCTT TGCCCTCTTC AACGTGATCT GGTCGACGCT GTTCCTAGAG
    GAATGGAAGC GGAGAGGGGC TGAGCTGGCA TATAAGTGGG GGACGCTGGA CTCACCTGGG
    GAAGCCGTGG AGGAGCCACG CCCCCAGTTC AGGGGCGTGC GACGTATCAG CCCCATCACG
    CGGGCCGAGG AGTTCTACTA CCCGCCCTGG AAGCGGCTGC TCTTCCAGCT GCTTGTGAGC
    CTCCCCCTGT GCCTGGCGTG CCTCGTCTGT GTCTTCTTGC TCATGCTTGG CTGCTTCCAG
    CTGCAGGAGC TGGTGCTGAG CGTGAAGGGG TTGCCCCGTC TCGCCCGATT CCTGCCTAAG
    GTCATGCTGG CCCTGCTTGT CAGTGTGAGT GCCGAGGGCT ACAAGAAGCT AGCCATCTGG
    CTCAATGACA TGGAAAATTA CCGGCTGGAG AGCGCCTATG AGAAGCACCT CATCATCAAA
    GTTGTCCTGT TCCAGTTTGT CAACTCGTAC CTGAGCCTCT TCTACATCGG TTTCTACCTC
    AAGGACATGG AGCGCTTGAA AGAGATGCTG GCCACGCTGC TGATCACCCG CCAGTTCCTC
    CAGAACGTGC GCGAGGTCCT GCAGCCGCAC CTGTACCGGC GCCTGGGCCG CGGCGAGCTG
    GGCCTGCGGG CCGTCTGGGA GCTGGCCCGA GCCCTGCTTG GCCTCCTGAG CCTCCGGCGC
    CCTGCGCCCC GCCGCCTCGA ACCCCAGGCG GATGAGGGCG GGGGCGGCGG CAGCGGGGGC
    GGGGGCCGCA GGTGCCTCAG CGGGGGCTGC GGGGCGCCGG AGGAGGAGGA GGAGGCGGCG
    CTGGTGGAGC GGCGGCGGGC GGGGGAAGGC GGGGAGGAGG GGGACGGGCC TCCAGGGGGC
    AAGGAGGAGG ACGAGGACGA CGAGGAGGAG GAGGACGAGG AGGAAGAGGA GGACGAGGAG
    GAGGGCGAGG AAGGGGGCCT CCTGGACTGC GGGCTCCGGC TGAAGAAGGT CAGCTTCGCT
    GAGCGCGGCG CGGGGCGGCG TCGGCCCGGC CCAAGCCCGG AGGCCCTCCT GGAGGAAGGG
    AGCCCCACTA TGGTGGAGAA GGGGCTGGAG CCGGGAGTGT TCACCCTGGC CGAGGAGGAC
    GACGAGGCGG AGGGGGCTCC CGGCAGCCCT GAACGGGAGC CCCCGGCCAT CTTGTTCCGC
    CGGGCCGGGG GCGAGGGCCG AGACCAGGGG CCCGACGGGG GCCCGGACCC GGAACCCGGC
    TCCAACAGCG ATTCGACCCG TAGGCAGAGA CGGCAGAACC GGTCGTCTTG GATTGACCCG
    CCGGAGGAGG AACACTCGCC CCAGCTCACC CAGGCAGAGC TGGAGAGCTG TATGAAGAAG
    TACGAGGACA CGTTCCAGGA CTACCAGGAG ATGTTCGTGC AGTTCGGCTA CGTTGTGCTC
    TTCTCGTCCG CCTTCCCCCT GGCGGCGCTG TGCGCCCTGG TCAACAACCT CATTGAGATC
    CGCAGCGACG CCTTCAAGCT GTGCACCGGG CTGCAGCGGC CCTTCGGCCA GCGCGTGGAA
    AGCATCGGCC AGTGGCAGAA GGTGATGGAG GCCATGGGTG TCCTAGCGAT TGTGGTCAAC
    TGCTACTTAA TCGGCCAGTG CGGGCAGCTG CAGCGCCTCT TCCCCTGGCT GAGCCCGGAG
    GCAGCCATCG TGTCGGTGGT AGTGCTCGAG CACTTCGCTC TGCTCCTCAA GTACCTCATC
    CACGTGGCCA TCCCCGATAT CCCGGGCTGG GTGGCCGAGG AAATGGCCAA GCTGGAGTAC
    CAGCGCCGCG AGGCCTTTAA GAGACACGAG CGCCAGGCCC AGCATCGCTA CCAGCAGCAG
    CAGCGCAGGC GGCGGGAGGA GGAGGAGCGA CAGCGCCATG CAGAGCACCA TGCCCGGCGG
    GAGCATGATT CTGGTGGCCG AGAGGAGGCG AGGGCCGAGG GCTCTGGGCT GGACCCTGCC
    ACCTCCTCCG AGAAGGCCTC TGCCAAGGCC AAGGGCAGCA CTGCGGGTGG CCACGGGCCT
    GAACGGCCCA AGCGCCCAGG GTCCCTGCTG GCACCCAACA ACGTCATGAA GTTGAAGCAG
    ATCATCCCAC TGCAGGGCAA ATTCCTCTCG TCAGGGGCCA CATCCTCACT GGCTGCTGCA
    GGGGCCGGAG CCACCACCCG GCCTCCCCCT GCCCAGTCAC CCACAGGCAG CGACACCCGC
    CTGCCTGCCT TCCTCAGCTT CAAGTTCCTC AAGTCACCCG AGACCCGGCG GGACTCTGAG
    CGCAGCCACT CACCGCCCAA AGCCTTCCAT GCTGGCAAGC TCTTCCCCTT TGGTGGCACC
    CGGGCTGAGC CTGGGTCCAA CGGGGCGGGC GGGCAGGCCC GGCCAGATGG GACCCCCAGC
    AGTGGCAGCA GCCGGGTTCA GAGGAGTGGG CCGGTGGACG AGGCCCTGGC TGAGGAGCTG
    GAAGCCCCCC GGCCCGAAGA GGAAGGCTCA GGGACAGCGC TGGCCCCCGT GGGCGCCCCT
    GCCCTCCGCA CCCGCCGCAG CCGGAGCCCC GCGCCGCCGC CGCCAATGCC GCTGCCCCGG
    CCCCCGACAC CGCCCGCAGG CTGCTGGCAG TGGGACGGGC CCTGGGGCTG CGGGGGCGAG
    GGTGCCGCCC CCCGCCAGGC CCTGGCCGCT GCCGAGTGCC CACCCTGTGC CATGGCCGGG
    CCCCCACCCG CCCCCCAGCC CCTGCCGGGA GACGCCAGCT TTTACAGCCT CCCGCCCCCA
    CCGCTACCGC CCACCTCGGA TCCCCTCGAG ACCCCAGCGC CCTCCCCTAG CCCCAGCCCC
    AGCCCCCAGG CCGTGTGCTG GCCCAGCGGC TGGCATTAG

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

    RefSeq NP_066010.1
    CDS186..3884
    Translation

    Target ORF information:

    RefSeq Version NM_020959.3
    Organism Homo sapiens(human)
    Definition Homo sapiens anoctamin 8 (ANO8), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_020959.3

    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
    ATGGCCGAGG CCGCCTCCGG CGCCGGGGGC ACGTCCCTGG AGGGCGAGCG TGGCAAGAGG 
    CCCCCGCCGG AGGGCGAGCC TGCAGCCCCG GCGTCCGGAG TTCTGGATAA GCTTTTCGGA
    AAGCGGCTCC TGCAGGCTGG TCGCTACCTG GTGTCCCACA AGGCGTGGAT GAAGACGGTG
    CCTACAGAGA ACTGCGACGT GCTGATGACC TTCCCAGACA CGACCGATGA CCACACGCTG
    CTATGGCTGC TGAACCACAT CCGCGTGGGC ATTCCCGAGC TCATCGTGCA AGTCCGCCAC
    CACCGCCACA CGCGTGCCTA CGCCTTCTTT GTCACCGCCA CGTATGAGAG CCTACTCCGA
    GGGGCCGACG AGCTGGGTCT GCGCAAAGCA GTGAAGGCCG AGTTTGGCGG GGGCACCCGC
    GGCTTCTCCT GCGAGGAGGA CTTTATCTAT GAGAATGTGG AGAGCGAGCT ACGCTTCTTC
    ACCTCCCAGG AACGCCAGAG CATCATCCGC TTCTGGCTGC AGAATTTGCG TGCCAAGCAG
    GGAGAAGCAC TCCACAACGT GCGCTTCCTG GAGGACCAGC CAATCATCCC GGAGCTGGCA
    GCACGTGGGA TCATCCAGCA GGTGTTCCCT GTCCACGAGC AGCGTATTCT GAACCGCCTC
    ATGAAGTCAT GGGTGCAGGC CGTGTGTGAA AACCAGCCTC TAGATGACAT CTGTGATTAC
    TTTGGTGTGA AAATTGCCAT GTACTTCGCC TGGCTGGGCT TCTACACGTC GGCTATGGTA
    TACCCAGCTG TCTTCGGGTC TGTCCTGTAC ACATTCACAG AGGCTGATCA GACAAGCCGG
    GATGTTTCCT GCGTGGTCTT TGCCCTCTTC AACGTGATCT GGTCGACGCT GTTCCTAGAG
    GAATGGAAGC GGAGAGGGGC TGAGCTGGCA TATAAGTGGG GGACGCTGGA CTCACCTGGG
    GAAGCCGTGG AGGAGCCACG CCCCCAGTTC AGGGGCGTGC GACGTATCAG CCCCATCACG
    CGGGCCGAGG AGTTCTACTA CCCGCCCTGG AAGCGGCTGC TCTTCCAGCT GCTTGTGAGC
    CTCCCCCTGT GCCTGGCGTG CCTCGTCTGT GTCTTCTTGC TCATGCTTGG CTGCTTCCAG
    CTGCAGGAGC TGGTGCTGAG CGTGAAGGGG TTGCCCCGTC TCGCCCGATT CCTGCCTAAG
    GTCATGCTGG CCCTGCTTGT CAGTGTGAGT GCCGAGGGCT ACAAGAAGCT AGCCATCTGG
    CTCAATGACA TGGAAAATTA CCGGCTGGAG AGCGCCTATG AGAAGCACCT CATCATCAAA
    GTTGTCCTGT TCCAGTTTGT CAACTCGTAC CTGAGCCTCT TCTACATCGG TTTCTACCTC
    AAGGACATGG AGCGCTTGAA AGAGATGCTG GCCACGCTGC TGATCACCCG CCAGTTCCTC
    CAGAACGTGC GCGAGGTCCT GCAGCCGCAC CTGTACCGGC GCCTGGGCCG CGGCGAGCTG
    GGCCTGCGGG CCGTCTGGGA GCTGGCCCGA GCCCTGCTTG GCCTCCTGAG CCTCCGGCGC
    CCTGCGCCCC GCCGCCTCGA ACCCCAGGCG GATGAGGGCG GGGGCGGCGG CAGCGGGGGC
    GGGGGCCGCA GGTGCCTCAG CGGGGGCTGC GGGGCGCCGG AGGAGGAGGA GGAGGCGGCG
    CTGGTGGAGC GGCGGCGGGC GGGGGAAGGC GGGGAGGAGG GGGACGGGCC TCCAGGGGGC
    AAGGAGGAGG ACGAGGACGA CGAGGAGGAG GAGGACGAGG AGGAAGAGGA GGACGAGGAG
    GAGGGCGAGG AAGGGGGCCT CCTGGACTGC GGGCTCCGGC TGAAGAAGGT CAGCTTCGCT
    GAGCGCGGCG CGGGGCGGCG TCGGCCCGGC CCAAGCCCGG AGGCCCTCCT GGAGGAAGGG
    AGCCCCACTA TGGTGGAGAA GGGGCTGGAG CCGGGAGTGT TCACCCTGGC CGAGGAGGAC
    GACGAGGCGG AGGGGGCTCC CGGCAGCCCT GAACGGGAGC CCCCGGCCAT CTTGTTCCGC
    CGGGCCGGGG GCGAGGGCCG AGACCAGGGG CCCGACGGGG GCCCGGACCC GGAACCCGGC
    TCCAACAGCG ATTCGACCCG TAGGCAGAGA CGGCAGAACC GGTCGTCTTG GATTGACCCG
    CCGGAGGAGG AACACTCGCC CCAGCTCACC CAGGCAGAGC TGGAGAGCTG TATGAAGAAG
    TACGAGGACA CGTTCCAGGA CTACCAGGAG ATGTTCGTGC AGTTCGGCTA CGTTGTGCTC
    TTCTCGTCCG CCTTCCCCCT GGCGGCGCTG TGCGCCCTGG TCAACAACCT CATTGAGATC
    CGCAGCGACG CCTTCAAGCT GTGCACCGGG CTGCAGCGGC CCTTCGGCCA GCGCGTGGAA
    AGCATCGGCC AGTGGCAGAA GGTGATGGAG GCCATGGGTG TCCTAGCGAT TGTGGTCAAC
    TGCTACTTAA TCGGCCAGTG CGGGCAGCTG CAGCGCCTCT TCCCCTGGCT GAGCCCGGAG
    GCAGCCATCG TGTCGGTGGT AGTGCTCGAG CACTTCGCTC TGCTCCTCAA GTACCTCATC
    CACGTGGCCA TCCCCGATAT CCCGGGCTGG GTGGCCGAGG AAATGGCCAA GCTGGAGTAC
    CAGCGCCGCG AGGCCTTTAA GAGACACGAG CGCCAGGCCC AGCATCGCTA CCAGCAGCAG
    CAGCGCAGGC GGCGGGAGGA GGAGGAGCGA CAGCGCCATG CAGAGCACCA TGCCCGGCGG
    GAGCATGATT CTGGTGGCCG AGAGGAGGCG AGGGCCGAGG GCTCTGGGCT GGACCCTGCC
    ACCTCCTCCG AGAAGGCCTC TGCCAAGGCC AAGGGCAGCA CTGCGGGTGG CCACGGGCCT
    GAACGGCCCA AGCGCCCAGG GTCCCTGCTG GCACCCAACA ACGTCATGAA GTTGAAGCAG
    ATCATCCCAC TGCAGGGCAA ATTCCTCTCG TCAGGGGCCA CATCCTCACT GGCTGCTGCA
    GGGGCCGGAG CCACCACCCG GCCTCCCCCT GCCCAGTCAC CCACAGGCAG CGACACCCGC
    CTGCCTGCCT TCCTCAGCTT CAAGTTCCTC AAGTCACCCG AGACCCGGCG GGACTCTGAG
    CGCAGCCACT CACCGCCCAA AGCCTTCCAT GCTGGCAAGC TCTTCCCCTT TGGTGGCACC
    CGGGCTGAGC CTGGGTCCAA CGGGGCGGGC GGGCAGGCCC GGCCAGATGG GACCCCCAGC
    AGTGGCAGCA GCCGGGTTCA GAGGAGTGGG CCGGTGGACG AGGCCCTGGC TGAGGAGCTG
    GAAGCCCCCC GGCCCGAAGA GGAAGGCTCA GGGACAGCGC TGGCCCCCGT GGGCGCCCCT
    GCCCTCCGCA CCCGCCGCAG CCGGAGCCCC GCGCCGCCGC CGCCAATGCC GCTGCCCCGG
    CCCCCGACAC CGCCCGCAGG CTGCTGGCAG TGGGACGGGC CCTGGGGCTG CGGGGGCGAG
    GGTGCCGCCC CCCGCCAGGC CCTGGCCGCT GCCGAGTGCC CACCCTGTGC CATGGCCGGG
    CCCCCACCCG CCCCCCAGCC CCTGCCGGGA GACGCCAGCT TTTACAGCCT CCCGCCCCCA
    CCGCTACCGC CCACCTCGGA TCCCCTCGAG ACCCCAGCGC CCTCCCCTAG CCCCAGCCCC
    AGCCCCCAGG CCGTGTGCTG GCCCAGCGGC TGGCATTAG

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

    CloneID OHu88600
    Clone ID Related Accession (Same CDS sequence) XM_017027048.1
    Accession Version XM_017027048.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3345bp)
    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 2019-12-05
    Organism Homo sapiens(human)
    Product anoctamin-8 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_000019.10) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Updated annotation Annotation Name :: Homo sapiens Updated Annotation Release 109.20191205 Annotation Version :: 109.20191205 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.3 Annotation Method :: Best-placed RefSeq; propagated RefSeq model 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
    ATGGCCGAGG CCGCCTCCGG CGCCGGGGGC ACGTCCCTGG AGGGCGAGCG TGGCAAGAGG 
    CCCCCGCCGG AGGGCGAGCC TGCAGCCCCG GCGTCCGGAG TTCTGGATAA GCTTTTCGGA
    AAGCGGCTCC TGCAGGCTGG TCGCTACCTG GTGTCCCACA AGGCGTGGAT GAAGACGGTG
    CCTACAGAGA ACTGCGACGT GCTGATGACC TTCCCAGACA CGACCGATGA CCACACGCTG
    CTATGGCTGC TGAACCACAT CCGCGTGGGC ATTCCCGAGC TCATCGTGCA AGTCCGCCAC
    CACCGCCACA CGCGTGCCTA CGCCTTCTTT GTCACCGCCA CGTATGAGAG CCTACTCCGA
    GGGGCCGACG AGCTGGGTCT GCGCAAAGCA GTGAAGGCCG AGTTTGGCGG GGGCACCCGC
    GGCTTCTCCT GCGAGGAGGA CTTTATCTAT GAGAATGTGG AGAGCGAGCT ACGCTTCTTC
    ACCTCCCAGG AACGCCAGAG CATCATCCGC TTCTGGCTGC AGAATTTGCG TGCCAAGCAG
    GGAGAAGCAC TCCACAACGT GCGCTTCCTG GAGGACCAGC CAATCATCCC GGAGCTGGCA
    GCACGTGGGA TCATCCAGCA GGTGTTCCCT GTCCACGAGC AGCGTATTCT GAACCGCCTC
    ATGAAGTCAT GGGTGCAGGC CGTGTGTGAA AACCAGCCTC TAGATGACAT CTGTGATTAC
    TTTGGTGTGA AAATTGCCAT GTACTTCGCC TGGCTGGGCT TCTACACGTC GGCTATGGTA
    TACCCAGCTG TCTTCGGGTC TGTCCTGTAC ACATTCACAG AGGCTGATCA GACAAGCCGG
    GATGTTTCCT GCGTGGTCTT TGCCCTCTTC AACGTGATCT GGTCGACGCT GTTCCTAGAG
    GAATGGAAGC GGAGAGGGGC TGAGCTGGCA TATAAGTGGG GGACGCTGGA CTCACCTGGG
    GAAGCCGTGG AGGAGCCACG CCCCCAGTTC AGGGGCGTGC GACGTATCAG CCCCATCACG
    CGGGCCGAGG AGTTCTACTA CCCGCCCTGG AAGCGGCTGC TCTTCCAGCT GCTTGTGAGC
    CTCCCCCTGT GCCTGGCGTG CCTCGTCTGT GTCTTCTTGC TCATGCTTGG CTGCTTCCAG
    CTGCAGGAGC TGGTGCTGAG CGTGAAGGGG TTGCCCCGTC TCGCCCGATT CCTGCCTAAG
    GTCATGCTGG CCCTGCTTGT CAGTGTGAGT GCCGAGGGCT ACAAGAAGCT AGCCATCTGG
    CTCAATGACA TGGAAAATTA CCGGCTGGAG AGCGCCTATG AGAAGCACCT CATCATCAAA
    GTTGTCCTGT TCCAGTTTGT CAACTCGTAC CTGAGCCTCT TCTACATCGG TTTCTACCTC
    AAGGACATGG AGCGCTTGAA AGAGATGCTG GCCACGCTGC TGATCACCCG CCAGTTCCTC
    CAGAACGTGC GCGAGGTCCT GCAGCCGCAC CTGTACCGGC GCCTGGGCCG CGGCGAGCTG
    GGCCTGCGGG CCGTCTGGGA GCTGGCCCGA GCCCTGCTTG GCCTCCTGAG CCTCCGGCGC
    CCTGCGCCCC GCCGCCTCGA ACCCCAGGCG GATGAGGGCG GGGGCGGCGG CAGCGGGGGC
    GGGGGCCGCA GGTGCCTCAG CGGGGGCTGC GGGGCGCCGG AGGAGGAGGA GGAGGCGGCG
    CTGGTGGAGC GGCGGCGGGC GGGGGAAGGC GGGGAGGAGG GGGACGGGCC TCCAGGGGGC
    AAGGAGGAGG ACGAGGACGA CGAGGAGGAG GAGGACGAGG AGGAAGAGGA GGACGAGGAG
    GAGGGCGAGG AAGGGGGCCT CCTGGACTGC GGGCTCCGGC TGAAGAAGGT CAGCTTCGCT
    GAGCGCGGCG CGGGGCGGCG TCGGCCCGGC CCAAGCCCGG AGGCCCTCCT GGAGGAAGGG
    AGCCCCACTA TGGTGGAGAA GGGGCTGGAG CCGGGAGTGT TCACCCTGGC CGAGGAGGAC
    GACGAGGCGG AGGGGGCTCC CGGCAGCCCT GAACGGGAGC CCCCGGCCAT CTTGTTCCGC
    CGGGCCGGGG GCGAGGGCCG AGACCAGGGG CCCGACGGGG GCCCGGACCC GGAACCCGGC
    TCCAACAGCG ATTCGACCCG TAGGCAGAGA CGGCAGAACC GGTCGTCTTG GATTGACCCG
    CCGGAGGAGG AACACTCGCC CCAGCTCACC CAGGCAGAGC TGGAGAGCTG TATGAAGAAG
    TACGAGGACA CGTTCCAGGA CTACCAGGAG ATGTTCGTGC AGTTCGGCTA CGTTGTGCTC
    TTCTCGTCCG CCTTCCCCCT GGCGGCGCTG TGCGCCCTGG TCAACAACCT CATTGAGATC
    CGCAGCGACG CCTTCAAGCT GTGCACCGGG CTGCAGCGGC CCTTCGGCCA GCGCGTGGAA
    AGCATCGGCC AGTGGCAGAA GGTGATGGAG GCCATGGGTG TCCTAGCGAT TGTGGTCAAC
    TGCTACTTAA TCGGCCAGTG CGGGCAGCTG CAGCGCCTCT TCCCCTGGCT GAGCCCGGAG
    GCAGCCATCG TGTCGGTGGT AGTGCTCGAG CACTTCGCTC TGCTCCTCAA GTACCTCATC
    CACGTGGCCA TCCCCGATAT CCCGGGCTGG GTGGCCGAGG AAATGGCCAA GCTGGAGTAC
    CAGCGCCGCG AGGCCTTTAA GAGACACGAG CGCCAGGCCC AGCATCGCTA CCAGCAGCAG
    CAGCGCAGGC GGCGGGAGGA GGAGGAGCGA CAGCGCCATG CAGAGCACCA TGCCCGGCGG
    GAGCATGATT CTGGTGGCCG AGAGGAGGCG AGGGCCGAGG GCTCTGGGCT GGACCCTGCC
    ACCTCCTCCG AGAAGGCCTC TGCCAAGGCC AAGGGCAGCA CTGCGGGTGG CCACGGGCCT
    GAACGGCCCA AGCGCCCAGG GTCCCTGCTG GCACCCAACA ACGTCATGAA GTTGAAGCAG
    ATCATCCCAC TGCAGGGCAA ATTCCTCTCG TCAGGGGCCA CATCCTCACT GGCTGCTGCA
    GGGGCCGGAG CCACCACCCG GCCTCCCCCT GCCCAGTCAC CCACAGGCAG CGACACCCGC
    CTGCCTGCCT TCCTCAGCTT CAAGTTCCTC AAGTCACCCG AGACCCGGCG GGACTCTGAG
    CGCAGCCACT CACCGCCCAA AGCCTTCCAT GCTGGCAAGC TCTTCCCCTT TGGTGGCACC
    CGGGCTGAGC CTGGGTCCAA CGGGGCGGGC GGGCAGGCCC GGCCAGATGG GACCCCCAGC
    AGTGGCAGCA GCCGGGTTCA GAGGAGTGGG CCGGTGGACG AGGCCCTGGC TGAGGAGCTG
    GAAGCCCCCC GGCCCGAAGA GGAAGGCTCA GGTCACAAGC TTTAA

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

    RefSeq XP_016882537.1
    CDS165..3509
    Translation

    Target ORF information:

    RefSeq Version XM_017027048.1
    Organism Homo sapiens(human)
    Definition Homo sapiens anoctamin 8 (ANO8), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017027048.1

    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
    ATGGCCGAGG CCGCCTCCGG CGCCGGGGGC ACGTCCCTGG AGGGCGAGCG TGGCAAGAGG 
    CCCCCGCCGG AGGGCGAGCC TGCAGCCCCG GCGTCCGGAG TTCTGGATAA GCTTTTCGGA
    AAGCGGCTCC TGCAGGCTGG TCGCTACCTG GTGTCCCACA AGGCGTGGAT GAAGACGGTG
    CCTACAGAGA ACTGCGACGT GCTGATGACC TTCCCAGACA CGACCGATGA CCACACGCTG
    CTATGGCTGC TGAACCACAT CCGCGTGGGC ATTCCCGAGC TCATCGTGCA AGTCCGCCAC
    CACCGCCACA CGCGTGCCTA CGCCTTCTTT GTCACCGCCA CGTATGAGAG CCTACTCCGA
    GGGGCCGACG AGCTGGGTCT GCGCAAAGCA GTGAAGGCCG AGTTTGGCGG GGGCACCCGC
    GGCTTCTCCT GCGAGGAGGA CTTTATCTAT GAGAATGTGG AGAGCGAGCT ACGCTTCTTC
    ACCTCCCAGG AACGCCAGAG CATCATCCGC TTCTGGCTGC AGAATTTGCG TGCCAAGCAG
    GGAGAAGCAC TCCACAACGT GCGCTTCCTG GAGGACCAGC CAATCATCCC GGAGCTGGCA
    GCACGTGGGA TCATCCAGCA GGTGTTCCCT GTCCACGAGC AGCGTATTCT GAACCGCCTC
    ATGAAGTCAT GGGTGCAGGC CGTGTGTGAA AACCAGCCTC TAGATGACAT CTGTGATTAC
    TTTGGTGTGA AAATTGCCAT GTACTTCGCC TGGCTGGGCT TCTACACGTC GGCTATGGTA
    TACCCAGCTG TCTTCGGGTC TGTCCTGTAC ACATTCACAG AGGCTGATCA GACAAGCCGG
    GATGTTTCCT GCGTGGTCTT TGCCCTCTTC AACGTGATCT GGTCGACGCT GTTCCTAGAG
    GAATGGAAGC GGAGAGGGGC TGAGCTGGCA TATAAGTGGG GGACGCTGGA CTCACCTGGG
    GAAGCCGTGG AGGAGCCACG CCCCCAGTTC AGGGGCGTGC GACGTATCAG CCCCATCACG
    CGGGCCGAGG AGTTCTACTA CCCGCCCTGG AAGCGGCTGC TCTTCCAGCT GCTTGTGAGC
    CTCCCCCTGT GCCTGGCGTG CCTCGTCTGT GTCTTCTTGC TCATGCTTGG CTGCTTCCAG
    CTGCAGGAGC TGGTGCTGAG CGTGAAGGGG TTGCCCCGTC TCGCCCGATT CCTGCCTAAG
    GTCATGCTGG CCCTGCTTGT CAGTGTGAGT GCCGAGGGCT ACAAGAAGCT AGCCATCTGG
    CTCAATGACA TGGAAAATTA CCGGCTGGAG AGCGCCTATG AGAAGCACCT CATCATCAAA
    GTTGTCCTGT TCCAGTTTGT CAACTCGTAC CTGAGCCTCT TCTACATCGG TTTCTACCTC
    AAGGACATGG AGCGCTTGAA AGAGATGCTG GCCACGCTGC TGATCACCCG CCAGTTCCTC
    CAGAACGTGC GCGAGGTCCT GCAGCCGCAC CTGTACCGGC GCCTGGGCCG CGGCGAGCTG
    GGCCTGCGGG CCGTCTGGGA GCTGGCCCGA GCCCTGCTTG GCCTCCTGAG CCTCCGGCGC
    CCTGCGCCCC GCCGCCTCGA ACCCCAGGCG GATGAGGGCG GGGGCGGCGG CAGCGGGGGC
    GGGGGCCGCA GGTGCCTCAG CGGGGGCTGC GGGGCGCCGG AGGAGGAGGA GGAGGCGGCG
    CTGGTGGAGC GGCGGCGGGC GGGGGAAGGC GGGGAGGAGG GGGACGGGCC TCCAGGGGGC
    AAGGAGGAGG ACGAGGACGA CGAGGAGGAG GAGGACGAGG AGGAAGAGGA GGACGAGGAG
    GAGGGCGAGG AAGGGGGCCT CCTGGACTGC GGGCTCCGGC TGAAGAAGGT CAGCTTCGCT
    GAGCGCGGCG CGGGGCGGCG TCGGCCCGGC CCAAGCCCGG AGGCCCTCCT GGAGGAAGGG
    AGCCCCACTA TGGTGGAGAA GGGGCTGGAG CCGGGAGTGT TCACCCTGGC CGAGGAGGAC
    GACGAGGCGG AGGGGGCTCC CGGCAGCCCT GAACGGGAGC CCCCGGCCAT CTTGTTCCGC
    CGGGCCGGGG GCGAGGGCCG AGACCAGGGG CCCGACGGGG GCCCGGACCC GGAACCCGGC
    TCCAACAGCG ATTCGACCCG TAGGCAGAGA CGGCAGAACC GGTCGTCTTG GATTGACCCG
    CCGGAGGAGG AACACTCGCC CCAGCTCACC CAGGCAGAGC TGGAGAGCTG TATGAAGAAG
    TACGAGGACA CGTTCCAGGA CTACCAGGAG ATGTTCGTGC AGTTCGGCTA CGTTGTGCTC
    TTCTCGTCCG CCTTCCCCCT GGCGGCGCTG TGCGCCCTGG TCAACAACCT CATTGAGATC
    CGCAGCGACG CCTTCAAGCT GTGCACCGGG CTGCAGCGGC CCTTCGGCCA GCGCGTGGAA
    AGCATCGGCC AGTGGCAGAA GGTGATGGAG GCCATGGGTG TCCTAGCGAT TGTGGTCAAC
    TGCTACTTAA TCGGCCAGTG CGGGCAGCTG CAGCGCCTCT TCCCCTGGCT GAGCCCGGAG
    GCAGCCATCG TGTCGGTGGT AGTGCTCGAG CACTTCGCTC TGCTCCTCAA GTACCTCATC
    CACGTGGCCA TCCCCGATAT CCCGGGCTGG GTGGCCGAGG AAATGGCCAA GCTGGAGTAC
    CAGCGCCGCG AGGCCTTTAA GAGACACGAG CGCCAGGCCC AGCATCGCTA CCAGCAGCAG
    CAGCGCAGGC GGCGGGAGGA GGAGGAGCGA CAGCGCCATG CAGAGCACCA TGCCCGGCGG
    GAGCATGATT CTGGTGGCCG AGAGGAGGCG AGGGCCGAGG GCTCTGGGCT GGACCCTGCC
    ACCTCCTCCG AGAAGGCCTC TGCCAAGGCC AAGGGCAGCA CTGCGGGTGG CCACGGGCCT
    GAACGGCCCA AGCGCCCAGG GTCCCTGCTG GCACCCAACA ACGTCATGAA GTTGAAGCAG
    ATCATCCCAC TGCAGGGCAA ATTCCTCTCG TCAGGGGCCA CATCCTCACT GGCTGCTGCA
    GGGGCCGGAG CCACCACCCG GCCTCCCCCT GCCCAGTCAC CCACAGGCAG CGACACCCGC
    CTGCCTGCCT TCCTCAGCTT CAAGTTCCTC AAGTCACCCG AGACCCGGCG GGACTCTGAG
    CGCAGCCACT CACCGCCCAA AGCCTTCCAT GCTGGCAAGC TCTTCCCCTT TGGTGGCACC
    CGGGCTGAGC CTGGGTCCAA CGGGGCGGGC GGGCAGGCCC GGCCAGATGG GACCCCCAGC
    AGTGGCAGCA GCCGGGTTCA GAGGAGTGGG CCGGTGGACG AGGCCCTGGC TGAGGAGCTG
    GAAGCCCCCC GGCCCGAAGA GGAAGGCTCA GGTCACAAGC TTTAA

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

  • PubMed

    Structure and function of TMEM16 proteins (anoctamins).
    Physiological reviews94(2)419-59(2014 Apr)
    Pedemonte N,Galietta LJ


    Genetics of rheumatoid arthritis contributes to biology and drug discovery.
    Nature506(7488)376-81(2014 Feb)
    Okada Y,Wu D,Trynka G,Raj T,Terao C,Ikari K,Kochi Y,Ohmura K,Suzuki A,Yoshida S,Graham RR,Manoharan A,Ortmann W,Bhangale T,Denny JC,Carroll RJ,Eyler AE,Greenberg JD,Kremer JM,Pappas DA,Jiang L,Yin J,Ye L,Su DF,Yang J,Xie G,Keystone E,Westra HJ,Esko T,Metspalu A,Zhou X,Gupta N,Mirel D,Stahl EA,Diogo D,Cui J,Liao K,Guo MH,Myouzen K,Kawaguchi T,Coenen MJ,van Riel PL,van de Laar MA,Guchelaar HJ,Huizinga TW,Dieud? P,Mariette X,Bridges SL Jr,Zhernakova A,Toes RE,Tak PP,Miceli-Richard C,Bang SY,Lee HS,Martin J,Gonzalez-Gay MA,Rodriguez-Rodriguez L,Rantap??-Dahlqvist S,Arlestig L,Choi HK,Kamatani Y,Galan P,Lathrop M,,,Eyre S,Bowes J,Barton A,de Vries N,Moreland LW,Criswell LA,Karlson EW,Taniguchi A,Yamada R,Kubo M,Liu JS,Bae SC,Worthington J,Padyukov L,Klareskog L,Gregersen PK,Raychaudhuri S,Stranger BE,De Jager PL,Franke L,Visscher PM,Brown MA,Yamanaka H,Mimori T,Takahashi A,Xu H,Behrens TW,Siminovitch KA,Momohara S,Matsuda F,Yamamoto K,Plenge RM


    Anoctamins are a family of Ca2+-activated Cl- channels.
    Journal of cell science125(Pt 21)4991-8(2012 Nov)
    Tian Y,Schreiber R,Kunzelmann K


    The anoctamin family: TMEM16A and TMEM16B as calcium-activated chloride channels.
    Experimental physiology97(2)177-83(2012 Feb)
    Scudieri P,Sondo E,Ferrera L,Galietta LJ


    CFTR and TMEM16A are separate but functionally related Cl- channels.
    Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology28(4)715-24(2011)
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