ANKRD27 cDNA ORF clone, Homo sapiens(human)

  • Gene

  • Clones

  • gRNAs

The following ANKRD27 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ANKRD27 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
OHu04857 NM_032139.3
Latest version!
Homo sapiens ankyrin repeat domain 27 (ANKRD27), mRNA. pcDNA3.1-C-(k)DYK or customized vector
in pcDNA3.1-C-(k)DYK
$274.50-$384.30
$549.00
OHu04857 XM_006723412.2
Latest version!
Homo sapiens ankyrin repeat domain 27 (ANKRD27), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector
in pcDNA3.1-C-(k)DYK
$274.50-$384.30
$549.00
OHu52519 XM_017027349.1
Latest version!
Homo sapiens ankyrin repeat domain 27 (ANKRD27), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 5-7 $475.30
$679.00
View Old Accession Versions >>
OHu04857 NM_032139.2 Homo sapiens ankyrin repeat domain 27 (ANKRD27), mRNA. pcDNA3.1-C-(k)DYK or customized vector
in pcDNA3.1-C-(k)DYK
$274.50-$384.30
$549.00
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 OHu04857
    Clone ID Related Accession (Same CDS sequence) XM_006723412.2 , NM_032139.2 , NM_032139.3
    Accession Version NM_032139.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3153bp)
    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 2017-12-26
    Organism Homo sapiens(human)
    Product ankyrin repeat domain-containing protein 27
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from BI462844.1, AK054561.1 and AA903176.1. On Oct 12, 2006 this sequence version replaced NM_032139.1. Publication Note: This RefSeq record includes a subset of the publications that are available for this gene. Please see the Gene record to access additional publications. ##Evidence-Data-START## Transcript exon combination :: BC045605.1, AK054561.1 [ECO:0000332] RNAseq introns :: mixed/partial sample support SAMEA1965299, SAMEA1966682 [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
    ATGGCTCTGT ATGATGAAGA CCTCCTGAAA AATCCTTTCT ATCTGGCTCT GCAAAAGTGC 
    CGCCCTGACT TGTGCAGCAA AGTGGCCCAA ATCCATGGCA TTGTCTTAGT ACCCTGCAAA
    GGAAGCCTGT CGAGCAGCAT CCAGTCTACT TGTCAGTTTG AGTCCTACAT TTTGATACCT
    GTGGAAGAGC ATTTTCAGAC CTTAAATGGA AAGGATGTCT TTATTCAAGG GAACAGGATT
    AAATTAGGAG CTGGTTTTGC CTGTCTTCTC TCAGTGCCCA TTCTCTTTGA AGAAACTTTC
    TACAATGAAA AAGAAGAGAG TTTCAGCATC CTGTGTATAG CCCATCCTTT GGAAAAGAGA
    GAGAGTTCAG AAGAGCCTTT GGCACCCTCA GATCCCTTTT CCCTGAAAAC CATTGAAGAT
    GTGAGAGAGT TCTTGGGAAG ACACTCCGAG CGATTTGACA GGAACATCGC CTCTTTCCAT
    CGAACATTCC GAGAATGCGA GAGAAAGAGC CTCCGTCACC ACATAGACTC AGCGAATGCT
    CTCTACACCA AATGCCTCCA GCAGCTTCTG AGGGACTCTC ACCTGAAAAT GCTCGCCAAG
    CAGGAGGCCC AGATGAACCT GATGAAGCAG GCAGTGGAGA TATACGTCCA TCATGAAATT
    TACAACCTGA TCTTTAAATA CGTGGGGACC ATGGAGGCAA GTGAGGATGC GGCCTTTAAC
    AAAATCACAA GAAGCCTTCA AGATCTTCAG CAGAAAGATA TTGGTGTGAA ACCGGAGTTC
    AGCTTTAACA TACCTCGTGC CAAAAGAGAG CTGGCTCAGC TGAACAAATG CACCTCCCCA
    CAGCAGAAGC TTGTCTGCTT GCGAAAAGTG GTGCAGCTCA TTACACAGTC TCCAAGCCAG
    AGAGTGAACC TGGAGACCAT GTGTGCTGAT GATCTGCTAT CAGTCCTGTT ATACTTGCTT
    GTGAAAACGG AGATCCCTAA TTGGATGGCA AATTTGAGTT ACATCAAAAA CTTCAGGTTT
    AGCAGCTTGG CAAAGGATGA ACTGGGATAC TGCCTGACCT CATTCGAAGC TGCCATTGAA
    TATATTCGGC AAGGAAGCCT CTCTGCTAAA CCCCCTGAGT CTGAGGGATT TGGAGACAGG
    CTGTTCCTTA AGCAGAGAAT GAGCTTACTC TCTCAGATGA CTTCGTCTCC CACCGACTGC
    CTGTTTAAGC ACATTGCATC AGGTAACCAG AAAGAAGTGG AGAGACTTCT GAGCCAAGAG
    GACCATGATA AAGATACCGT CCAAAAGATG TGTCACCCTC TCTGCTTCTG CGATGACTGT
    GAGAAACTCG TCTCTGGGAG GTTGAATGAT CCCTCAGTTG TCACTCCATT CTCCAGAGAC
    GACAGGGGGC ACACCCCTCT CCATGTGGCT GCTGTCTGTG GGCAGGCATC CCTCATCGAC
    CTCCTGGTTT CCAAGGGCGC CATGGTAAAT GCCACAGACT ACCATGGAGC CACTCCGCTC
    CACCTGGCCT GTCAGAAGGG CTACCAGAGC GTGACGCTGC TGCTGCTGCA CTACAAGGCC
    AGCGCGGAAG TGCAGGACAA CAATGGGAAT ACGCCACTCC ACCTGGCCTG CACCTACGGC
    CACGAGGACT GTGTGAAGGC TCTGGTTTAC TACGACGTGG AGTCGTGCAG ACTTGACATT
    GGCAATGAGA AAGGAGACAC CCCTCTACAC ATTGCTGCCC GCTGGGGCTA CCAAGGCGTC
    ATAGAGACAT TGCTGCAGAA CGGAGCGTCC ACCGAGATCC AGAACAGACT GAAGGAGACG
    CCCCTCAAGT GTGCATTAAA CTCAAAGATT CTGTCTGTAA TGGAAGCCTA TCACCTGTCC
    TTCGAGAGGA GGCAGAAGTC GTCCGAGGCC CCTGTGCAGT CCCCGCAGCG CTCCGTGGAC
    TCCATCAGCC AAGAGTCCTC CACTTCCAGC TTCTCCTCCA TGTCAGCCAG CTCAAGGCAG
    GAGGAGACCA AGAAGGACTA CAGAGAGGTA GAAAAACTTT TGAGAGCAGT TGCTGATGGA
    GATCTAGAAA TGGTGCGTTA CCTGTTGGAA TGGACAGAGG AGGACCTGGA GGATGCGGAG
    GACACTGTCA GTGCAGCGGA CCCCGAATTC TGTCACCCGT TGTGCCAGTG CCCCAAGTGT
    GCCCCAGCTC AGAAGAGGCT GGCGAAGGTT CCTGCCAGTG GGCTTGGTGT GAACGTGACC
    AGCCAGGACG GCTCCTCCCC GCTGCATGTC GCCGCCCTGC ACGGCCGGGC GGACCTCATC
    CCCCTCCTGC TGAAGCACGG GGCCAACGCA GGTGCCAGGA ACGCAGACCA AGCCGTCCCG
    CTCCACCTGG CCTGCCAGCA GGGCCACTTT CAGGTGGTGA AGTGTCTGTT AGATTCGAAT
    GCAAAACCCA ATAAGAAGGA CCTCAGTGGA AACACGCCCC TCATTTACGC CTGCTCCGGT
    GGCCATCACG AGCTTGTGGC ACTGCTGCTA CAGCACGGGG CCTCCATTAA CGCTTCTAAC
    AATAAGGGCA ACACAGCGCT GCACGAGGCT GTGATTGAAA AGCACGTCTT CGTGGTAGAG
    CTGCTTCTGC TCCACGGAGC GTCAGTTCAG GTGCTGAACA AGCGGCAGCG CACGGCTGTA
    GACTGTGCTG AACAGAATTC AAAAATAATG GAATTGCTTC AGGTGGTACC AAGCTGTGTT
    GCTTCATTAG ATGATGTGGC TGAAACTGAC CGCAAGGAGT ATGTCACTGT TAAGATCAGG
    AAAAAATGGA ACTCAAAACT GTATGATCTA CCAGATGAGC CTTTTACAAG ACAGTTTTAC
    TTTGTCCACT CAGCTGGTCA GTTTAAGGGA AAGACTTCAA GGGAGATTAT GGCAAGAGAT
    AGAAGTGTCC CTAATTTAAC CGAAGGTTCT TTGCATGAGC CAGGGAGGCA AAGTGTCACA
    CTGAGACAGA ATAACCTGCC AGCTCAGAGT GGATCTCATG CTGCTGAGAA AGGCAACAGC
    GACTGGCCAG AGAGGCCTGG ACTGACACAG ACTGGCCCTG GACACAGACG GATGCTGCGG
    AGACACACGG TAGAGGATGC GGTCGTGTCC CAGGGCCCGG AGGCTGCTGG CCCCCTCTCC
    ACTCCCCAAG AGGTTAGTGC TTCCCGGTCC TAA

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

    RefSeq NP_115515.2
    CDS157..3309
    Translation

    Target ORF information:

    RefSeq Version NM_032139.2
    Organism Homo sapiens(human)
    Definition Homo sapiens ankyrin repeat domain 27 (ANKRD27), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_032139.2

    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
    ATGGCTCTGT ATGATGAAGA CCTCCTGAAA AATCCTTTCT ATCTGGCTCT GCAAAAGTGC 
    CGCCCTGACT TGTGCAGCAA AGTGGCCCAA ATCCATGGCA TTGTCTTAGT ACCCTGCAAA
    GGAAGCCTGT CGAGCAGCAT CCAGTCTACT TGTCAGTTTG AGTCCTACAT TTTGATACCT
    GTGGAAGAGC ATTTTCAGAC CTTAAATGGA AAGGATGTCT TTATTCAAGG GAACAGGATT
    AAATTAGGAG CTGGTTTTGC CTGTCTTCTC TCAGTGCCCA TTCTCTTTGA AGAAACTTTC
    TACAATGAAA AAGAAGAGAG TTTCAGCATC CTGTGTATAG CCCATCCTTT GGAAAAGAGA
    GAGAGTTCAG AAGAGCCTTT GGCACCCTCA GATCCCTTTT CCCTGAAAAC CATTGAAGAT
    GTGAGAGAGT TCTTGGGAAG ACACTCCGAG CGATTTGACA GGAACATCGC CTCTTTCCAT
    CGAACATTCC GAGAATGCGA GAGAAAGAGC CTCCGTCACC ACATAGACTC AGCGAATGCT
    CTCTACACCA AATGCCTCCA GCAGCTTCTG AGGGACTCTC ACCTGAAAAT GCTCGCCAAG
    CAGGAGGCCC AGATGAACCT GATGAAGCAG GCAGTGGAGA TATACGTCCA TCATGAAATT
    TACAACCTGA TCTTTAAATA CGTGGGGACC ATGGAGGCAA GTGAGGATGC GGCCTTTAAC
    AAAATCACAA GAAGCCTTCA AGATCTTCAG CAGAAAGATA TTGGTGTGAA ACCGGAGTTC
    AGCTTTAACA TACCTCGTGC CAAAAGAGAG CTGGCTCAGC TGAACAAATG CACCTCCCCA
    CAGCAGAAGC TTGTCTGCTT GCGAAAAGTG GTGCAGCTCA TTACACAGTC TCCAAGCCAG
    AGAGTGAACC TGGAGACCAT GTGTGCTGAT GATCTGCTAT CAGTCCTGTT ATACTTGCTT
    GTGAAAACGG AGATCCCTAA TTGGATGGCA AATTTGAGTT ACATCAAAAA CTTCAGGTTT
    AGCAGCTTGG CAAAGGATGA ACTGGGATAC TGCCTGACCT CATTCGAAGC TGCCATTGAA
    TATATTCGGC AAGGAAGCCT CTCTGCTAAA CCCCCTGAGT CTGAGGGATT TGGAGACAGG
    CTGTTCCTTA AGCAGAGAAT GAGCTTACTC TCTCAGATGA CTTCGTCTCC CACCGACTGC
    CTGTTTAAGC ACATTGCATC AGGTAACCAG AAAGAAGTGG AGAGACTTCT GAGCCAAGAG
    GACCATGATA AAGATACCGT CCAAAAGATG TGTCACCCTC TCTGCTTCTG CGATGACTGT
    GAGAAACTCG TCTCTGGGAG GTTGAATGAT CCCTCAGTTG TCACTCCATT CTCCAGAGAC
    GACAGGGGGC ACACCCCTCT CCATGTGGCT GCTGTCTGTG GGCAGGCATC CCTCATCGAC
    CTCCTGGTTT CCAAGGGCGC CATGGTAAAT GCCACAGACT ACCATGGAGC CACTCCGCTC
    CACCTGGCCT GTCAGAAGGG CTACCAGAGC GTGACGCTGC TGCTGCTGCA CTACAAGGCC
    AGCGCGGAAG TGCAGGACAA CAATGGGAAT ACGCCACTCC ACCTGGCCTG CACCTACGGC
    CACGAGGACT GTGTGAAGGC TCTGGTTTAC TACGACGTGG AGTCGTGCAG ACTTGACATT
    GGCAATGAGA AAGGAGACAC CCCTCTACAC ATTGCTGCCC GCTGGGGCTA CCAAGGCGTC
    ATAGAGACAT TGCTGCAGAA CGGAGCGTCC ACCGAGATCC AGAACAGACT GAAGGAGACG
    CCCCTCAAGT GTGCATTAAA CTCAAAGATT CTGTCTGTAA TGGAAGCCTA TCACCTGTCC
    TTCGAGAGGA GGCAGAAGTC GTCCGAGGCC CCTGTGCAGT CCCCGCAGCG CTCCGTGGAC
    TCCATCAGCC AAGAGTCCTC CACTTCCAGC TTCTCCTCCA TGTCAGCCAG CTCAAGGCAG
    GAGGAGACCA AGAAGGACTA CAGAGAGGTA GAAAAACTTT TGAGAGCAGT TGCTGATGGA
    GATCTAGAAA TGGTGCGTTA CCTGTTGGAA TGGACAGAGG AGGACCTGGA GGATGCGGAG
    GACACTGTCA GTGCAGCGGA CCCCGAATTC TGTCACCCGT TGTGCCAGTG CCCCAAGTGT
    GCCCCAGCTC AGAAGAGGCT GGCGAAGGTT CCTGCCAGTG GGCTTGGTGT GAACGTGACC
    AGCCAGGACG GCTCCTCCCC GCTGCATGTC GCCGCCCTGC ACGGCCGGGC GGACCTCATC
    CCCCTCCTGC TGAAGCACGG GGCCAACGCA GGTGCCAGGA ACGCAGACCA AGCCGTCCCG
    CTCCACCTGG CCTGCCAGCA GGGCCACTTT CAGGTGGTGA AGTGTCTGTT AGATTCGAAT
    GCAAAACCCA ATAAGAAGGA CCTCAGTGGA AACACGCCCC TCATTTACGC CTGCTCCGGT
    GGCCATCACG AGCTTGTGGC ACTGCTGCTA CAGCACGGGG CCTCCATTAA CGCTTCTAAC
    AATAAGGGCA ACACAGCGCT GCACGAGGCT GTGATTGAAA AGCACGTCTT CGTGGTAGAG
    CTGCTTCTGC TCCACGGAGC GTCAGTTCAG GTGCTGAACA AGCGGCAGCG CACGGCTGTA
    GACTGTGCTG AACAGAATTC AAAAATAATG GAATTGCTTC AGGTGGTACC AAGCTGTGTT
    GCTTCATTAG ATGATGTGGC TGAAACTGAC CGCAAGGAGT ATGTCACTGT TAAGATCAGG
    AAAAAATGGA ACTCAAAACT GTATGATCTA CCAGATGAGC CTTTTACAAG ACAGTTTTAC
    TTTGTCCACT CAGCTGGTCA GTTTAAGGGA AAGACTTCAA GGGAGATTAT GGCAAGAGAT
    AGAAGTGTCC CTAATTTAAC CGAAGGTTCT TTGCATGAGC CAGGGAGGCA AAGTGTCACA
    CTGAGACAGA ATAACCTGCC AGCTCAGAGT GGATCTCATG CTGCTGAGAA AGGCAACAGC
    GACTGGCCAG AGAGGCCTGG ACTGACACAG ACTGGCCCTG GACACAGACG GATGCTGCGG
    AGACACACGG TAGAGGATGC GGTCGTGTCC CAGGGCCCGG AGGCTGCTGG CCCCCTCTCC
    ACTCCCCAAG AGGTTAGTGC TTCCCGGTCC TAA

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

    CloneID OHu04857
    Clone ID Related Accession (Same CDS sequence) XM_006723412.2 , NM_032139.2 , NM_032139.3
    Accession Version NM_032139.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3153bp)
    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 2019-12-30
    Organism Homo sapiens(human)
    Product ankyrin repeat domain-containing protein 27
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from AK054561.1 and AA903176.1. On Nov 23, 2018 this sequence version replaced NM_032139.2. Publication Note: This RefSeq record includes a subset of the publications that are available for this gene. Please see the Gene record to access additional publications. ##Evidence-Data-START## Transcript exon combination :: SRR1660805.127942.1, BC045605.1 [ECO:0000332] RNAseq introns :: mixed/partial sample support SAMEA1965299, SAMEA1966682 [ECO:0000350] ##Evidence-Data-END## ##RefSeq-Attributes-START## MANE Ensembl match :: ENST00000306065.9/ ENSP00000304292.3 RefSeq Select criteria :: based on conservation, expression, 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
    ATGGCTCTGT ATGATGAAGA CCTCCTGAAA AATCCTTTCT ATCTGGCTCT GCAAAAGTGC 
    CGCCCTGACT TGTGCAGCAA AGTGGCCCAA ATCCATGGCA TTGTCTTAGT ACCCTGCAAA
    GGAAGCCTGT CGAGCAGCAT CCAGTCTACT TGTCAGTTTG AGTCCTACAT TTTGATACCT
    GTGGAAGAGC ATTTTCAGAC CTTAAATGGA AAGGATGTCT TTATTCAAGG GAACAGGATT
    AAATTAGGAG CTGGTTTTGC CTGTCTTCTC TCAGTGCCCA TTCTCTTTGA AGAAACTTTC
    TACAATGAAA AAGAAGAGAG TTTCAGCATC CTGTGTATAG CCCATCCTTT GGAAAAGAGA
    GAGAGTTCAG AAGAGCCTTT GGCACCCTCA GATCCCTTTT CCCTGAAAAC CATTGAAGAT
    GTGAGAGAGT TCTTGGGAAG ACACTCCGAG CGATTTGACA GGAACATCGC CTCTTTCCAT
    CGAACATTCC GAGAATGCGA GAGAAAGAGC CTCCGTCACC ACATAGACTC AGCGAATGCT
    CTCTACACCA AATGCCTCCA GCAGCTTCTG AGGGACTCTC ACCTGAAAAT GCTCGCCAAG
    CAGGAGGCCC AGATGAACCT GATGAAGCAG GCAGTGGAGA TATACGTCCA TCATGAAATT
    TACAACCTGA TCTTTAAATA CGTGGGGACC ATGGAGGCAA GTGAGGATGC GGCCTTTAAC
    AAAATCACAA GAAGCCTTCA AGATCTTCAG CAGAAAGATA TTGGTGTGAA ACCGGAGTTC
    AGCTTTAACA TACCTCGTGC CAAAAGAGAG CTGGCTCAGC TGAACAAATG CACCTCCCCA
    CAGCAGAAGC TTGTCTGCTT GCGAAAAGTG GTGCAGCTCA TTACACAGTC TCCAAGCCAG
    AGAGTGAACC TGGAGACCAT GTGTGCTGAT GATCTGCTAT CAGTCCTGTT ATACTTGCTT
    GTGAAAACGG AGATCCCTAA TTGGATGGCA AATTTGAGTT ACATCAAAAA CTTCAGGTTT
    AGCAGCTTGG CAAAGGATGA ACTGGGATAC TGCCTGACCT CATTCGAAGC TGCCATTGAA
    TATATTCGGC AAGGAAGCCT CTCTGCTAAA CCCCCTGAGT CTGAGGGATT TGGAGACAGG
    CTGTTCCTTA AGCAGAGAAT GAGCTTACTC TCTCAGATGA CTTCGTCTCC CACCGACTGC
    CTGTTTAAGC ACATTGCATC AGGTAACCAG AAAGAAGTGG AGAGACTTCT GAGCCAAGAG
    GACCATGATA AAGATACCGT CCAAAAGATG TGTCACCCTC TCTGCTTCTG CGATGACTGT
    GAGAAACTCG TCTCTGGGAG GTTGAATGAT CCCTCAGTTG TCACTCCATT CTCCAGAGAC
    GACAGGGGGC ACACCCCTCT CCATGTGGCT GCTGTCTGTG GGCAGGCATC CCTCATCGAC
    CTCCTGGTTT CCAAGGGCGC CATGGTAAAT GCCACAGACT ACCATGGAGC CACTCCGCTC
    CACCTGGCCT GTCAGAAGGG CTACCAGAGC GTGACGCTGC TGCTGCTGCA CTACAAGGCC
    AGCGCGGAAG TGCAGGACAA CAATGGGAAT ACGCCACTCC ACCTGGCCTG CACCTACGGC
    CACGAGGACT GTGTGAAGGC TCTGGTTTAC TACGACGTGG AGTCGTGCAG ACTTGACATT
    GGCAATGAGA AAGGAGACAC CCCTCTACAC ATTGCTGCCC GCTGGGGCTA CCAAGGCGTC
    ATAGAGACAT TGCTGCAGAA CGGAGCGTCC ACCGAGATCC AGAACAGACT GAAGGAGACG
    CCCCTCAAGT GTGCATTAAA CTCAAAGATT CTGTCTGTAA TGGAAGCCTA TCACCTGTCC
    TTCGAGAGGA GGCAGAAGTC GTCCGAGGCC CCTGTGCAGT CCCCGCAGCG CTCCGTGGAC
    TCCATCAGCC AAGAGTCCTC CACTTCCAGC TTCTCCTCCA TGTCAGCCAG CTCAAGGCAG
    GAGGAGACCA AGAAGGACTA CAGAGAGGTA GAAAAACTTT TGAGAGCAGT TGCTGATGGA
    GATCTAGAAA TGGTGCGTTA CCTGTTGGAA TGGACAGAGG AGGACCTGGA GGATGCGGAG
    GACACTGTCA GTGCAGCGGA CCCCGAATTC TGTCACCCGT TGTGCCAGTG CCCCAAGTGT
    GCCCCAGCTC AGAAGAGGCT GGCGAAGGTT CCTGCCAGTG GGCTTGGTGT GAACGTGACC
    AGCCAGGACG GCTCCTCCCC GCTGCATGTC GCCGCCCTGC ACGGCCGGGC GGACCTCATC
    CCCCTCCTGC TGAAGCACGG GGCCAACGCA GGTGCCAGGA ACGCAGACCA AGCCGTCCCG
    CTCCACCTGG CCTGCCAGCA GGGCCACTTT CAGGTGGTGA AGTGTCTGTT AGATTCGAAT
    GCAAAACCCA ATAAGAAGGA CCTCAGTGGA AACACGCCCC TCATTTACGC CTGCTCCGGT
    GGCCATCACG AGCTTGTGGC ACTGCTGCTA CAGCACGGGG CCTCCATTAA CGCTTCTAAC
    AATAAGGGCA ACACAGCGCT GCACGAGGCT GTGATTGAAA AGCACGTCTT CGTGGTAGAG
    CTGCTTCTGC TCCACGGAGC GTCAGTTCAG GTGCTGAACA AGCGGCAGCG CACGGCTGTA
    GACTGTGCTG AACAGAATTC AAAAATAATG GAATTGCTTC AGGTGGTACC AAGCTGTGTT
    GCTTCATTAG ATGATGTGGC TGAAACTGAC CGCAAGGAGT ATGTCACTGT TAAGATCAGG
    AAAAAATGGA ACTCAAAACT GTATGATCTA CCAGATGAGC CTTTTACAAG ACAGTTTTAC
    TTTGTCCACT CAGCTGGTCA GTTTAAGGGA AAGACTTCAA GGGAGATTAT GGCAAGAGAT
    AGAAGTGTCC CTAATTTAAC CGAAGGTTCT TTGCATGAGC CAGGGAGGCA AAGTGTCACA
    CTGAGACAGA ATAACCTGCC AGCTCAGAGT GGATCTCATG CTGCTGAGAA AGGCAACAGC
    GACTGGCCAG AGAGGCCTGG ACTGACACAG ACTGGCCCTG GACACAGACG GATGCTGCGG
    AGACACACGG TAGAGGATGC GGTCGTGTCC CAGGGCCCGG AGGCTGCTGG CCCCCTCTCC
    ACTCCCCAAG AGGTTAGTGC TTCCCGGTCC TAA

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

    RefSeq NP_115515.2
    CDS141..3293
    Translation

    Target ORF information:

    RefSeq Version NM_032139.3
    Organism Homo sapiens(human)
    Definition Homo sapiens ankyrin repeat domain 27 (ANKRD27), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_032139.3

    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
    ATGGCTCTGT ATGATGAAGA CCTCCTGAAA AATCCTTTCT ATCTGGCTCT GCAAAAGTGC 
    CGCCCTGACT TGTGCAGCAA AGTGGCCCAA ATCCATGGCA TTGTCTTAGT ACCCTGCAAA
    GGAAGCCTGT CGAGCAGCAT CCAGTCTACT TGTCAGTTTG AGTCCTACAT TTTGATACCT
    GTGGAAGAGC ATTTTCAGAC CTTAAATGGA AAGGATGTCT TTATTCAAGG GAACAGGATT
    AAATTAGGAG CTGGTTTTGC CTGTCTTCTC TCAGTGCCCA TTCTCTTTGA AGAAACTTTC
    TACAATGAAA AAGAAGAGAG TTTCAGCATC CTGTGTATAG CCCATCCTTT GGAAAAGAGA
    GAGAGTTCAG AAGAGCCTTT GGCACCCTCA GATCCCTTTT CCCTGAAAAC CATTGAAGAT
    GTGAGAGAGT TCTTGGGAAG ACACTCCGAG CGATTTGACA GGAACATCGC CTCTTTCCAT
    CGAACATTCC GAGAATGCGA GAGAAAGAGC CTCCGTCACC ACATAGACTC AGCGAATGCT
    CTCTACACCA AATGCCTCCA GCAGCTTCTG AGGGACTCTC ACCTGAAAAT GCTCGCCAAG
    CAGGAGGCCC AGATGAACCT GATGAAGCAG GCAGTGGAGA TATACGTCCA TCATGAAATT
    TACAACCTGA TCTTTAAATA CGTGGGGACC ATGGAGGCAA GTGAGGATGC GGCCTTTAAC
    AAAATCACAA GAAGCCTTCA AGATCTTCAG CAGAAAGATA TTGGTGTGAA ACCGGAGTTC
    AGCTTTAACA TACCTCGTGC CAAAAGAGAG CTGGCTCAGC TGAACAAATG CACCTCCCCA
    CAGCAGAAGC TTGTCTGCTT GCGAAAAGTG GTGCAGCTCA TTACACAGTC TCCAAGCCAG
    AGAGTGAACC TGGAGACCAT GTGTGCTGAT GATCTGCTAT CAGTCCTGTT ATACTTGCTT
    GTGAAAACGG AGATCCCTAA TTGGATGGCA AATTTGAGTT ACATCAAAAA CTTCAGGTTT
    AGCAGCTTGG CAAAGGATGA ACTGGGATAC TGCCTGACCT CATTCGAAGC TGCCATTGAA
    TATATTCGGC AAGGAAGCCT CTCTGCTAAA CCCCCTGAGT CTGAGGGATT TGGAGACAGG
    CTGTTCCTTA AGCAGAGAAT GAGCTTACTC TCTCAGATGA CTTCGTCTCC CACCGACTGC
    CTGTTTAAGC ACATTGCATC AGGTAACCAG AAAGAAGTGG AGAGACTTCT GAGCCAAGAG
    GACCATGATA AAGATACCGT CCAAAAGATG TGTCACCCTC TCTGCTTCTG CGATGACTGT
    GAGAAACTCG TCTCTGGGAG GTTGAATGAT CCCTCAGTTG TCACTCCATT CTCCAGAGAC
    GACAGGGGGC ACACCCCTCT CCATGTGGCT GCTGTCTGTG GGCAGGCATC CCTCATCGAC
    CTCCTGGTTT CCAAGGGCGC CATGGTAAAT GCCACAGACT ACCATGGAGC CACTCCGCTC
    CACCTGGCCT GTCAGAAGGG CTACCAGAGC GTGACGCTGC TGCTGCTGCA CTACAAGGCC
    AGCGCGGAAG TGCAGGACAA CAATGGGAAT ACGCCACTCC ACCTGGCCTG CACCTACGGC
    CACGAGGACT GTGTGAAGGC TCTGGTTTAC TACGACGTGG AGTCGTGCAG ACTTGACATT
    GGCAATGAGA AAGGAGACAC CCCTCTACAC ATTGCTGCCC GCTGGGGCTA CCAAGGCGTC
    ATAGAGACAT TGCTGCAGAA CGGAGCGTCC ACCGAGATCC AGAACAGACT GAAGGAGACG
    CCCCTCAAGT GTGCATTAAA CTCAAAGATT CTGTCTGTAA TGGAAGCCTA TCACCTGTCC
    TTCGAGAGGA GGCAGAAGTC GTCCGAGGCC CCTGTGCAGT CCCCGCAGCG CTCCGTGGAC
    TCCATCAGCC AAGAGTCCTC CACTTCCAGC TTCTCCTCCA TGTCAGCCAG CTCAAGGCAG
    GAGGAGACCA AGAAGGACTA CAGAGAGGTA GAAAAACTTT TGAGAGCAGT TGCTGATGGA
    GATCTAGAAA TGGTGCGTTA CCTGTTGGAA TGGACAGAGG AGGACCTGGA GGATGCGGAG
    GACACTGTCA GTGCAGCGGA CCCCGAATTC TGTCACCCGT TGTGCCAGTG CCCCAAGTGT
    GCCCCAGCTC AGAAGAGGCT GGCGAAGGTT CCTGCCAGTG GGCTTGGTGT GAACGTGACC
    AGCCAGGACG GCTCCTCCCC GCTGCATGTC GCCGCCCTGC ACGGCCGGGC GGACCTCATC
    CCCCTCCTGC TGAAGCACGG GGCCAACGCA GGTGCCAGGA ACGCAGACCA AGCCGTCCCG
    CTCCACCTGG CCTGCCAGCA GGGCCACTTT CAGGTGGTGA AGTGTCTGTT AGATTCGAAT
    GCAAAACCCA ATAAGAAGGA CCTCAGTGGA AACACGCCCC TCATTTACGC CTGCTCCGGT
    GGCCATCACG AGCTTGTGGC ACTGCTGCTA CAGCACGGGG CCTCCATTAA CGCTTCTAAC
    AATAAGGGCA ACACAGCGCT GCACGAGGCT GTGATTGAAA AGCACGTCTT CGTGGTAGAG
    CTGCTTCTGC TCCACGGAGC GTCAGTTCAG GTGCTGAACA AGCGGCAGCG CACGGCTGTA
    GACTGTGCTG AACAGAATTC AAAAATAATG GAATTGCTTC AGGTGGTACC AAGCTGTGTT
    GCTTCATTAG ATGATGTGGC TGAAACTGAC CGCAAGGAGT ATGTCACTGT TAAGATCAGG
    AAAAAATGGA ACTCAAAACT GTATGATCTA CCAGATGAGC CTTTTACAAG ACAGTTTTAC
    TTTGTCCACT CAGCTGGTCA GTTTAAGGGA AAGACTTCAA GGGAGATTAT GGCAAGAGAT
    AGAAGTGTCC CTAATTTAAC CGAAGGTTCT TTGCATGAGC CAGGGAGGCA AAGTGTCACA
    CTGAGACAGA ATAACCTGCC AGCTCAGAGT GGATCTCATG CTGCTGAGAA AGGCAACAGC
    GACTGGCCAG AGAGGCCTGG ACTGACACAG ACTGGCCCTG GACACAGACG GATGCTGCGG
    AGACACACGG TAGAGGATGC GGTCGTGTCC CAGGGCCCGG AGGCTGCTGG CCCCCTCTCC
    ACTCCCCAAG AGGTTAGTGC TTCCCGGTCC TAA

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

    CloneID OHu04857
    Clone ID Related Accession (Same CDS sequence) XM_006723412.2 , NM_032139.2 , NM_032139.3
    Accession Version XM_006723412.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3153bp)
    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 ankyrin repeat domain-containing protein 27 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 On Mar 12, 2015 this sequence version replaced XM_006723412.1. ##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
    ATGGCTCTGT ATGATGAAGA CCTCCTGAAA AATCCTTTCT ATCTGGCTCT GCAAAAGTGC 
    CGCCCTGACT TGTGCAGCAA AGTGGCCCAA ATCCATGGCA TTGTCTTAGT ACCCTGCAAA
    GGAAGCCTGT CGAGCAGCAT CCAGTCTACT TGTCAGTTTG AGTCCTACAT TTTGATACCT
    GTGGAAGAGC ATTTTCAGAC CTTAAATGGA AAGGATGTCT TTATTCAAGG GAACAGGATT
    AAATTAGGAG CTGGTTTTGC CTGTCTTCTC TCAGTGCCCA TTCTCTTTGA AGAAACTTTC
    TACAATGAAA AAGAAGAGAG TTTCAGCATC CTGTGTATAG CCCATCCTTT GGAAAAGAGA
    GAGAGTTCAG AAGAGCCTTT GGCACCCTCA GATCCCTTTT CCCTGAAAAC CATTGAAGAT
    GTGAGAGAGT TCTTGGGAAG ACACTCCGAG CGATTTGACA GGAACATCGC CTCTTTCCAT
    CGAACATTCC GAGAATGCGA GAGAAAGAGC CTCCGTCACC ACATAGACTC AGCGAATGCT
    CTCTACACCA AATGCCTCCA GCAGCTTCTG AGGGACTCTC ACCTGAAAAT GCTCGCCAAG
    CAGGAGGCCC AGATGAACCT GATGAAGCAG GCAGTGGAGA TATACGTCCA TCATGAAATT
    TACAACCTGA TCTTTAAATA CGTGGGGACC ATGGAGGCAA GTGAGGATGC GGCCTTTAAC
    AAAATCACAA GAAGCCTTCA AGATCTTCAG CAGAAAGATA TTGGTGTGAA ACCGGAGTTC
    AGCTTTAACA TACCTCGTGC CAAAAGAGAG CTGGCTCAGC TGAACAAATG CACCTCCCCA
    CAGCAGAAGC TTGTCTGCTT GCGAAAAGTG GTGCAGCTCA TTACACAGTC TCCAAGCCAG
    AGAGTGAACC TGGAGACCAT GTGTGCTGAT GATCTGCTAT CAGTCCTGTT ATACTTGCTT
    GTGAAAACGG AGATCCCTAA TTGGATGGCA AATTTGAGTT ACATCAAAAA CTTCAGGTTT
    AGCAGCTTGG CAAAGGATGA ACTGGGATAC TGCCTGACCT CATTCGAAGC TGCCATTGAA
    TATATTCGGC AAGGAAGCCT CTCTGCTAAA CCCCCTGAGT CTGAGGGATT TGGAGACAGG
    CTGTTCCTTA AGCAGAGAAT GAGCTTACTC TCTCAGATGA CTTCGTCTCC CACCGACTGC
    CTGTTTAAGC ACATTGCATC AGGTAACCAG AAAGAAGTGG AGAGACTTCT GAGCCAAGAG
    GACCATGATA AAGATACCGT CCAAAAGATG TGTCACCCTC TCTGCTTCTG CGATGACTGT
    GAGAAACTCG TCTCTGGGAG GTTGAATGAT CCCTCAGTTG TCACTCCATT CTCCAGAGAC
    GACAGGGGGC ACACCCCTCT CCATGTGGCT GCTGTCTGTG GGCAGGCATC CCTCATCGAC
    CTCCTGGTTT CCAAGGGCGC CATGGTAAAT GCCACAGACT ACCATGGAGC CACTCCGCTC
    CACCTGGCCT GTCAGAAGGG CTACCAGAGC GTGACGCTGC TGCTGCTGCA CTACAAGGCC
    AGCGCGGAAG TGCAGGACAA CAATGGGAAT ACGCCACTCC ACCTGGCCTG CACCTACGGC
    CACGAGGACT GTGTGAAGGC TCTGGTTTAC TACGACGTGG AGTCGTGCAG ACTTGACATT
    GGCAATGAGA AAGGAGACAC CCCTCTACAC ATTGCTGCCC GCTGGGGCTA CCAAGGCGTC
    ATAGAGACAT TGCTGCAGAA CGGAGCGTCC ACCGAGATCC AGAACAGACT GAAGGAGACG
    CCCCTCAAGT GTGCATTAAA CTCAAAGATT CTGTCTGTAA TGGAAGCCTA TCACCTGTCC
    TTCGAGAGGA GGCAGAAGTC GTCCGAGGCC CCTGTGCAGT CCCCGCAGCG CTCCGTGGAC
    TCCATCAGCC AAGAGTCCTC CACTTCCAGC TTCTCCTCCA TGTCAGCCAG CTCAAGGCAG
    GAGGAGACCA AGAAGGACTA CAGAGAGGTA GAAAAACTTT TGAGAGCAGT TGCTGATGGA
    GATCTAGAAA TGGTGCGTTA CCTGTTGGAA TGGACAGAGG AGGACCTGGA GGATGCGGAG
    GACACTGTCA GTGCAGCGGA CCCCGAATTC TGTCACCCGT TGTGCCAGTG CCCCAAGTGT
    GCCCCAGCTC AGAAGAGGCT GGCGAAGGTT CCTGCCAGTG GGCTTGGTGT GAACGTGACC
    AGCCAGGACG GCTCCTCCCC GCTGCATGTC GCCGCCCTGC ACGGCCGGGC GGACCTCATC
    CCCCTCCTGC TGAAGCACGG GGCCAACGCA GGTGCCAGGA ACGCAGACCA AGCCGTCCCG
    CTCCACCTGG CCTGCCAGCA GGGCCACTTT CAGGTGGTGA AGTGTCTGTT AGATTCGAAT
    GCAAAACCCA ATAAGAAGGA CCTCAGTGGA AACACGCCCC TCATTTACGC CTGCTCCGGT
    GGCCATCACG AGCTTGTGGC ACTGCTGCTA CAGCACGGGG CCTCCATTAA CGCTTCTAAC
    AATAAGGGCA ACACAGCGCT GCACGAGGCT GTGATTGAAA AGCACGTCTT CGTGGTAGAG
    CTGCTTCTGC TCCACGGAGC GTCAGTTCAG GTGCTGAACA AGCGGCAGCG CACGGCTGTA
    GACTGTGCTG AACAGAATTC AAAAATAATG GAATTGCTTC AGGTGGTACC AAGCTGTGTT
    GCTTCATTAG ATGATGTGGC TGAAACTGAC CGCAAGGAGT ATGTCACTGT TAAGATCAGG
    AAAAAATGGA ACTCAAAACT GTATGATCTA CCAGATGAGC CTTTTACAAG ACAGTTTTAC
    TTTGTCCACT CAGCTGGTCA GTTTAAGGGA AAGACTTCAA GGGAGATTAT GGCAAGAGAT
    AGAAGTGTCC CTAATTTAAC CGAAGGTTCT TTGCATGAGC CAGGGAGGCA AAGTGTCACA
    CTGAGACAGA ATAACCTGCC AGCTCAGAGT GGATCTCATG CTGCTGAGAA AGGCAACAGC
    GACTGGCCAG AGAGGCCTGG ACTGACACAG ACTGGCCCTG GACACAGACG GATGCTGCGG
    AGACACACGG TAGAGGATGC GGTCGTGTCC CAGGGCCCGG AGGCTGCTGG CCCCCTCTCC
    ACTCCCCAAG AGGTTAGTGC TTCCCGGTCC TAA

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

    RefSeq XP_006723475.1
    CDS50..3202
    Translation

    Target ORF information:

    RefSeq Version XM_006723412.2
    Organism Homo sapiens(human)
    Definition Homo sapiens ankyrin repeat domain 27 (ANKRD27), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006723412.2

    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
    ATGGCTCTGT ATGATGAAGA CCTCCTGAAA AATCCTTTCT ATCTGGCTCT GCAAAAGTGC 
    CGCCCTGACT TGTGCAGCAA AGTGGCCCAA ATCCATGGCA TTGTCTTAGT ACCCTGCAAA
    GGAAGCCTGT CGAGCAGCAT CCAGTCTACT TGTCAGTTTG AGTCCTACAT TTTGATACCT
    GTGGAAGAGC ATTTTCAGAC CTTAAATGGA AAGGATGTCT TTATTCAAGG GAACAGGATT
    AAATTAGGAG CTGGTTTTGC CTGTCTTCTC TCAGTGCCCA TTCTCTTTGA AGAAACTTTC
    TACAATGAAA AAGAAGAGAG TTTCAGCATC CTGTGTATAG CCCATCCTTT GGAAAAGAGA
    GAGAGTTCAG AAGAGCCTTT GGCACCCTCA GATCCCTTTT CCCTGAAAAC CATTGAAGAT
    GTGAGAGAGT TCTTGGGAAG ACACTCCGAG CGATTTGACA GGAACATCGC CTCTTTCCAT
    CGAACATTCC GAGAATGCGA GAGAAAGAGC CTCCGTCACC ACATAGACTC AGCGAATGCT
    CTCTACACCA AATGCCTCCA GCAGCTTCTG AGGGACTCTC ACCTGAAAAT GCTCGCCAAG
    CAGGAGGCCC AGATGAACCT GATGAAGCAG GCAGTGGAGA TATACGTCCA TCATGAAATT
    TACAACCTGA TCTTTAAATA CGTGGGGACC ATGGAGGCAA GTGAGGATGC GGCCTTTAAC
    AAAATCACAA GAAGCCTTCA AGATCTTCAG CAGAAAGATA TTGGTGTGAA ACCGGAGTTC
    AGCTTTAACA TACCTCGTGC CAAAAGAGAG CTGGCTCAGC TGAACAAATG CACCTCCCCA
    CAGCAGAAGC TTGTCTGCTT GCGAAAAGTG GTGCAGCTCA TTACACAGTC TCCAAGCCAG
    AGAGTGAACC TGGAGACCAT GTGTGCTGAT GATCTGCTAT CAGTCCTGTT ATACTTGCTT
    GTGAAAACGG AGATCCCTAA TTGGATGGCA AATTTGAGTT ACATCAAAAA CTTCAGGTTT
    AGCAGCTTGG CAAAGGATGA ACTGGGATAC TGCCTGACCT CATTCGAAGC TGCCATTGAA
    TATATTCGGC AAGGAAGCCT CTCTGCTAAA CCCCCTGAGT CTGAGGGATT TGGAGACAGG
    CTGTTCCTTA AGCAGAGAAT GAGCTTACTC TCTCAGATGA CTTCGTCTCC CACCGACTGC
    CTGTTTAAGC ACATTGCATC AGGTAACCAG AAAGAAGTGG AGAGACTTCT GAGCCAAGAG
    GACCATGATA AAGATACCGT CCAAAAGATG TGTCACCCTC TCTGCTTCTG CGATGACTGT
    GAGAAACTCG TCTCTGGGAG GTTGAATGAT CCCTCAGTTG TCACTCCATT CTCCAGAGAC
    GACAGGGGGC ACACCCCTCT CCATGTGGCT GCTGTCTGTG GGCAGGCATC CCTCATCGAC
    CTCCTGGTTT CCAAGGGCGC CATGGTAAAT GCCACAGACT ACCATGGAGC CACTCCGCTC
    CACCTGGCCT GTCAGAAGGG CTACCAGAGC GTGACGCTGC TGCTGCTGCA CTACAAGGCC
    AGCGCGGAAG TGCAGGACAA CAATGGGAAT ACGCCACTCC ACCTGGCCTG CACCTACGGC
    CACGAGGACT GTGTGAAGGC TCTGGTTTAC TACGACGTGG AGTCGTGCAG ACTTGACATT
    GGCAATGAGA AAGGAGACAC CCCTCTACAC ATTGCTGCCC GCTGGGGCTA CCAAGGCGTC
    ATAGAGACAT TGCTGCAGAA CGGAGCGTCC ACCGAGATCC AGAACAGACT GAAGGAGACG
    CCCCTCAAGT GTGCATTAAA CTCAAAGATT CTGTCTGTAA TGGAAGCCTA TCACCTGTCC
    TTCGAGAGGA GGCAGAAGTC GTCCGAGGCC CCTGTGCAGT CCCCGCAGCG CTCCGTGGAC
    TCCATCAGCC AAGAGTCCTC CACTTCCAGC TTCTCCTCCA TGTCAGCCAG CTCAAGGCAG
    GAGGAGACCA AGAAGGACTA CAGAGAGGTA GAAAAACTTT TGAGAGCAGT TGCTGATGGA
    GATCTAGAAA TGGTGCGTTA CCTGTTGGAA TGGACAGAGG AGGACCTGGA GGATGCGGAG
    GACACTGTCA GTGCAGCGGA CCCCGAATTC TGTCACCCGT TGTGCCAGTG CCCCAAGTGT
    GCCCCAGCTC AGAAGAGGCT GGCGAAGGTT CCTGCCAGTG GGCTTGGTGT GAACGTGACC
    AGCCAGGACG GCTCCTCCCC GCTGCATGTC GCCGCCCTGC ACGGCCGGGC GGACCTCATC
    CCCCTCCTGC TGAAGCACGG GGCCAACGCA GGTGCCAGGA ACGCAGACCA AGCCGTCCCG
    CTCCACCTGG CCTGCCAGCA GGGCCACTTT CAGGTGGTGA AGTGTCTGTT AGATTCGAAT
    GCAAAACCCA ATAAGAAGGA CCTCAGTGGA AACACGCCCC TCATTTACGC CTGCTCCGGT
    GGCCATCACG AGCTTGTGGC ACTGCTGCTA CAGCACGGGG CCTCCATTAA CGCTTCTAAC
    AATAAGGGCA ACACAGCGCT GCACGAGGCT GTGATTGAAA AGCACGTCTT CGTGGTAGAG
    CTGCTTCTGC TCCACGGAGC GTCAGTTCAG GTGCTGAACA AGCGGCAGCG CACGGCTGTA
    GACTGTGCTG AACAGAATTC AAAAATAATG GAATTGCTTC AGGTGGTACC AAGCTGTGTT
    GCTTCATTAG ATGATGTGGC TGAAACTGAC CGCAAGGAGT ATGTCACTGT TAAGATCAGG
    AAAAAATGGA ACTCAAAACT GTATGATCTA CCAGATGAGC CTTTTACAAG ACAGTTTTAC
    TTTGTCCACT CAGCTGGTCA GTTTAAGGGA AAGACTTCAA GGGAGATTAT GGCAAGAGAT
    AGAAGTGTCC CTAATTTAAC CGAAGGTTCT TTGCATGAGC CAGGGAGGCA AAGTGTCACA
    CTGAGACAGA ATAACCTGCC AGCTCAGAGT GGATCTCATG CTGCTGAGAA AGGCAACAGC
    GACTGGCCAG AGAGGCCTGG ACTGACACAG ACTGGCCCTG GACACAGACG GATGCTGCGG
    AGACACACGG TAGAGGATGC GGTCGTGTCC CAGGGCCCGG AGGCTGCTGG CCCCCTCTCC
    ACTCCCCAAG AGGTTAGTGC TTCCCGGTCC TAA

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

    CloneID OHu52519
    Clone ID Related Accession (Same CDS sequence) XM_017027349.1
    Accession Version XM_017027349.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2565bp)
    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 ankyrin repeat domain-containing protein 27 isoform X2
    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
    ATGCTCGCCA AGCAGGAGGC CCAGATGAAC CTGATGAAGC AGGCAGTGGA GATATACGTC 
    CATCATGAAA TTTACAACCT GATCTTTAAA TACGTGGGGA CCATGGAGGC AAGTGAGGAT
    GCGGCCTTTA ACAAAATCAC AAGAAGCCTT CAAGATCTTC AGCAGAAAGA TATTGGTGTG
    AAACCGGAGT TCAGCTTTAA CATACCTCGT GCCAAAAGAG AGCTGGCTCA GCTGAACAAA
    TGCACCTCCC CACAGCAGAA GCTTGTCTGC TTGCGAAAAG TGGTGCAGCT CATTACACAG
    TCTCCAAGCC AGAGAGTGAA CCTGGAGACC ATGTGTGCTG ATGATCTGCT ATCAGTCCTG
    TTATACTTGC TTGTGAAAAC GGAGATCCCT AATTGGATGG CAAATTTGAG TTACATCAAA
    AACTTCAGGT TTAGCAGCTT GGCAAAGGAT GAACTGGGAT ACTGCCTGAC CTCATTCGAA
    GCTGCCATTG AATATATTCG GCAAGGAAGC CTCTCTGCTA AACCCCCTGA GTCTGAGGGA
    TTTGGAGACA GGCTGTTCCT TAAGCAGAGA ATGAGCTTAC TCTCTCAGAT GACTTCGTCT
    CCCACCGACT GCCTGTTTAA GCACATTGCA TCAGGTAACC AGAAAGAAGT GGAGAGACTT
    CTGAGCCAAG AGGACCATGA TAAAGATACC GTCCAAAAGA TGTGTCACCC TCTCTGCTTC
    TGCGATGACT GTGAGAAACT CGTCTCTGGG AGGTTGAATG ATCCCTCAGT TGTCACTCCA
    TTCTCCAGAG ACGACAGGGG GCACACCCCT CTCCATGTGG CTGCTGTCTG TGGGCAGGCA
    TCCCTCATCG ACCTCCTGGT TTCCAAGGGC GCCATGGTAA ATGCCACAGA CTACCATGGA
    GCCACTCCGC TCCACCTGGC CTGTCAGAAG GGCTACCAGA GCGTGACGCT GCTGCTGCTG
    CACTACAAGG CCAGCGCGGA AGTGCAGGAC AACAATGGGA ATACGCCACT CCACCTGGCC
    TGCACCTACG GCCACGAGGA CTGTGTGAAG GCTCTGGTTT ACTACGACGT GGAGTCGTGC
    AGACTTGACA TTGGCAATGA GAAAGGAGAC ACCCCTCTAC ACATTGCTGC CCGCTGGGGC
    TACCAAGGCG TCATAGAGAC ATTGCTGCAG AACGGAGCGT CCACCGAGAT CCAGAACAGA
    CTGAAGGAGA CGCCCCTCAA GTGTGCATTA AACTCAAAGA TTCTGTCTGT AATGGAAGCC
    TATCACCTGT CCTTCGAGAG GAGGCAGAAG TCGTCCGAGG CCCCTGTGCA GTCCCCGCAG
    CGCTCCGTGG ACTCCATCAG CCAAGAGTCC TCCACTTCCA GCTTCTCCTC CATGTCAGCC
    AGCTCAAGGC AGGAGGAGAC CAAGAAGGAC TACAGAGAGG TAGAAAAACT TTTGAGAGCA
    GTTGCTGATG GAGATCTAGA AATGGTGCGT TACCTGTTGG AATGGACAGA GGAGGACCTG
    GAGGATGCGG AGGACACTGT CAGTGCAGCG GACCCCGAAT TCTGTCACCC GTTGTGCCAG
    TGCCCCAAGT GTGCCCCAGC TCAGAAGAGG CTGGCGAAGG TTCCTGCCAG TGGGCTTGGT
    GTGAACGTGA CCAGCCAGGA CGGCTCCTCC CCGCTGCATG TCGCCGCCCT GCACGGCCGG
    GCGGACCTCA TCCCCCTCCT GCTGAAGCAC GGGGCCAACG CAGGTGCCAG GAACGCAGAC
    CAAGCCGTCC CGCTCCACCT GGCCTGCCAG CAGGGCCACT TTCAGGTGGT GAAGTGTCTG
    TTAGATTCGA ATGCAAAACC CAATAAGAAG GACCTCAGTG GAAACACGCC CCTCATTTAC
    GCCTGCTCCG GTGGCCATCA CGAGCTTGTG GCACTGCTGC TACAGCACGG GGCCTCCATT
    AACGCTTCTA ACAATAAGGG CAACACAGCG CTGCACGAGG CTGTGATTGA AAAGCACGTC
    TTCGTGGTAG AGCTGCTTCT GCTCCACGGA GCGTCAGTTC AGGTGCTGAA CAAGCGGCAG
    CGCACGGCTG TAGACTGTGC TGAACAGAAT TCAAAAATAA TGGAATTGCT TCAGGTGGTA
    CCAAGCTGTG TTGCTTCATT AGATGATGTG GCTGAAACTG ACCGCAAGGA GTATGTCACT
    GTTAAGATCA GGAAAAAATG GAACTCAAAA CTGTATGATC TACCAGATGA GCCTTTTACA
    AGACAGTTTT ACTTTGTCCA CTCAGCTGGT CAGTTTAAGG GAAAGACTTC AAGGGAGATT
    ATGGCAAGAG ATAGAAGTGT CCCTAATTTA ACCGAAGGTT CTTTGCATGA GCCAGGGAGG
    CAAAGTGTCA CACTGAGACA GAATAACCTG CCAGCTCAGA GTGGATCTCA TGCTGCTGAG
    AAAGGCAACA GCGACTGGCC AGAGAGGCCT GGACTGACAC AGACTGGCCC TGGACACAGA
    CGGATGCTGC GGAGACACAC GGTAGAGGAT GCGGTCGTGT CCCAGGGCCC GGAGGCTGCT
    GGCCCCCTCT CCACTCCCCA AGAGGTTAGT GCTTCCCGGT CCTAA

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

    RefSeq XP_016882838.1
    CDS607..3171
    Translation

    Target ORF information:

    RefSeq Version XM_017027349.1
    Organism Homo sapiens(human)
    Definition Homo sapiens ankyrin repeat domain 27 (ANKRD27), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017027349.1

    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
    ATGCTCGCCA AGCAGGAGGC CCAGATGAAC CTGATGAAGC AGGCAGTGGA GATATACGTC 
    CATCATGAAA TTTACAACCT GATCTTTAAA TACGTGGGGA CCATGGAGGC AAGTGAGGAT
    GCGGCCTTTA ACAAAATCAC AAGAAGCCTT CAAGATCTTC AGCAGAAAGA TATTGGTGTG
    AAACCGGAGT TCAGCTTTAA CATACCTCGT GCCAAAAGAG AGCTGGCTCA GCTGAACAAA
    TGCACCTCCC CACAGCAGAA GCTTGTCTGC TTGCGAAAAG TGGTGCAGCT CATTACACAG
    TCTCCAAGCC AGAGAGTGAA CCTGGAGACC ATGTGTGCTG ATGATCTGCT ATCAGTCCTG
    TTATACTTGC TTGTGAAAAC GGAGATCCCT AATTGGATGG CAAATTTGAG TTACATCAAA
    AACTTCAGGT TTAGCAGCTT GGCAAAGGAT GAACTGGGAT ACTGCCTGAC CTCATTCGAA
    GCTGCCATTG AATATATTCG GCAAGGAAGC CTCTCTGCTA AACCCCCTGA GTCTGAGGGA
    TTTGGAGACA GGCTGTTCCT TAAGCAGAGA ATGAGCTTAC TCTCTCAGAT GACTTCGTCT
    CCCACCGACT GCCTGTTTAA GCACATTGCA TCAGGTAACC AGAAAGAAGT GGAGAGACTT
    CTGAGCCAAG AGGACCATGA TAAAGATACC GTCCAAAAGA TGTGTCACCC TCTCTGCTTC
    TGCGATGACT GTGAGAAACT CGTCTCTGGG AGGTTGAATG ATCCCTCAGT TGTCACTCCA
    TTCTCCAGAG ACGACAGGGG GCACACCCCT CTCCATGTGG CTGCTGTCTG TGGGCAGGCA
    TCCCTCATCG ACCTCCTGGT TTCCAAGGGC GCCATGGTAA ATGCCACAGA CTACCATGGA
    GCCACTCCGC TCCACCTGGC CTGTCAGAAG GGCTACCAGA GCGTGACGCT GCTGCTGCTG
    CACTACAAGG CCAGCGCGGA AGTGCAGGAC AACAATGGGA ATACGCCACT CCACCTGGCC
    TGCACCTACG GCCACGAGGA CTGTGTGAAG GCTCTGGTTT ACTACGACGT GGAGTCGTGC
    AGACTTGACA TTGGCAATGA GAAAGGAGAC ACCCCTCTAC ACATTGCTGC CCGCTGGGGC
    TACCAAGGCG TCATAGAGAC ATTGCTGCAG AACGGAGCGT CCACCGAGAT CCAGAACAGA
    CTGAAGGAGA CGCCCCTCAA GTGTGCATTA AACTCAAAGA TTCTGTCTGT AATGGAAGCC
    TATCACCTGT CCTTCGAGAG GAGGCAGAAG TCGTCCGAGG CCCCTGTGCA GTCCCCGCAG
    CGCTCCGTGG ACTCCATCAG CCAAGAGTCC TCCACTTCCA GCTTCTCCTC CATGTCAGCC
    AGCTCAAGGC AGGAGGAGAC CAAGAAGGAC TACAGAGAGG TAGAAAAACT TTTGAGAGCA
    GTTGCTGATG GAGATCTAGA AATGGTGCGT TACCTGTTGG AATGGACAGA GGAGGACCTG
    GAGGATGCGG AGGACACTGT CAGTGCAGCG GACCCCGAAT TCTGTCACCC GTTGTGCCAG
    TGCCCCAAGT GTGCCCCAGC TCAGAAGAGG CTGGCGAAGG TTCCTGCCAG TGGGCTTGGT
    GTGAACGTGA CCAGCCAGGA CGGCTCCTCC CCGCTGCATG TCGCCGCCCT GCACGGCCGG
    GCGGACCTCA TCCCCCTCCT GCTGAAGCAC GGGGCCAACG CAGGTGCCAG GAACGCAGAC
    CAAGCCGTCC CGCTCCACCT GGCCTGCCAG CAGGGCCACT TTCAGGTGGT GAAGTGTCTG
    TTAGATTCGA ATGCAAAACC CAATAAGAAG GACCTCAGTG GAAACACGCC CCTCATTTAC
    GCCTGCTCCG GTGGCCATCA CGAGCTTGTG GCACTGCTGC TACAGCACGG GGCCTCCATT
    AACGCTTCTA ACAATAAGGG CAACACAGCG CTGCACGAGG CTGTGATTGA AAAGCACGTC
    TTCGTGGTAG AGCTGCTTCT GCTCCACGGA GCGTCAGTTC AGGTGCTGAA CAAGCGGCAG
    CGCACGGCTG TAGACTGTGC TGAACAGAAT TCAAAAATAA TGGAATTGCT TCAGGTGGTA
    CCAAGCTGTG TTGCTTCATT AGATGATGTG GCTGAAACTG ACCGCAAGGA GTATGTCACT
    GTTAAGATCA GGAAAAAATG GAACTCAAAA CTGTATGATC TACCAGATGA GCCTTTTACA
    AGACAGTTTT ACTTTGTCCA CTCAGCTGGT CAGTTTAAGG GAAAGACTTC AAGGGAGATT
    ATGGCAAGAG ATAGAAGTGT CCCTAATTTA ACCGAAGGTT CTTTGCATGA GCCAGGGAGG
    CAAAGTGTCA CACTGAGACA GAATAACCTG CCAGCTCAGA GTGGATCTCA TGCTGCTGAG
    AAAGGCAACA GCGACTGGCC AGAGAGGCCT GGACTGACAC AGACTGGCCC TGGACACAGA
    CGGATGCTGC GGAGACACAC GGTAGAGGAT GCGGTCGTGT CCCAGGGCCC GGAGGCTGCT
    GGCCCCCTCT CCACTCCCCA AGAGGTTAGT GCTTCCCGGT CCTAA

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