DNMT3B cDNA ORF clone, Anas platyrhynchos(mallard)

The following DNMT3B gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the DNMT3B 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
OAn102165 XM_005011015.2
Latest version!
Anas platyrhynchos DNA (cytosine-5-)-methyltransferase 3 beta (DNMT3B), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $426.30
$609.00
OAn147700 XM_005011015.3
Latest version!
Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $426.30
$609.00
OAn171680 XM_027472735.1
Latest version!
Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
OAn171680 XM_027472736.1
Latest version!
Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
OAn171681 XM_027472737.1
Latest version!
Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
OAn171682 XM_027472738.1
Latest version!
Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
OAn171683 XM_027472739.1
Latest version!
Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00

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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 OAn102165
    Clone ID Related Accession (Same CDS sequence) XM_005011015.2
    Accession Version XM_005011015.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2277bp)
    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 2015-07-08
    Organism Anas platyrhynchos(Mallard)
    Product DNA (cytosine-5)-methyltransferase 3B
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004676436.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Jul 9, 2015 this sequence version replaced XM_005011015.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Anas platyrhynchos Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## ab initio :: 1% of CDS bases ##RefSeq-Attributes-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    ATGGTGGCTG CCCAGGAGAC TTCTCAGGCC TGGTCTTCAC TGGGAGAGGA GGGGCCGGCA 
    ACCATGAAAA AGGAGAACCT CAGCCGGGAT GAGGCGGACT GCAGGGCAGG GCTGATCCGC
    CTCAACGGGG ACTGCACTGA TCCTGCTAAA GACACACCGG CCCTTCTGGA GGCTAATGGG
    AAGCCCAGTG CTCCGGACGC TGGGAGCCTG GGACTGCCGA CCCTGAAGAA CAAGAGGGTG
    AGCAAGGAAC TCTCCAAGGA GGACCTGTCC TGGCCACTCA CGCTCTCGGA GGCACAGGAG
    ACACGGCCAC GGGGCAGCGC TGGCTGGGAG AGCAGCCTCA GGCAGAAGCC TCCTGTCCGC
    CTCATCTTCC AGGCAGGGCA GACCCGGCAC GAGATGAAAA TCAAGGAAGC AAACAGCGAG
    GAGAATCTCA GGGACCTGCC AACGCCGCTG CGGAGCTCCA GGAGGCGATC GGCCATGCCC
    GTCCTCACCA CCATCGACCT GACGGAGGAC GACTCCCGGG ACTCATCGCA GAGCAGCAGC
    ACGATTTCAG GGAGCAGCTC CCAGGAGGGC CAGAACGGCT CTGCCGAGCT GGCGGCTGAG
    GAGCCGGAGA GCCGAGAGGC GGGGATAGCG CTGGAGTACC AGGATGGGAA GGAATTTGGA
    ATTGGGGAAC TCGTCTGGGG GAAGATCAAA GGTTTCTCCT GGTGGCCGGC GATTGTCGTC
    TCCTACAGAG CCACGTCCAA GCGCCAGGCG GTCTCGGGCA TGCGATGGGT GCAGTGGTTT
    GGAGATGGGA AGTTCTCTGA GGTTTCTGCA GACAAGCTGG TGGGGCTGAT GGCCTTTAGG
    CAGCATTTCA ATTCTGCCAC GTTTAATAAG CTGGTTTCCT ATCGCCGAGC CATATTCCAT
    GCCCTGGAGG TTGCCCGGAG CCGGTCGGGG AAGACGTTTG CAGCCACCCC CGGAGAGTCC
    CTGGAGGAGC AGCTGAAGCC CATGATCGAC TGGGCGCTCA CCGGCTTCAA GCCCCTGGGC
    CTCAAGGGGC TGCGGCCGCC CANNNNNNNN NNNNNNNNNG AGAACGGGGC CCTGCGGAAC
    GGCACGGAGG AGGTGCTGTG CCTCGAGCAG TGCCCCCCCA CCAAGAGGCT GAAAGCTGCC
    CTCTGCAACA GCAACAAGGA GCAGCGAGTG GAGGAGGACC AGACCCGAGA GCAAATGGTT
    TCCGAAGTTA CGAACAACAG CGGGAGCCTC GAAGACAGCT GCCTGTCCTG CGGGAGGAGG
    AACCCGGCCA CCTTCCACCC GCTGTTCGAG GGAGGCCTGT GCCAGACGTG CAGGGATAGA
    TTCCTGGAGC TCTTCTACAT GTACGATGAA GACGGCTACC AGTCCTACTG CACCGTCTGC
    TGCGAGGGCA AGGAGCTTCT GCTCTGCAGC AATGCCAGCT GCTGCAGGTG CTTCTGCGTG
    GAGTGCCTGG AGGTCCTGGT GGGGCGAGGG ACGTCGGCCA AGGCAAAGGA GCAGGAGCCC
    TGGAACTGCT ACATGTGCCA GCCCCAGCGC AGCTATGGGG TGCTGCAGCG CCGGCAGGAC
    TGGAACACCC GTCTGCAGGA TTTCTTCACC AGCGACAAGG GCCAGGAATA CGACGCACCC
    AAAATCTACC CAGCCGTGCC CCCGGCCAAG AGGAAGCCCA TCAGAGTGCT CTCCTTGTTT
    GATGGCATAG CAACAGGGTA CCTGGTGCTG AAGGACCTGG GCATCCAGGT GGAGAAGTAC
    ATCGCCTCCG AAATCTGCGA GGACCCCATC GCGGTGGGCA CCGTGCGGCA CGAGGGCAAC
    ATCACCTGCG TGCACGATGT CCGGAACATC ACCAAGAGAA ACATCGAGGA GTGGGGTCAG
    CGCGGGGGGC CACCCAGCAC TCCCGCTTCC CCCCGTGCAG AAGGGACCGG GAGGCTCTTC
    TTCGAGTTCT ACCACCTGCT CAACTACGCC CGGCCCAAGG CGGGCGAGGA GCGCCCCTTC
    TTCTGGATGT TTGAGAACGT GGTGGCCATG AGGGTCAACG ACAAGAGGGA CATCTCTCGG
    TTCCTGGAGT GTAACCCGGT TATGATTGAC GCTATCAAGA TCTCTGCTAC CCACAGAGCT
    CGCTATTTCT GGGGCAACCT CCCGGGGATG AACAGGATCT TCGGCTTCCC CCTCCACTAC
    ACCGACGTTT CCAACATCAG CCGCGGGGCT CGCCAGAAGC TGCTCGGGAG GTCCTGGAGC
    ATCCCCGTCA TCCAGCACCT CTTCACCCCG CTCAAGGATT ACTTTGCCTG TGAATAG

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

    RefSeq XP_005011072.2
    CDS21..2297
    Translation

    Target ORF information:

    RefSeq Version XM_005011015.2
    Organism Anas platyrhynchos(Mallard)
    Definition Anas platyrhynchos DNA (cytosine-5-)-methyltransferase 3 beta (DNMT3B), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005011015.2

    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
    ATGGTGGCTG CCCAGGAGAC TTCTCAGGCC TGGTCTTCAC TGGGAGAGGA GGGGCCGGCA 
    ACCATGAAAA AGGAGAACCT CAGCCGGGAT GAGGCGGACT GCAGGGCAGG GCTGATCCGC
    CTCAACGGGG ACTGCACTGA TCCTGCTAAA GACACACCGG CCCTTCTGGA GGCTAATGGG
    AAGCCCAGTG CTCCGGACGC TGGGAGCCTG GGACTGCCGA CCCTGAAGAA CAAGAGGGTG
    AGCAAGGAAC TCTCCAAGGA GGACCTGTCC TGGCCACTCA CGCTCTCGGA GGCACAGGAG
    ACACGGCCAC GGGGCAGCGC TGGCTGGGAG AGCAGCCTCA GGCAGAAGCC TCCTGTCCGC
    CTCATCTTCC AGGCAGGGCA GACCCGGCAC GAGATGAAAA TCAAGGAAGC AAACAGCGAG
    GAGAATCTCA GGGACCTGCC AACGCCGCTG CGGAGCTCCA GGAGGCGATC GGCCATGCCC
    GTCCTCACCA CCATCGACCT GACGGAGGAC GACTCCCGGG ACTCATCGCA GAGCAGCAGC
    ACGATTTCAG GGAGCAGCTC CCAGGAGGGC CAGAACGGCT CTGCCGAGCT GGCGGCTGAG
    GAGCCGGAGA GCCGAGAGGC GGGGATAGCG CTGGAGTACC AGGATGGGAA GGAATTTGGA
    ATTGGGGAAC TCGTCTGGGG GAAGATCAAA GGTTTCTCCT GGTGGCCGGC GATTGTCGTC
    TCCTACAGAG CCACGTCCAA GCGCCAGGCG GTCTCGGGCA TGCGATGGGT GCAGTGGTTT
    GGAGATGGGA AGTTCTCTGA GGTTTCTGCA GACAAGCTGG TGGGGCTGAT GGCCTTTAGG
    CAGCATTTCA ATTCTGCCAC GTTTAATAAG CTGGTTTCCT ATCGCCGAGC CATATTCCAT
    GCCCTGGAGG TTGCCCGGAG CCGGTCGGGG AAGACGTTTG CAGCCACCCC CGGAGAGTCC
    CTGGAGGAGC AGCTGAAGCC CATGATCGAC TGGGCGCTCA CCGGCTTCAA GCCCCTGGGC
    CTCAAGGGGC TGCGGCCGCC CANNNNNNNN NNNNNNNNNG AGAACGGGGC CCTGCGGAAC
    GGCACGGAGG AGGTGCTGTG CCTCGAGCAG TGCCCCCCCA CCAAGAGGCT GAAAGCTGCC
    CTCTGCAACA GCAACAAGGA GCAGCGAGTG GAGGAGGACC AGACCCGAGA GCAAATGGTT
    TCCGAAGTTA CGAACAACAG CGGGAGCCTC GAAGACAGCT GCCTGTCCTG CGGGAGGAGG
    AACCCGGCCA CCTTCCACCC GCTGTTCGAG GGAGGCCTGT GCCAGACGTG CAGGGATAGA
    TTCCTGGAGC TCTTCTACAT GTACGATGAA GACGGCTACC AGTCCTACTG CACCGTCTGC
    TGCGAGGGCA AGGAGCTTCT GCTCTGCAGC AATGCCAGCT GCTGCAGGTG CTTCTGCGTG
    GAGTGCCTGG AGGTCCTGGT GGGGCGAGGG ACGTCGGCCA AGGCAAAGGA GCAGGAGCCC
    TGGAACTGCT ACATGTGCCA GCCCCAGCGC AGCTATGGGG TGCTGCAGCG CCGGCAGGAC
    TGGAACACCC GTCTGCAGGA TTTCTTCACC AGCGACAAGG GCCAGGAATA CGACGCACCC
    AAAATCTACC CAGCCGTGCC CCCGGCCAAG AGGAAGCCCA TCAGAGTGCT CTCCTTGTTT
    GATGGCATAG CAACAGGGTA CCTGGTGCTG AAGGACCTGG GCATCCAGGT GGAGAAGTAC
    ATCGCCTCCG AAATCTGCGA GGACCCCATC GCGGTGGGCA CCGTGCGGCA CGAGGGCAAC
    ATCACCTGCG TGCACGATGT CCGGAACATC ACCAAGAGAA ACATCGAGGA GTGGGGTCAG
    CGCGGGGGGC CACCCAGCAC TCCCGCTTCC CCCCGTGCAG AAGGGACCGG GAGGCTCTTC
    TTCGAGTTCT ACCACCTGCT CAACTACGCC CGGCCCAAGG CGGGCGAGGA GCGCCCCTTC
    TTCTGGATGT TTGAGAACGT GGTGGCCATG AGGGTCAACG ACAAGAGGGA CATCTCTCGG
    TTCCTGGAGT GTAACCCGGT TATGATTGAC GCTATCAAGA TCTCTGCTAC CCACAGAGCT
    CGCTATTTCT GGGGCAACCT CCCGGGGATG AACAGGATCT TCGGCTTCCC CCTCCACTAC
    ACCGACGTTT CCAACATCAG CCGCGGGGCT CGCCAGAAGC TGCTCGGGAG GTCCTGGAGC
    ATCCCCGTCA TCCAGCACCT CTTCACCCCG CTCAAGGATT ACTTTGCCTG TGAATAG

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

    CloneID OAn147700
    Clone ID Related Accession (Same CDS sequence) XM_005011015.3
    Accession Version XM_005011015.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2331bp)
    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 2017-05-23
    Organism Anas platyrhynchos(mallard)
    Product LOW QUALITY PROTEIN: DNA (cytosine-5)-methyltransferase 3B
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004676436.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On May 24, 2017 this sequence version replaced XM_005011015.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Anas platyrhynchos Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## ab initio :: 1% of CDS bases frameshifts :: corrected 1 indel ##RefSeq-Attributes-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCTGGAGC AGCTGCTGGC TGTGATGGTG 
    GCTGCCCAGG AGACTTCTCA GGCCTGGTCT TCACTGGGAG AGGAGGGGCC GGCAACCATG
    AAAAAGGAGA ACCTCAGCCG GGATGAGGCG GACTGCAGGG CAGGGCTGAT CCGCCTCAAC
    GGGGACTGCA CTGATCCTGC TAAAGACACA CCGGCCCTTC TGGAGGCTAA TGGGAAGCCC
    AGTGCTCCGG ACGCTGGGAG CCTGGGACTG CCGACCCTGA AGAACAAGAG GGTGAGCAAG
    GAACTCTCCA AGGAGGACCT GTCCTGGCCA CTCACGCTCT CGGAGGCACA GGAGACACGG
    CCACGGGGCA GCGCTGGCTG GGAGAGCAGC CTCAGGCAGA AGCCTCCTGT CCGCCTCATC
    TTCCAGGCAG GGCAGACCCG GCACGAGATG AAAATCAAGG AAGCAAACAG CGAGGAGAAT
    CTCAGGGACC TGCCAACGCC GCTGCGGAGC TCCAGGAGGC GATCGGCCAT GCCCGTCCTC
    ACCACCATCG ACCTGACGGA GGACGACTCC CGGGACTCAT CGCAGAGCAG CAGCACGATT
    TCAGGGAGCA GCTCCCAGGA GGGCCAGAAC GGCTCTGCCG AGCTGGCGGC TGAGGAGCCG
    GAGAGCCGAG AGGCGGGGAT AGCGCTGGAG TACCAGGATG GGAAGGAATT TGGAATTGGG
    GAACTCGTCT GGGGGAAGAT CAAAGGTTTC TCCTGGTGGC CGGCGATTGT CGTCTCCTAC
    AGAGCCACGT CCAAGCGCCA GGCGGTCTCG GGCATGCGAT GGGTGCAGTG GTTTGGAGAT
    GGGAAGTTCT CTGAGGTTTC TGCAGACAAG CTGGTGGGGC TGATGGCCTT TAGGCAGCAT
    TTCAATTCTG CCACGTTTAA TAAGCTGGTT TCCTATCGCC GAGCCATATT CCATGCCCTG
    GAGGTTGCCC GGAGCCGGTC GGGGAAGACG TTTGCAGCCA CCCCCGGAGA GTCCCTGGAG
    GAGCAGCTGA AGCCCATGAT CGACTGGGCG CTCACCGGCT TCAAGCCCCT GGGCCTCAAG
    GGGCTGCGGC CGCCCANNNN NNNNNNNNNN NNNGAGAACG GGGCCCTGCG GAACGGCACG
    GAGGAGGTGC TGTGCCTCGA GCAGTGCCCC CCCACCAAGA GGCTGAAAGC TGCCCTCTGC
    AACAGCAACA AGGAGCAGCG AGTGGAGGAG GACCAGACCC GAGAGCAAAT GGTTTCCGAA
    GTTACGAACA ACAGCGGGAG CCTCGAAGAC AGCTGCCTGT CCTGCGGGAG GAGGAACCCG
    GCCACCTTCC ACCCGCTGTT CGAGGGAGGC CTGTGCCAGA CGTGCAGGGA TAGATTCCTG
    GAGCTCTTCT ACATGTACGA TGAAGACGGC TACCAGTCCT ACTGCACCGT CTGCTGCGAG
    GGCAAGGAGC TTCTGCTCTG CAGCAATGCC AGCTGCTGCA GGTGCTTCTG CGTGGAGTGC
    CTGGAGGTCC TGGTGGGGCG AGGGACGTCG GCCAAGGCAA AGGAGCAGGA GCCCTGGAAC
    TGCTACATGT GCCAGCCCCA GCGCAGCTAT GGGGTGCTGC AGCGCCGGCA GGACTGGAAC
    ACCCGTCTGC AGGATTTCTT CACCAGCGAC AAGGGCCAGG AATACGACGC ACCCAAAATC
    TACCCAGCCG TGCCCCCGGC CAAGAGGAAG CCCATCAGAG TGCTCTCCTT GTTTGATGGC
    ATAGCAACAG GGTACCTGGT GCTGAAGGAC CTGGGCATCC AGGTGGAGAA GTACATCGCC
    TCCGAAATCT GCGAGGACCC CATCGCGGTG GGCACCGTGC GGCACGAGGG CAACATCACC
    TGCGTGCACG ATGTCCGGAA CATCACCAAG AGAAACATCG AGGAGTGGGG TCAGCGCGGG
    GGGCCACCCA GCACTCCCGC TTCCCCCCGT GCAGAAGGGA CCGGGAGGCT CTTCTTCGAG
    TTCTACCACC TGCTCAACTA CGCCCGGCCC AAGGCGGGCG AGGAGCGCCC CTTCTTCTGG
    ATGTTTGAGA ACGTGGTGGC CATGAGGGTC AACGACAAGA GGGACATCTC TCGGTTCCTG
    GAGTGTAACC CGGTTATGAT TGACGCTATC AAGATCTCTG CTACCCACAG AGCTCGCTAT
    TTCTGGGGCA ACCTCCCGGG GATGAACAGG ATCTTCGGCT TCCCCCTCCA CTACACCGAC
    GTTTCCAACA TCAGCCGCGG GGCTCGCCAG AAGCTGCTCG GGAGGTCCTG GAGCATCCCC
    GTCATCCAGC ACCTCTTCAC CCCGCTCAAG GATTACTTTG CCTGTGAATA G

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

    RefSeq XP_005011072.3
    CDS76..2406
    Translation

    Target ORF information:

    RefSeq Version XM_005011015.3
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005011015.3

    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
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCTGGAGC AGCTGCTGGC TGTGATGGTG 
    GCTGCCCAGG AGACTTCTCA GGCCTGGTCT TCACTGGGAG AGGAGGGGCC GGCAACCATG
    AAAAAGGAGA ACCTCAGCCG GGATGAGGCG GACTGCAGGG CAGGGCTGAT CCGCCTCAAC
    GGGGACTGCA CTGATCCTGC TAAAGACACA CCGGCCCTTC TGGAGGCTAA TGGGAAGCCC
    AGTGCTCCGG ACGCTGGGAG CCTGGGACTG CCGACCCTGA AGAACAAGAG GGTGAGCAAG
    GAACTCTCCA AGGAGGACCT GTCCTGGCCA CTCACGCTCT CGGAGGCACA GGAGACACGG
    CCACGGGGCA GCGCTGGCTG GGAGAGCAGC CTCAGGCAGA AGCCTCCTGT CCGCCTCATC
    TTCCAGGCAG GGCAGACCCG GCACGAGATG AAAATCAAGG AAGCAAACAG CGAGGAGAAT
    CTCAGGGACC TGCCAACGCC GCTGCGGAGC TCCAGGAGGC GATCGGCCAT GCCCGTCCTC
    ACCACCATCG ACCTGACGGA GGACGACTCC CGGGACTCAT CGCAGAGCAG CAGCACGATT
    TCAGGGAGCA GCTCCCAGGA GGGCCAGAAC GGCTCTGCCG AGCTGGCGGC TGAGGAGCCG
    GAGAGCCGAG AGGCGGGGAT AGCGCTGGAG TACCAGGATG GGAAGGAATT TGGAATTGGG
    GAACTCGTCT GGGGGAAGAT CAAAGGTTTC TCCTGGTGGC CGGCGATTGT CGTCTCCTAC
    AGAGCCACGT CCAAGCGCCA GGCGGTCTCG GGCATGCGAT GGGTGCAGTG GTTTGGAGAT
    GGGAAGTTCT CTGAGGTTTC TGCAGACAAG CTGGTGGGGC TGATGGCCTT TAGGCAGCAT
    TTCAATTCTG CCACGTTTAA TAAGCTGGTT TCCTATCGCC GAGCCATATT CCATGCCCTG
    GAGGTTGCCC GGAGCCGGTC GGGGAAGACG TTTGCAGCCA CCCCCGGAGA GTCCCTGGAG
    GAGCAGCTGA AGCCCATGAT CGACTGGGCG CTCACCGGCT TCAAGCCCCT GGGCCTCAAG
    GGGCTGCGGC CGCCCANNNN NNNNNNNNNN NNNGAGAACG GGGCCCTGCG GAACGGCACG
    GAGGAGGTGC TGTGCCTCGA GCAGTGCCCC CCCACCAAGA GGCTGAAAGC TGCCCTCTGC
    AACAGCAACA AGGAGCAGCG AGTGGAGGAG GACCAGACCC GAGAGCAAAT GGTTTCCGAA
    GTTACGAACA ACAGCGGGAG CCTCGAAGAC AGCTGCCTGT CCTGCGGGAG GAGGAACCCG
    GCCACCTTCC ACCCGCTGTT CGAGGGAGGC CTGTGCCAGA CGTGCAGGGA TAGATTCCTG
    GAGCTCTTCT ACATGTACGA TGAAGACGGC TACCAGTCCT ACTGCACCGT CTGCTGCGAG
    GGCAAGGAGC TTCTGCTCTG CAGCAATGCC AGCTGCTGCA GGTGCTTCTG CGTGGAGTGC
    CTGGAGGTCC TGGTGGGGCG AGGGACGTCG GCCAAGGCAA AGGAGCAGGA GCCCTGGAAC
    TGCTACATGT GCCAGCCCCA GCGCAGCTAT GGGGTGCTGC AGCGCCGGCA GGACTGGAAC
    ACCCGTCTGC AGGATTTCTT CACCAGCGAC AAGGGCCAGG AATACGACGC ACCCAAAATC
    TACCCAGCCG TGCCCCCGGC CAAGAGGAAG CCCATCAGAG TGCTCTCCTT GTTTGATGGC
    ATAGCAACAG GGTACCTGGT GCTGAAGGAC CTGGGCATCC AGGTGGAGAA GTACATCGCC
    TCCGAAATCT GCGAGGACCC CATCGCGGTG GGCACCGTGC GGCACGAGGG CAACATCACC
    TGCGTGCACG ATGTCCGGAA CATCACCAAG AGAAACATCG AGGAGTGGGG TCAGCGCGGG
    GGGCCACCCA GCACTCCCGC TTCCCCCCGT GCAGAAGGGA CCGGGAGGCT CTTCTTCGAG
    TTCTACCACC TGCTCAACTA CGCCCGGCCC AAGGCGGGCG AGGAGCGCCC CTTCTTCTGG
    ATGTTTGAGA ACGTGGTGGC CATGAGGGTC AACGACAAGA GGGACATCTC TCGGTTCCTG
    GAGTGTAACC CGGTTATGAT TGACGCTATC AAGATCTCTG CTACCCACAG AGCTCGCTAT
    TTCTGGGGCA ACCTCCCGGG GATGAACAGG ATCTTCGGCT TCCCCCTCCA CTACACCGAC
    GTTTCCAACA TCAGCCGCGG GGCTCGCCAG AAGCTGCTCG GGAGGTCCTG GAGCATCCCC
    GTCATCCAGC ACCTCTTCAC CCCGCTCAAG GATTACTTTG CCTGTGAATA G

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

    CloneID OAn171680
    Clone ID Related Accession (Same CDS sequence) XM_027472736.1 , XM_027472735.1
    Accession Version XM_027472736.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2436bp)
    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 2018-12-19
    Organism Anas platyrhynchos(mallard)
    Product DNA (cytosine-5)-methyltransferase 3B isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_040066.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Anas platyrhynchos Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCAGCGGC TGGCTGTGAT GGTGGCTGCC 
    CAGGAGACTT CTCAGGCCTG GTCTTCACTG GGAGAGGAGG GGCCGGCAAC CATGAAAAAG
    GAGAACCTCA GCCGGGATGA GGCGGACTGC AGGGCAGGGC TGATCCGCCT CAACGGGGAC
    TGCACTGATC CTGCTAAAGA CACACCGGCC CTTCTGGAGG CTAATGGGAA GCCCAGTGCT
    CCGGACGCTG GGAGCCTGGG ACTGCCGAGC CTGAAGAACA AGAGGGTGAG CAAGGAACTC
    TCCAAGGAGG ACCTGTCCTG GCCACTCACG CTCTCGGAGG CACAGGAGAC ACGGCCACGG
    GGCAGCGCTG GCTGGGAGAG CAGCCTCAGG CAGAAGCCTC CTGTCCGCCT CATCTTCCAG
    GCAGGGCAGA CCCGGCACGA GATGAAAATC AAGGAAGCGA ACAGCGAGGA GAATCTCAGG
    GACCTGCCAA CGCCGCTGCG GAGCTCCAGG AGGCGATCGG CCATGCCCGT CCTCACCACC
    ATCGACCTGA CGGAGGATGA CTCCCGGGAC TCGTCGCAGA GCAGCAGCAC GATTTCGGGG
    AGCAGCTCCC AGGAGGGCCA GAACGGCTCT GCCGAGCTGG CGGCTGAGGA ACCGGAGAGC
    CGAGAGGCGG GGATAGCGCT GGAGTACCAG GATGGGAAGG AATTTGGAAT TGGGGAACTC
    GTCTGGGGAA AGATCAAAGG TTTCTCCTGG TGGCCAGCGA TTGTCGTGTC CTACAGAGCC
    ACGTCCAAGC GCCAGGCGGT CTCGGGCATG CGATGGGTGC AGTGGTTTGG AGATGGGAAG
    TTCTCTGAGG TTTCTGCAGA CAAGCTGGTG GGGCTGATGG CCTTTAGGCA GCATTTCAAT
    TCTGCCACGT TTAATAAGCT GGTTTCCTAT CGCCGAGCCA TATTCCATGC CCTGGAGGTT
    GCCCGGAGCC GGTCGGGGAA GACGTTTGCA GCCACCCCCG GAGAGTCCCT GGAGGAGCAG
    CTGAAGCCCA TGATCGACTG GGCGCTCACC GGCTTCAAGC CCCTGGGCCT CAAGGGGCTG
    CGACCGCCCA AAACCTCAGA GAATGGGGCC CTGCGGAACG GCACGGAGGA GGTGCTGTGC
    CTCGAGCAGT GCCCCCCCAC CAAGAGGCTG AAGGCTGCCC TCTGCAACAG CAACAAGGAG
    CAGCGAGTGG AGGAGGACCA GACCCGAGAG CAAATGGTTT CCGAAGTTAC GAACAACAGC
    GGGAGCCTCG AAGACAGCTG CCTGTCCTGT GGGAGGAGGA ACCCGGCCAC CTTCCACCCG
    CTGTTCGAGG GAGGCCTGTG CCAGACGTGC AGGGATAGAT TCCTGGAGCT CTTCTACATG
    TATGATGAAG ACGGCTACCA GTCCTACTGC ACCGTCTGCT GTGAGGGCAA GGAGCTGCTG
    CTCTGCAGCA ACGCCAGCTG CTGCAGGTGC TTCTGCGTGG AGTGCCTGGA GGTCCTGGTG
    GGGAGAGGGA CGTCGGCCAA GGCAAAGGAG CAGGAGCCCT GGAACTGCTA CATGTGCCAG
    CCCCAGCGCA GCTACGGGGT GCTGCAGCGC CGGCAGGACT GGAACACCCG TCTGCAGGAT
    TTCTTCACCA GTGACAAGGG CCAGGAATAC GACGCACCCA AAATCTACCC AGCCGTGCCC
    CCGGCCAAGA GGAAGCCCAT CAGAGTGCTC TCCTTGTTTG ATGGCATAGC AACAGGGTAC
    CTGGTGCTGA AGGACCTGGG CATCCAGGTG GAGAAGTACA TCGCCTCCGA GATCTGCGAG
    GACCCCATCG CGGTGGGCAC CGTGCGGCAC GAGGGCAACA TCACCTACGT GCACGACGTC
    CGGAACATCA CCAAGAGAAA CATCGAGGAG TGGGGTCCCT TTGACCTGGT GATCGGTGGG
    AGCCCCTGTA ACGACCTGTC CCTCGTCAGC CCGTCCAGGA AGGCGCTGTA TGGCCCGCCG
    GCCCCCACGC CCCCGCCGCA GCCTCCCCTG CGGGGCCGCG GCCGGTCGCC ACCCAGCACT
    CCCGCTTCCC CCCGTGCAGA AGGGACCGGG AGGCTTTTCT TCGAGTTCTA CCACCTGCTC
    AACTACGCCC GGCCCAAGGC AGGCGAGGAG CGCCCCTTCT TCTGGATGTT TGAGAACGTG
    GTGGCCATGA GGGTCAACGA CAAGAGGGAC ATCTCTCGGT TCCTGGAGTG TAACCCGGTT
    ATGATCGACG CTATCAAGAT CTCTGCTACC CACAGAGCTC GCTATTTCTG GGGCAACCTC
    CCGGGGATGA ACAGGATCTT CGGCTTCCCC CTCCACTACA CCGACGTTTC CAACATCAGC
    CGCGGGGCTC GCCAGAAGCT GCTCGGGAGG TCCTGGAGCA TCCCCGTCAT CCAGCACCTC
    TTCACCCCGC TCAAGGATTA TTTTGCCTGT GAATAG

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

    RefSeq XP_027328537.1
    CDS422..2857
    Translation

    Target ORF information:

    RefSeq Version XM_027472736.1
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_027472736.1

    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
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCAGCGGC TGGCTGTGAT GGTGGCTGCC 
    CAGGAGACTT CTCAGGCCTG GTCTTCACTG GGAGAGGAGG GGCCGGCAAC CATGAAAAAG
    GAGAACCTCA GCCGGGATGA GGCGGACTGC AGGGCAGGGC TGATCCGCCT CAACGGGGAC
    TGCACTGATC CTGCTAAAGA CACACCGGCC CTTCTGGAGG CTAATGGGAA GCCCAGTGCT
    CCGGACGCTG GGAGCCTGGG ACTGCCGAGC CTGAAGAACA AGAGGGTGAG CAAGGAACTC
    TCCAAGGAGG ACCTGTCCTG GCCACTCACG CTCTCGGAGG CACAGGAGAC ACGGCCACGG
    GGCAGCGCTG GCTGGGAGAG CAGCCTCAGG CAGAAGCCTC CTGTCCGCCT CATCTTCCAG
    GCAGGGCAGA CCCGGCACGA GATGAAAATC AAGGAAGCGA ACAGCGAGGA GAATCTCAGG
    GACCTGCCAA CGCCGCTGCG GAGCTCCAGG AGGCGATCGG CCATGCCCGT CCTCACCACC
    ATCGACCTGA CGGAGGATGA CTCCCGGGAC TCGTCGCAGA GCAGCAGCAC GATTTCGGGG
    AGCAGCTCCC AGGAGGGCCA GAACGGCTCT GCCGAGCTGG CGGCTGAGGA ACCGGAGAGC
    CGAGAGGCGG GGATAGCGCT GGAGTACCAG GATGGGAAGG AATTTGGAAT TGGGGAACTC
    GTCTGGGGAA AGATCAAAGG TTTCTCCTGG TGGCCAGCGA TTGTCGTGTC CTACAGAGCC
    ACGTCCAAGC GCCAGGCGGT CTCGGGCATG CGATGGGTGC AGTGGTTTGG AGATGGGAAG
    TTCTCTGAGG TTTCTGCAGA CAAGCTGGTG GGGCTGATGG CCTTTAGGCA GCATTTCAAT
    TCTGCCACGT TTAATAAGCT GGTTTCCTAT CGCCGAGCCA TATTCCATGC CCTGGAGGTT
    GCCCGGAGCC GGTCGGGGAA GACGTTTGCA GCCACCCCCG GAGAGTCCCT GGAGGAGCAG
    CTGAAGCCCA TGATCGACTG GGCGCTCACC GGCTTCAAGC CCCTGGGCCT CAAGGGGCTG
    CGACCGCCCA AAACCTCAGA GAATGGGGCC CTGCGGAACG GCACGGAGGA GGTGCTGTGC
    CTCGAGCAGT GCCCCCCCAC CAAGAGGCTG AAGGCTGCCC TCTGCAACAG CAACAAGGAG
    CAGCGAGTGG AGGAGGACCA GACCCGAGAG CAAATGGTTT CCGAAGTTAC GAACAACAGC
    GGGAGCCTCG AAGACAGCTG CCTGTCCTGT GGGAGGAGGA ACCCGGCCAC CTTCCACCCG
    CTGTTCGAGG GAGGCCTGTG CCAGACGTGC AGGGATAGAT TCCTGGAGCT CTTCTACATG
    TATGATGAAG ACGGCTACCA GTCCTACTGC ACCGTCTGCT GTGAGGGCAA GGAGCTGCTG
    CTCTGCAGCA ACGCCAGCTG CTGCAGGTGC TTCTGCGTGG AGTGCCTGGA GGTCCTGGTG
    GGGAGAGGGA CGTCGGCCAA GGCAAAGGAG CAGGAGCCCT GGAACTGCTA CATGTGCCAG
    CCCCAGCGCA GCTACGGGGT GCTGCAGCGC CGGCAGGACT GGAACACCCG TCTGCAGGAT
    TTCTTCACCA GTGACAAGGG CCAGGAATAC GACGCACCCA AAATCTACCC AGCCGTGCCC
    CCGGCCAAGA GGAAGCCCAT CAGAGTGCTC TCCTTGTTTG ATGGCATAGC AACAGGGTAC
    CTGGTGCTGA AGGACCTGGG CATCCAGGTG GAGAAGTACA TCGCCTCCGA GATCTGCGAG
    GACCCCATCG CGGTGGGCAC CGTGCGGCAC GAGGGCAACA TCACCTACGT GCACGACGTC
    CGGAACATCA CCAAGAGAAA CATCGAGGAG TGGGGTCCCT TTGACCTGGT GATCGGTGGG
    AGCCCCTGTA ACGACCTGTC CCTCGTCAGC CCGTCCAGGA AGGCGCTGTA TGGCCCGCCG
    GCCCCCACGC CCCCGCCGCA GCCTCCCCTG CGGGGCCGCG GCCGGTCGCC ACCCAGCACT
    CCCGCTTCCC CCCGTGCAGA AGGGACCGGG AGGCTTTTCT TCGAGTTCTA CCACCTGCTC
    AACTACGCCC GGCCCAAGGC AGGCGAGGAG CGCCCCTTCT TCTGGATGTT TGAGAACGTG
    GTGGCCATGA GGGTCAACGA CAAGAGGGAC ATCTCTCGGT TCCTGGAGTG TAACCCGGTT
    ATGATCGACG CTATCAAGAT CTCTGCTACC CACAGAGCTC GCTATTTCTG GGGCAACCTC
    CCGGGGATGA ACAGGATCTT CGGCTTCCCC CTCCACTACA CCGACGTTTC CAACATCAGC
    CGCGGGGCTC GCCAGAAGCT GCTCGGGAGG TCCTGGAGCA TCCCCGTCAT CCAGCACCTC
    TTCACCCCGC TCAAGGATTA TTTTGCCTGT GAATAG

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

    CloneID OAn171680
    Clone ID Related Accession (Same CDS sequence) XM_027472736.1 , XM_027472735.1
    Accession Version XM_027472735.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2436bp)
    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 2018-12-19
    Organism Anas platyrhynchos(mallard)
    Product DNA (cytosine-5)-methyltransferase 3B isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_040066.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Anas platyrhynchos Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCAGCGGC TGGCTGTGAT GGTGGCTGCC 
    CAGGAGACTT CTCAGGCCTG GTCTTCACTG GGAGAGGAGG GGCCGGCAAC CATGAAAAAG
    GAGAACCTCA GCCGGGATGA GGCGGACTGC AGGGCAGGGC TGATCCGCCT CAACGGGGAC
    TGCACTGATC CTGCTAAAGA CACACCGGCC CTTCTGGAGG CTAATGGGAA GCCCAGTGCT
    CCGGACGCTG GGAGCCTGGG ACTGCCGAGC CTGAAGAACA AGAGGGTGAG CAAGGAACTC
    TCCAAGGAGG ACCTGTCCTG GCCACTCACG CTCTCGGAGG CACAGGAGAC ACGGCCACGG
    GGCAGCGCTG GCTGGGAGAG CAGCCTCAGG CAGAAGCCTC CTGTCCGCCT CATCTTCCAG
    GCAGGGCAGA CCCGGCACGA GATGAAAATC AAGGAAGCGA ACAGCGAGGA GAATCTCAGG
    GACCTGCCAA CGCCGCTGCG GAGCTCCAGG AGGCGATCGG CCATGCCCGT CCTCACCACC
    ATCGACCTGA CGGAGGATGA CTCCCGGGAC TCGTCGCAGA GCAGCAGCAC GATTTCGGGG
    AGCAGCTCCC AGGAGGGCCA GAACGGCTCT GCCGAGCTGG CGGCTGAGGA ACCGGAGAGC
    CGAGAGGCGG GGATAGCGCT GGAGTACCAG GATGGGAAGG AATTTGGAAT TGGGGAACTC
    GTCTGGGGAA AGATCAAAGG TTTCTCCTGG TGGCCAGCGA TTGTCGTGTC CTACAGAGCC
    ACGTCCAAGC GCCAGGCGGT CTCGGGCATG CGATGGGTGC AGTGGTTTGG AGATGGGAAG
    TTCTCTGAGG TTTCTGCAGA CAAGCTGGTG GGGCTGATGG CCTTTAGGCA GCATTTCAAT
    TCTGCCACGT TTAATAAGCT GGTTTCCTAT CGCCGAGCCA TATTCCATGC CCTGGAGGTT
    GCCCGGAGCC GGTCGGGGAA GACGTTTGCA GCCACCCCCG GAGAGTCCCT GGAGGAGCAG
    CTGAAGCCCA TGATCGACTG GGCGCTCACC GGCTTCAAGC CCCTGGGCCT CAAGGGGCTG
    CGACCGCCCA AAACCTCAGA GAATGGGGCC CTGCGGAACG GCACGGAGGA GGTGCTGTGC
    CTCGAGCAGT GCCCCCCCAC CAAGAGGCTG AAGGCTGCCC TCTGCAACAG CAACAAGGAG
    CAGCGAGTGG AGGAGGACCA GACCCGAGAG CAAATGGTTT CCGAAGTTAC GAACAACAGC
    GGGAGCCTCG AAGACAGCTG CCTGTCCTGT GGGAGGAGGA ACCCGGCCAC CTTCCACCCG
    CTGTTCGAGG GAGGCCTGTG CCAGACGTGC AGGGATAGAT TCCTGGAGCT CTTCTACATG
    TATGATGAAG ACGGCTACCA GTCCTACTGC ACCGTCTGCT GTGAGGGCAA GGAGCTGCTG
    CTCTGCAGCA ACGCCAGCTG CTGCAGGTGC TTCTGCGTGG AGTGCCTGGA GGTCCTGGTG
    GGGAGAGGGA CGTCGGCCAA GGCAAAGGAG CAGGAGCCCT GGAACTGCTA CATGTGCCAG
    CCCCAGCGCA GCTACGGGGT GCTGCAGCGC CGGCAGGACT GGAACACCCG TCTGCAGGAT
    TTCTTCACCA GTGACAAGGG CCAGGAATAC GACGCACCCA AAATCTACCC AGCCGTGCCC
    CCGGCCAAGA GGAAGCCCAT CAGAGTGCTC TCCTTGTTTG ATGGCATAGC AACAGGGTAC
    CTGGTGCTGA AGGACCTGGG CATCCAGGTG GAGAAGTACA TCGCCTCCGA GATCTGCGAG
    GACCCCATCG CGGTGGGCAC CGTGCGGCAC GAGGGCAACA TCACCTACGT GCACGACGTC
    CGGAACATCA CCAAGAGAAA CATCGAGGAG TGGGGTCCCT TTGACCTGGT GATCGGTGGG
    AGCCCCTGTA ACGACCTGTC CCTCGTCAGC CCGTCCAGGA AGGCGCTGTA TGGCCCGCCG
    GCCCCCACGC CCCCGCCGCA GCCTCCCCTG CGGGGCCGCG GCCGGTCGCC ACCCAGCACT
    CCCGCTTCCC CCCGTGCAGA AGGGACCGGG AGGCTTTTCT TCGAGTTCTA CCACCTGCTC
    AACTACGCCC GGCCCAAGGC AGGCGAGGAG CGCCCCTTCT TCTGGATGTT TGAGAACGTG
    GTGGCCATGA GGGTCAACGA CAAGAGGGAC ATCTCTCGGT TCCTGGAGTG TAACCCGGTT
    ATGATCGACG CTATCAAGAT CTCTGCTACC CACAGAGCTC GCTATTTCTG GGGCAACCTC
    CCGGGGATGA ACAGGATCTT CGGCTTCCCC CTCCACTACA CCGACGTTTC CAACATCAGC
    CGCGGGGCTC GCCAGAAGCT GCTCGGGAGG TCCTGGAGCA TCCCCGTCAT CCAGCACCTC
    TTCACCCCGC TCAAGGATTA TTTTGCCTGT GAATAG

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

    RefSeq XP_027328536.1
    CDS420..2855
    Translation

    Target ORF information:

    RefSeq Version XM_027472735.1
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_027472735.1

    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
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCAGCGGC TGGCTGTGAT GGTGGCTGCC 
    CAGGAGACTT CTCAGGCCTG GTCTTCACTG GGAGAGGAGG GGCCGGCAAC CATGAAAAAG
    GAGAACCTCA GCCGGGATGA GGCGGACTGC AGGGCAGGGC TGATCCGCCT CAACGGGGAC
    TGCACTGATC CTGCTAAAGA CACACCGGCC CTTCTGGAGG CTAATGGGAA GCCCAGTGCT
    CCGGACGCTG GGAGCCTGGG ACTGCCGAGC CTGAAGAACA AGAGGGTGAG CAAGGAACTC
    TCCAAGGAGG ACCTGTCCTG GCCACTCACG CTCTCGGAGG CACAGGAGAC ACGGCCACGG
    GGCAGCGCTG GCTGGGAGAG CAGCCTCAGG CAGAAGCCTC CTGTCCGCCT CATCTTCCAG
    GCAGGGCAGA CCCGGCACGA GATGAAAATC AAGGAAGCGA ACAGCGAGGA GAATCTCAGG
    GACCTGCCAA CGCCGCTGCG GAGCTCCAGG AGGCGATCGG CCATGCCCGT CCTCACCACC
    ATCGACCTGA CGGAGGATGA CTCCCGGGAC TCGTCGCAGA GCAGCAGCAC GATTTCGGGG
    AGCAGCTCCC AGGAGGGCCA GAACGGCTCT GCCGAGCTGG CGGCTGAGGA ACCGGAGAGC
    CGAGAGGCGG GGATAGCGCT GGAGTACCAG GATGGGAAGG AATTTGGAAT TGGGGAACTC
    GTCTGGGGAA AGATCAAAGG TTTCTCCTGG TGGCCAGCGA TTGTCGTGTC CTACAGAGCC
    ACGTCCAAGC GCCAGGCGGT CTCGGGCATG CGATGGGTGC AGTGGTTTGG AGATGGGAAG
    TTCTCTGAGG TTTCTGCAGA CAAGCTGGTG GGGCTGATGG CCTTTAGGCA GCATTTCAAT
    TCTGCCACGT TTAATAAGCT GGTTTCCTAT CGCCGAGCCA TATTCCATGC CCTGGAGGTT
    GCCCGGAGCC GGTCGGGGAA GACGTTTGCA GCCACCCCCG GAGAGTCCCT GGAGGAGCAG
    CTGAAGCCCA TGATCGACTG GGCGCTCACC GGCTTCAAGC CCCTGGGCCT CAAGGGGCTG
    CGACCGCCCA AAACCTCAGA GAATGGGGCC CTGCGGAACG GCACGGAGGA GGTGCTGTGC
    CTCGAGCAGT GCCCCCCCAC CAAGAGGCTG AAGGCTGCCC TCTGCAACAG CAACAAGGAG
    CAGCGAGTGG AGGAGGACCA GACCCGAGAG CAAATGGTTT CCGAAGTTAC GAACAACAGC
    GGGAGCCTCG AAGACAGCTG CCTGTCCTGT GGGAGGAGGA ACCCGGCCAC CTTCCACCCG
    CTGTTCGAGG GAGGCCTGTG CCAGACGTGC AGGGATAGAT TCCTGGAGCT CTTCTACATG
    TATGATGAAG ACGGCTACCA GTCCTACTGC ACCGTCTGCT GTGAGGGCAA GGAGCTGCTG
    CTCTGCAGCA ACGCCAGCTG CTGCAGGTGC TTCTGCGTGG AGTGCCTGGA GGTCCTGGTG
    GGGAGAGGGA CGTCGGCCAA GGCAAAGGAG CAGGAGCCCT GGAACTGCTA CATGTGCCAG
    CCCCAGCGCA GCTACGGGGT GCTGCAGCGC CGGCAGGACT GGAACACCCG TCTGCAGGAT
    TTCTTCACCA GTGACAAGGG CCAGGAATAC GACGCACCCA AAATCTACCC AGCCGTGCCC
    CCGGCCAAGA GGAAGCCCAT CAGAGTGCTC TCCTTGTTTG ATGGCATAGC AACAGGGTAC
    CTGGTGCTGA AGGACCTGGG CATCCAGGTG GAGAAGTACA TCGCCTCCGA GATCTGCGAG
    GACCCCATCG CGGTGGGCAC CGTGCGGCAC GAGGGCAACA TCACCTACGT GCACGACGTC
    CGGAACATCA CCAAGAGAAA CATCGAGGAG TGGGGTCCCT TTGACCTGGT GATCGGTGGG
    AGCCCCTGTA ACGACCTGTC CCTCGTCAGC CCGTCCAGGA AGGCGCTGTA TGGCCCGCCG
    GCCCCCACGC CCCCGCCGCA GCCTCCCCTG CGGGGCCGCG GCCGGTCGCC ACCCAGCACT
    CCCGCTTCCC CCCGTGCAGA AGGGACCGGG AGGCTTTTCT TCGAGTTCTA CCACCTGCTC
    AACTACGCCC GGCCCAAGGC AGGCGAGGAG CGCCCCTTCT TCTGGATGTT TGAGAACGTG
    GTGGCCATGA GGGTCAACGA CAAGAGGGAC ATCTCTCGGT TCCTGGAGTG TAACCCGGTT
    ATGATCGACG CTATCAAGAT CTCTGCTACC CACAGAGCTC GCTATTTCTG GGGCAACCTC
    CCGGGGATGA ACAGGATCTT CGGCTTCCCC CTCCACTACA CCGACGTTTC CAACATCAGC
    CGCGGGGCTC GCCAGAAGCT GCTCGGGAGG TCCTGGAGCA TCCCCGTCAT CCAGCACCTC
    TTCACCCCGC TCAAGGATTA TTTTGCCTGT GAATAG

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

    CloneID OAn171681
    Clone ID Related Accession (Same CDS sequence) XM_027472737.1
    Accession Version XM_027472737.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2349bp)
    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 2018-12-19
    Organism Anas platyrhynchos(mallard)
    Product DNA (cytosine-5)-methyltransferase 3B isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_040066.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Anas platyrhynchos Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCAGCGGC TGGCTGTGAT GGTGGCTGCC 
    CAGGAGACTT CTCAGGCCTG GTCTTCACTG GGAGAGGAGG GGCCGGCAAC CATGAAAAAG
    GAGAACCTCA GCCGGGATGA GGCGGACTGC AGGGCAGGGC TGATCCGCCT CAACGGGGAC
    TGCACTGATC CTGCTAAAGA CACACCGGCC CTTCTGGAGG CTAATGGGAA GCCCAGTGCT
    CCGGACGCTG GGAGCCTGGG ACTGCCGAGC CTGAAGAACA AGAGGGTGAG CAAGGAACTC
    TCCAAGGAGG ACCTGTCCTG GCCACTCACG CTCTCGGAGG CACAGGAGAC ACGGCCACGG
    GGCAGCGCTG GCTGGGAGAG CAGCCTCAGG CAGAAGCCTC CTGTCCGCCT CATCTTCCAG
    GCAGGGCAGA CCCGGCACGA GATGAAAATC AAGGAAGCGA ACAGCGAGGA GAATCTCAGG
    GACCTGCCAA CGCCGCTGCG GAGCTCCAGG AGGCGATCGG CCATGCCCGT CCTCACCACC
    ATCGACCTGA CGGAGGATGA CTCCCGGGAC TCGTCGCAGA GCAGCAGCAC GATTTCGGGG
    AGCAGCTCCC AGGAGGGCCA GAACGGCTCT GCCGAGCTGG CGGCTGAGGA ACCGGAGAGC
    CGAGAGGCGG GGATAGCGCT GGAGTACCAG GATGGGAAGG AATTTGGAAT TGGGGAACTC
    GTCTGGGGAA AGATCAAAGG TTTCTCCTGG TGGCCAGCGA TTGTCGTGTC CTACAGAGCC
    ACGTCCAAGC GCCAGGCGGT CTCGGGCATG CGATGGGTGC AGTGGTTTGG AGATGGGAAG
    TTCTCTGAGG TTTCTGCAGA CAAGCTGGTG GGGCTGATGG CCTTTAGGCA GCATTTCAAT
    TCTGCCACGT TTAATAAGCT GGTTTCCTAT CGCCGAGCCA TATTCCATGC CCTGGAGGTT
    GCCCGGAGCC GGTCGGGGAA GACGTTTGCA GCCACCCCCG GAGAGTCCCT GGAGGAGCAG
    CTGAAGCCCA TGATCGACTG GGCGCTCACC GGCTTCAAGC CCCTGGGCCT CAAGGGGCTG
    CGACCGCCCA AAACCTCAGA GAATGGGGCC CTGCGGAACG GCACGGAGGA GGTGCTGTGC
    CTCGAGCAGT GCCCCCCCAC CAAGAGGCTG AAGGCTGCCC TCTGCAACAG CAACAAGGAG
    CAGCGAGTGG AGGAGGACCA GACCCGAGAG CAAATGGTTT CCGAAGTTAC GAACAACAGC
    GGGAGCCTCG AAGACAGCTG CCTGTCCTGT GGGAGGAGGA ACCCGGCCAC CTTCCACCCG
    CTGTTCGAGG GAGGCCTGTG CCAGACGTGC AGGGATAGAT TCCTGGAGCT CTTCTACATG
    TATGATGAAG ACGGCTACCA GTCCTACTGC ACCGTCTGCT GTGAGGGCAA GGAGCTGCTG
    CTCTGCAGCA ACGCCAGCTG CTGCAGGTGC TTCTGCGTGG AGTGCCTGGA GGTCCTGGTG
    GGGAGAGGGA CGTCGGCCAA GGCAAAGGAG CAGGAGCCCT GGAACTGCTA CATGTGCCAG
    CCCCAGCGCA GCTACGGGGT GCTGCAGCGC CGGCAGGACT GGAACACCCG TCTGCAGGAT
    TTCTTCACCA GTGACAAGGG CCAGGAATAC GACGCACCCA AAATCTACCC AGCCGTGCCC
    CCGGCCAAGA GGAAGCCCAT CAGAGTGCTC TCCTTGTTTG ATGGCATAGC AACAGGGTAC
    CTGGTGCTGA AGGACCTGGG CATCCAGGTG GAGAAGTACA TCGCCTCCGA GATCTGCGAG
    GACCCCATCG CGGTGGGCAC CGTGCGGCAC GAGGGCAACA TCACCTACGT GCACGACGTC
    CGGAACATCA CCAAGAGAAA CATCGAGGAG TGGGGTCCCT TTGACCTGGT GATCGGTGGG
    AGCCCCTGTA ACGACCTGTC CCTCGTCAGC CCGTCCAGGA AGGCGCTGTA TGAAGGGACC
    GGGAGGCTTT TCTTCGAGTT CTACCACCTG CTCAACTACG CCCGGCCCAA GGCAGGCGAG
    GAGCGCCCCT TCTTCTGGAT GTTTGAGAAC GTGGTGGCCA TGAGGGTCAA CGACAAGAGG
    GACATCTCTC GGTTCCTGGA GTGTAACCCG GTTATGATCG ACGCTATCAA GATCTCTGCT
    ACCCACAGAG CTCGCTATTT CTGGGGCAAC CTCCCGGGGA TGAACAGGAT CTTCGGCTTC
    CCCCTCCACT ACACCGACGT TTCCAACATC AGCCGCGGGG CTCGCCAGAA GCTGCTCGGG
    AGGTCCTGGA GCATCCCCGT CATCCAGCAC CTCTTCACCC CGCTCAAGGA TTATTTTGCC
    TGTGAATAG

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

    RefSeq XP_027328538.1
    CDS420..2768
    Translation

    Target ORF information:

    RefSeq Version XM_027472737.1
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_027472737.1

    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
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCAGCGGC TGGCTGTGAT GGTGGCTGCC 
    CAGGAGACTT CTCAGGCCTG GTCTTCACTG GGAGAGGAGG GGCCGGCAAC CATGAAAAAG
    GAGAACCTCA GCCGGGATGA GGCGGACTGC AGGGCAGGGC TGATCCGCCT CAACGGGGAC
    TGCACTGATC CTGCTAAAGA CACACCGGCC CTTCTGGAGG CTAATGGGAA GCCCAGTGCT
    CCGGACGCTG GGAGCCTGGG ACTGCCGAGC CTGAAGAACA AGAGGGTGAG CAAGGAACTC
    TCCAAGGAGG ACCTGTCCTG GCCACTCACG CTCTCGGAGG CACAGGAGAC ACGGCCACGG
    GGCAGCGCTG GCTGGGAGAG CAGCCTCAGG CAGAAGCCTC CTGTCCGCCT CATCTTCCAG
    GCAGGGCAGA CCCGGCACGA GATGAAAATC AAGGAAGCGA ACAGCGAGGA GAATCTCAGG
    GACCTGCCAA CGCCGCTGCG GAGCTCCAGG AGGCGATCGG CCATGCCCGT CCTCACCACC
    ATCGACCTGA CGGAGGATGA CTCCCGGGAC TCGTCGCAGA GCAGCAGCAC GATTTCGGGG
    AGCAGCTCCC AGGAGGGCCA GAACGGCTCT GCCGAGCTGG CGGCTGAGGA ACCGGAGAGC
    CGAGAGGCGG GGATAGCGCT GGAGTACCAG GATGGGAAGG AATTTGGAAT TGGGGAACTC
    GTCTGGGGAA AGATCAAAGG TTTCTCCTGG TGGCCAGCGA TTGTCGTGTC CTACAGAGCC
    ACGTCCAAGC GCCAGGCGGT CTCGGGCATG CGATGGGTGC AGTGGTTTGG AGATGGGAAG
    TTCTCTGAGG TTTCTGCAGA CAAGCTGGTG GGGCTGATGG CCTTTAGGCA GCATTTCAAT
    TCTGCCACGT TTAATAAGCT GGTTTCCTAT CGCCGAGCCA TATTCCATGC CCTGGAGGTT
    GCCCGGAGCC GGTCGGGGAA GACGTTTGCA GCCACCCCCG GAGAGTCCCT GGAGGAGCAG
    CTGAAGCCCA TGATCGACTG GGCGCTCACC GGCTTCAAGC CCCTGGGCCT CAAGGGGCTG
    CGACCGCCCA AAACCTCAGA GAATGGGGCC CTGCGGAACG GCACGGAGGA GGTGCTGTGC
    CTCGAGCAGT GCCCCCCCAC CAAGAGGCTG AAGGCTGCCC TCTGCAACAG CAACAAGGAG
    CAGCGAGTGG AGGAGGACCA GACCCGAGAG CAAATGGTTT CCGAAGTTAC GAACAACAGC
    GGGAGCCTCG AAGACAGCTG CCTGTCCTGT GGGAGGAGGA ACCCGGCCAC CTTCCACCCG
    CTGTTCGAGG GAGGCCTGTG CCAGACGTGC AGGGATAGAT TCCTGGAGCT CTTCTACATG
    TATGATGAAG ACGGCTACCA GTCCTACTGC ACCGTCTGCT GTGAGGGCAA GGAGCTGCTG
    CTCTGCAGCA ACGCCAGCTG CTGCAGGTGC TTCTGCGTGG AGTGCCTGGA GGTCCTGGTG
    GGGAGAGGGA CGTCGGCCAA GGCAAAGGAG CAGGAGCCCT GGAACTGCTA CATGTGCCAG
    CCCCAGCGCA GCTACGGGGT GCTGCAGCGC CGGCAGGACT GGAACACCCG TCTGCAGGAT
    TTCTTCACCA GTGACAAGGG CCAGGAATAC GACGCACCCA AAATCTACCC AGCCGTGCCC
    CCGGCCAAGA GGAAGCCCAT CAGAGTGCTC TCCTTGTTTG ATGGCATAGC AACAGGGTAC
    CTGGTGCTGA AGGACCTGGG CATCCAGGTG GAGAAGTACA TCGCCTCCGA GATCTGCGAG
    GACCCCATCG CGGTGGGCAC CGTGCGGCAC GAGGGCAACA TCACCTACGT GCACGACGTC
    CGGAACATCA CCAAGAGAAA CATCGAGGAG TGGGGTCCCT TTGACCTGGT GATCGGTGGG
    AGCCCCTGTA ACGACCTGTC CCTCGTCAGC CCGTCCAGGA AGGCGCTGTA TGAAGGGACC
    GGGAGGCTTT TCTTCGAGTT CTACCACCTG CTCAACTACG CCCGGCCCAA GGCAGGCGAG
    GAGCGCCCCT TCTTCTGGAT GTTTGAGAAC GTGGTGGCCA TGAGGGTCAA CGACAAGAGG
    GACATCTCTC GGTTCCTGGA GTGTAACCCG GTTATGATCG ACGCTATCAA GATCTCTGCT
    ACCCACAGAG CTCGCTATTT CTGGGGCAAC CTCCCGGGGA TGAACAGGAT CTTCGGCTTC
    CCCCTCCACT ACACCGACGT TTCCAACATC AGCCGCGGGG CTCGCCAGAA GCTGCTCGGG
    AGGTCCTGGA GCATCCCCGT CATCCAGCAC CTCTTCACCC CGCTCAAGGA TTATTTTGCC
    TGTGAATAG

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

    CloneID OAn171682
    Clone ID Related Accession (Same CDS sequence) XM_027472738.1
    Accession Version XM_027472738.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2340bp)
    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 2018-12-19
    Organism Anas platyrhynchos(mallard)
    Product DNA (cytosine-5)-methyltransferase 3B isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_040066.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Anas platyrhynchos Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    ATGAGCATGG CAACCATGAA AAAGGAGAAC CTCAGCCGGG ATGAGGCGGA CTGCAGGGCA 
    GGGCTGATCC GCCTCAACGG GGACTGCACT GATCCTGCTA AAGACACACC GGCCCTTCTG
    GAGGCTAATG GGAAGCCCAG TGCTCCGGAC GCTGGGAGCC TGGGACTGCC GAGCCTGAAG
    AACAAGAGGG TGAGCAAGGA ACTCTCCAAG GAGGACCTGT CCTGGCCACT CACGCTCTCG
    GAGGCACAGG AGACACGGCC ACGGGGCAGC GCTGGCTGGG AGAGCAGCCT CAGGCAGAAG
    CCTCCTGTCC GCCTCATCTT CCAGGCAGGG CAGACCCGGC ACGAGATGAA AATCAAGGAA
    GCGAACAGCG AGGAGAATCT CAGGGACCTG CCAACGCCGC TGCGGAGCTC CAGGAGGCGA
    TCGGCCATGC CCGTCCTCAC CACCATCGAC CTGACGGAGG ATGACTCCCG GGACTCGTCG
    CAGAGCAGCA GCACGATTTC GGGGAGCAGC TCCCAGGAGG GCCAGAACGG CTCTGCCGAG
    CTGGCGGCTG AGGAACCGGA GAGCCGAGAG GCGGGGATAG CGCTGGAGTA CCAGGATGGG
    AAGGAATTTG GAATTGGGGA ACTCGTCTGG GGAAAGATCA AAGGTTTCTC CTGGTGGCCA
    GCGATTGTCG TGTCCTACAG AGCCACGTCC AAGCGCCAGG CGGTCTCGGG CATGCGATGG
    GTGCAGTGGT TTGGAGATGG GAAGTTCTCT GAGGTTTCTG CAGACAAGCT GGTGGGGCTG
    ATGGCCTTTA GGCAGCATTT CAATTCTGCC ACGTTTAATA AGCTGGTTTC CTATCGCCGA
    GCCATATTCC ATGCCCTGGA GGTTGCCCGG AGCCGGTCGG GGAAGACGTT TGCAGCCACC
    CCCGGAGAGT CCCTGGAGGA GCAGCTGAAG CCCATGATCG ACTGGGCGCT CACCGGCTTC
    AAGCCCCTGG GCCTCAAGGG GCTGCGACCG CCCAAAACCT CAGAGAATGG GGCCCTGCGG
    AACGGCACGG AGGAGGTGCT GTGCCTCGAG CAGTGCCCCC CCACCAAGAG GCTGAAGGCT
    GCCCTCTGCA ACAGCAACAA GGAGCAGCGA GTGGAGGAGG ACCAGACCCG AGAGCAAATG
    GTTTCCGAAG TTACGAACAA CAGCGGGAGC CTCGAAGACA GCTGCCTGTC CTGTGGGAGG
    AGGAACCCGG CCACCTTCCA CCCGCTGTTC GAGGGAGGCC TGTGCCAGAC GTGCAGGGAT
    AGATTCCTGG AGCTCTTCTA CATGTATGAT GAAGACGGCT ACCAGTCCTA CTGCACCGTC
    TGCTGTGAGG GCAAGGAGCT GCTGCTCTGC AGCAACGCCA GCTGCTGCAG GTGCTTCTGC
    GTGGAGTGCC TGGAGGTCCT GGTGGGGAGA GGGACGTCGG CCAAGGCAAA GGAGCAGGAG
    CCCTGGAACT GCTACATGTG CCAGCCCCAG CGCAGCTACG GGGTGCTGCA GCGCCGGCAG
    GACTGGAACA CCCGTCTGCA GGATTTCTTC ACCAGTGACA AGGGCCAGGA ATACGACGCA
    CCCAAAATCT ACCCAGCCGT GCCCCCGGCC AAGAGGAAGC CCATCAGAGT GCTCTCCTTG
    TTTGATGGCA TAGCAACAGG GTACCTGGTG CTGAAGGACC TGGGCATCCA GGTGGAGAAG
    TACATCGCCT CCGAGATCTG CGAGGACCCC ATCGCGGTGG GCACCGTGCG GCACGAGGGC
    AACATCACCT ACGTGCACGA CGTCCGGAAC ATCACCAAGA GAAACATCGA GGAGTGGGGT
    CCCTTTGACC TGGTGATCGG TGGGAGCCCC TGTAACGACC TGTCCCTCGT CAGCCCGTCC
    AGGAAGGCGC TGTATGGCCC GCCGGCCCCC ACGCCCCCGC CGCAGCCTCC CCTGCGGGGC
    CGCGGCCGGT CGCCACCCAG CACTCCCGCT TCCCCCCGTG CAGAAGGGAC CGGGAGGCTT
    TTCTTCGAGT TCTACCACCT GCTCAACTAC GCCCGGCCCA AGGCAGGCGA GGAGCGCCCC
    TTCTTCTGGA TGTTTGAGAA CGTGGTGGCC ATGAGGGTCA ACGACAAGAG GGACATCTCT
    CGGTTCCTGG AGTGTAACCC GGTTATGATC GACGCTATCA AGATCTCTGC TACCCACAGA
    GCTCGCTATT TCTGGGGCAA CCTCCCGGGG ATGAACAGGA TCTTCGGCTT CCCCCTCCAC
    TACACCGACG TTTCCAACAT CAGCCGCGGG GCTCGCCAGA AGCTGCTCGG GAGGTCCTGG
    AGCATCCCCG TCATCCAGCA CCTCTTCACC CCGCTCAAGG ATTATTTTGC CTGTGAATAG

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

    RefSeq XP_027328539.1
    CDS420..2759
    Translation

    Target ORF information:

    RefSeq Version XM_027472738.1
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_027472738.1

    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
    ATGAGCATGG CAACCATGAA AAAGGAGAAC CTCAGCCGGG ATGAGGCGGA CTGCAGGGCA 
    GGGCTGATCC GCCTCAACGG GGACTGCACT GATCCTGCTA AAGACACACC GGCCCTTCTG
    GAGGCTAATG GGAAGCCCAG TGCTCCGGAC GCTGGGAGCC TGGGACTGCC GAGCCTGAAG
    AACAAGAGGG TGAGCAAGGA ACTCTCCAAG GAGGACCTGT CCTGGCCACT CACGCTCTCG
    GAGGCACAGG AGACACGGCC ACGGGGCAGC GCTGGCTGGG AGAGCAGCCT CAGGCAGAAG
    CCTCCTGTCC GCCTCATCTT CCAGGCAGGG CAGACCCGGC ACGAGATGAA AATCAAGGAA
    GCGAACAGCG AGGAGAATCT CAGGGACCTG CCAACGCCGC TGCGGAGCTC CAGGAGGCGA
    TCGGCCATGC CCGTCCTCAC CACCATCGAC CTGACGGAGG ATGACTCCCG GGACTCGTCG
    CAGAGCAGCA GCACGATTTC GGGGAGCAGC TCCCAGGAGG GCCAGAACGG CTCTGCCGAG
    CTGGCGGCTG AGGAACCGGA GAGCCGAGAG GCGGGGATAG CGCTGGAGTA CCAGGATGGG
    AAGGAATTTG GAATTGGGGA ACTCGTCTGG GGAAAGATCA AAGGTTTCTC CTGGTGGCCA
    GCGATTGTCG TGTCCTACAG AGCCACGTCC AAGCGCCAGG CGGTCTCGGG CATGCGATGG
    GTGCAGTGGT TTGGAGATGG GAAGTTCTCT GAGGTTTCTG CAGACAAGCT GGTGGGGCTG
    ATGGCCTTTA GGCAGCATTT CAATTCTGCC ACGTTTAATA AGCTGGTTTC CTATCGCCGA
    GCCATATTCC ATGCCCTGGA GGTTGCCCGG AGCCGGTCGG GGAAGACGTT TGCAGCCACC
    CCCGGAGAGT CCCTGGAGGA GCAGCTGAAG CCCATGATCG ACTGGGCGCT CACCGGCTTC
    AAGCCCCTGG GCCTCAAGGG GCTGCGACCG CCCAAAACCT CAGAGAATGG GGCCCTGCGG
    AACGGCACGG AGGAGGTGCT GTGCCTCGAG CAGTGCCCCC CCACCAAGAG GCTGAAGGCT
    GCCCTCTGCA ACAGCAACAA GGAGCAGCGA GTGGAGGAGG ACCAGACCCG AGAGCAAATG
    GTTTCCGAAG TTACGAACAA CAGCGGGAGC CTCGAAGACA GCTGCCTGTC CTGTGGGAGG
    AGGAACCCGG CCACCTTCCA CCCGCTGTTC GAGGGAGGCC TGTGCCAGAC GTGCAGGGAT
    AGATTCCTGG AGCTCTTCTA CATGTATGAT GAAGACGGCT ACCAGTCCTA CTGCACCGTC
    TGCTGTGAGG GCAAGGAGCT GCTGCTCTGC AGCAACGCCA GCTGCTGCAG GTGCTTCTGC
    GTGGAGTGCC TGGAGGTCCT GGTGGGGAGA GGGACGTCGG CCAAGGCAAA GGAGCAGGAG
    CCCTGGAACT GCTACATGTG CCAGCCCCAG CGCAGCTACG GGGTGCTGCA GCGCCGGCAG
    GACTGGAACA CCCGTCTGCA GGATTTCTTC ACCAGTGACA AGGGCCAGGA ATACGACGCA
    CCCAAAATCT ACCCAGCCGT GCCCCCGGCC AAGAGGAAGC CCATCAGAGT GCTCTCCTTG
    TTTGATGGCA TAGCAACAGG GTACCTGGTG CTGAAGGACC TGGGCATCCA GGTGGAGAAG
    TACATCGCCT CCGAGATCTG CGAGGACCCC ATCGCGGTGG GCACCGTGCG GCACGAGGGC
    AACATCACCT ACGTGCACGA CGTCCGGAAC ATCACCAAGA GAAACATCGA GGAGTGGGGT
    CCCTTTGACC TGGTGATCGG TGGGAGCCCC TGTAACGACC TGTCCCTCGT CAGCCCGTCC
    AGGAAGGCGC TGTATGGCCC GCCGGCCCCC ACGCCCCCGC CGCAGCCTCC CCTGCGGGGC
    CGCGGCCGGT CGCCACCCAG CACTCCCGCT TCCCCCCGTG CAGAAGGGAC CGGGAGGCTT
    TTCTTCGAGT TCTACCACCT GCTCAACTAC GCCCGGCCCA AGGCAGGCGA GGAGCGCCCC
    TTCTTCTGGA TGTTTGAGAA CGTGGTGGCC ATGAGGGTCA ACGACAAGAG GGACATCTCT
    CGGTTCCTGG AGTGTAACCC GGTTATGATC GACGCTATCA AGATCTCTGC TACCCACAGA
    GCTCGCTATT TCTGGGGCAA CCTCCCGGGG ATGAACAGGA TCTTCGGCTT CCCCCTCCAC
    TACACCGACG TTTCCAACAT CAGCCGCGGG GCTCGCCAGA AGCTGCTCGG GAGGTCCTGG
    AGCATCCCCG TCATCCAGCA CCTCTTCACC CCGCTCAAGG ATTATTTTGC CTGTGAATAG

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

    CloneID OAn171683
    Clone ID Related Accession (Same CDS sequence) XM_027472739.1
    Accession Version XM_027472739.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2328bp)
    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 2018-12-19
    Organism Anas platyrhynchos(mallard)
    Product DNA (cytosine-5)-methyltransferase 3B isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_040066.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Anas platyrhynchos Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCAGCGGC TGGCTGTGAT GGTGGCTGCC 
    CAGGAGACTT CTCAGGCCTG GTCTTCACTG GGAGAGGAGG GGCCGGCAAC CATGAAAAAG
    GAGAACCTCA GCCGGGATGA GGCGGACTGC AGGGCAGGGC TGATCCGCCT CAACGGGGAC
    TGCACTGATC CTGCTAAAGA CACACCGGCC CTTCTGGAGG CTAATGGGAA GCCCAGTGCT
    CCGGACGCTG GGAGCCTGGG ACTGCCGAGC CTGAAGAACA AGAGGGTGAG CAAGGAACTC
    TCCAAGGAGG ACCTGTCCTG GCCACTCACG CTCTCGGAGG CACAGGAGAC ACGGCCACGG
    GGCAGCGCTG GCTGGGAGAG CAGCCTCAGG CAGAAGCCTC CTGTCCGCCT CATCTTCCAG
    GCAGGGCAGA CCCGGCACGA GATGAAAATC AAGGAAGCGA ACAGCGAGGA GAATCTCAGG
    GACCTGCCAA CGCCGCTGCG GAGCTCCAGG AGGCGATCGG CCATGCCCGT CCTCACCACC
    ATCGACCTGA CGGAGGATGA CTCCCGGGAC TCGTCGCAGA GCAGCAGCAC GATTTCGGGG
    AGCAGCTCCC AGGAGGGCCA GAACGGCTCT GCCGAGCTGG CGGCTGAGGA ACCGGAGAGC
    CGAGAGGCGG GGATAGCGCT GGAGTACCAG GATGGGAAGG AATTTGGAAT TGGGGAACTC
    GTCTGGGGAA AGATCAAAGG TTTCTCCTGG TGGCCAGCGA TTGTCGTGTC CTACAGAGCC
    ACGTCCAAGC GCCAGGCGGT CTCGGGCATG CGATGGGTGC AGTGGTTTGG AGATGGGAAG
    TTCTCTGAGG TTGCCCGGAG CCGGTCGGGG AAGACGTTTG CAGCCACCCC CGGAGAGTCC
    CTGGAGGAGC AGCTGAAGCC CATGATCGAC TGGGCGCTCA CCGGCTTCAA GCCCCTGGGC
    CTCAAGGGGC TGCGACCGCC CAAAACCTCA GAGAATGGGG CCCTGCGGAA CGGCACGGAG
    GAGGTGCTGT GCCTCGAGCA GTGCCCCCCC ACCAAGAGGC TGAAGGCTGC CCTCTGCAAC
    AGCAACAAGG AGCAGCGAGT GGAGGAGGAC CAGACCCGAG AGCAAATGGT TTCCGAAGTT
    ACGAACAACA GCGGGAGCCT CGAAGACAGC TGCCTGTCCT GTGGGAGGAG GAACCCGGCC
    ACCTTCCACC CGCTGTTCGA GGGAGGCCTG TGCCAGACGT GCAGGGATAG ATTCCTGGAG
    CTCTTCTACA TGTATGATGA AGACGGCTAC CAGTCCTACT GCACCGTCTG CTGTGAGGGC
    AAGGAGCTGC TGCTCTGCAG CAACGCCAGC TGCTGCAGGT GCTTCTGCGT GGAGTGCCTG
    GAGGTCCTGG TGGGGAGAGG GACGTCGGCC AAGGCAAAGG AGCAGGAGCC CTGGAACTGC
    TACATGTGCC AGCCCCAGCG CAGCTACGGG GTGCTGCAGC GCCGGCAGGA CTGGAACACC
    CGTCTGCAGG ATTTCTTCAC CAGTGACAAG GGCCAGGAAT ACGACGCACC CAAAATCTAC
    CCAGCCGTGC CCCCGGCCAA GAGGAAGCCC ATCAGAGTGC TCTCCTTGTT TGATGGCATA
    GCAACAGGGT ACCTGGTGCT GAAGGACCTG GGCATCCAGG TGGAGAAGTA CATCGCCTCC
    GAGATCTGCG AGGACCCCAT CGCGGTGGGC ACCGTGCGGC ACGAGGGCAA CATCACCTAC
    GTGCACGACG TCCGGAACAT CACCAAGAGA AACATCGAGG AGTGGGGTCC CTTTGACCTG
    GTGATCGGTG GGAGCCCCTG TAACGACCTG TCCCTCGTCA GCCCGTCCAG GAAGGCGCTG
    TATGGCCCGC CGGCCCCCAC GCCCCCGCCG CAGCCTCCCC TGCGGGGCCG CGGCCGGTCG
    CCACCCAGCA CTCCCGCTTC CCCCCGTGCA GAAGGGACCG GGAGGCTTTT CTTCGAGTTC
    TACCACCTGC TCAACTACGC CCGGCCCAAG GCAGGCGAGG AGCGCCCCTT CTTCTGGATG
    TTTGAGAACG TGGTGGCCAT GAGGGTCAAC GACAAGAGGG ACATCTCTCG GTTCCTGGAG
    TGTAACCCGG TTATGATCGA CGCTATCAAG ATCTCTGCTA CCCACAGAGC TCGCTATTTC
    TGGGGCAACC TCCCGGGGAT GAACAGGATC TTCGGCTTCC CCCTCCACTA CACCGACGTT
    TCCAACATCA GCCGCGGGGC TCGCCAGAAG CTGCTCGGGA GGTCCTGGAG CATCCCCGTC
    ATCCAGCACC TCTTCACCCC GCTCAAGGAT TATTTTGCCT GTGAATAG

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

    RefSeq XP_027328540.1
    CDS420..2747
    Translation

    Target ORF information:

    RefSeq Version XM_027472739.1
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos DNA methyltransferase 3 beta (DNMT3B), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_027472739.1

    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
    ATGAGCATGG TAAAGAGCCT AGAGCGGCTG GAGCAGCGGC TGGCTGTGAT GGTGGCTGCC 
    CAGGAGACTT CTCAGGCCTG GTCTTCACTG GGAGAGGAGG GGCCGGCAAC CATGAAAAAG
    GAGAACCTCA GCCGGGATGA GGCGGACTGC AGGGCAGGGC TGATCCGCCT CAACGGGGAC
    TGCACTGATC CTGCTAAAGA CACACCGGCC CTTCTGGAGG CTAATGGGAA GCCCAGTGCT
    CCGGACGCTG GGAGCCTGGG ACTGCCGAGC CTGAAGAACA AGAGGGTGAG CAAGGAACTC
    TCCAAGGAGG ACCTGTCCTG GCCACTCACG CTCTCGGAGG CACAGGAGAC ACGGCCACGG
    GGCAGCGCTG GCTGGGAGAG CAGCCTCAGG CAGAAGCCTC CTGTCCGCCT CATCTTCCAG
    GCAGGGCAGA CCCGGCACGA GATGAAAATC AAGGAAGCGA ACAGCGAGGA GAATCTCAGG
    GACCTGCCAA CGCCGCTGCG GAGCTCCAGG AGGCGATCGG CCATGCCCGT CCTCACCACC
    ATCGACCTGA CGGAGGATGA CTCCCGGGAC TCGTCGCAGA GCAGCAGCAC GATTTCGGGG
    AGCAGCTCCC AGGAGGGCCA GAACGGCTCT GCCGAGCTGG CGGCTGAGGA ACCGGAGAGC
    CGAGAGGCGG GGATAGCGCT GGAGTACCAG GATGGGAAGG AATTTGGAAT TGGGGAACTC
    GTCTGGGGAA AGATCAAAGG TTTCTCCTGG TGGCCAGCGA TTGTCGTGTC CTACAGAGCC
    ACGTCCAAGC GCCAGGCGGT CTCGGGCATG CGATGGGTGC AGTGGTTTGG AGATGGGAAG
    TTCTCTGAGG TTGCCCGGAG CCGGTCGGGG AAGACGTTTG CAGCCACCCC CGGAGAGTCC
    CTGGAGGAGC AGCTGAAGCC CATGATCGAC TGGGCGCTCA CCGGCTTCAA GCCCCTGGGC
    CTCAAGGGGC TGCGACCGCC CAAAACCTCA GAGAATGGGG CCCTGCGGAA CGGCACGGAG
    GAGGTGCTGT GCCTCGAGCA GTGCCCCCCC ACCAAGAGGC TGAAGGCTGC CCTCTGCAAC
    AGCAACAAGG AGCAGCGAGT GGAGGAGGAC CAGACCCGAG AGCAAATGGT TTCCGAAGTT
    ACGAACAACA GCGGGAGCCT CGAAGACAGC TGCCTGTCCT GTGGGAGGAG GAACCCGGCC
    ACCTTCCACC CGCTGTTCGA GGGAGGCCTG TGCCAGACGT GCAGGGATAG ATTCCTGGAG
    CTCTTCTACA TGTATGATGA AGACGGCTAC CAGTCCTACT GCACCGTCTG CTGTGAGGGC
    AAGGAGCTGC TGCTCTGCAG CAACGCCAGC TGCTGCAGGT GCTTCTGCGT GGAGTGCCTG
    GAGGTCCTGG TGGGGAGAGG GACGTCGGCC AAGGCAAAGG AGCAGGAGCC CTGGAACTGC
    TACATGTGCC AGCCCCAGCG CAGCTACGGG GTGCTGCAGC GCCGGCAGGA CTGGAACACC
    CGTCTGCAGG ATTTCTTCAC CAGTGACAAG GGCCAGGAAT ACGACGCACC CAAAATCTAC
    CCAGCCGTGC CCCCGGCCAA GAGGAAGCCC ATCAGAGTGC TCTCCTTGTT TGATGGCATA
    GCAACAGGGT ACCTGGTGCT GAAGGACCTG GGCATCCAGG TGGAGAAGTA CATCGCCTCC
    GAGATCTGCG AGGACCCCAT CGCGGTGGGC ACCGTGCGGC ACGAGGGCAA CATCACCTAC
    GTGCACGACG TCCGGAACAT CACCAAGAGA AACATCGAGG AGTGGGGTCC CTTTGACCTG
    GTGATCGGTG GGAGCCCCTG TAACGACCTG TCCCTCGTCA GCCCGTCCAG GAAGGCGCTG
    TATGGCCCGC CGGCCCCCAC GCCCCCGCCG CAGCCTCCCC TGCGGGGCCG CGGCCGGTCG
    CCACCCAGCA CTCCCGCTTC CCCCCGTGCA GAAGGGACCG GGAGGCTTTT CTTCGAGTTC
    TACCACCTGC TCAACTACGC CCGGCCCAAG GCAGGCGAGG AGCGCCCCTT CTTCTGGATG
    TTTGAGAACG TGGTGGCCAT GAGGGTCAAC GACAAGAGGG ACATCTCTCG GTTCCTGGAG
    TGTAACCCGG TTATGATCGA CGCTATCAAG ATCTCTGCTA CCCACAGAGC TCGCTATTTC
    TGGGGCAACC TCCCGGGGAT GAACAGGATC TTCGGCTTCC CCCTCCACTA CACCGACGTT
    TCCAACATCA GCCGCGGGGC TCGCCAGAAG CTGCTCGGGA GGTCCTGGAG CATCCCCGTC
    ATCCAGCACC TCTTCACCCC GCTCAAGGAT TATTTTGCCT GTGAATAG

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