HEPH cDNA ORF clone, Anas platyrhynchos(mallard)

The following HEPH gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the HEPH 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
OAn112220 XM_005020913.3
Latest version!
Anas platyrhynchos hephaestin (HEPH), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAn112221 XM_005020914.3
Latest version!
Anas platyrhynchos hephaestin (HEPH), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
View Old Accession Versions >>
OAn112221 XM_005020914.2 Anas platyrhynchos hephaestin (HEPH), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OAn112220 XM_005020913.2 Anas platyrhynchos hephaestin (HEPH), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
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 OAn112220
    Clone ID Related Accession (Same CDS sequence) XM_005020913.2 , XM_005020913.3
    Accession Version XM_005020913.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3468bp)
    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 hephaestin isoform X1
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004677125.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Jul 9, 2015 this sequence version replaced XM_005020913.1. ##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##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGGAATTGT TCTGGTTGTT GCTGTTTTGC ATCCATTTGC CAACACCCAC GTCTGCTGGA 
    GGCATCACCC GAGTCTATTA CCTGGGGATC CGTGAGGTGG ACTGGAACTA TGCTCCGACG
    GGAAAGAACA TGTTCAGTAA TCAAAGCATT GCACATAGCC TAAAGGCCTC AACGTTCCTG
    CAGTCTGGCA AAGACAGGGT GGGAAGCACA TACAAGAAAT CTGTGTACAA GCAATATACA
    GATGCCACCT ACACCACTGA GATTCCCAAA CCTGGCTGGC TGGGGTTTCT TGGGCCCATC
    ATCCGAGCAG AAGTGGGGGA TACCATTAAA GTACACCTAA AAAACTTTGC TAGTCGGCCG
    TATACAATCC ATCCTCATGG TGTCTTCTAC GAAAAGGACT CAGAAGGATC CCTGTATCCT
    GATATGTCCC CCCAGGATCA GAAGAAGGAT GATGCTGTCC CCCCAGGAGG GAATTACACC
    TATACTTGGA CTGTTCCTGA AGATCACAGC CCAACTGCTG ATGATCCAAA CTGCTTGACC
    TGGATCTACC ACTCTCATAT TGATGCACCA AAGGATATTG CATCTGGGTT AATTGGGCCG
    CTACTTACAT GCAAAGAAGG AATACTGACT GGCACTTCTC AAAGACGCCA GGATGTGGAT
    GTTGATTTCT TTCTGATGTT CAGTGTGGTG GATGAGAACC TAAGCTGGTA CTTGGATGAG
    AACATTGCGT CATTCTGCAC AGATCCGGGC TCTGTAGACA AAGAAGATGA AGAGTTCCAA
    GAGAGCAACA AAATGCATGC TATTAATGGC TTTGTGTTTG GGAATCTCCC TATGTTGACG
    ATGTGTGCTG GGGATCACAT TTCATGGCAT CTCTTTGGAA TGGGCAATGA AATCGATGTT
    CATACAGCCT ACTTCCATGG AGAAACACTC AACATTCGAG GCCACAGGAC AGATGTGGCC
    AGCCTTTTCC CAGCCACTTT TGTTGCAGCA GACATGATCC CCAGTAACCC TGGGAGATGG
    CTCCTGAGCT GTCAGCTCAA TGATCACATA GAAGCTGGGA TGGGGGCTTT CTACGAAGTC
    CGGCCGTGTT CTCAGCAAGC TCTGGAACCT GCCCTGAAGG GGAAAGTTCG GAAATACTAC
    ATAGCTGCAA AGGAAGTGCA GTGGGACTAT GGACCTTCAG GACATGACCA AAGCAGCGGG
    AAACAGCTGA GTGAGGAAGG CAGCCCTGCT GAGAAGTTTT TCAAGCGTAG CCTCTACCGA
    ATTGGGGGAG TCTATTGGAA GGCCAAGTAT GTGGAATATA CTGATGAGAG TTTCCGTGAG
    GAAAAGCAGC AGTCAGAAGA AGAAAAACAC CTTGGCATAC TCGGTCCTGT GATAAAAGCT
    GAAGTTGGTG ACACCATCCT GGTGACGTTT TTTAACAAAG CCTCCTGGCC GTTCAGCATC
    CAGCCTCATG GAGTGTCTTA TGGGAAGGCA TGGGAAGGGA TGCGGTACCA TGATGGTCTG
    TCCCAGCACG GGATTTCTGT TGCACCTCTG CAGAACTTTA CGTACAGATG GACTGTGCCA
    AAGCATGTTG GACCGACGTC CAGTGACCCT CCCTGCCTGA CCTGGATGTA CAGCTCTGCT
    GTGGACCCTG TCAAAGACTC CAGTTCGGGC TTGGTAGGCC CTCTGGTCAT CTGCAAGCCA
    GGCACTTTGG ATGACAACAA CAAACAGAAA GGTATCGACA AAGAATTTTA CCTTCTCTTC
    AGTGTGTTTG ATGAGAACCT CAGCTGGTAT TTAAATGCAA ACATAAAGTA CTATTTGAGG
    ATGGAAGAGA CTTCTGTGAA AAAGGATGAT GGCTTTGAGG AGTCAAACAG GATGCATGCC
    ATCAATGGAT TTATGTTTGG TAACTTGCCT GGGCTGGATG TTTGTGAAGG AGACAATGTG
    TCCTGGCACC TTCTGGGCTT GGGCAGTGAA GCAGATGTAC ATGGAGCTGT GTTTCAGGGA
    AATACCCTGC AGATGAATGG GATGCGGAAG GATTCAACCA GCCTGTTCCC CCACACGTTT
    GCTACTGCCT TCATGCAACC TGATAACAAG GGGGTTTTCG AGATCTACTG CCAGACGAGC
    AATCACTACC AGGCTGGGAT GAGGGAACAC TACTCCGTTT CCAAGTGCGG CAAGAGGGAC
    CTGGCTCCTG CCCCTCCGTA CAGGGGGGTG CGCACCTACT ACATCGCGGC GGAGGAGCTG
    GAGTGGGACT ACGCGCCCGA CAGGAGCTGG GAGAGGGAGC GGCACAGCCA CTCCACGGAG
    AGCTACGCCG ATATATTTTT GAGCAACGAG AATGGGCTGC TTGGCTCCCG GTACAAGAAA
    GCAGTTTACA GGGAGTACAC TGATGGGACT TTCAAGACTC CTAAGGCTAG GACGAATGGT
    GACGAACACC TGGGGATACT AGGTCCTTTT CTGGCGGCAG AAGTGGGAGA GATTCTTAAC
    GTTGTGTTCA AGAACAATGC CACACGACCC TACTCCATTC ACGCACATGG GGTGCTGGAA
    AGGCAGACAG GGCAGCCACA AGTAGCAAAC CCTGGTGACA TAGTGACATA CCAATGGGAA
    ATTCCTGAGA GGTCTGGTCC AGGGCCAAAT GATTCAGCCT GTGTTCCTTG GATCTACTAC
    TCCACGGTGG ACCCAGTAAA GGATATGTAC AGTGGTCTGA TTGGACCCCT GAAGGTCTGC
    CGGAAAGGGG CACTGCAAAC TGACGGGCTC AGAAAGGATA TAAAGAGGGA GTTTGCTCTG
    CTGTTCCTGG TTTTTGATGA AAATCAGTCC TGGTACTTGG AAGAGAATGT GCAACGTTAC
    AGTAAGGGAA ATCACAAGGA TATTAACCTA CTGGATGAAA GATTTGTGGA AAGCAACAAA
    ATGCACGCGA TCAATGGGAG GCTCTATGCA AACTTGCCTG GGCTGACCAT GCTCCAAGGA
    GAGTGGGTGA ACTGGTACCT GCTGGGAATG GGTCAGGAGA TTGATGTCCA CACAGTCCAT
    TTTCATGCTG AGACCTTCAT ATACAAGAAT GGTAAAAGCT ACAGAGCAGA TGTCGTGGAT
    CTGTTCCCTG GGACCTTTGA AATGGTGGAA ATGTTGGCTG GGAACCCTGG GACATGGCTA
    CTTCATTGTC ATGTATCTGA TCATATTCAT GCTGGCATGG AGATACTCTT CGAAGTCTTG
    CCTAAACCAG AGCCAGTGCT TCAAGTGCTA AACTACGATG AAGTGACACC ACCGGAGAAT
    GTGGATGAGT CCCAGAAGGT CAGGCTTTTT GGAGCAAAGT TGCCTGTAGG GCAGGTAGAA
    GCTGCAGTCA TCTGTCTAGC TGTTGCAGGC TTGGTCCTCC TCCTGATTGC TGCTGTCCTC
    CTGGGAGTTG TCATCAACCT TGAGAGACAA AAGAAGCTAA GACGCAACAG GAGGTCTATC
    CTGGATGATG GATTCAAACT CATGTCTCAA AAGAATTCAG CGCTATAA

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

    RefSeq XP_005020970.1
    CDS373..3840
    Translation

    Target ORF information:

    RefSeq Version XM_005020913.2
    Organism Anas platyrhynchos(Mallard)
    Definition Anas platyrhynchos hephaestin (HEPH), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005020913.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGGAATTGT TCTGGTTGTT GCTGTTTTGC ATCCATTTGC CAACACCCAC GTCTGCTGGA 
    GGCATCACCC GAGTCTATTA CCTGGGGATC CGTGAGGTGG ACTGGAACTA TGCTCCGACG
    GGAAAGAACA TGTTCAGTAA TCAAAGCATT GCACATAGCC TAAAGGCCTC AACGTTCCTG
    CAGTCTGGCA AAGACAGGGT GGGAAGCACA TACAAGAAAT CTGTGTACAA GCAATATACA
    GATGCCACCT ACACCACTGA GATTCCCAAA CCTGGCTGGC TGGGGTTTCT TGGGCCCATC
    ATCCGAGCAG AAGTGGGGGA TACCATTAAA GTACACCTAA AAAACTTTGC TAGTCGGCCG
    TATACAATCC ATCCTCATGG TGTCTTCTAC GAAAAGGACT CAGAAGGATC CCTGTATCCT
    GATATGTCCC CCCAGGATCA GAAGAAGGAT GATGCTGTCC CCCCAGGAGG GAATTACACC
    TATACTTGGA CTGTTCCTGA AGATCACAGC CCAACTGCTG ATGATCCAAA CTGCTTGACC
    TGGATCTACC ACTCTCATAT TGATGCACCA AAGGATATTG CATCTGGGTT AATTGGGCCG
    CTACTTACAT GCAAAGAAGG AATACTGACT GGCACTTCTC AAAGACGCCA GGATGTGGAT
    GTTGATTTCT TTCTGATGTT CAGTGTGGTG GATGAGAACC TAAGCTGGTA CTTGGATGAG
    AACATTGCGT CATTCTGCAC AGATCCGGGC TCTGTAGACA AAGAAGATGA AGAGTTCCAA
    GAGAGCAACA AAATGCATGC TATTAATGGC TTTGTGTTTG GGAATCTCCC TATGTTGACG
    ATGTGTGCTG GGGATCACAT TTCATGGCAT CTCTTTGGAA TGGGCAATGA AATCGATGTT
    CATACAGCCT ACTTCCATGG AGAAACACTC AACATTCGAG GCCACAGGAC AGATGTGGCC
    AGCCTTTTCC CAGCCACTTT TGTTGCAGCA GACATGATCC CCAGTAACCC TGGGAGATGG
    CTCCTGAGCT GTCAGCTCAA TGATCACATA GAAGCTGGGA TGGGGGCTTT CTACGAAGTC
    CGGCCGTGTT CTCAGCAAGC TCTGGAACCT GCCCTGAAGG GGAAAGTTCG GAAATACTAC
    ATAGCTGCAA AGGAAGTGCA GTGGGACTAT GGACCTTCAG GACATGACCA AAGCAGCGGG
    AAACAGCTGA GTGAGGAAGG CAGCCCTGCT GAGAAGTTTT TCAAGCGTAG CCTCTACCGA
    ATTGGGGGAG TCTATTGGAA GGCCAAGTAT GTGGAATATA CTGATGAGAG TTTCCGTGAG
    GAAAAGCAGC AGTCAGAAGA AGAAAAACAC CTTGGCATAC TCGGTCCTGT GATAAAAGCT
    GAAGTTGGTG ACACCATCCT GGTGACGTTT TTTAACAAAG CCTCCTGGCC GTTCAGCATC
    CAGCCTCATG GAGTGTCTTA TGGGAAGGCA TGGGAAGGGA TGCGGTACCA TGATGGTCTG
    TCCCAGCACG GGATTTCTGT TGCACCTCTG CAGAACTTTA CGTACAGATG GACTGTGCCA
    AAGCATGTTG GACCGACGTC CAGTGACCCT CCCTGCCTGA CCTGGATGTA CAGCTCTGCT
    GTGGACCCTG TCAAAGACTC CAGTTCGGGC TTGGTAGGCC CTCTGGTCAT CTGCAAGCCA
    GGCACTTTGG ATGACAACAA CAAACAGAAA GGTATCGACA AAGAATTTTA CCTTCTCTTC
    AGTGTGTTTG ATGAGAACCT CAGCTGGTAT TTAAATGCAA ACATAAAGTA CTATTTGAGG
    ATGGAAGAGA CTTCTGTGAA AAAGGATGAT GGCTTTGAGG AGTCAAACAG GATGCATGCC
    ATCAATGGAT TTATGTTTGG TAACTTGCCT GGGCTGGATG TTTGTGAAGG AGACAATGTG
    TCCTGGCACC TTCTGGGCTT GGGCAGTGAA GCAGATGTAC ATGGAGCTGT GTTTCAGGGA
    AATACCCTGC AGATGAATGG GATGCGGAAG GATTCAACCA GCCTGTTCCC CCACACGTTT
    GCTACTGCCT TCATGCAACC TGATAACAAG GGGGTTTTCG AGATCTACTG CCAGACGAGC
    AATCACTACC AGGCTGGGAT GAGGGAACAC TACTCCGTTT CCAAGTGCGG CAAGAGGGAC
    CTGGCTCCTG CCCCTCCGTA CAGGGGGGTG CGCACCTACT ACATCGCGGC GGAGGAGCTG
    GAGTGGGACT ACGCGCCCGA CAGGAGCTGG GAGAGGGAGC GGCACAGCCA CTCCACGGAG
    AGCTACGCCG ATATATTTTT GAGCAACGAG AATGGGCTGC TTGGCTCCCG GTACAAGAAA
    GCAGTTTACA GGGAGTACAC TGATGGGACT TTCAAGACTC CTAAGGCTAG GACGAATGGT
    GACGAACACC TGGGGATACT AGGTCCTTTT CTGGCGGCAG AAGTGGGAGA GATTCTTAAC
    GTTGTGTTCA AGAACAATGC CACACGACCC TACTCCATTC ACGCACATGG GGTGCTGGAA
    AGGCAGACAG GGCAGCCACA AGTAGCAAAC CCTGGTGACA TAGTGACATA CCAATGGGAA
    ATTCCTGAGA GGTCTGGTCC AGGGCCAAAT GATTCAGCCT GTGTTCCTTG GATCTACTAC
    TCCACGGTGG ACCCAGTAAA GGATATGTAC AGTGGTCTGA TTGGACCCCT GAAGGTCTGC
    CGGAAAGGGG CACTGCAAAC TGACGGGCTC AGAAAGGATA TAAAGAGGGA GTTTGCTCTG
    CTGTTCCTGG TTTTTGATGA AAATCAGTCC TGGTACTTGG AAGAGAATGT GCAACGTTAC
    AGTAAGGGAA ATCACAAGGA TATTAACCTA CTGGATGAAA GATTTGTGGA AAGCAACAAA
    ATGCACGCGA TCAATGGGAG GCTCTATGCA AACTTGCCTG GGCTGACCAT GCTCCAAGGA
    GAGTGGGTGA ACTGGTACCT GCTGGGAATG GGTCAGGAGA TTGATGTCCA CACAGTCCAT
    TTTCATGCTG AGACCTTCAT ATACAAGAAT GGTAAAAGCT ACAGAGCAGA TGTCGTGGAT
    CTGTTCCCTG GGACCTTTGA AATGGTGGAA ATGTTGGCTG GGAACCCTGG GACATGGCTA
    CTTCATTGTC ATGTATCTGA TCATATTCAT GCTGGCATGG AGATACTCTT CGAAGTCTTG
    CCTAAACCAG AGCCAGTGCT TCAAGTGCTA AACTACGATG AAGTGACACC ACCGGAGAAT
    GTGGATGAGT CCCAGAAGGT CAGGCTTTTT GGAGCAAAGT TGCCTGTAGG GCAGGTAGAA
    GCTGCAGTCA TCTGTCTAGC TGTTGCAGGC TTGGTCCTCC TCCTGATTGC TGCTGTCCTC
    CTGGGAGTTG TCATCAACCT TGAGAGACAA AAGAAGCTAA GACGCAACAG GAGGTCTATC
    CTGGATGATG GATTCAAACT CATGTCTCAA AAGAATTCAG CGCTATAA

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

    CloneID OAn112220
    Clone ID Related Accession (Same CDS sequence) XM_005020913.2 , XM_005020913.3
    Accession Version XM_005020913.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3468bp)
    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 hephaestin isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004677125.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On May 24, 2017 this sequence version replaced XM_005020913.2. ##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##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGGAATTGT TCTGGTTGTT GCTGTTTTGC ATCCATTTGC CAACACCCAC GTCTGCTGGA 
    GGCATCACCC GAGTCTATTA CCTGGGGATC CGTGAGGTGG ACTGGAACTA TGCTCCGACG
    GGAAAGAACA TGTTCAGTAA TCAAAGCATT GCACATAGCC TAAAGGCCTC AACGTTCCTG
    CAGTCTGGCA AAGACAGGGT GGGAAGCACA TACAAGAAAT CTGTGTACAA GCAATATACA
    GATGCCACCT ACACCACTGA GATTCCCAAA CCTGGCTGGC TGGGGTTTCT TGGGCCCATC
    ATCCGAGCAG AAGTGGGGGA TACCATTAAA GTACACCTAA AAAACTTTGC TAGTCGGCCG
    TATACAATCC ATCCTCATGG TGTCTTCTAC GAAAAGGACT CAGAAGGATC CCTGTATCCT
    GATATGTCCC CCCAGGATCA GAAGAAGGAT GATGCTGTCC CCCCAGGAGG GAATTACACC
    TATACTTGGA CTGTTCCTGA AGATCACAGC CCAACTGCTG ATGATCCAAA CTGCTTGACC
    TGGATCTACC ACTCTCATAT TGATGCACCA AAGGATATTG CATCTGGGTT AATTGGGCCG
    CTACTTACAT GCAAAGAAGG AATACTGACT GGCACTTCTC AAAGACGCCA GGATGTGGAT
    GTTGATTTCT TTCTGATGTT CAGTGTGGTG GATGAGAACC TAAGCTGGTA CTTGGATGAG
    AACATTGCGT CATTCTGCAC AGATCCGGGC TCTGTAGACA AAGAAGATGA AGAGTTCCAA
    GAGAGCAACA AAATGCATGC TATTAATGGC TTTGTGTTTG GGAATCTCCC TATGTTGACG
    ATGTGTGCTG GGGATCACAT TTCATGGCAT CTCTTTGGAA TGGGCAATGA AATCGATGTT
    CATACAGCCT ACTTCCATGG AGAAACACTC AACATTCGAG GCCACAGGAC AGATGTGGCC
    AGCCTTTTCC CAGCCACTTT TGTTGCAGCA GACATGATCC CCAGTAACCC TGGGAGATGG
    CTCCTGAGCT GTCAGCTCAA TGATCACATA GAAGCTGGGA TGGGGGCTTT CTACGAAGTC
    CGGCCGTGTT CTCAGCAAGC TCTGGAACCT GCCCTGAAGG GGAAAGTTCG GAAATACTAC
    ATAGCTGCAA AGGAAGTGCA GTGGGACTAT GGACCTTCAG GACATGACCA AAGCAGCGGG
    AAACAGCTGA GTGAGGAAGG CAGCCCTGCT GAGAAGTTTT TCAAGCGTAG CCTCTACCGA
    ATTGGGGGAG TCTATTGGAA GGCCAAGTAT GTGGAATATA CTGATGAGAG TTTCCGTGAG
    GAAAAGCAGC AGTCAGAAGA AGAAAAACAC CTTGGCATAC TCGGTCCTGT GATAAAAGCT
    GAAGTTGGTG ACACCATCCT GGTGACGTTT TTTAACAAAG CCTCCTGGCC GTTCAGCATC
    CAGCCTCATG GAGTGTCTTA TGGGAAGGCA TGGGAAGGGA TGCGGTACCA TGATGGTCTG
    TCCCAGCACG GGATTTCTGT TGCACCTCTG CAGAACTTTA CGTACAGATG GACTGTGCCA
    AAGCATGTTG GACCGACGTC CAGTGACCCT CCCTGCCTGA CCTGGATGTA CAGCTCTGCT
    GTGGACCCTG TCAAAGACTC CAGTTCGGGC TTGGTAGGCC CTCTGGTCAT CTGCAAGCCA
    GGCACTTTGG ATGACAACAA CAAACAGAAA GGTATCGACA AAGAATTTTA CCTTCTCTTC
    AGTGTGTTTG ATGAGAACCT CAGCTGGTAT TTAAATGCAA ACATAAAGTA CTATTTGAGG
    ATGGAAGAGA CTTCTGTGAA AAAGGATGAT GGCTTTGAGG AGTCAAACAG GATGCATGCC
    ATCAATGGAT TTATGTTTGG TAACTTGCCT GGGCTGGATG TTTGTGAAGG AGACAATGTG
    TCCTGGCACC TTCTGGGCTT GGGCAGTGAA GCAGATGTAC ATGGAGCTGT GTTTCAGGGA
    AATACCCTGC AGATGAATGG GATGCGGAAG GATTCAACCA GCCTGTTCCC CCACACGTTT
    GCTACTGCCT TCATGCAACC TGATAACAAG GGGGTTTTCG AGATCTACTG CCAGACGAGC
    AATCACTACC AGGCTGGGAT GAGGGAACAC TACTCCGTTT CCAAGTGCGG CAAGAGGGAC
    CTGGCTCCTG CCCCTCCGTA CAGGGGGGTG CGCACCTACT ACATCGCGGC GGAGGAGCTG
    GAGTGGGACT ACGCGCCCGA CAGGAGCTGG GAGAGGGAGC GGCACAGCCA CTCCACGGAG
    AGCTACGCCG ATATATTTTT GAGCAACGAG AATGGGCTGC TTGGCTCCCG GTACAAGAAA
    GCAGTTTACA GGGAGTACAC TGATGGGACT TTCAAGACTC CTAAGGCTAG GACGAATGGT
    GACGAACACC TGGGGATACT AGGTCCTTTT CTGGCGGCAG AAGTGGGAGA GATTCTTAAC
    GTTGTGTTCA AGAACAATGC CACACGACCC TACTCCATTC ACGCACATGG GGTGCTGGAA
    AGGCAGACAG GGCAGCCACA AGTAGCAAAC CCTGGTGACA TAGTGACATA CCAATGGGAA
    ATTCCTGAGA GGTCTGGTCC AGGGCCAAAT GATTCAGCCT GTGTTCCTTG GATCTACTAC
    TCCACGGTGG ACCCAGTAAA GGATATGTAC AGTGGTCTGA TTGGACCCCT GAAGGTCTGC
    CGGAAAGGGG CACTGCAAAC TGACGGGCTC AGAAAGGATA TAAAGAGGGA GTTTGCTCTG
    CTGTTCCTGG TTTTTGATGA AAATCAGTCC TGGTACTTGG AAGAGAATGT GCAACGTTAC
    AGTAAGGGAA ATCACAAGGA TATTAACCTA CTGGATGAAA GATTTGTGGA AAGCAACAAA
    ATGCACGCGA TCAATGGGAG GCTCTATGCA AACTTGCCTG GGCTGACCAT GCTCCAAGGA
    GAGTGGGTGA ACTGGTACCT GCTGGGAATG GGTCAGGAGA TTGATGTCCA CACAGTCCAT
    TTTCATGCTG AGACCTTCAT ATACAAGAAT GGTAAAAGCT ACAGAGCAGA TGTCGTGGAT
    CTGTTCCCTG GGACCTTTGA AATGGTGGAA ATGTTGGCTG GGAACCCTGG GACATGGCTA
    CTTCATTGTC ATGTATCTGA TCATATTCAT GCTGGCATGG AGATACTCTT CGAAGTCTTG
    CCTAAACCAG AGCCAGTGCT TCAAGTGCTA AACTACGATG AAGTGACACC ACCGGAGAAT
    GTGGATGAGT CCCAGAAGGT CAGGCTTTTT GGAGCAAAGT TGCCTGTAGG GCAGGTAGAA
    GCTGCAGTCA TCTGTCTAGC TGTTGCAGGC TTGGTCCTCC TCCTGATTGC TGCTGTCCTC
    CTGGGAGTTG TCATCAACCT TGAGAGACAA AAGAAGCTAA GACGCAACAG GAGGTCTATC
    CTGGATGATG GATTCAAACT CATGTCTCAA AAGAATTCAG CGCTATAA

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

    RefSeq XP_005020970.1
    CDS374..3841
    Translation

    Target ORF information:

    RefSeq Version XM_005020913.3
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos hephaestin (HEPH), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005020913.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    ATGGAATTGT TCTGGTTGTT GCTGTTTTGC ATCCATTTGC CAACACCCAC GTCTGCTGGA 
    GGCATCACCC GAGTCTATTA CCTGGGGATC CGTGAGGTGG ACTGGAACTA TGCTCCGACG
    GGAAAGAACA TGTTCAGTAA TCAAAGCATT GCACATAGCC TAAAGGCCTC AACGTTCCTG
    CAGTCTGGCA AAGACAGGGT GGGAAGCACA TACAAGAAAT CTGTGTACAA GCAATATACA
    GATGCCACCT ACACCACTGA GATTCCCAAA CCTGGCTGGC TGGGGTTTCT TGGGCCCATC
    ATCCGAGCAG AAGTGGGGGA TACCATTAAA GTACACCTAA AAAACTTTGC TAGTCGGCCG
    TATACAATCC ATCCTCATGG TGTCTTCTAC GAAAAGGACT CAGAAGGATC CCTGTATCCT
    GATATGTCCC CCCAGGATCA GAAGAAGGAT GATGCTGTCC CCCCAGGAGG GAATTACACC
    TATACTTGGA CTGTTCCTGA AGATCACAGC CCAACTGCTG ATGATCCAAA CTGCTTGACC
    TGGATCTACC ACTCTCATAT TGATGCACCA AAGGATATTG CATCTGGGTT AATTGGGCCG
    CTACTTACAT GCAAAGAAGG AATACTGACT GGCACTTCTC AAAGACGCCA GGATGTGGAT
    GTTGATTTCT TTCTGATGTT CAGTGTGGTG GATGAGAACC TAAGCTGGTA CTTGGATGAG
    AACATTGCGT CATTCTGCAC AGATCCGGGC TCTGTAGACA AAGAAGATGA AGAGTTCCAA
    GAGAGCAACA AAATGCATGC TATTAATGGC TTTGTGTTTG GGAATCTCCC TATGTTGACG
    ATGTGTGCTG GGGATCACAT TTCATGGCAT CTCTTTGGAA TGGGCAATGA AATCGATGTT
    CATACAGCCT ACTTCCATGG AGAAACACTC AACATTCGAG GCCACAGGAC AGATGTGGCC
    AGCCTTTTCC CAGCCACTTT TGTTGCAGCA GACATGATCC CCAGTAACCC TGGGAGATGG
    CTCCTGAGCT GTCAGCTCAA TGATCACATA GAAGCTGGGA TGGGGGCTTT CTACGAAGTC
    CGGCCGTGTT CTCAGCAAGC TCTGGAACCT GCCCTGAAGG GGAAAGTTCG GAAATACTAC
    ATAGCTGCAA AGGAAGTGCA GTGGGACTAT GGACCTTCAG GACATGACCA AAGCAGCGGG
    AAACAGCTGA GTGAGGAAGG CAGCCCTGCT GAGAAGTTTT TCAAGCGTAG CCTCTACCGA
    ATTGGGGGAG TCTATTGGAA GGCCAAGTAT GTGGAATATA CTGATGAGAG TTTCCGTGAG
    GAAAAGCAGC AGTCAGAAGA AGAAAAACAC CTTGGCATAC TCGGTCCTGT GATAAAAGCT
    GAAGTTGGTG ACACCATCCT GGTGACGTTT TTTAACAAAG CCTCCTGGCC GTTCAGCATC
    CAGCCTCATG GAGTGTCTTA TGGGAAGGCA TGGGAAGGGA TGCGGTACCA TGATGGTCTG
    TCCCAGCACG GGATTTCTGT TGCACCTCTG CAGAACTTTA CGTACAGATG GACTGTGCCA
    AAGCATGTTG GACCGACGTC CAGTGACCCT CCCTGCCTGA CCTGGATGTA CAGCTCTGCT
    GTGGACCCTG TCAAAGACTC CAGTTCGGGC TTGGTAGGCC CTCTGGTCAT CTGCAAGCCA
    GGCACTTTGG ATGACAACAA CAAACAGAAA GGTATCGACA AAGAATTTTA CCTTCTCTTC
    AGTGTGTTTG ATGAGAACCT CAGCTGGTAT TTAAATGCAA ACATAAAGTA CTATTTGAGG
    ATGGAAGAGA CTTCTGTGAA AAAGGATGAT GGCTTTGAGG AGTCAAACAG GATGCATGCC
    ATCAATGGAT TTATGTTTGG TAACTTGCCT GGGCTGGATG TTTGTGAAGG AGACAATGTG
    TCCTGGCACC TTCTGGGCTT GGGCAGTGAA GCAGATGTAC ATGGAGCTGT GTTTCAGGGA
    AATACCCTGC AGATGAATGG GATGCGGAAG GATTCAACCA GCCTGTTCCC CCACACGTTT
    GCTACTGCCT TCATGCAACC TGATAACAAG GGGGTTTTCG AGATCTACTG CCAGACGAGC
    AATCACTACC AGGCTGGGAT GAGGGAACAC TACTCCGTTT CCAAGTGCGG CAAGAGGGAC
    CTGGCTCCTG CCCCTCCGTA CAGGGGGGTG CGCACCTACT ACATCGCGGC GGAGGAGCTG
    GAGTGGGACT ACGCGCCCGA CAGGAGCTGG GAGAGGGAGC GGCACAGCCA CTCCACGGAG
    AGCTACGCCG ATATATTTTT GAGCAACGAG AATGGGCTGC TTGGCTCCCG GTACAAGAAA
    GCAGTTTACA GGGAGTACAC TGATGGGACT TTCAAGACTC CTAAGGCTAG GACGAATGGT
    GACGAACACC TGGGGATACT AGGTCCTTTT CTGGCGGCAG AAGTGGGAGA GATTCTTAAC
    GTTGTGTTCA AGAACAATGC CACACGACCC TACTCCATTC ACGCACATGG GGTGCTGGAA
    AGGCAGACAG GGCAGCCACA AGTAGCAAAC CCTGGTGACA TAGTGACATA CCAATGGGAA
    ATTCCTGAGA GGTCTGGTCC AGGGCCAAAT GATTCAGCCT GTGTTCCTTG GATCTACTAC
    TCCACGGTGG ACCCAGTAAA GGATATGTAC AGTGGTCTGA TTGGACCCCT GAAGGTCTGC
    CGGAAAGGGG CACTGCAAAC TGACGGGCTC AGAAAGGATA TAAAGAGGGA GTTTGCTCTG
    CTGTTCCTGG TTTTTGATGA AAATCAGTCC TGGTACTTGG AAGAGAATGT GCAACGTTAC
    AGTAAGGGAA ATCACAAGGA TATTAACCTA CTGGATGAAA GATTTGTGGA AAGCAACAAA
    ATGCACGCGA TCAATGGGAG GCTCTATGCA AACTTGCCTG GGCTGACCAT GCTCCAAGGA
    GAGTGGGTGA ACTGGTACCT GCTGGGAATG GGTCAGGAGA TTGATGTCCA CACAGTCCAT
    TTTCATGCTG AGACCTTCAT ATACAAGAAT GGTAAAAGCT ACAGAGCAGA TGTCGTGGAT
    CTGTTCCCTG GGACCTTTGA AATGGTGGAA ATGTTGGCTG GGAACCCTGG GACATGGCTA
    CTTCATTGTC ATGTATCTGA TCATATTCAT GCTGGCATGG AGATACTCTT CGAAGTCTTG
    CCTAAACCAG AGCCAGTGCT TCAAGTGCTA AACTACGATG AAGTGACACC ACCGGAGAAT
    GTGGATGAGT CCCAGAAGGT CAGGCTTTTT GGAGCAAAGT TGCCTGTAGG GCAGGTAGAA
    GCTGCAGTCA TCTGTCTAGC TGTTGCAGGC TTGGTCCTCC TCCTGATTGC TGCTGTCCTC
    CTGGGAGTTG TCATCAACCT TGAGAGACAA AAGAAGCTAA GACGCAACAG GAGGTCTATC
    CTGGATGATG GATTCAAACT CATGTCTCAA AAGAATTCAG CGCTATAA

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

    CloneID OAn112221
    Clone ID Related Accession (Same CDS sequence) XM_005020914.2 , XM_005020914.3
    Accession Version XM_005020914.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3063bp)
    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 hephaestin isoform X2
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004677125.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Jul 9, 2015 this sequence version replaced XM_005020914.1. ##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##

    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
    ATGGTGTCTT CTACGAAAAG GACTCAGAAG GATCAGAAGA AGGATGATGC TGTCCCCCCA 
    GGAGGGAATT ACACCTATAC TTGGACTGTT CCTGAAGATC ACAGCCCAAC TGCTGATGAT
    CCAAACTGCT TGACCTGGAT CTACCACTCT CATATTGATG CACCAAAGGA TATTGCATCT
    GGGTTAATTG GGCCGCTACT TACATGCAAA GAAGGAATAC TGACTGGCAC TTCTCAAAGA
    CGCCAGGATG TGGATGTTGA TTTCTTTCTG ATGTTCAGTG TGGTGGATGA GAACCTAAGC
    TGGTACTTGG ATGAGAACAT TGCGTCATTC TGCACAGATC CGGGCTCTGT AGACAAAGAA
    GATGAAGAGT TCCAAGAGAG CAACAAAATG CATGCTATTA ATGGCTTTGT GTTTGGGAAT
    CTCCCTATGT TGACGATGTG TGCTGGGGAT CACATTTCAT GGCATCTCTT TGGAATGGGC
    AATGAAATCG ATGTTCATAC AGCCTACTTC CATGGAGAAA CACTCAACAT TCGAGGCCAC
    AGGACAGATG TGGCCAGCCT TTTCCCAGCC ACTTTTGTTG CAGCAGACAT GATCCCCAGT
    AACCCTGGGA GATGGCTCCT GAGCTGTCAG CTCAATGATC ACATAGAAGC TGGGATGGGG
    GCTTTCTACG AAGTCCGGCC GTGTTCTCAG CAAGCTCTGG AACCTGCCCT GAAGGGGAAA
    GTTCGGAAAT ACTACATAGC TGCAAAGGAA GTGCAGTGGG ACTATGGACC TTCAGGACAT
    GACCAAAGCA GCGGGAAACA GCTGAGTGAG GAAGGCAGCC CTGCTGAGAA GTTTTTCAAG
    CGTAGCCTCT ACCGAATTGG GGGAGTCTAT TGGAAGGCCA AGTATGTGGA ATATACTGAT
    GAGAGTTTCC GTGAGGAAAA GCAGCAGTCA GAAGAAGAAA AACACCTTGG CATACTCGGT
    CCTGTGATAA AAGCTGAAGT TGGTGACACC ATCCTGGTGA CGTTTTTTAA CAAAGCCTCC
    TGGCCGTTCA GCATCCAGCC TCATGGAGTG TCTTATGGGA AGGCATGGGA AGGGATGCGG
    TACCATGATG GTCTGTCCCA GCACGGGATT TCTGTTGCAC CTCTGCAGAA CTTTACGTAC
    AGATGGACTG TGCCAAAGCA TGTTGGACCG ACGTCCAGTG ACCCTCCCTG CCTGACCTGG
    ATGTACAGCT CTGCTGTGGA CCCTGTCAAA GACTCCAGTT CGGGCTTGGT AGGCCCTCTG
    GTCATCTGCA AGCCAGGCAC TTTGGATGAC AACAACAAAC AGAAAGGTAT CGACAAAGAA
    TTTTACCTTC TCTTCAGTGT GTTTGATGAG AACCTCAGCT GGTATTTAAA TGCAAACATA
    AAGTACTATT TGAGGATGGA AGAGACTTCT GTGAAAAAGG ATGATGGCTT TGAGGAGTCA
    AACAGGATGC ATGCCATCAA TGGATTTATG TTTGGTAACT TGCCTGGGCT GGATGTTTGT
    GAAGGAGACA ATGTGTCCTG GCACCTTCTG GGCTTGGGCA GTGAAGCAGA TGTACATGGA
    GCTGTGTTTC AGGGAAATAC CCTGCAGATG AATGGGATGC GGAAGGATTC AACCAGCCTG
    TTCCCCCACA CGTTTGCTAC TGCCTTCATG CAACCTGATA ACAAGGGGGT TTTCGAGATC
    TACTGCCAGA CGAGCAATCA CTACCAGGCT GGGATGAGGG AACACTACTC CGTTTCCAAG
    TGCGGCAAGA GGGACCTGGC TCCTGCCCCT CCGTACAGGG GGGTGCGCAC CTACTACATC
    GCGGCGGAGG AGCTGGAGTG GGACTACGCG CCCGACAGGA GCTGGGAGAG GGAGCGGCAC
    AGCCACTCCA CGGAGAGCTA CGCCGATATA TTTTTGAGCA ACGAGAATGG GCTGCTTGGC
    TCCCGGTACA AGAAAGCAGT TTACAGGGAG TACACTGATG GGACTTTCAA GACTCCTAAG
    GCTAGGACGA ATGGTGACGA ACACCTGGGG ATACTAGGTC CTTTTCTGGC GGCAGAAGTG
    GGAGAGATTC TTAACGTTGT GTTCAAGAAC AATGCCACAC GACCCTACTC CATTCACGCA
    CATGGGGTGC TGGAAAGGCA GACAGGGCAG CCACAAGTAG CAAACCCTGG TGACATAGTG
    ACATACCAAT GGGAAATTCC TGAGAGGTCT GGTCCAGGGC CAAATGATTC AGCCTGTGTT
    CCTTGGATCT ACTACTCCAC GGTGGACCCA GTAAAGGATA TGTACAGTGG TCTGATTGGA
    CCCCTGAAGG TCTGCCGGAA AGGGGCACTG CAAACTGACG GGCTCAGAAA GGATATAAAG
    AGGGAGTTTG CTCTGCTGTT CCTGGTTTTT GATGAAAATC AGTCCTGGTA CTTGGAAGAG
    AATGTGCAAC GTTACAGTAA GGGAAATCAC AAGGATATTA ACCTACTGGA TGAAAGATTT
    GTGGAAAGCA ACAAAATGCA CGCGATCAAT GGGAGGCTCT ATGCAAACTT GCCTGGGCTG
    ACCATGCTCC AAGGAGAGTG GGTGAACTGG TACCTGCTGG GAATGGGTCA GGAGATTGAT
    GTCCACACAG TCCATTTTCA TGCTGAGACC TTCATATACA AGAATGGTAA AAGCTACAGA
    GCAGATGTCG TGGATCTGTT CCCTGGGACC TTTGAAATGG TGGAAATGTT GGCTGGGAAC
    CCTGGGACAT GGCTACTTCA TTGTCATGTA TCTGATCATA TTCATGCTGG CATGGAGATA
    CTCTTCGAAG TCTTGCCTAA ACCAGAGCCA GTGCTTCAAG TGCTAAACTA CGATGAAGTG
    ACACCACCGG AGAATGTGGA TGAGTCCCAG AAGGTCAGGC TTTTTGGAGC AAAGTTGCCT
    GTAGGGCAGG TAGAAGCTGC AGTCATCTGT CTAGCTGTTG CAGGCTTGGT CCTCCTCCTG
    ATTGCTGCTG TCCTCCTGGG AGTTGTCATC AACCTTGAGA GACAAAAGAA GCTAAGACGC
    AACAGGAGGT CTATCCTGGA TGATGGATTC AAACTCATGT CTCAAAAGAA TTCAGCGCTA
    TAA

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

    RefSeq XP_005020971.1
    CDS94..3156
    Translation

    Target ORF information:

    RefSeq Version XM_005020914.2
    Organism Anas platyrhynchos(Mallard)
    Definition Anas platyrhynchos hephaestin (HEPH), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005020914.2

    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
    ATGGTGTCTT CTACGAAAAG GACTCAGAAG GATCAGAAGA AGGATGATGC TGTCCCCCCA 
    GGAGGGAATT ACACCTATAC TTGGACTGTT CCTGAAGATC ACAGCCCAAC TGCTGATGAT
    CCAAACTGCT TGACCTGGAT CTACCACTCT CATATTGATG CACCAAAGGA TATTGCATCT
    GGGTTAATTG GGCCGCTACT TACATGCAAA GAAGGAATAC TGACTGGCAC TTCTCAAAGA
    CGCCAGGATG TGGATGTTGA TTTCTTTCTG ATGTTCAGTG TGGTGGATGA GAACCTAAGC
    TGGTACTTGG ATGAGAACAT TGCGTCATTC TGCACAGATC CGGGCTCTGT AGACAAAGAA
    GATGAAGAGT TCCAAGAGAG CAACAAAATG CATGCTATTA ATGGCTTTGT GTTTGGGAAT
    CTCCCTATGT TGACGATGTG TGCTGGGGAT CACATTTCAT GGCATCTCTT TGGAATGGGC
    AATGAAATCG ATGTTCATAC AGCCTACTTC CATGGAGAAA CACTCAACAT TCGAGGCCAC
    AGGACAGATG TGGCCAGCCT TTTCCCAGCC ACTTTTGTTG CAGCAGACAT GATCCCCAGT
    AACCCTGGGA GATGGCTCCT GAGCTGTCAG CTCAATGATC ACATAGAAGC TGGGATGGGG
    GCTTTCTACG AAGTCCGGCC GTGTTCTCAG CAAGCTCTGG AACCTGCCCT GAAGGGGAAA
    GTTCGGAAAT ACTACATAGC TGCAAAGGAA GTGCAGTGGG ACTATGGACC TTCAGGACAT
    GACCAAAGCA GCGGGAAACA GCTGAGTGAG GAAGGCAGCC CTGCTGAGAA GTTTTTCAAG
    CGTAGCCTCT ACCGAATTGG GGGAGTCTAT TGGAAGGCCA AGTATGTGGA ATATACTGAT
    GAGAGTTTCC GTGAGGAAAA GCAGCAGTCA GAAGAAGAAA AACACCTTGG CATACTCGGT
    CCTGTGATAA AAGCTGAAGT TGGTGACACC ATCCTGGTGA CGTTTTTTAA CAAAGCCTCC
    TGGCCGTTCA GCATCCAGCC TCATGGAGTG TCTTATGGGA AGGCATGGGA AGGGATGCGG
    TACCATGATG GTCTGTCCCA GCACGGGATT TCTGTTGCAC CTCTGCAGAA CTTTACGTAC
    AGATGGACTG TGCCAAAGCA TGTTGGACCG ACGTCCAGTG ACCCTCCCTG CCTGACCTGG
    ATGTACAGCT CTGCTGTGGA CCCTGTCAAA GACTCCAGTT CGGGCTTGGT AGGCCCTCTG
    GTCATCTGCA AGCCAGGCAC TTTGGATGAC AACAACAAAC AGAAAGGTAT CGACAAAGAA
    TTTTACCTTC TCTTCAGTGT GTTTGATGAG AACCTCAGCT GGTATTTAAA TGCAAACATA
    AAGTACTATT TGAGGATGGA AGAGACTTCT GTGAAAAAGG ATGATGGCTT TGAGGAGTCA
    AACAGGATGC ATGCCATCAA TGGATTTATG TTTGGTAACT TGCCTGGGCT GGATGTTTGT
    GAAGGAGACA ATGTGTCCTG GCACCTTCTG GGCTTGGGCA GTGAAGCAGA TGTACATGGA
    GCTGTGTTTC AGGGAAATAC CCTGCAGATG AATGGGATGC GGAAGGATTC AACCAGCCTG
    TTCCCCCACA CGTTTGCTAC TGCCTTCATG CAACCTGATA ACAAGGGGGT TTTCGAGATC
    TACTGCCAGA CGAGCAATCA CTACCAGGCT GGGATGAGGG AACACTACTC CGTTTCCAAG
    TGCGGCAAGA GGGACCTGGC TCCTGCCCCT CCGTACAGGG GGGTGCGCAC CTACTACATC
    GCGGCGGAGG AGCTGGAGTG GGACTACGCG CCCGACAGGA GCTGGGAGAG GGAGCGGCAC
    AGCCACTCCA CGGAGAGCTA CGCCGATATA TTTTTGAGCA ACGAGAATGG GCTGCTTGGC
    TCCCGGTACA AGAAAGCAGT TTACAGGGAG TACACTGATG GGACTTTCAA GACTCCTAAG
    GCTAGGACGA ATGGTGACGA ACACCTGGGG ATACTAGGTC CTTTTCTGGC GGCAGAAGTG
    GGAGAGATTC TTAACGTTGT GTTCAAGAAC AATGCCACAC GACCCTACTC CATTCACGCA
    CATGGGGTGC TGGAAAGGCA GACAGGGCAG CCACAAGTAG CAAACCCTGG TGACATAGTG
    ACATACCAAT GGGAAATTCC TGAGAGGTCT GGTCCAGGGC CAAATGATTC AGCCTGTGTT
    CCTTGGATCT ACTACTCCAC GGTGGACCCA GTAAAGGATA TGTACAGTGG TCTGATTGGA
    CCCCTGAAGG TCTGCCGGAA AGGGGCACTG CAAACTGACG GGCTCAGAAA GGATATAAAG
    AGGGAGTTTG CTCTGCTGTT CCTGGTTTTT GATGAAAATC AGTCCTGGTA CTTGGAAGAG
    AATGTGCAAC GTTACAGTAA GGGAAATCAC AAGGATATTA ACCTACTGGA TGAAAGATTT
    GTGGAAAGCA ACAAAATGCA CGCGATCAAT GGGAGGCTCT ATGCAAACTT GCCTGGGCTG
    ACCATGCTCC AAGGAGAGTG GGTGAACTGG TACCTGCTGG GAATGGGTCA GGAGATTGAT
    GTCCACACAG TCCATTTTCA TGCTGAGACC TTCATATACA AGAATGGTAA AAGCTACAGA
    GCAGATGTCG TGGATCTGTT CCCTGGGACC TTTGAAATGG TGGAAATGTT GGCTGGGAAC
    CCTGGGACAT GGCTACTTCA TTGTCATGTA TCTGATCATA TTCATGCTGG CATGGAGATA
    CTCTTCGAAG TCTTGCCTAA ACCAGAGCCA GTGCTTCAAG TGCTAAACTA CGATGAAGTG
    ACACCACCGG AGAATGTGGA TGAGTCCCAG AAGGTCAGGC TTTTTGGAGC AAAGTTGCCT
    GTAGGGCAGG TAGAAGCTGC AGTCATCTGT CTAGCTGTTG CAGGCTTGGT CCTCCTCCTG
    ATTGCTGCTG TCCTCCTGGG AGTTGTCATC AACCTTGAGA GACAAAAGAA GCTAAGACGC
    AACAGGAGGT CTATCCTGGA TGATGGATTC AAACTCATGT CTCAAAAGAA TTCAGCGCTA
    TAA

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

    CloneID OAn112221
    Clone ID Related Accession (Same CDS sequence) XM_005020914.2 , XM_005020914.3
    Accession Version XM_005020914.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3063bp)
    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 hephaestin isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004677125.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On May 24, 2017 this sequence version replaced XM_005020914.2. ##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##

    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
    ATGGTGTCTT CTACGAAAAG GACTCAGAAG GATCAGAAGA AGGATGATGC TGTCCCCCCA 
    GGAGGGAATT ACACCTATAC TTGGACTGTT CCTGAAGATC ACAGCCCAAC TGCTGATGAT
    CCAAACTGCT TGACCTGGAT CTACCACTCT CATATTGATG CACCAAAGGA TATTGCATCT
    GGGTTAATTG GGCCGCTACT TACATGCAAA GAAGGAATAC TGACTGGCAC TTCTCAAAGA
    CGCCAGGATG TGGATGTTGA TTTCTTTCTG ATGTTCAGTG TGGTGGATGA GAACCTAAGC
    TGGTACTTGG ATGAGAACAT TGCGTCATTC TGCACAGATC CGGGCTCTGT AGACAAAGAA
    GATGAAGAGT TCCAAGAGAG CAACAAAATG CATGCTATTA ATGGCTTTGT GTTTGGGAAT
    CTCCCTATGT TGACGATGTG TGCTGGGGAT CACATTTCAT GGCATCTCTT TGGAATGGGC
    AATGAAATCG ATGTTCATAC AGCCTACTTC CATGGAGAAA CACTCAACAT TCGAGGCCAC
    AGGACAGATG TGGCCAGCCT TTTCCCAGCC ACTTTTGTTG CAGCAGACAT GATCCCCAGT
    AACCCTGGGA GATGGCTCCT GAGCTGTCAG CTCAATGATC ACATAGAAGC TGGGATGGGG
    GCTTTCTACG AAGTCCGGCC GTGTTCTCAG CAAGCTCTGG AACCTGCCCT GAAGGGGAAA
    GTTCGGAAAT ACTACATAGC TGCAAAGGAA GTGCAGTGGG ACTATGGACC TTCAGGACAT
    GACCAAAGCA GCGGGAAACA GCTGAGTGAG GAAGGCAGCC CTGCTGAGAA GTTTTTCAAG
    CGTAGCCTCT ACCGAATTGG GGGAGTCTAT TGGAAGGCCA AGTATGTGGA ATATACTGAT
    GAGAGTTTCC GTGAGGAAAA GCAGCAGTCA GAAGAAGAAA AACACCTTGG CATACTCGGT
    CCTGTGATAA AAGCTGAAGT TGGTGACACC ATCCTGGTGA CGTTTTTTAA CAAAGCCTCC
    TGGCCGTTCA GCATCCAGCC TCATGGAGTG TCTTATGGGA AGGCATGGGA AGGGATGCGG
    TACCATGATG GTCTGTCCCA GCACGGGATT TCTGTTGCAC CTCTGCAGAA CTTTACGTAC
    AGATGGACTG TGCCAAAGCA TGTTGGACCG ACGTCCAGTG ACCCTCCCTG CCTGACCTGG
    ATGTACAGCT CTGCTGTGGA CCCTGTCAAA GACTCCAGTT CGGGCTTGGT AGGCCCTCTG
    GTCATCTGCA AGCCAGGCAC TTTGGATGAC AACAACAAAC AGAAAGGTAT CGACAAAGAA
    TTTTACCTTC TCTTCAGTGT GTTTGATGAG AACCTCAGCT GGTATTTAAA TGCAAACATA
    AAGTACTATT TGAGGATGGA AGAGACTTCT GTGAAAAAGG ATGATGGCTT TGAGGAGTCA
    AACAGGATGC ATGCCATCAA TGGATTTATG TTTGGTAACT TGCCTGGGCT GGATGTTTGT
    GAAGGAGACA ATGTGTCCTG GCACCTTCTG GGCTTGGGCA GTGAAGCAGA TGTACATGGA
    GCTGTGTTTC AGGGAAATAC CCTGCAGATG AATGGGATGC GGAAGGATTC AACCAGCCTG
    TTCCCCCACA CGTTTGCTAC TGCCTTCATG CAACCTGATA ACAAGGGGGT TTTCGAGATC
    TACTGCCAGA CGAGCAATCA CTACCAGGCT GGGATGAGGG AACACTACTC CGTTTCCAAG
    TGCGGCAAGA GGGACCTGGC TCCTGCCCCT CCGTACAGGG GGGTGCGCAC CTACTACATC
    GCGGCGGAGG AGCTGGAGTG GGACTACGCG CCCGACAGGA GCTGGGAGAG GGAGCGGCAC
    AGCCACTCCA CGGAGAGCTA CGCCGATATA TTTTTGAGCA ACGAGAATGG GCTGCTTGGC
    TCCCGGTACA AGAAAGCAGT TTACAGGGAG TACACTGATG GGACTTTCAA GACTCCTAAG
    GCTAGGACGA ATGGTGACGA ACACCTGGGG ATACTAGGTC CTTTTCTGGC GGCAGAAGTG
    GGAGAGATTC TTAACGTTGT GTTCAAGAAC AATGCCACAC GACCCTACTC CATTCACGCA
    CATGGGGTGC TGGAAAGGCA GACAGGGCAG CCACAAGTAG CAAACCCTGG TGACATAGTG
    ACATACCAAT GGGAAATTCC TGAGAGGTCT GGTCCAGGGC CAAATGATTC AGCCTGTGTT
    CCTTGGATCT ACTACTCCAC GGTGGACCCA GTAAAGGATA TGTACAGTGG TCTGATTGGA
    CCCCTGAAGG TCTGCCGGAA AGGGGCACTG CAAACTGACG GGCTCAGAAA GGATATAAAG
    AGGGAGTTTG CTCTGCTGTT CCTGGTTTTT GATGAAAATC AGTCCTGGTA CTTGGAAGAG
    AATGTGCAAC GTTACAGTAA GGGAAATCAC AAGGATATTA ACCTACTGGA TGAAAGATTT
    GTGGAAAGCA ACAAAATGCA CGCGATCAAT GGGAGGCTCT ATGCAAACTT GCCTGGGCTG
    ACCATGCTCC AAGGAGAGTG GGTGAACTGG TACCTGCTGG GAATGGGTCA GGAGATTGAT
    GTCCACACAG TCCATTTTCA TGCTGAGACC TTCATATACA AGAATGGTAA AAGCTACAGA
    GCAGATGTCG TGGATCTGTT CCCTGGGACC TTTGAAATGG TGGAAATGTT GGCTGGGAAC
    CCTGGGACAT GGCTACTTCA TTGTCATGTA TCTGATCATA TTCATGCTGG CATGGAGATA
    CTCTTCGAAG TCTTGCCTAA ACCAGAGCCA GTGCTTCAAG TGCTAAACTA CGATGAAGTG
    ACACCACCGG AGAATGTGGA TGAGTCCCAG AAGGTCAGGC TTTTTGGAGC AAAGTTGCCT
    GTAGGGCAGG TAGAAGCTGC AGTCATCTGT CTAGCTGTTG CAGGCTTGGT CCTCCTCCTG
    ATTGCTGCTG TCCTCCTGGG AGTTGTCATC AACCTTGAGA GACAAAAGAA GCTAAGACGC
    AACAGGAGGT CTATCCTGGA TGATGGATTC AAACTCATGT CTCAAAAGAA TTCAGCGCTA
    TAA

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

    RefSeq XP_005020971.1
    CDS143..3205
    Translation

    Target ORF information:

    RefSeq Version XM_005020914.3
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos hephaestin (HEPH), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005020914.3

    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
    ATGGTGTCTT CTACGAAAAG GACTCAGAAG GATCAGAAGA AGGATGATGC TGTCCCCCCA 
    GGAGGGAATT ACACCTATAC TTGGACTGTT CCTGAAGATC ACAGCCCAAC TGCTGATGAT
    CCAAACTGCT TGACCTGGAT CTACCACTCT CATATTGATG CACCAAAGGA TATTGCATCT
    GGGTTAATTG GGCCGCTACT TACATGCAAA GAAGGAATAC TGACTGGCAC TTCTCAAAGA
    CGCCAGGATG TGGATGTTGA TTTCTTTCTG ATGTTCAGTG TGGTGGATGA GAACCTAAGC
    TGGTACTTGG ATGAGAACAT TGCGTCATTC TGCACAGATC CGGGCTCTGT AGACAAAGAA
    GATGAAGAGT TCCAAGAGAG CAACAAAATG CATGCTATTA ATGGCTTTGT GTTTGGGAAT
    CTCCCTATGT TGACGATGTG TGCTGGGGAT CACATTTCAT GGCATCTCTT TGGAATGGGC
    AATGAAATCG ATGTTCATAC AGCCTACTTC CATGGAGAAA CACTCAACAT TCGAGGCCAC
    AGGACAGATG TGGCCAGCCT TTTCCCAGCC ACTTTTGTTG CAGCAGACAT GATCCCCAGT
    AACCCTGGGA GATGGCTCCT GAGCTGTCAG CTCAATGATC ACATAGAAGC TGGGATGGGG
    GCTTTCTACG AAGTCCGGCC GTGTTCTCAG CAAGCTCTGG AACCTGCCCT GAAGGGGAAA
    GTTCGGAAAT ACTACATAGC TGCAAAGGAA GTGCAGTGGG ACTATGGACC TTCAGGACAT
    GACCAAAGCA GCGGGAAACA GCTGAGTGAG GAAGGCAGCC CTGCTGAGAA GTTTTTCAAG
    CGTAGCCTCT ACCGAATTGG GGGAGTCTAT TGGAAGGCCA AGTATGTGGA ATATACTGAT
    GAGAGTTTCC GTGAGGAAAA GCAGCAGTCA GAAGAAGAAA AACACCTTGG CATACTCGGT
    CCTGTGATAA AAGCTGAAGT TGGTGACACC ATCCTGGTGA CGTTTTTTAA CAAAGCCTCC
    TGGCCGTTCA GCATCCAGCC TCATGGAGTG TCTTATGGGA AGGCATGGGA AGGGATGCGG
    TACCATGATG GTCTGTCCCA GCACGGGATT TCTGTTGCAC CTCTGCAGAA CTTTACGTAC
    AGATGGACTG TGCCAAAGCA TGTTGGACCG ACGTCCAGTG ACCCTCCCTG CCTGACCTGG
    ATGTACAGCT CTGCTGTGGA CCCTGTCAAA GACTCCAGTT CGGGCTTGGT AGGCCCTCTG
    GTCATCTGCA AGCCAGGCAC TTTGGATGAC AACAACAAAC AGAAAGGTAT CGACAAAGAA
    TTTTACCTTC TCTTCAGTGT GTTTGATGAG AACCTCAGCT GGTATTTAAA TGCAAACATA
    AAGTACTATT TGAGGATGGA AGAGACTTCT GTGAAAAAGG ATGATGGCTT TGAGGAGTCA
    AACAGGATGC ATGCCATCAA TGGATTTATG TTTGGTAACT TGCCTGGGCT GGATGTTTGT
    GAAGGAGACA ATGTGTCCTG GCACCTTCTG GGCTTGGGCA GTGAAGCAGA TGTACATGGA
    GCTGTGTTTC AGGGAAATAC CCTGCAGATG AATGGGATGC GGAAGGATTC AACCAGCCTG
    TTCCCCCACA CGTTTGCTAC TGCCTTCATG CAACCTGATA ACAAGGGGGT TTTCGAGATC
    TACTGCCAGA CGAGCAATCA CTACCAGGCT GGGATGAGGG AACACTACTC CGTTTCCAAG
    TGCGGCAAGA GGGACCTGGC TCCTGCCCCT CCGTACAGGG GGGTGCGCAC CTACTACATC
    GCGGCGGAGG AGCTGGAGTG GGACTACGCG CCCGACAGGA GCTGGGAGAG GGAGCGGCAC
    AGCCACTCCA CGGAGAGCTA CGCCGATATA TTTTTGAGCA ACGAGAATGG GCTGCTTGGC
    TCCCGGTACA AGAAAGCAGT TTACAGGGAG TACACTGATG GGACTTTCAA GACTCCTAAG
    GCTAGGACGA ATGGTGACGA ACACCTGGGG ATACTAGGTC CTTTTCTGGC GGCAGAAGTG
    GGAGAGATTC TTAACGTTGT GTTCAAGAAC AATGCCACAC GACCCTACTC CATTCACGCA
    CATGGGGTGC TGGAAAGGCA GACAGGGCAG CCACAAGTAG CAAACCCTGG TGACATAGTG
    ACATACCAAT GGGAAATTCC TGAGAGGTCT GGTCCAGGGC CAAATGATTC AGCCTGTGTT
    CCTTGGATCT ACTACTCCAC GGTGGACCCA GTAAAGGATA TGTACAGTGG TCTGATTGGA
    CCCCTGAAGG TCTGCCGGAA AGGGGCACTG CAAACTGACG GGCTCAGAAA GGATATAAAG
    AGGGAGTTTG CTCTGCTGTT CCTGGTTTTT GATGAAAATC AGTCCTGGTA CTTGGAAGAG
    AATGTGCAAC GTTACAGTAA GGGAAATCAC AAGGATATTA ACCTACTGGA TGAAAGATTT
    GTGGAAAGCA ACAAAATGCA CGCGATCAAT GGGAGGCTCT ATGCAAACTT GCCTGGGCTG
    ACCATGCTCC AAGGAGAGTG GGTGAACTGG TACCTGCTGG GAATGGGTCA GGAGATTGAT
    GTCCACACAG TCCATTTTCA TGCTGAGACC TTCATATACA AGAATGGTAA AAGCTACAGA
    GCAGATGTCG TGGATCTGTT CCCTGGGACC TTTGAAATGG TGGAAATGTT GGCTGGGAAC
    CCTGGGACAT GGCTACTTCA TTGTCATGTA TCTGATCATA TTCATGCTGG CATGGAGATA
    CTCTTCGAAG TCTTGCCTAA ACCAGAGCCA GTGCTTCAAG TGCTAAACTA CGATGAAGTG
    ACACCACCGG AGAATGTGGA TGAGTCCCAG AAGGTCAGGC TTTTTGGAGC AAAGTTGCCT
    GTAGGGCAGG TAGAAGCTGC AGTCATCTGT CTAGCTGTTG CAGGCTTGGT CCTCCTCCTG
    ATTGCTGCTG TCCTCCTGGG AGTTGTCATC AACCTTGAGA GACAAAAGAA GCTAAGACGC
    AACAGGAGGT CTATCCTGGA TGATGGATTC AAACTCATGT CTCAAAAGAA TTCAGCGCTA
    TAA

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