EVPL cDNA ORF clone, Acanthisitta chloris(rifleman)

The following EVPL gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the EVPL 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
OAc118393 XM_009073585.1
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Acanthisitta chloris envoplakin (EVPL), mRNA. pcDNA3.1-C-(k)DYK or customized vector 29-31 $1161.30
$1659.00

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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 OAc118393
    Clone ID Related Accession (Same CDS sequence) XM_009073585.1
    Accession Version XM_009073585.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 6093bp)
    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 2014-09-04
    Organism Acanthisitta chloris(rifleman)
    Product envoplakin
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008670160.1) 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 Version :: Acanthisitta chloris Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.1 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
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    5701
    5761
    5821
    5881
    5941
    6001
    6061
    ATGTTCAAGG GGGTGGGCAA AGGCTCCCCG AGCAGAAGTT CCCCCAACAG AGGTTCCCCT 
    GTCAAGCCTA GCAAGTCCTC AACAAATGAG TTGGCTGTGC TCATCTCCCG CATGCAGACA
    AATGCTGACC AGGTGGAGAA GGACATCCTG GAGACACAGT CCAGACTCAA GCAGGATTCC
    AGCAACCACC AGAAGAACAA GGCTTTCGAG TTCCAGTCAG AGAATGCCAG GAACCTGAAG
    GAAGCAGAGA CCTTGCTGAA GGATCTCTTC TTGGACGTGG ACCGTGCCAA GCGGCTCAAA
    CATCCACAGG CTAATGAGAT AGAGAAAGAC ATCCAGCAGC TCCATGACCG TGTGACACAG
    CTGTGTGCAG AGTACAGGGC TCTCTATGAA CAACTGAACG TCCCTGACAT GGGGCCCAGG
    GTAGACTGGG CTGGGATCCT GGACCAAAAG ATGAAACAAG TCAATGCAGG ACAGTATGGC
    CCTGGCATGT CAGAGCTGGA AAAGCAAGTA GCTGAGCACA ACATTCTCCA GAAGGAGATT
    GAAGCCTATG GCCTCCAGAT CAAGAACCTC CGTACTGGGG ATGTGGCAGA TTTAAAAAGC
    CAGTACAAGG ACTTGCTGAA AGCCTCCATC TGGCGAGGGC AGAGCCTGGG CAGCCTCTAC
    CACCACCTCC AGGGCTGCAC CAAGGAGCTG GGCTACCTGA CAGACCAGCA GACCAAGATC
    CTGAAGCAGG ACTGGAGTGA CCAAATGATG GATGTCCAGA GCGTGCGTCG GGAGTACGAG
    GATTTCAAGT CCAGTGAGCT GCTCAGCCAG GAGGAGTTTG TGAACAACCT CCAGGATGAT
    GGGGACAGGA TGATTGAGCT AAAGCACCCA GCCATCAAGC CTATCCAGGC TCACCAGGAA
    GCCTTGAAGA ACGAGTGGCA GAATTTCCTG AACCTCTGTA TTTGCCAGGA GAGCCAACTG
    AAAAACGTGG AGAGCTACAA GAAGTTCCAG GATGATGCTG AGGCTGTGAG CCGCTCCCTG
    AAGAAGATGA GCTCTGACCT GGACACTAAA TACAGCAAGT TTAACAAAGA CAGCCCTGGG
    GTGGTGTCAG ATCTGCTGCT TCAGCTGGAG AACGAGGAGA AGGCAGTGAA GCAGGCAGAG
    AAGAGCATCA CTGATCTGAA GAGAAGGAGC AAAGAGATCA GCCCACTGAA ACTGCGCAGG
    ATGCGAACGT CTCAGCCCCT CACCTTGGAC ACCCTCTGTG ACTGGGATGC TGGGGAGGTG
    CAGCTGACCA GAGGTGACAA GTACACTCTG AAGGACAACA GCAACCCAGA GATGTGGGTG
    GTGCAGAGCA GCACTGGTGT GGTCCAGGAG GCACCTTCTG CTTGCTTCTC CATCCCTCCA
    CCTGACCCTG AATCCATAGA CAAGGTCAAC AGGCTGGAAG GGGAGCTGAA TGCAGTGAAG
    CAGAAGCGAG TGGCAGTTCA GAACACCCTG AGACGCAGCC ACAAGGAGCA GGTCCAGCCC
    AGCCAGCAAG GTTTGTCCAG GAGCCCTCCA GCAGCCCAGG ATGATCCCCA AGCTGACCGG
    CTTCTCAGCA GCCTGGATCA TGTTGGCAAG GACCTGGTTC AGGTGGAGAA GGAGGTCTTG
    AACCGAGTGA GGACTCCTGT GAACTACAGT GACCCCACGG ATGACCTTGC CAGGAGAATC
    AAACAACAGC AGGAAACAAC AAAGAAACTT GAGAACCTGG GGGCAGCCAA GGATGCCTTG
    CAGAAGGAGT GTGAGACCTA CCTTTCCAAG AAACCCACCA GCACATCCTC TTCCCAGCTC
    CCTGTCACAC TGAATGCCCT CAGGAGCAAA TACAACGATG TCAATATGCT CTCCAGCCTG
    TACAACGAGA AGGCTAAGGC TGCCCTGAAC CTGGAGACTC AGATTGAGAA CGCAGACAAG
    ATTGTCAGCA CGTTTGAGGC CAAGCTGGCT CAGGACAGTA TCATTCCTGC ATCCCCCAAT
    GCCCTGCAGG ATCGAGCCAA TGACCTGCAG AAGATGAGGA GGGACCTGGT GGCCCAAGAG
    GACTGTGTGC TGAAGCTGAA CCGGGGGCTC AAGGATGCTG AGCACAGCTG CAGTGCTGTG
    CAGAACAACT TCCAGGAGTA CTGCCCTGAC CTGCCCCGGC AGAAGCGAGA GGTGCAGCTC
    CTCAACGATC GCTACCATGC TGTTGCAGAC CAGCTGGATC AGCGAGAGAA GACCCTCAGA
    AACATCAGCC TCACCTACCA GCAGTTCCAA AACTCCAATG AGAACCTGAT GTTCTGGATG
    AACAACCTAC CCAGGCACCA AGTGAAGACC ACTGATGGGC CAAGCCAGAT CAATTACAAG
    CTGCAGGCAC AGAAGAGGCT GGTGGAGGAG ATCGAAAGCA AGGAGCCAGA GAAGAATGCC
    GTGGTCAAAC TGTCCCAGAA TGTGCAGTCC ACACTCAATG ACTATGAACT CCAAGCAGGC
    AAATACAGCT CTTCTCTGGA TCCTTCCCTG ACTGACTCTG CTGCAAAGAG GCTGCGTGTG
    ACCCCCCTGC AGGAAAGCAT CCAGGCCCAG GAGAATGATG TAACTAAGCA CTACATGGAG
    CTGGCAGCAG AAAATAAAGA GCAGCTCAGC CGTCTGGAGT TTGCCAAGAA GTTTGTTGAG
    AAGAAGGAAA TACGTGAGGA CATTGAAGCA GTACGTGAGC AAACCCAGAA ATCTGAAAAC
    AAAGGTGCAA CAAGCAGGGA ATCTGAGGGG TTGAAATCAC AGCTGGAGGA GGAAAGGAGG
    AAAGTGGCCA GAATTGAAGA GGACCTGGAG GAACACAGAA ACAAGTTGCT GATGTTGAAG
    ACTCAGAAGC CAATTGAAAG AGTGGAAGAA AAGGAGGTGA TAGAATACTA TAGAGATCCA
    CAGGCAGAGA GCAACCTGTC TAGGATGGTA CAACAGATTG AAGAGGAAGG GAAGAAGAGG
    CAGAGTTTGA AAGAAGATAT TGAAGTGATG AGCAGGAAGC TTGCCCAGAT GGAGAATGAG
    AAGAAAGTTG TTCCTGCCCA GCTCCTCACC AAAGAGATCA CAAAAATTGA GAAGAACCCA
    AGCCTGGATA GCCAAGCAGT CAGTCTTCGC CAGGAGATCA AACGTCTCCA GGAGGAAAGT
    TTGGCTGCTG CTTCTGAACT TGAGCAGCAG AAGAGGGAGC TGCACATGCT GGAGCGAAAG
    CAGCCCAACA TCCGAGAGAA AGTGGTAGTG AAGGAGCTGA TCAAACTGGA GAAAAACCCA
    GAAATGCTCA AGTCTGTTAG GACCTTGCAG GTACAAATTG ATGAGGAATC CTTCAAGAGG
    AAGTCTGCAG AAGAAGCAAT AGTGAAAGTG AAGAACAAGA TTGAGGAGGT GGAAAGACTA
    ATTGAAACAA CAGAACCCAA AATTATTGTT AAGGAGGTGA AGCAGGTGGA GCAGGACCCA
    GAGTTATTGA GAGAGACTTC TAAGCTTAAA ACTCTGATTG AAGAAGAGAG GAGCAAAAAT
    TTGATGCTTA CGGGTGAGCT GGGAGAGCTG CAGAGCCAGT ACAGCATCGC AGAGAAGCAA
    AAACCAAGGA TAGAGGTGAA AGAGAGGGTC AATGAGATTT TCCTGGTGGA TCCTGAAACG
    GAGCGGCAGA TTACACACCT GAAAAGGGAG CTGCAGGAAA TCACTCTGAA AAGGACAAAG
    ATTGACAGTG AAGTGGAAGA GGCCTTAGCA GAGCTCAATG TCCTCAGGTC ACAGAAACCA
    GTGGTGGAGT TTAAGGAGGT CATAGAGGAG GTGGTGAAAC ATGAAAAGAG TCCAGAGATT
    CTAAGAGAAA TTGACAGACT GAAAGAGCAG CTCAATGAAC TAGTGAACAC CAATGGCAGG
    ACCCAAGAGC AGCTCATTAG GCTGCAGGGT GAAAGGGATG AATGGAAGAG GGAGAGATCC
    AAGGTGGAAA CCAAGCTGGT CAACAAGGAA GTCATCCGAT ACGAGAATGA TCCACTCTTG
    GAAAAAGAAG CTGATCGCCT CCGTCAAGAG GTGCGTAACA TGTCTCAGAA GAGGAGAGCT
    GCAGAGGATG CAATCTATGA CTTGCAGAAT AAATACATGC TGCTGGAGAG GAGAAAGCCA
    GAGGAAAAGG TAGTTGTCCA GGAGGTGATA CTGACTCAAA AGGATCCCAA GCTCCGAGAT
    GAGCACAACA GGCTGAGTCG GAGTCTGGAC GAGGAGGTGA GCAACAGGCG CCGTCTGGAA
    CGTGAGGTGC AGCAGGTTCG TGTGCTGGTG GAAGAGCAAG AGAAGTTGCT TAACTTTCAG
    GAGGATAGAA GCAAGAGGCT TGCACTGGAG AAGGAGATGA GACAAATTAC ACTGAGAATA
    AAGGAGCTGG AGGACAGTCC AGCCCCTGTG CAAGAGAAGA TCATTATGGA AGAAGTGGTC
    AAGTTGGAGA AGGATCCAGT CTTGGAACAA TCTGCCAGCA ACCTGCGCTT GGAGCTGGAC
    CGGGAGAAGA TGGAGGTGCT GAGCTTGCAG AGAGAATGCA AGAACCTGCA GGTACAAGTC
    GATGTCCTGC AGAAAACAAA ATCCCAAGAG AAGACCATCT ACAAGGAAGT GATTCGAGTG
    GAAAAGGACA GAGCGCTGGA GAGCGAGCGT GCACGAATCT GGGAGCTGCT GAGCAGGGAG
    AGAGGAGCCA AGCAAAAGGC AGAGGAGGAG GTGCGGCGGC TCAGGGAGAA GATCGAGAGA
    GCTGAAGGCA TGAAGAGGAC ATGGGCTCGC GAAGAGACGG AGCTGCAGAA AGCCAGGAAC
    TTGGCCATCC AGGAGAGAGC CAACCTGGAG AGTGAACTGC GGGAGCTGGA GAGGCAGAAG
    CAGCAGAAAG TTCTCTTCCT TCGGGAGGAG TCCAAACTGC TCAACCAGCG GACTGAGAAT
    GACAGGCAGA AGAAGAAACA GTTGGAACAT GAGTTTTCCA TGCTGGAGGC AGACATTCTT
    AGGGAGAAGG ACCAGATCTA CAACAAGGAG AGGTTCATTC GGGATCTCCA GTCAAAGGTC
    AATCGGGAAG AAATCAATCA TGAGACCCAG ATGAGAGAGA CAAACCTCTC CACCAAGATC
    TCCATCTTGG ACCCAGAGAC AGGGAAGGAC ATGTCTCCTT ATGAGGCCTA TAAACGAGGT
    ATCATAGACA GAGGCCAGTA CATCCAGCTG CAAGAGCTGG AGTGTGACTG GGAGGAAGTC
    ACCACGCTGG GCCCAAATGG GGAAGTGTCA CTTCTCCTTG ACAAGAAAAG TGGGAAGCAG
    TATTCCATCG ATGATGCACT AAGGCTGAGG AGGATCACAA AGGAGGAGTA CCAGCTGTAC
    CGCGATGGCA AGATTCCCAT CTCTGAATTC GCCTTGCTGG TGGCTGGGGA AACCAAACCT
    CCCTCATCCC TCTCCATTGG CTCCATCATC TCCAAATCCC CTCTCACATC ACCCACCACC
    CACCAAACCC AAACCTTCTT CCCCTCAGCC TCACAGAAGG GCATATGTGA TGATGCATCC
    CCCATCGCTG GGGTGTATGA TACCACCACT GACACCAAGT ACAATGTCAA AACTGCTGTT
    GCAAAGAAGC TGCTGGATCC TATGACAGCT CAGAAGCTCC TGGAAGCCCA GGCTGCCACG
    GGGGGCATCA TAGACCTCAT TTCTCGGGAC AGGTTCTCGG TCCATAAGGC GATTGAGAGG
    GGATTGATTG ACAGGACCTA CATGCAAAGA CTGCTCAATG CCCAGAAAGC TTTCACAGGG
    ATTGAGGACC CAGTGACCAA ACGAAGGCTG TCTGTGGGGG AAGCAGTTCA GAAGGGATGG
    ATGACCAAGG ACAGTGCTTT CCCCTACCTG CAAGTCCAGC ATCTAACTGG AGGGCTCATA
    GATCCCAAGA AAACCGGTCG CATCCCTGTG CTGGAAGCTG TCCAGACGGG GATGATAACA
    AGCAACCTGG CCAACAGGCT CCAGGATGAA TCCAACTATG AGAAAGATCT CATTGACCCT
    GTCACTAAGG AGAAGATAAA CTACAAGGAG GCCATGGCCC TCTGCCAGAA GGATTCTCTG
    AGCCACCTCC TGCTGCTCCC AGCCGCGTCG GAGGGGTATC AGCGGTACCA CCAGGCAAGC
    CGTTCCCCCA GGCTCTCACG GTTCAGGCAT TGA

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

    RefSeq XP_009071833.1
    CDS1..6093
    Translation

    Target ORF information:

    RefSeq Version XM_009073585.1
    Organism Acanthisitta chloris(rifleman)
    Definition Acanthisitta chloris envoplakin (EVPL), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_009073585.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    5701
    5761
    5821
    5881
    5941
    6001
    6061
    ATGTTCAAGG GGGTGGGCAA AGGCTCCCCG AGCAGAAGTT CCCCCAACAG AGGTTCCCCT 
    GTCAAGCCTA GCAAGTCCTC AACAAATGAG TTGGCTGTGC TCATCTCCCG CATGCAGACA
    AATGCTGACC AGGTGGAGAA GGACATCCTG GAGACACAGT CCAGACTCAA GCAGGATTCC
    AGCAACCACC AGAAGAACAA GGCTTTCGAG TTCCAGTCAG AGAATGCCAG GAACCTGAAG
    GAAGCAGAGA CCTTGCTGAA GGATCTCTTC TTGGACGTGG ACCGTGCCAA GCGGCTCAAA
    CATCCACAGG CTAATGAGAT AGAGAAAGAC ATCCAGCAGC TCCATGACCG TGTGACACAG
    CTGTGTGCAG AGTACAGGGC TCTCTATGAA CAACTGAACG TCCCTGACAT GGGGCCCAGG
    GTAGACTGGG CTGGGATCCT GGACCAAAAG ATGAAACAAG TCAATGCAGG ACAGTATGGC
    CCTGGCATGT CAGAGCTGGA AAAGCAAGTA GCTGAGCACA ACATTCTCCA GAAGGAGATT
    GAAGCCTATG GCCTCCAGAT CAAGAACCTC CGTACTGGGG ATGTGGCAGA TTTAAAAAGC
    CAGTACAAGG ACTTGCTGAA AGCCTCCATC TGGCGAGGGC AGAGCCTGGG CAGCCTCTAC
    CACCACCTCC AGGGCTGCAC CAAGGAGCTG GGCTACCTGA CAGACCAGCA GACCAAGATC
    CTGAAGCAGG ACTGGAGTGA CCAAATGATG GATGTCCAGA GCGTGCGTCG GGAGTACGAG
    GATTTCAAGT CCAGTGAGCT GCTCAGCCAG GAGGAGTTTG TGAACAACCT CCAGGATGAT
    GGGGACAGGA TGATTGAGCT AAAGCACCCA GCCATCAAGC CTATCCAGGC TCACCAGGAA
    GCCTTGAAGA ACGAGTGGCA GAATTTCCTG AACCTCTGTA TTTGCCAGGA GAGCCAACTG
    AAAAACGTGG AGAGCTACAA GAAGTTCCAG GATGATGCTG AGGCTGTGAG CCGCTCCCTG
    AAGAAGATGA GCTCTGACCT GGACACTAAA TACAGCAAGT TTAACAAAGA CAGCCCTGGG
    GTGGTGTCAG ATCTGCTGCT TCAGCTGGAG AACGAGGAGA AGGCAGTGAA GCAGGCAGAG
    AAGAGCATCA CTGATCTGAA GAGAAGGAGC AAAGAGATCA GCCCACTGAA ACTGCGCAGG
    ATGCGAACGT CTCAGCCCCT CACCTTGGAC ACCCTCTGTG ACTGGGATGC TGGGGAGGTG
    CAGCTGACCA GAGGTGACAA GTACACTCTG AAGGACAACA GCAACCCAGA GATGTGGGTG
    GTGCAGAGCA GCACTGGTGT GGTCCAGGAG GCACCTTCTG CTTGCTTCTC CATCCCTCCA
    CCTGACCCTG AATCCATAGA CAAGGTCAAC AGGCTGGAAG GGGAGCTGAA TGCAGTGAAG
    CAGAAGCGAG TGGCAGTTCA GAACACCCTG AGACGCAGCC ACAAGGAGCA GGTCCAGCCC
    AGCCAGCAAG GTTTGTCCAG GAGCCCTCCA GCAGCCCAGG ATGATCCCCA AGCTGACCGG
    CTTCTCAGCA GCCTGGATCA TGTTGGCAAG GACCTGGTTC AGGTGGAGAA GGAGGTCTTG
    AACCGAGTGA GGACTCCTGT GAACTACAGT GACCCCACGG ATGACCTTGC CAGGAGAATC
    AAACAACAGC AGGAAACAAC AAAGAAACTT GAGAACCTGG GGGCAGCCAA GGATGCCTTG
    CAGAAGGAGT GTGAGACCTA CCTTTCCAAG AAACCCACCA GCACATCCTC TTCCCAGCTC
    CCTGTCACAC TGAATGCCCT CAGGAGCAAA TACAACGATG TCAATATGCT CTCCAGCCTG
    TACAACGAGA AGGCTAAGGC TGCCCTGAAC CTGGAGACTC AGATTGAGAA CGCAGACAAG
    ATTGTCAGCA CGTTTGAGGC CAAGCTGGCT CAGGACAGTA TCATTCCTGC ATCCCCCAAT
    GCCCTGCAGG ATCGAGCCAA TGACCTGCAG AAGATGAGGA GGGACCTGGT GGCCCAAGAG
    GACTGTGTGC TGAAGCTGAA CCGGGGGCTC AAGGATGCTG AGCACAGCTG CAGTGCTGTG
    CAGAACAACT TCCAGGAGTA CTGCCCTGAC CTGCCCCGGC AGAAGCGAGA GGTGCAGCTC
    CTCAACGATC GCTACCATGC TGTTGCAGAC CAGCTGGATC AGCGAGAGAA GACCCTCAGA
    AACATCAGCC TCACCTACCA GCAGTTCCAA AACTCCAATG AGAACCTGAT GTTCTGGATG
    AACAACCTAC CCAGGCACCA AGTGAAGACC ACTGATGGGC CAAGCCAGAT CAATTACAAG
    CTGCAGGCAC AGAAGAGGCT GGTGGAGGAG ATCGAAAGCA AGGAGCCAGA GAAGAATGCC
    GTGGTCAAAC TGTCCCAGAA TGTGCAGTCC ACACTCAATG ACTATGAACT CCAAGCAGGC
    AAATACAGCT CTTCTCTGGA TCCTTCCCTG ACTGACTCTG CTGCAAAGAG GCTGCGTGTG
    ACCCCCCTGC AGGAAAGCAT CCAGGCCCAG GAGAATGATG TAACTAAGCA CTACATGGAG
    CTGGCAGCAG AAAATAAAGA GCAGCTCAGC CGTCTGGAGT TTGCCAAGAA GTTTGTTGAG
    AAGAAGGAAA TACGTGAGGA CATTGAAGCA GTACGTGAGC AAACCCAGAA ATCTGAAAAC
    AAAGGTGCAA CAAGCAGGGA ATCTGAGGGG TTGAAATCAC AGCTGGAGGA GGAAAGGAGG
    AAAGTGGCCA GAATTGAAGA GGACCTGGAG GAACACAGAA ACAAGTTGCT GATGTTGAAG
    ACTCAGAAGC CAATTGAAAG AGTGGAAGAA AAGGAGGTGA TAGAATACTA TAGAGATCCA
    CAGGCAGAGA GCAACCTGTC TAGGATGGTA CAACAGATTG AAGAGGAAGG GAAGAAGAGG
    CAGAGTTTGA AAGAAGATAT TGAAGTGATG AGCAGGAAGC TTGCCCAGAT GGAGAATGAG
    AAGAAAGTTG TTCCTGCCCA GCTCCTCACC AAAGAGATCA CAAAAATTGA GAAGAACCCA
    AGCCTGGATA GCCAAGCAGT CAGTCTTCGC CAGGAGATCA AACGTCTCCA GGAGGAAAGT
    TTGGCTGCTG CTTCTGAACT TGAGCAGCAG AAGAGGGAGC TGCACATGCT GGAGCGAAAG
    CAGCCCAACA TCCGAGAGAA AGTGGTAGTG AAGGAGCTGA TCAAACTGGA GAAAAACCCA
    GAAATGCTCA AGTCTGTTAG GACCTTGCAG GTACAAATTG ATGAGGAATC CTTCAAGAGG
    AAGTCTGCAG AAGAAGCAAT AGTGAAAGTG AAGAACAAGA TTGAGGAGGT GGAAAGACTA
    ATTGAAACAA CAGAACCCAA AATTATTGTT AAGGAGGTGA AGCAGGTGGA GCAGGACCCA
    GAGTTATTGA GAGAGACTTC TAAGCTTAAA ACTCTGATTG AAGAAGAGAG GAGCAAAAAT
    TTGATGCTTA CGGGTGAGCT GGGAGAGCTG CAGAGCCAGT ACAGCATCGC AGAGAAGCAA
    AAACCAAGGA TAGAGGTGAA AGAGAGGGTC AATGAGATTT TCCTGGTGGA TCCTGAAACG
    GAGCGGCAGA TTACACACCT GAAAAGGGAG CTGCAGGAAA TCACTCTGAA AAGGACAAAG
    ATTGACAGTG AAGTGGAAGA GGCCTTAGCA GAGCTCAATG TCCTCAGGTC ACAGAAACCA
    GTGGTGGAGT TTAAGGAGGT CATAGAGGAG GTGGTGAAAC ATGAAAAGAG TCCAGAGATT
    CTAAGAGAAA TTGACAGACT GAAAGAGCAG CTCAATGAAC TAGTGAACAC CAATGGCAGG
    ACCCAAGAGC AGCTCATTAG GCTGCAGGGT GAAAGGGATG AATGGAAGAG GGAGAGATCC
    AAGGTGGAAA CCAAGCTGGT CAACAAGGAA GTCATCCGAT ACGAGAATGA TCCACTCTTG
    GAAAAAGAAG CTGATCGCCT CCGTCAAGAG GTGCGTAACA TGTCTCAGAA GAGGAGAGCT
    GCAGAGGATG CAATCTATGA CTTGCAGAAT AAATACATGC TGCTGGAGAG GAGAAAGCCA
    GAGGAAAAGG TAGTTGTCCA GGAGGTGATA CTGACTCAAA AGGATCCCAA GCTCCGAGAT
    GAGCACAACA GGCTGAGTCG GAGTCTGGAC GAGGAGGTGA GCAACAGGCG CCGTCTGGAA
    CGTGAGGTGC AGCAGGTTCG TGTGCTGGTG GAAGAGCAAG AGAAGTTGCT TAACTTTCAG
    GAGGATAGAA GCAAGAGGCT TGCACTGGAG AAGGAGATGA GACAAATTAC ACTGAGAATA
    AAGGAGCTGG AGGACAGTCC AGCCCCTGTG CAAGAGAAGA TCATTATGGA AGAAGTGGTC
    AAGTTGGAGA AGGATCCAGT CTTGGAACAA TCTGCCAGCA ACCTGCGCTT GGAGCTGGAC
    CGGGAGAAGA TGGAGGTGCT GAGCTTGCAG AGAGAATGCA AGAACCTGCA GGTACAAGTC
    GATGTCCTGC AGAAAACAAA ATCCCAAGAG AAGACCATCT ACAAGGAAGT GATTCGAGTG
    GAAAAGGACA GAGCGCTGGA GAGCGAGCGT GCACGAATCT GGGAGCTGCT GAGCAGGGAG
    AGAGGAGCCA AGCAAAAGGC AGAGGAGGAG GTGCGGCGGC TCAGGGAGAA GATCGAGAGA
    GCTGAAGGCA TGAAGAGGAC ATGGGCTCGC GAAGAGACGG AGCTGCAGAA AGCCAGGAAC
    TTGGCCATCC AGGAGAGAGC CAACCTGGAG AGTGAACTGC GGGAGCTGGA GAGGCAGAAG
    CAGCAGAAAG TTCTCTTCCT TCGGGAGGAG TCCAAACTGC TCAACCAGCG GACTGAGAAT
    GACAGGCAGA AGAAGAAACA GTTGGAACAT GAGTTTTCCA TGCTGGAGGC AGACATTCTT
    AGGGAGAAGG ACCAGATCTA CAACAAGGAG AGGTTCATTC GGGATCTCCA GTCAAAGGTC
    AATCGGGAAG AAATCAATCA TGAGACCCAG ATGAGAGAGA CAAACCTCTC CACCAAGATC
    TCCATCTTGG ACCCAGAGAC AGGGAAGGAC ATGTCTCCTT ATGAGGCCTA TAAACGAGGT
    ATCATAGACA GAGGCCAGTA CATCCAGCTG CAAGAGCTGG AGTGTGACTG GGAGGAAGTC
    ACCACGCTGG GCCCAAATGG GGAAGTGTCA CTTCTCCTTG ACAAGAAAAG TGGGAAGCAG
    TATTCCATCG ATGATGCACT AAGGCTGAGG AGGATCACAA AGGAGGAGTA CCAGCTGTAC
    CGCGATGGCA AGATTCCCAT CTCTGAATTC GCCTTGCTGG TGGCTGGGGA AACCAAACCT
    CCCTCATCCC TCTCCATTGG CTCCATCATC TCCAAATCCC CTCTCACATC ACCCACCACC
    CACCAAACCC AAACCTTCTT CCCCTCAGCC TCACAGAAGG GCATATGTGA TGATGCATCC
    CCCATCGCTG GGGTGTATGA TACCACCACT GACACCAAGT ACAATGTCAA AACTGCTGTT
    GCAAAGAAGC TGCTGGATCC TATGACAGCT CAGAAGCTCC TGGAAGCCCA GGCTGCCACG
    GGGGGCATCA TAGACCTCAT TTCTCGGGAC AGGTTCTCGG TCCATAAGGC GATTGAGAGG
    GGATTGATTG ACAGGACCTA CATGCAAAGA CTGCTCAATG CCCAGAAAGC TTTCACAGGG
    ATTGAGGACC CAGTGACCAA ACGAAGGCTG TCTGTGGGGG AAGCAGTTCA GAAGGGATGG
    ATGACCAAGG ACAGTGCTTT CCCCTACCTG CAAGTCCAGC ATCTAACTGG AGGGCTCATA
    GATCCCAAGA AAACCGGTCG CATCCCTGTG CTGGAAGCTG TCCAGACGGG GATGATAACA
    AGCAACCTGG CCAACAGGCT CCAGGATGAA TCCAACTATG AGAAAGATCT CATTGACCCT
    GTCACTAAGG AGAAGATAAA CTACAAGGAG GCCATGGCCC TCTGCCAGAA GGATTCTCTG
    AGCCACCTCC TGCTGCTCCC AGCCGCGTCG GAGGGGTATC AGCGGTACCA CCAGGCAAGC
    CGTTCCCCCA GGCTCTCACG GTTCAGGCAT TGA

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