EVPL cDNA ORF clone, Aquila chrysaetos canadensis

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
OAq23670 XM_011587140.1
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Aquila chrysaetos canadensis envoplakin (EVPL), mRNA. pcDNA3.1-C-(k)DYK or customized vector 29-31 $1161.30
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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 OAq23670
    Clone ID Related Accession (Same CDS sequence) XM_011587140.1
    Accession Version XM_011587140.1 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 2015-03-12
    Organism Aquila chrysaetos canadensis
    Product envoplakin
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_011950929.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Aquila chrysaetos canadensis Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.2 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 CTGGCTGTGC TCATCTCGCG CATGCAGACG
    AATGCTGACC AGGTTGAGAA GGACATCCTG GAGACACAGT CCAGACTCAA GCAGGATGCC
    AGCAATCACC AGAAGAACAA GGCTTTTGAG TTCCAGCCAG AGAATGCCAG GAATCTGAAG
    GAAGCAGAGA CTCTGCTGAA GGACCTCTTT CTGGATGTGG ACCGTGCCAA GAAGCTGAAA
    CACCCTCAGG CTACTGAGAT AGAGAAAGAC ATCCAGCAGC TCCACGACCG CGTGACGCAG
    CTCTGTGCAG AGTACCGAGC CCTCTACGAA CAACTCAACA TCCCTGATGT GGGGCCCAGG
    GTAGACTGGG CCAGGATCCT GGACCAAAAG ATGAAACAAG TCAATGCAGG ACAGTACGGC
    CCCGGCATGT CAGAGCTGGA AAAGCAAATA GCTGAGCACA ACATCTTCCA GAAGGAGATT
    GAAGCTTATG GCCTCCAGAT CAAGAACCTC CGCTCTGGGG ATGTGGCAGA CTTAAAAAGC
    CAGTACAAGG ACTTGCTGAA AGCCTCCGTC TGGCGAGGGC AGAGCCTGGG CAGCCTGTAC
    AACCATCTCC AGGGCTGCAC CAAGGAGCTG GGCTACCTGA CGGACCAGCA GACCAGGATC
    CTGAAGCAGG ACTGGAGTGA CCAAATGATG GACGTCCAGA GCGTGCGTCG GGAGTACGAG
    GATTTCAAGT CCAATGAACT GCTCAGCCAG GAGGAGTTTG TGAACCATCT TCAGGATGAT
    GGGGATAGGA TGATTGAGCT AAAGCACCCA GCTGTCAAGC CTATCCAGGC TCACCAGGAA
    GCCTTGAAGA ACGAGTGGCA GAATTTTCTG AATCTCTGTA TTTGCCAGGA GAGTCAACTG
    AAAAGCGTGG AGAGCTATAA GAAGTTCCAG GATGATGCTG AGGCTGTGAG CCGCTCTCTC
    AAGGAGATGA ACTCTGACCT GGACACCAAA TACAGCAAGT TCAACAAAGA CAGCCCTGGG
    GTGGTGTCAG ATCTGCTGCT TCAGCTGGAG AATGAAGAGA AGGTGGTGAA GCAGGCAGAG
    AAGAGCATCA CTGACCTGAA GAGAAGGAGC AAAGAGATCA GCCCACTGAA ACTGCGCAGG
    ATGTGTCCCT CTCAGACCCT CACCTTGGAG ACCCTCTGTG ACTGGGATGC TGGGGAGGTG
    CAGCTGACCA GAGGTGACAA GTACACTCTG AAGGACAACA GCAACCCGGA GATGTGGGTG
    GTGCAGAGCA GCACTGGTGT GGTCCAGGAG GCACCTTCTG CTTGCTTCTC CATCCCTCCA
    CCAGACCCCG AGTCTATAGA CAAGGTCAAT AGGCTGGAAG GGGAACTGAA CACGGTGAAG
    CAGAAGCGAG CGGCAGTTCA GAGCACCCTG AGACGCAGCC AGAAGGAGCA GGTTCCACCC
    AGCCAGCAGG CTCTGTCCAG GAGCTCCCCT GTAGTCCAGG ATGATCCCCA AGCTGACCAG
    CTTCTCAGTA GCCTGGATCA CATTGGCAAG GACCTGGTTC AGGTAGAGAA AGAGATCTTG
    AACCGAGTGA GATCTCCAGT GAACTACAGT GACCCCACGG ATGACCTTGC CAGGAGGATC
    AAACACCAGC AGGAAACAAC AAAGAAACTT GAGAACCTGG GGGCAGCCAA GGATGCCTTG
    CAGAAGGAGT GTGAGACCTA CCTTTCCAAG AAACCCACCA GCACCTCGGC TTCCCAGCTC
    CCTGTCACGT TGAATGCCCT CAGGAGCAAA TACAGTGATG TCAATATGCT TTCCAGCCTG
    TACAATGAGA AGGCTAAGGC TGCCCTGAAC CTGGAGACTC AGATTGAGAA CACAGACAAG
    ATCGTCAGCA CGTTTGAGGC CAAGCTGGCT CAGGATAGCA TCATTCCTGC ATCCCCCAAT
    GCCCTGCAGA ATCGGGCCAA TGATCTGCAG AAGATGAAGC GGGACCTGGT GGCCCAAGAG
    GACTGTGTGC TGAAGCTGAA CCGGGGGCTC AAGGATGCTG AGCACAGCTG CAGTGCTGTG
    CAGAACAACT TCCAGGAGTA CTGCCCTGAC CTGCCCCGGC AGAAGCGGGA GGTGCAGCTC
    CTCAATGACC GCTATCATGC CGTTGCGGAC CAGCTGGATC AGCGAGAGAA GACCCTCAGA
    AATATCAGTC TCATCTACCA GCAGTTTCAA AACTCCAATG AGAACCTGAT GTTCTGGATG
    AACAACGTAC CCAAGCACCA AGTGAAGACC ACTGATGGGC CAAGCCAGAT CAATTACAAG
    CTGCAGGCAC AGAAGAGGCT GGTGGAGGAG ATCGAAAGCA AGGAGCCTGA GAAGAATGCA
    GTGGTCAGAC TATCCCGGAA CGTGCAGTCC ACGCTCAATG ACTATGAACT CCAAGCAGGC
    AAATACAGCT CTTCTCTGGA CCCTACCCTG ACTGACTTTG CTGCAAAGAG GCTGCGTGTG
    ACCCCCCTAC AAGAAAGCAT CCAGGCTCAG GAAAATGATG TAACCAAGCT CTACATGGAG
    CTGGCAGCAG AAAATAAACA GCAGCTGAGC CGGCTGGAGT TTGCAAGGAA GATTGTTGAG
    AAGAAGGAAG TGCATGAAGA TGTTGAAGCT GTACATGAGC AAACGCAGCA ATCGGAAAAC
    AAGGCCAAAA CAAGCAGGGA ATCTGAGGGG CTGAAATCGC AGCTGGAGGA GGAAAGGAGG
    AAAGTGGCCA AGATTGAAGA GGACCTGGAG GAACACAGAA ACAAGCTGCT AATGTTGAAA
    ACTCAGAAGC CCATTGAAAG AGTGGAAGAA AAGGAGGTGA TAGAATATTA CAGAGACCCA
    CAGATGGAGA GCAACCTGTC TAAGATGGCA CAGCAGATTG AAGAGGAAGG CAAAAAGAGG
    CAGAGCCTCC AAGAAGACAT TGAAGTGATG AGCCAGAAGC TTGCCCAGAT GGAGAGTGAG
    AAGAAGGTCA TACCTGCCCA GCTCCTCACC AAAGAGATCA CAAAAATTGA GAAAGATCCA
    AGCCTGGATA GCCAAGCAGC CAGTCTTCGT CAGGAGATCA AACATCTCCA GGAGGAAAGC
    TTGGCTGCTG CTTCCGAACT TGAGCAGCAT AAGAGAGAGC TGCACATGCT GGAGCGAAAG
    CAGCCCAATA TCCGAGAGAA AGTGGTGGTG AAGGAGCTGA TCAAACTGGA GAAAAACCCA
    GAAATGGTGA AGTCTGTTAG GACCCTGCAG CTACAAATCG ATGAGGAATC CTTCAAGAGG
    AAGTCTGCAG AAGAAGCGAT AGTGAAAGTG AAGAACAAGA TTGAGGAGGT GGAAAGACTA
    ATTGAAACGG CAGAACCCAA AATTATTGTT AAGGAGGTGA AGCAGGTAGA GCAGGACCCG
    GAGTTATTGC GAGAGTCTTC CAAGCTTAAA ACTCTGATTG AGGAAGAGAG GAGCAAAAAC
    TTGATGCTTA CAGGTGAGCT GGGAGAGCTG CAGAGCCAGT ACAGTATTGC AGAGAAGCAA
    AAACCAAGGG TAGAGGTTAA AGAGAGGGTC AATGAGATTT TCTTGGTGGA TCCTGAAACG
    GAGCGACAAA TTGCACACCT GAAAAGGGAG CTGCAGGAAG TTACTCTGAA AAGGACAAAG
    ATTGACAGTG AAGTGGAAGA GGCCTTAGCA GAGCTCAATG TCCTCCGGTC ACAGAAACCA
    GTGGTGGAGC TTAAAGAGGT TATAGAGGAG GTGGTGAAAC ATGAGAAGAG TCCAGAGATT
    CTGAGAGAAA TTGACAGGCT GAAACAACAA CTCAACGAAC TAGTGAACAC CAACGGCAGG
    ACCCAAGAGC AGCTCATTAG GCTGCAGGGT GAAAGGGATG AATGGAAGAG GGAGAGATCC
    AAGGTGGAAA CCAAGCTGGT CAACAAGGAA GTCATCCGAT ATGAGAATGA TCCACTCCTG
    GAAAAAGAAG CTGACCGTCT CCGTCAAGAG GTGCGTAATA TGTCTCAAAA GAGGAGAGCT
    GCAGAGGATG CAATCTATGA CTTGCAGAAT AAATACATGC TACTGGAGAG GCGAAAGCCA
    GAGGAAAAGG TAGTTGTTCA AGAGGTGATA CTGACTCAAA AAGATCCAAA GCTCCGAGAT
    GAGCACAACA GGCTGAGCCG GAGTCTGGAC GAAGAGGTGA GCAACAGGCG TCGTCTGGAA
    CGTGACGTGC AGCAGGTTCG TGCGCTGGTG GAAGAGCAAG AGAAGTTGCT CAACTTTCAG
    GAAGATCGAA GTAAGAGACT TGCTCTGGAG AAGGAGATGA GACAAATTAC ATTGAGAATA
    AAGGAGCTGG AGGAGAGCCC AGCCCCTGTG CAAGAAAAGA TCATTATGGA AGAAGTGGTC
    AAGTTGGAGA AGGATCCAGT CCTCGAACAG TCTGCCAGCA ACCTGCGCTT GGAGCTGGAC
    CGTGAGAAGA TGGAGGTGCT GAACTTGCAG AGAGAATGCA AGAACCTGCA GATGCAAGTT
    GATGTCCTGC AGAAAACAAA ATCCCAGGAG AAGACCATCT ACAAGGAGGT GATTCGAGTG
    GAAAAGGACA GAGCGCTGGA GAGTGAGCGT GCACGCATCT GGGAGCTGCT GAACAGGGAG
    AGAGGGGCCA AGCAAAAGGC AGAAGAGGAG GTACGGCGGC TCAGGGACAA GATTGAGAGA
    GCTGAAGGCA TGAAGAGGAC GTGGGCTCGT GAAGAGACAG AGCTGCAGAA AGCCAGAAAC
    CTGGCCATCC AGGAGAGAGC CAACTTGGAG AGTGAACTGC GGGACCTGGA GAGGCAGAAG
    CAGCAGAAAG TTCTCTTCCT TCGGGAGGAG TCCAAACTGC TCAACCAACG GACTGAGAAT
    GACAGGCAGA AGAAGAAGCA GCTGGAACAT GAGTTTTCCC TGCTGGAGGC AGACATCCTT
    AGGGAGAAGG ACCAGATCTA CAACAAAGAG AGGTTCATTC GAGATCTCCA GTCAAGGGTC
    AACCGGGAAG AAATCAATCA TGAGACCCAG ATGAGAGAGA CGAACCTCTC CACAAAGATC
    TCTATCTTAG ACCCTGAGAC AGGGAAGGAT ATGTCCCCTT ATGAGGCCTA TAAGAGAGGT
    ATCATAGACA GAGGCCAGTA CATCCAGCTG CAAGAGCTGG AGTGTGACTG GGAGGAAGTC
    ACGACCTTGG GCCCAAACGG GGAAGTTTCA GTTCTCCTTG ACAAGAAAAG TGGGAAGCAG
    TACTCCATTG ATGATGCGCT AAGGCTGAGG AGGATCACAA AGGAAGAATA CCAGCTGTAC
    CGGGATGGCA AGATTCCCAT CTCTGAATTC GCCTTGCTGG TGGCTGGGGA AACCAAGCCT
    CCCCCGTCCC TCTCTATTGG CTCCATCATC TCCAAATCCC CGCTCTCATC ACCCACCACC
    CCCCAAACCC AAAGCTTCTT CCCCCCAGCC TCGCAGAAGG GCTTCTGTGA TGACACATCC
    CCCATCGCCG GGGTGTATGA CACCACCACT GACACCAAGT ACAACATCAA GACTGCTGTT
    GCAAAGAAGC TGCTTGATCC CATGACAGCT CAGAAGCTCC TGGAAGCCCA GGCTGCCACA
    GGAGGCATCA TAGACCTAAT TTCTCGGGAC CGGTTCTCAG TCCATAAGGC AATCGAGAGG
    GGGCTGATTG ACAGGACCTA CATGCAGAGA CTGCTCAATG CCCAGAAAGC TTTCACAGGG
    ATTGAGGACC CGGTGACCAA GCGAAGGCTG TCTGTGGGGG AAGCAGTTCA GAAGGGATGG
    ATGACCAAGG ACAGCGCTTT CCCCTACCTG GAGGTCCAGC ATCTAACCGG AGGACTCATC
    GATCCTAAGA AAACTGGTCG CATCCCCGTG CTGGAAGCTG CCCAGACAGG GATGATAACA
    GGCGACCTGG CCAATAGGCT CCAGGATGAG TCCAACTATG AGAAAGATCT CATTGACCCT
    ATCACTAAAG AGAAGATAAA TTACAAGGAG GCCATGGCCC TCTGCCAGAA GGATTCACTG
    AGCAGCCTCC TGCTGCTCCC AGCCACGTCG GAGGGGTATC AGCGGTACCA CCAGGCGAGC
    CGTTCCCCCA AGCTCTCGCG GTTCAGGCAT TGA

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

    RefSeq XP_011585442.1
    CDS183..6275
    Translation

    Target ORF information:

    RefSeq Version XM_011587140.1
    Organism Aquila chrysaetos canadensis
    Definition Aquila chrysaetos canadensis envoplakin (EVPL), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011587140.1

    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 CTGGCTGTGC TCATCTCGCG CATGCAGACG
    AATGCTGACC AGGTTGAGAA GGACATCCTG GAGACACAGT CCAGACTCAA GCAGGATGCC
    AGCAATCACC AGAAGAACAA GGCTTTTGAG TTCCAGCCAG AGAATGCCAG GAATCTGAAG
    GAAGCAGAGA CTCTGCTGAA GGACCTCTTT CTGGATGTGG ACCGTGCCAA GAAGCTGAAA
    CACCCTCAGG CTACTGAGAT AGAGAAAGAC ATCCAGCAGC TCCACGACCG CGTGACGCAG
    CTCTGTGCAG AGTACCGAGC CCTCTACGAA CAACTCAACA TCCCTGATGT GGGGCCCAGG
    GTAGACTGGG CCAGGATCCT GGACCAAAAG ATGAAACAAG TCAATGCAGG ACAGTACGGC
    CCCGGCATGT CAGAGCTGGA AAAGCAAATA GCTGAGCACA ACATCTTCCA GAAGGAGATT
    GAAGCTTATG GCCTCCAGAT CAAGAACCTC CGCTCTGGGG ATGTGGCAGA CTTAAAAAGC
    CAGTACAAGG ACTTGCTGAA AGCCTCCGTC TGGCGAGGGC AGAGCCTGGG CAGCCTGTAC
    AACCATCTCC AGGGCTGCAC CAAGGAGCTG GGCTACCTGA CGGACCAGCA GACCAGGATC
    CTGAAGCAGG ACTGGAGTGA CCAAATGATG GACGTCCAGA GCGTGCGTCG GGAGTACGAG
    GATTTCAAGT CCAATGAACT GCTCAGCCAG GAGGAGTTTG TGAACCATCT TCAGGATGAT
    GGGGATAGGA TGATTGAGCT AAAGCACCCA GCTGTCAAGC CTATCCAGGC TCACCAGGAA
    GCCTTGAAGA ACGAGTGGCA GAATTTTCTG AATCTCTGTA TTTGCCAGGA GAGTCAACTG
    AAAAGCGTGG AGAGCTATAA GAAGTTCCAG GATGATGCTG AGGCTGTGAG CCGCTCTCTC
    AAGGAGATGA ACTCTGACCT GGACACCAAA TACAGCAAGT TCAACAAAGA CAGCCCTGGG
    GTGGTGTCAG ATCTGCTGCT TCAGCTGGAG AATGAAGAGA AGGTGGTGAA GCAGGCAGAG
    AAGAGCATCA CTGACCTGAA GAGAAGGAGC AAAGAGATCA GCCCACTGAA ACTGCGCAGG
    ATGTGTCCCT CTCAGACCCT CACCTTGGAG ACCCTCTGTG ACTGGGATGC TGGGGAGGTG
    CAGCTGACCA GAGGTGACAA GTACACTCTG AAGGACAACA GCAACCCGGA GATGTGGGTG
    GTGCAGAGCA GCACTGGTGT GGTCCAGGAG GCACCTTCTG CTTGCTTCTC CATCCCTCCA
    CCAGACCCCG AGTCTATAGA CAAGGTCAAT AGGCTGGAAG GGGAACTGAA CACGGTGAAG
    CAGAAGCGAG CGGCAGTTCA GAGCACCCTG AGACGCAGCC AGAAGGAGCA GGTTCCACCC
    AGCCAGCAGG CTCTGTCCAG GAGCTCCCCT GTAGTCCAGG ATGATCCCCA AGCTGACCAG
    CTTCTCAGTA GCCTGGATCA CATTGGCAAG GACCTGGTTC AGGTAGAGAA AGAGATCTTG
    AACCGAGTGA GATCTCCAGT GAACTACAGT GACCCCACGG ATGACCTTGC CAGGAGGATC
    AAACACCAGC AGGAAACAAC AAAGAAACTT GAGAACCTGG GGGCAGCCAA GGATGCCTTG
    CAGAAGGAGT GTGAGACCTA CCTTTCCAAG AAACCCACCA GCACCTCGGC TTCCCAGCTC
    CCTGTCACGT TGAATGCCCT CAGGAGCAAA TACAGTGATG TCAATATGCT TTCCAGCCTG
    TACAATGAGA AGGCTAAGGC TGCCCTGAAC CTGGAGACTC AGATTGAGAA CACAGACAAG
    ATCGTCAGCA CGTTTGAGGC CAAGCTGGCT CAGGATAGCA TCATTCCTGC ATCCCCCAAT
    GCCCTGCAGA ATCGGGCCAA TGATCTGCAG AAGATGAAGC GGGACCTGGT GGCCCAAGAG
    GACTGTGTGC TGAAGCTGAA CCGGGGGCTC AAGGATGCTG AGCACAGCTG CAGTGCTGTG
    CAGAACAACT TCCAGGAGTA CTGCCCTGAC CTGCCCCGGC AGAAGCGGGA GGTGCAGCTC
    CTCAATGACC GCTATCATGC CGTTGCGGAC CAGCTGGATC AGCGAGAGAA GACCCTCAGA
    AATATCAGTC TCATCTACCA GCAGTTTCAA AACTCCAATG AGAACCTGAT GTTCTGGATG
    AACAACGTAC CCAAGCACCA AGTGAAGACC ACTGATGGGC CAAGCCAGAT CAATTACAAG
    CTGCAGGCAC AGAAGAGGCT GGTGGAGGAG ATCGAAAGCA AGGAGCCTGA GAAGAATGCA
    GTGGTCAGAC TATCCCGGAA CGTGCAGTCC ACGCTCAATG ACTATGAACT CCAAGCAGGC
    AAATACAGCT CTTCTCTGGA CCCTACCCTG ACTGACTTTG CTGCAAAGAG GCTGCGTGTG
    ACCCCCCTAC AAGAAAGCAT CCAGGCTCAG GAAAATGATG TAACCAAGCT CTACATGGAG
    CTGGCAGCAG AAAATAAACA GCAGCTGAGC CGGCTGGAGT TTGCAAGGAA GATTGTTGAG
    AAGAAGGAAG TGCATGAAGA TGTTGAAGCT GTACATGAGC AAACGCAGCA ATCGGAAAAC
    AAGGCCAAAA CAAGCAGGGA ATCTGAGGGG CTGAAATCGC AGCTGGAGGA GGAAAGGAGG
    AAAGTGGCCA AGATTGAAGA GGACCTGGAG GAACACAGAA ACAAGCTGCT AATGTTGAAA
    ACTCAGAAGC CCATTGAAAG AGTGGAAGAA AAGGAGGTGA TAGAATATTA CAGAGACCCA
    CAGATGGAGA GCAACCTGTC TAAGATGGCA CAGCAGATTG AAGAGGAAGG CAAAAAGAGG
    CAGAGCCTCC AAGAAGACAT TGAAGTGATG AGCCAGAAGC TTGCCCAGAT GGAGAGTGAG
    AAGAAGGTCA TACCTGCCCA GCTCCTCACC AAAGAGATCA CAAAAATTGA GAAAGATCCA
    AGCCTGGATA GCCAAGCAGC CAGTCTTCGT CAGGAGATCA AACATCTCCA GGAGGAAAGC
    TTGGCTGCTG CTTCCGAACT TGAGCAGCAT AAGAGAGAGC TGCACATGCT GGAGCGAAAG
    CAGCCCAATA TCCGAGAGAA AGTGGTGGTG AAGGAGCTGA TCAAACTGGA GAAAAACCCA
    GAAATGGTGA AGTCTGTTAG GACCCTGCAG CTACAAATCG ATGAGGAATC CTTCAAGAGG
    AAGTCTGCAG AAGAAGCGAT AGTGAAAGTG AAGAACAAGA TTGAGGAGGT GGAAAGACTA
    ATTGAAACGG CAGAACCCAA AATTATTGTT AAGGAGGTGA AGCAGGTAGA GCAGGACCCG
    GAGTTATTGC GAGAGTCTTC CAAGCTTAAA ACTCTGATTG AGGAAGAGAG GAGCAAAAAC
    TTGATGCTTA CAGGTGAGCT GGGAGAGCTG CAGAGCCAGT ACAGTATTGC AGAGAAGCAA
    AAACCAAGGG TAGAGGTTAA AGAGAGGGTC AATGAGATTT TCTTGGTGGA TCCTGAAACG
    GAGCGACAAA TTGCACACCT GAAAAGGGAG CTGCAGGAAG TTACTCTGAA AAGGACAAAG
    ATTGACAGTG AAGTGGAAGA GGCCTTAGCA GAGCTCAATG TCCTCCGGTC ACAGAAACCA
    GTGGTGGAGC TTAAAGAGGT TATAGAGGAG GTGGTGAAAC ATGAGAAGAG TCCAGAGATT
    CTGAGAGAAA TTGACAGGCT GAAACAACAA CTCAACGAAC TAGTGAACAC CAACGGCAGG
    ACCCAAGAGC AGCTCATTAG GCTGCAGGGT GAAAGGGATG AATGGAAGAG GGAGAGATCC
    AAGGTGGAAA CCAAGCTGGT CAACAAGGAA GTCATCCGAT ATGAGAATGA TCCACTCCTG
    GAAAAAGAAG CTGACCGTCT CCGTCAAGAG GTGCGTAATA TGTCTCAAAA GAGGAGAGCT
    GCAGAGGATG CAATCTATGA CTTGCAGAAT AAATACATGC TACTGGAGAG GCGAAAGCCA
    GAGGAAAAGG TAGTTGTTCA AGAGGTGATA CTGACTCAAA AAGATCCAAA GCTCCGAGAT
    GAGCACAACA GGCTGAGCCG GAGTCTGGAC GAAGAGGTGA GCAACAGGCG TCGTCTGGAA
    CGTGACGTGC AGCAGGTTCG TGCGCTGGTG GAAGAGCAAG AGAAGTTGCT CAACTTTCAG
    GAAGATCGAA GTAAGAGACT TGCTCTGGAG AAGGAGATGA GACAAATTAC ATTGAGAATA
    AAGGAGCTGG AGGAGAGCCC AGCCCCTGTG CAAGAAAAGA TCATTATGGA AGAAGTGGTC
    AAGTTGGAGA AGGATCCAGT CCTCGAACAG TCTGCCAGCA ACCTGCGCTT GGAGCTGGAC
    CGTGAGAAGA TGGAGGTGCT GAACTTGCAG AGAGAATGCA AGAACCTGCA GATGCAAGTT
    GATGTCCTGC AGAAAACAAA ATCCCAGGAG AAGACCATCT ACAAGGAGGT GATTCGAGTG
    GAAAAGGACA GAGCGCTGGA GAGTGAGCGT GCACGCATCT GGGAGCTGCT GAACAGGGAG
    AGAGGGGCCA AGCAAAAGGC AGAAGAGGAG GTACGGCGGC TCAGGGACAA GATTGAGAGA
    GCTGAAGGCA TGAAGAGGAC GTGGGCTCGT GAAGAGACAG AGCTGCAGAA AGCCAGAAAC
    CTGGCCATCC AGGAGAGAGC CAACTTGGAG AGTGAACTGC GGGACCTGGA GAGGCAGAAG
    CAGCAGAAAG TTCTCTTCCT TCGGGAGGAG TCCAAACTGC TCAACCAACG GACTGAGAAT
    GACAGGCAGA AGAAGAAGCA GCTGGAACAT GAGTTTTCCC TGCTGGAGGC AGACATCCTT
    AGGGAGAAGG ACCAGATCTA CAACAAAGAG AGGTTCATTC GAGATCTCCA GTCAAGGGTC
    AACCGGGAAG AAATCAATCA TGAGACCCAG ATGAGAGAGA CGAACCTCTC CACAAAGATC
    TCTATCTTAG ACCCTGAGAC AGGGAAGGAT ATGTCCCCTT ATGAGGCCTA TAAGAGAGGT
    ATCATAGACA GAGGCCAGTA CATCCAGCTG CAAGAGCTGG AGTGTGACTG GGAGGAAGTC
    ACGACCTTGG GCCCAAACGG GGAAGTTTCA GTTCTCCTTG ACAAGAAAAG TGGGAAGCAG
    TACTCCATTG ATGATGCGCT AAGGCTGAGG AGGATCACAA AGGAAGAATA CCAGCTGTAC
    CGGGATGGCA AGATTCCCAT CTCTGAATTC GCCTTGCTGG TGGCTGGGGA AACCAAGCCT
    CCCCCGTCCC TCTCTATTGG CTCCATCATC TCCAAATCCC CGCTCTCATC ACCCACCACC
    CCCCAAACCC AAAGCTTCTT CCCCCCAGCC TCGCAGAAGG GCTTCTGTGA TGACACATCC
    CCCATCGCCG GGGTGTATGA CACCACCACT GACACCAAGT ACAACATCAA GACTGCTGTT
    GCAAAGAAGC TGCTTGATCC CATGACAGCT CAGAAGCTCC TGGAAGCCCA GGCTGCCACA
    GGAGGCATCA TAGACCTAAT TTCTCGGGAC CGGTTCTCAG TCCATAAGGC AATCGAGAGG
    GGGCTGATTG ACAGGACCTA CATGCAGAGA CTGCTCAATG CCCAGAAAGC TTTCACAGGG
    ATTGAGGACC CGGTGACCAA GCGAAGGCTG TCTGTGGGGG AAGCAGTTCA GAAGGGATGG
    ATGACCAAGG ACAGCGCTTT CCCCTACCTG GAGGTCCAGC ATCTAACCGG AGGACTCATC
    GATCCTAAGA AAACTGGTCG CATCCCCGTG CTGGAAGCTG CCCAGACAGG GATGATAACA
    GGCGACCTGG CCAATAGGCT CCAGGATGAG TCCAACTATG AGAAAGATCT CATTGACCCT
    ATCACTAAAG AGAAGATAAA TTACAAGGAG GCCATGGCCC TCTGCCAGAA GGATTCACTG
    AGCAGCCTCC TGCTGCTCCC AGCCACGTCG GAGGGGTATC AGCGGTACCA CCAGGCGAGC
    CGTTCCCCCA AGCTCTCGCG GTTCAGGCAT TGA

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