BRWD3 cDNA ORF clone, Equus asinus(ass)

The following BRWD3 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the BRWD3 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
OEq15624 XM_014852393.1
Latest version!
Equus asinus bromodomain and WD repeat domain containing 3 (BRWD3), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $1021.30
$1459.00

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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 OEq15624
    Clone ID Related Accession (Same CDS sequence) XM_014852393.1
    Accession Version XM_014852393.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5280bp)
    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 2015-12-01
    Organism Equus asinus(ass)
    Product bromodomain and WD repeat-containing protein 3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_014638066.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Equus asinus Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.5 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
    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
    ATGGACATGA ACCCCTACCC CCAGGCCAAA TTTAGGTCAG CCAATCTTCC TACCAAGAAG 
    GTGGCAGCCA ATGCACACAT TCCTCCAGAC TACCTCCTTA AAATTTGTGA GCGGATTGGT
    CCCTTACTAG ATAAGGAGAT CCCTCAGAGT GTTCCTGGGG TGCAGACATT GCTAGGTGTT
    GGTCGGCAGT CTCTGTTAAG GGATGCCAAA GACTGTAAGA GTACACTATG GAATGGGTCT
    GCTTTTGCAG CTCTACATAG AGGCAGACCT CCAGAACTAC CTGTAAATTA TGTGAAACCT
    CCAAACGTGG TGAGTATCAC CTCTGCCAGG CAATTAACCG GATGTAGTCG CTTCAGCCAT
    ATTTTCCCTT CATCTGCTTA CCAGCACATT AAGATGCATA AGAGAATTCT GGGGCACTTG
    TCATCTGTCT ACTGTGTAGC ATTTGATCGA AGTGGGAGAA GAATTTTTAC AGGTTCAGAT
    GACTGTTTAG TGAAAATTTG GGCAACAGAT GATGGACGCC TCCTTGCTAC ACTTCGAGGG
    CATTCTGCTG AAATTTCTGA CATGGCTGTT AACTATGAAA ACACTCTCAT TGCCGCAGGC
    AGCTGTGATA AGGTTGTAAG GGTGTGGTGT CTTCGAACTT GTGCACCAGT TGCAGTCCTT
    CAAGGACATT CAGCTTCTAT TACTTCCATA CAGTTTTGTC CATCAACTAA AGGCACAACC
    AGATACCTCA CTTCCACTGG TGCTGATGGA ACAATCTGTT TCTGGCAATG GCATGTAAAA
    ACAATGAAGT TTAGAGATCG CCCAGTGAAA TTTACCGAGA GATCCAGACC TGGAGTTCAG
    ATATCTTGTT CATCTTTCAG TTCTGGTGGT ATGTTCATTA CAACAGGTAG CACTGACCAT
    GTGATTAGAA TCTATTATTT GGGTTCTGAG ATCCCTGAAA AAATTGCTGA ATTAGAGTCA
    CATACGGACA AAGTTGTTGC TGTTCAGTTC TGTAACAATG GAGACAGTTT AAGATTTGTT
    AGTGGAAGTA GAGATGGAAC AGCGAGAATT TGGCAATATC AGCAACAAGA ATGGAAGAGT
    ATAGTACTAG ATATGGCTAC CAAAATGACT GGGAATAATT TGCCATCTGG AGAAGACAAG
    GTCACTAAAC TTAAGGTGAC TATGGTGGCC TGGGATCGCT ATGACACCAC AGTTGTTACT
    GCAGTGAACA ATTTCCTTTT GAAAGTATGG AATTCTATCA CAGGGCAACT TCTTCATACT
    TTATCTGGAC ATGATGATGA GGTGTTTGTT TTGGAAGCAC ATCCATTTGA TCAAAGGATC
    ATACTTTCGG CGGGTCACGA TGGGAACATT TTTATTTGGG ACATTGACCG GGGGACCAAA
    ATTCGGAATT ATTTTAACAT GATTGAAGGC CAAGGCCATG GTGCAGTGTT TGATTGTAAA
    TTTTCACCAG ATGGAAACCA TTTTGCCTGC ACAGATTCTC ATGGGCATTT GCTGCTTTTT
    GGTTTTGGAT GCAGTAAATA CTATGAAAAG ATTCCAGATC AGATGTTCTT CCACACGGAT
    TATCGACCTC TCATTCGTGA TGCTAACAAC TATGTATTGG ATGAACAAAC CCAACAAGCT
    CCTCACCTCA TGCCTCCCCC ATTCTTGGTG GATGTTGATG GAAATCCTCA TCCCACAAAA
    TTCCAAAGAC TAGTACCCGG ACGGGAAAAT TGTAAAGATG AACAACTTAT ACCACAGCTG
    GGATATGTGG CTAATGGTGA TGGTGAGGTG GTAGAACAGG TAATTGGGCA ACAAACCAAT
    GACCAAGATG AGAGCATTCT TGATGGAATA ATCAGGGAGC TACAGAGAGA ACAAGATCTG
    AGACTGATTA ATGAAGGAGA TGTTCCACAT TTTCCAATTA ATAGATCATA TTCTGCTAAT
    GGTGCTCTGA GAAGTCCAAA TATGGATATA TCTTCTTCCC CAAATATTGG GCTTCGACGT
    AGTGGTCAAA TTGAAGGTGT CCGACAAATG CATAACAATG CTCCTCGGAG CCAGATGGCC
    ACTGAACGAG ATCTCATGGC ATGGAGCAGA AGAGTGGTGG TCAATGAATT AAATAATGGG
    GTTAGTAGGG TTCAGGAAGA ATGTCGAACT GCAAAAGGTG ACATAGAAAT CAGTCTTTAT
    ACAGTTGAAA AGAAGAAAAA GCCATCTTAT ACTACCCAAA GGAATGATTA TCAGCCTAGC
    TGTGGGCGGT CTTTACGAAG GACACAACGC AAACGTCAGC ATACTTACCA AACACGGTCC
    AACATAGAGC ATAATTCACA AACATCATGT CAAAATTCGG GTGTACAGGA AGACTCAGAC
    AGCTCCTCAG AGGAAGATGA AACAGTTGGC ACAAGTGATG CTTCTGTAGA GGATCCTGTT
    ATTGAATGGC AAAGTGAAAG TTCCTCCAGT GATTCATCAA GTGAATATTC TGATTGGACA
    GCAGATGCTG GAATAAATTT GCAACCCCCA AAAAGACAAA CCAGACAGGC AACACGGAAA
    ATATGCAGCA GCTCTGAGGA AGAAAATTTA AAGTCACTAG AAGAAAGGCA AAAGAAACCG
    AAACAGACTA GAAAGAAGAA AGGAGGACTG GTTTCTATGG CAGGTGAGCC CAGTGAAGAA
    TGGTTTGCCC CACAGTGGAT CTTGGATACC ATACCAAGAC GTTCCCCATT TGTCCCACAG
    ATGGGAGATG AGCTTATCTA TTTTAGGCAA GGACATGAAG CTTATGTGCG GGCTGTAAGG
    AAATCAAAAA TATATAGTGT TAATTTACAA AAACAGCCAT GGAATAAAAT GGATCTCAGG
    GAACAAGAGT TTGTTAAGAT TGTAGGAATC AAATATGAGG TTGGACCACC TACACTGTGC
    TGCTTGAAGC TTGCATTTCT GGACCCCATT TCAGGCAAAA TGACTGGAGA ATCTTTTTCC
    ATTAAGTATC ATGACATGCC AGATGTCATT GACTTCCTTG TGCTACATCA GTTTTATAAT
    GAAGCCAAAG AAAGGAACTG GCAGATTGGT GATAGATTCC GCAGTATAAT AGATGACGCC
    TGGTGGTTTG GGACTGTGGA GAGTCAGCAG CCTTTTCAAC CAGAGTATCC TGATAGTTCT
    TTCCAGTGTT ACAGTGTTCA CTGGGACAAT AACGAGAGAG AAAAGATGAG CCCCTGGGAT
    ATGGAGCCAA TTCCAGAAGG AACTGCCTTT CCAGATGAAG TCGGTGCTGG TGTTCCTGTG
    TCCCAGGAGG AACTGACTGC TTTACTATAC AAACCCCAGG AAGGAGAGTG GGGGGCTCAT
    TCCAGAGATG AGGAATGTGA ACGGGTTATT CAGGGCATCA ACCACCTTCT TTCCCTGGAT
    TTTGCCAGCC CTTTTGCTGT TCCAGTGGAT CTCAGTGCCT ATCCTTTGTA TTGTACTGTT
    GTTGCTTATC CAACTGACCT CAACACTATC AGGCGGAGAC TCGAAAATCG CTTTTACAGG
    AGAATATCAG CATTAATGTG GGAGGTACGC TACATTGAGC ACAATGCCAG GACTTTCAAT
    GAGCCAGACA GTCCTATAGT TAAAGCAGCC AAAATTGTAA CTGATGTCTT ACTTCGATTT
    ATTGGGGATC AGAGCTGTAC TGATATCCTG GATACTTACA ATAAAGTTAA AGCAGAAGAA
    CTAAACAGTA CTGATGCAGA GGAGGATACA GAAATGGTTG ATTTAGATTC GGATGGTCCT
    GGTACTTCAT CTGGAAGAAG GGTCAAATGC CGAGGCAGAA GACAGTCTTT AAAGTGTAAT
    CCTGATGCTT GGAGAAAACA GTGCAAAGAA CTGTTGAGCC TCATTTATGA ACGTGAAGAC
    TCAGAGCCAT TTCGACAGCC AGTTGATCAT CTTTCTTATC CAGGCCATCA AGAACAAGAG
    GGAGAATCCT CAGAGTCAGT TGTTCCGGAA AGACAACAAG ATGGATCTCT TTCTGAGGAT
    TATCAAGATG TTATAGACAC TCCTATGGAC TTTAGCACTG TGAAAGAAAC TTTGGAAGCA
    GGAAACTATG GTAGTCCTCT GGAATTTTAT AAGGACGTCC GCCAAATATT CAGCAACTCC
    AAAGCTTATA CCTCTAATAA AAAGTCAAGG ATTTATAGCA TGACACTGCG ATTATCTGCC
    TTATTTGAAA GTCATATTAA AAATATCATA TCTGAATACA AGTCAGCAAT CCAGAGTCAG
    AAGAGGAGAA GGCCACGGTA CAGAAAACGT CTAAGAAGCA GCAGCAGTTC GTTATCTAGT
    AGCAGAGCTC CTAGTCCAAA AGGGAAACAG AAACAAATGA AGTTGCAGCC TAAAAATGAC
    CAGAATACCT CAGTGTCTTA TGCCAGGACT AGCTCTCCTT TCTCGTCTCC TGATGCTGCT
    GAAGGGCTTT CACTATATTT ACTCGATGAT GAACTGGACG GGCCATTTTC TTCATCTAGC
    TTCAGTGGCT ATGGCCGAAG TGGAAATTGC CATGACCCAG GGAAAGCCAA ATCATTTCGG
    AGTAGGGTCT TGCCAATTAA ACAAGATCAT TCCCTTGATG GACCCCTTAC AAATGGTGAT
    GGCAGAGAGC CCCGGACAGG AATCAAGAGA AAACTACTTA GCGCGTCAGA AGAAGATGAA
    AGCGTGGGAA GAGAAGAGAA AGAGAAAAAA GAAGCAAAAG AGAAATCACA TTTATCCTCC
    TCAGAGAGTG GAGAGTTAGG ATCCAGTTTA AGTTCTGAAA GTACCTGTGG TTCTGATTCT
    GACTCTGAAT CAACTTCCAG AACAGATCAA GATTACGTAG ATGGAGACCA TGATTATAGC
    AAATTCATAC AAACTAGACC TAAAAGAAAA CTCAGAAAGC AATATGCCAA TGGAAAAAGA
    AACTGGAAGA CGAGAGGCAC AGGAGGAAGG GGCAGATGGG GCAGATGGGG TAGATGGAGT
    AGAGGAGGCA GAGGAAGAGG AGGCAGGGGA CGAGGGGGTC GAGGAAGAGG TGGAGGTGGC
    ACTAGAGGGA GAGGGAGAGG GAGAGGAGGA AGAGGTGCTT CTAGAGGAGC CACCAGAGCC
    AAACGTGCAC GTGTTGCAGA TGATGAATTT GATACCATGT TTTCAGGACG TTTCAGTAGA
    CTGCCTCGAA TTAAAACAAG AAACCAAGGC AGGAGGACTG TTTTATATAA TGATGATTCT
    GATAATGACA ATTTTGTGTC CACTGAAGAT CCTCTGAATC TTGGTACATC CAGATCAGGC
    AGAGTGCGTA AAATGACAGA AAAAGCCAGG GTTAGCCATC TCATGGGATG GAATTATTGA

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

    RefSeq XP_014707879.1
    CDS1..5280
    Translation

    Target ORF information:

    RefSeq Version XM_014852393.1
    Organism Equus asinus(ass)
    Definition Equus asinus bromodomain and WD repeat domain containing 3 (BRWD3), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014852393.1

    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
    ATGGACATGA ACCCCTACCC CCAGGCCAAA TTTAGGTCAG CCAATCTTCC TACCAAGAAG 
    GTGGCAGCCA ATGCACACAT TCCTCCAGAC TACCTCCTTA AAATTTGTGA GCGGATTGGT
    CCCTTACTAG ATAAGGAGAT CCCTCAGAGT GTTCCTGGGG TGCAGACATT GCTAGGTGTT
    GGTCGGCAGT CTCTGTTAAG GGATGCCAAA GACTGTAAGA GTACACTATG GAATGGGTCT
    GCTTTTGCAG CTCTACATAG AGGCAGACCT CCAGAACTAC CTGTAAATTA TGTGAAACCT
    CCAAACGTGG TGAGTATCAC CTCTGCCAGG CAATTAACCG GATGTAGTCG CTTCAGCCAT
    ATTTTCCCTT CATCTGCTTA CCAGCACATT AAGATGCATA AGAGAATTCT GGGGCACTTG
    TCATCTGTCT ACTGTGTAGC ATTTGATCGA AGTGGGAGAA GAATTTTTAC AGGTTCAGAT
    GACTGTTTAG TGAAAATTTG GGCAACAGAT GATGGACGCC TCCTTGCTAC ACTTCGAGGG
    CATTCTGCTG AAATTTCTGA CATGGCTGTT AACTATGAAA ACACTCTCAT TGCCGCAGGC
    AGCTGTGATA AGGTTGTAAG GGTGTGGTGT CTTCGAACTT GTGCACCAGT TGCAGTCCTT
    CAAGGACATT CAGCTTCTAT TACTTCCATA CAGTTTTGTC CATCAACTAA AGGCACAACC
    AGATACCTCA CTTCCACTGG TGCTGATGGA ACAATCTGTT TCTGGCAATG GCATGTAAAA
    ACAATGAAGT TTAGAGATCG CCCAGTGAAA TTTACCGAGA GATCCAGACC TGGAGTTCAG
    ATATCTTGTT CATCTTTCAG TTCTGGTGGT ATGTTCATTA CAACAGGTAG CACTGACCAT
    GTGATTAGAA TCTATTATTT GGGTTCTGAG ATCCCTGAAA AAATTGCTGA ATTAGAGTCA
    CATACGGACA AAGTTGTTGC TGTTCAGTTC TGTAACAATG GAGACAGTTT AAGATTTGTT
    AGTGGAAGTA GAGATGGAAC AGCGAGAATT TGGCAATATC AGCAACAAGA ATGGAAGAGT
    ATAGTACTAG ATATGGCTAC CAAAATGACT GGGAATAATT TGCCATCTGG AGAAGACAAG
    GTCACTAAAC TTAAGGTGAC TATGGTGGCC TGGGATCGCT ATGACACCAC AGTTGTTACT
    GCAGTGAACA ATTTCCTTTT GAAAGTATGG AATTCTATCA CAGGGCAACT TCTTCATACT
    TTATCTGGAC ATGATGATGA GGTGTTTGTT TTGGAAGCAC ATCCATTTGA TCAAAGGATC
    ATACTTTCGG CGGGTCACGA TGGGAACATT TTTATTTGGG ACATTGACCG GGGGACCAAA
    ATTCGGAATT ATTTTAACAT GATTGAAGGC CAAGGCCATG GTGCAGTGTT TGATTGTAAA
    TTTTCACCAG ATGGAAACCA TTTTGCCTGC ACAGATTCTC ATGGGCATTT GCTGCTTTTT
    GGTTTTGGAT GCAGTAAATA CTATGAAAAG ATTCCAGATC AGATGTTCTT CCACACGGAT
    TATCGACCTC TCATTCGTGA TGCTAACAAC TATGTATTGG ATGAACAAAC CCAACAAGCT
    CCTCACCTCA TGCCTCCCCC ATTCTTGGTG GATGTTGATG GAAATCCTCA TCCCACAAAA
    TTCCAAAGAC TAGTACCCGG ACGGGAAAAT TGTAAAGATG AACAACTTAT ACCACAGCTG
    GGATATGTGG CTAATGGTGA TGGTGAGGTG GTAGAACAGG TAATTGGGCA ACAAACCAAT
    GACCAAGATG AGAGCATTCT TGATGGAATA ATCAGGGAGC TACAGAGAGA ACAAGATCTG
    AGACTGATTA ATGAAGGAGA TGTTCCACAT TTTCCAATTA ATAGATCATA TTCTGCTAAT
    GGTGCTCTGA GAAGTCCAAA TATGGATATA TCTTCTTCCC CAAATATTGG GCTTCGACGT
    AGTGGTCAAA TTGAAGGTGT CCGACAAATG CATAACAATG CTCCTCGGAG CCAGATGGCC
    ACTGAACGAG ATCTCATGGC ATGGAGCAGA AGAGTGGTGG TCAATGAATT AAATAATGGG
    GTTAGTAGGG TTCAGGAAGA ATGTCGAACT GCAAAAGGTG ACATAGAAAT CAGTCTTTAT
    ACAGTTGAAA AGAAGAAAAA GCCATCTTAT ACTACCCAAA GGAATGATTA TCAGCCTAGC
    TGTGGGCGGT CTTTACGAAG GACACAACGC AAACGTCAGC ATACTTACCA AACACGGTCC
    AACATAGAGC ATAATTCACA AACATCATGT CAAAATTCGG GTGTACAGGA AGACTCAGAC
    AGCTCCTCAG AGGAAGATGA AACAGTTGGC ACAAGTGATG CTTCTGTAGA GGATCCTGTT
    ATTGAATGGC AAAGTGAAAG TTCCTCCAGT GATTCATCAA GTGAATATTC TGATTGGACA
    GCAGATGCTG GAATAAATTT GCAACCCCCA AAAAGACAAA CCAGACAGGC AACACGGAAA
    ATATGCAGCA GCTCTGAGGA AGAAAATTTA AAGTCACTAG AAGAAAGGCA AAAGAAACCG
    AAACAGACTA GAAAGAAGAA AGGAGGACTG GTTTCTATGG CAGGTGAGCC CAGTGAAGAA
    TGGTTTGCCC CACAGTGGAT CTTGGATACC ATACCAAGAC GTTCCCCATT TGTCCCACAG
    ATGGGAGATG AGCTTATCTA TTTTAGGCAA GGACATGAAG CTTATGTGCG GGCTGTAAGG
    AAATCAAAAA TATATAGTGT TAATTTACAA AAACAGCCAT GGAATAAAAT GGATCTCAGG
    GAACAAGAGT TTGTTAAGAT TGTAGGAATC AAATATGAGG TTGGACCACC TACACTGTGC
    TGCTTGAAGC TTGCATTTCT GGACCCCATT TCAGGCAAAA TGACTGGAGA ATCTTTTTCC
    ATTAAGTATC ATGACATGCC AGATGTCATT GACTTCCTTG TGCTACATCA GTTTTATAAT
    GAAGCCAAAG AAAGGAACTG GCAGATTGGT GATAGATTCC GCAGTATAAT AGATGACGCC
    TGGTGGTTTG GGACTGTGGA GAGTCAGCAG CCTTTTCAAC CAGAGTATCC TGATAGTTCT
    TTCCAGTGTT ACAGTGTTCA CTGGGACAAT AACGAGAGAG AAAAGATGAG CCCCTGGGAT
    ATGGAGCCAA TTCCAGAAGG AACTGCCTTT CCAGATGAAG TCGGTGCTGG TGTTCCTGTG
    TCCCAGGAGG AACTGACTGC TTTACTATAC AAACCCCAGG AAGGAGAGTG GGGGGCTCAT
    TCCAGAGATG AGGAATGTGA ACGGGTTATT CAGGGCATCA ACCACCTTCT TTCCCTGGAT
    TTTGCCAGCC CTTTTGCTGT TCCAGTGGAT CTCAGTGCCT ATCCTTTGTA TTGTACTGTT
    GTTGCTTATC CAACTGACCT CAACACTATC AGGCGGAGAC TCGAAAATCG CTTTTACAGG
    AGAATATCAG CATTAATGTG GGAGGTACGC TACATTGAGC ACAATGCCAG GACTTTCAAT
    GAGCCAGACA GTCCTATAGT TAAAGCAGCC AAAATTGTAA CTGATGTCTT ACTTCGATTT
    ATTGGGGATC AGAGCTGTAC TGATATCCTG GATACTTACA ATAAAGTTAA AGCAGAAGAA
    CTAAACAGTA CTGATGCAGA GGAGGATACA GAAATGGTTG ATTTAGATTC GGATGGTCCT
    GGTACTTCAT CTGGAAGAAG GGTCAAATGC CGAGGCAGAA GACAGTCTTT AAAGTGTAAT
    CCTGATGCTT GGAGAAAACA GTGCAAAGAA CTGTTGAGCC TCATTTATGA ACGTGAAGAC
    TCAGAGCCAT TTCGACAGCC AGTTGATCAT CTTTCTTATC CAGGCCATCA AGAACAAGAG
    GGAGAATCCT CAGAGTCAGT TGTTCCGGAA AGACAACAAG ATGGATCTCT TTCTGAGGAT
    TATCAAGATG TTATAGACAC TCCTATGGAC TTTAGCACTG TGAAAGAAAC TTTGGAAGCA
    GGAAACTATG GTAGTCCTCT GGAATTTTAT AAGGACGTCC GCCAAATATT CAGCAACTCC
    AAAGCTTATA CCTCTAATAA AAAGTCAAGG ATTTATAGCA TGACACTGCG ATTATCTGCC
    TTATTTGAAA GTCATATTAA AAATATCATA TCTGAATACA AGTCAGCAAT CCAGAGTCAG
    AAGAGGAGAA GGCCACGGTA CAGAAAACGT CTAAGAAGCA GCAGCAGTTC GTTATCTAGT
    AGCAGAGCTC CTAGTCCAAA AGGGAAACAG AAACAAATGA AGTTGCAGCC TAAAAATGAC
    CAGAATACCT CAGTGTCTTA TGCCAGGACT AGCTCTCCTT TCTCGTCTCC TGATGCTGCT
    GAAGGGCTTT CACTATATTT ACTCGATGAT GAACTGGACG GGCCATTTTC TTCATCTAGC
    TTCAGTGGCT ATGGCCGAAG TGGAAATTGC CATGACCCAG GGAAAGCCAA ATCATTTCGG
    AGTAGGGTCT TGCCAATTAA ACAAGATCAT TCCCTTGATG GACCCCTTAC AAATGGTGAT
    GGCAGAGAGC CCCGGACAGG AATCAAGAGA AAACTACTTA GCGCGTCAGA AGAAGATGAA
    AGCGTGGGAA GAGAAGAGAA AGAGAAAAAA GAAGCAAAAG AGAAATCACA TTTATCCTCC
    TCAGAGAGTG GAGAGTTAGG ATCCAGTTTA AGTTCTGAAA GTACCTGTGG TTCTGATTCT
    GACTCTGAAT CAACTTCCAG AACAGATCAA GATTACGTAG ATGGAGACCA TGATTATAGC
    AAATTCATAC AAACTAGACC TAAAAGAAAA CTCAGAAAGC AATATGCCAA TGGAAAAAGA
    AACTGGAAGA CGAGAGGCAC AGGAGGAAGG GGCAGATGGG GCAGATGGGG TAGATGGAGT
    AGAGGAGGCA GAGGAAGAGG AGGCAGGGGA CGAGGGGGTC GAGGAAGAGG TGGAGGTGGC
    ACTAGAGGGA GAGGGAGAGG GAGAGGAGGA AGAGGTGCTT CTAGAGGAGC CACCAGAGCC
    AAACGTGCAC GTGTTGCAGA TGATGAATTT GATACCATGT TTTCAGGACG TTTCAGTAGA
    CTGCCTCGAA TTAAAACAAG AAACCAAGGC AGGAGGACTG TTTTATATAA TGATGATTCT
    GATAATGACA ATTTTGTGTC CACTGAAGAT CCTCTGAATC TTGGTACATC CAGATCAGGC
    AGAGTGCGTA AAATGACAGA AAAAGCCAGG GTTAGCCATC TCATGGGATG GAATTATTGA

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