URB2 cDNA ORF clone, Pan troglodytes(chimpanzee)

The following URB2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the URB2 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.

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OPc04281 XM_001146910.5
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Pan troglodytes URB2 ribosome biogenesis 2 homolog (S. cerevisiae) (URB2), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $881.30
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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 OPc04281
    Clone ID Related Accession (Same CDS sequence) XM_001146910.5
    Accession Version XM_001146910.5 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4575bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2018-03-19
    Organism Pan troglodytes(chimpanzee)
    Product unhealthy ribosome biogenesis protein 2 homolog
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_036879.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 2, 2016 this sequence version replaced XM_001146910.4. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Pan troglodytes Annotation Release 105 Annotation Version :: 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    ATGGCTGCTG TTTATTCTGG CATTTCCCTT AAGCTTAAAA GCAAGACAAC TTCCTGGGAA 
    GATAAACTAA AACTAGCTCA CTTTGCTTGG ATTTCTCACC AGTGCTTTCT TCCAAATAAA
    GAACAAGTGT TACTTGATTG GGCAAGACAA TCATTGGTTG CATTTTATAA GAAAAAGCTT
    GAACTGAAGG AAGATATTGT TGAAAGGCTT TGGATCTATA TAGATAACAT TTTACATAGC
    AGAAAATTGC AGAATCTCCT CAAGAATGGA AAGACCGTTA ATCTTCAGAT TTCCCTAGTC
    AAGATCATCA ATGAGAGAGT AGCTGAGTTC TCTCTTTCGG GATCCCAAAG AAACATCTGT
    GCTGTCCTTC GATGTTGCCA GGGCATCCTG TCGACACCTG CCCTGGCTGT CATCTACACG
    GCCAAACAGG AGCTGATGGT GGCCTTGCTG AGCCAGCTTT GCTGGTCGGC CTGCAGGCAG
    CCCGAAGGAG CTGTGGTAGC CCAGTTGTTT GAGGTCATTC ACCTGGCCCT TGGCCATTAT
    CTCTTGATCC TGCAGCAGCA GGTCAACCCA AGACGTGCCT TTGGCGATGT GACTGCTCAC
    CTGCTCCAGC CGTGCCTGGT CCTGAGGCAC TTACTCTCCG GGGGCACATG GACGCAGGCT
    GGCCAGGGCC AGCTGAGGCA GGTGCTGAGC CGGGACATCA GGAGTCAGAT TGAGGCCATG
    TTCCGAGGAG GGATTTTTCA GCCTGAGCTA CTGTCATCCT ACAAGGAGGA GCTCTTGGAC
    CAGCAGCAAG GGGATGTGAA GACGGGAGCC ATGAAGAACC TTCTGGCTCC CATGGACACC
    GTGCTTACCA GGCTGGTTGA TGCTGGCTAC TGTGCAGCAT CCCTTCATAC CTCTGTTGTG
    GCCAACTCAG TGGCCTTGCT GTATAAGCTC TTTCTAGATT CTTACTTTAA GGAGGGAAAC
    CAGCTTCTCT GCTTCCAGGT TCTCCCCAGG TTGTTTGGCT GCTTGAAGAT TTCACACCTG
    CAGGAGGAGC AGAGCAAAGC CCTGTCCACA TCAGATTGGA CCACAGAGCT TTTGGTTGTG
    GAACAGCTAC TAAACTCAGT GGCCAACAAC AATATCTACA ACATCGCTGC CGACAGAATT
    CGGCACGAAG AGGCTCAGTT CCGCTTTTAC CGCCACGTGG CTGAGCTGCT GATAAACCAT
    GCACAAGCAC CCATACCGGC CTGGTTCCGC TGTCTGAAGA CTTTGATATC TCTGAATCAT
    TTGATTTTGG AGCCAGACCT GGATGACCTG CTGGCTTCAG CGTGGATCGA TGCAGAGGTA
    ACAGAGTTTC GAACCAAAAA AGCCCAGGAG GCGCTTATTC ATACTGTCTT CCAGACTTAT
    GCCAAACTCC GACAAGTGCC ACGGTTGTTT GAAGAGGTTT TGGGAGTGAT CTGTCGTCCA
    GCTGCTGAGG CACTGAGGCA GCCTGTGCTG GCCTCGGGCC CGTCCACGGT ACTCTCTGCA
    TGCCTCCTGG AGCTGCCTCC GAGTCAGATC CTGGACACGT GGTCCCTTGT GCTGGAGAAG
    TTCCAGTCTT TAGTCTTGCC CTATTTGCAG AGTGATGCCG ACATGGCCCT GAAGTCACTG
    TCACTGAGCT CGCTGCTGCA CTGCATCATG TTCAACATGA GGAGCCTGGA CAGCAGCACG
    CCCCTGCCCA TTGTCAGACG GACACAGTGC ATGATGGAGA GGATGCTGAG GGAGCTCGTG
    CAGCCCCTGC TGGCCCTTCT CCTGGACACC CCAGGCCCAG AGCCAGAGCT GTGGCTGCAG
    AAGGTCAGTG ACTCTGTGCT CCTGCTCTCT TACACTTGGG CCCAGGTGGA CGCTATGTTC
    AGTTTGAACT GTAGCCAGTA TCACTCTATG TCTGGGCCCC TTATAGGTGT TGCTCTGGAG
    ATCTCGAACC TCCCTTCGTT GCTCCCAGGT GTAAAAACAC AGCATTGGAA GAAGATAGAG
    AAGTTTACAG CTCAGTTCAG CTCTCTTGGT ACATATTGCT TAGAACAGCT GTACTTGCAG
    AAAATGAAAA GGACTTTAAT GCAAACTAGT TTCCGGTCTG AAGGAGCCAT CCAAAGTTTG
    AGGTGCGATG CTGCCTTTAT TATTGGTTCC GGCAGAAAAA GCTTGAATCA GAGAACTACG
    GCTTCCTGGG ATGGCCAAGT TGGGATGGTG AGTGGACTCA CATACCCTGT AGCACACTGG
    CACTTGATTG TGTCAAATCT CACGATTTTA ATATCCTATC TGTGTCCAGA TGATGTGGGA
    TACCTGGCCA GTGTCCTGCT AAGAACTTTA CCCATGGGCA AAGCCCAGGA AGGCTCAATA
    GATGAAGAGG CATACATCAC ACTGGAAAAA ATATCCAAAG CCTTCCTTCA TAGCCCTCTC
    TTTCCAGAGA TGCAGTCCCT TTATTCTGCT TTCTTAACGT GCGTAACCAC AAGTTGCTCC
    GGCATTCTGT GTTCTGGTGC CCAGCGTGAC TCAGGTCTTG TCAGTCAGCA GCTTCCCTGG
    CTTTTGGAAA AGGACCACAT GGTTGTGGGT CATTGGGAAA ACAGATTTGC AAAAGCTGGA
    CCCGAAGGTA TAGAACCTAG AGGAGAAATT CCCCAGAACT TACTGTCCCT GGTCAAGAGT
    GACTTCCCTA TCCAGCTGGA GGGAGAGCAG TTGGAAAGCA TCCTGGGGCT TTTGGAAGTG
    ATTTCTGCCT TACAGCTGGA CAGCCTCTTG CCACCCTATC ATGTGCATTA TTTTCTTCTG
    TTACTGTCCA TGGCCGTCAC CAAACTAGGA TGCTCTTGCT CCTCCTCACT GGCTCTCAAG
    TTCTTGACGA CTTGCTACCA ACTTCTTGGT TACTTGGAAA GGGGGAAAAG TGCTCGCTCT
    GTGTTCAAGA TCATGTATGG TAGTGATATT TTTGAGATTG TACTGACCTC ATTGTTCAGA
    GCTAGTAGTA GGTTCCTTAT TGAGATGGAT GATCCCGCTT GGCTGGAATT CCTCCAAGTG
    ATAGGGACGT TCTTAGAGGA GCTAATGCAG ATGCTCATTC AAATGAAGCT GAGCTTGGTG
    CTCAATTTTA GAAAAATCAC CGCATTCCTC TCTAGTTCCA AACCATACAC GGAGGCAGCT
    TCAAGCAAAC AATTAGAAAA TCAGAACCCC CAGGGCAGGC AGCTCCTTCT GGTGTCTTTA
    ACCAGGTTGT GCCATGTCCT GGGACCTTTC CTCAAAGAGC AGAAGCTGGG CCAAGAGGCC
    CTAGCAGCAC TGTCTGAGCT GCTGCAGCAG GTTGTGCTGC AGACAGGAGC TGTGCTGCAG
    CTCTGCTCAG TGCCGGGGGC CCAGGGCTGG CGCCTTCCCT CGGTCCTCAT CTCATCCGTC
    AGCACGCTCT TGGAAGCCGA CCTGGGTCAG CACTGCAGGG ATGGAGGGGC CGACATTTCC
    CAAGGAAGCG ACAGGACGCT GCTCTCCCAT GCTGCCCTCT ACCAGGGTGT TTACTCTCAG
    ATACTGCTGG AGTTGCCAGC TCTCGCGGGA CATGATCAGT CTTTTCAGGC AGCCTTGCAG
    TTTTTGACTC TGTTCTTTTT GGCCCCAGAA CTGCATCCCA AAAAGGACTC CGTGTTTACC
    TCCATGTTTC ATTCTGTGAG AAGAGTTCTT GCAGATCCTG AAATTCCTGT TCAGGTCACT
    CAGGATATTG AGCCTCATTT GGGAGCCTTG TTCACCCAAA TGTTAGAGGT TGGGACAACA
    GAGGACTTGA GGCTGGTGAT GCAGTGTATT CTCCAGGGAC TGGATGTCAG TAACATGTGG
    AAAGCAGATG TGCAGGCTGT TGTGTCAGCT GTTACACTGC TGAGGCTGCT ACTGAACTGC
    CCACTCAGTG GAGAGAAAGC AAGTCTGTTG TGGCGTGCGT GTCCCCAGAT AGTCACAGCT
    TTAACACTCT TAAACCGAGA AGCTTGTCAG GAGCAGCCTG TGTCCCTCAC GGTGGTCGGG
    CCTGTCTTAG ACGTCCTGGC TGCACTGCTG CGGCAGGGGG AGGAGGCCAT CGGCAACCCC
    CACCACGTCA GCCTGGCCTT CAGCATCCTT CTCACTGTCC CTTTGGACCA TCTGAAGCCG
    CTGGAGTATG GAAGCGTCTT CCCGAGGCTG CACAACGTGC TCTTCTCAAT CCTGCAGTGT
    CACCCTAAGG TAATGCTGAA AGCCATCCCT TCTTTCTTGA ACTCTTTCAA TAGATTGGTG
    TTTTCAGTTA TGCGGGAAGG GCGGCAGAAG GACAAAGGAA GCATAGATGA CCTGCCTACG
    GTCCTAAAGT GTGCACGCCT GGTTGAAAGG ATGTACAGCC ACATCGCCGC ACGAGCTGAG
    GAGTTCGCTG TGTTTTCCCC ATTCATGGTG GCCCAGTACG TGTTGGAGGT ACAGAAGGTG
    ACCTTATATC CAGCTGTGAA AAGTCTGCTG CAGGAGGGCA TTTACCTCAT CCTGGACCTC
    TGCATCGAGC CTGACGTCCA GTTCCTGCGG GCCTCGCTGC AGCCGGGAAT GAGAGACATC
    TTTAAGGAGC TCTATAATGA CTATCTCAAG TACCACAAGG CCAAACATGA AGGAGAGAAA
    AGATATACGG CCTAA

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

    RefSeq XP_001146910.1
    CDS170..4744
    Translation

    Target ORF information:

    RefSeq Version XM_001146910.5
    Organism Pan troglodytes(chimpanzee)
    Definition Pan troglodytes URB2 ribosome biogenesis 2 homolog (S. cerevisiae) (URB2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001146910.5

    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
    ATGGCTGCTG TTTATTCTGG CATTTCCCTT AAGCTTAAAA GCAAGACAAC TTCCTGGGAA 
    GATAAACTAA AACTAGCTCA CTTTGCTTGG ATTTCTCACC AGTGCTTTCT TCCAAATAAA
    GAACAAGTGT TACTTGATTG GGCAAGACAA TCATTGGTTG CATTTTATAA GAAAAAGCTT
    GAACTGAAGG AAGATATTGT TGAAAGGCTT TGGATCTATA TAGATAACAT TTTACATAGC
    AGAAAATTGC AGAATCTCCT CAAGAATGGA AAGACCGTTA ATCTTCAGAT TTCCCTAGTC
    AAGATCATCA ATGAGAGAGT AGCTGAGTTC TCTCTTTCGG GATCCCAAAG AAACATCTGT
    GCTGTCCTTC GATGTTGCCA GGGCATCCTG TCGACACCTG CCCTGGCTGT CATCTACACG
    GCCAAACAGG AGCTGATGGT GGCCTTGCTG AGCCAGCTTT GCTGGTCGGC CTGCAGGCAG
    CCCGAAGGAG CTGTGGTAGC CCAGTTGTTT GAGGTCATTC ACCTGGCCCT TGGCCATTAT
    CTCTTGATCC TGCAGCAGCA GGTCAACCCA AGACGTGCCT TTGGCGATGT GACTGCTCAC
    CTGCTCCAGC CGTGCCTGGT CCTGAGGCAC TTACTCTCCG GGGGCACATG GACGCAGGCT
    GGCCAGGGCC AGCTGAGGCA GGTGCTGAGC CGGGACATCA GGAGTCAGAT TGAGGCCATG
    TTCCGAGGAG GGATTTTTCA GCCTGAGCTA CTGTCATCCT ACAAGGAGGA GCTCTTGGAC
    CAGCAGCAAG GGGATGTGAA GACGGGAGCC ATGAAGAACC TTCTGGCTCC CATGGACACC
    GTGCTTACCA GGCTGGTTGA TGCTGGCTAC TGTGCAGCAT CCCTTCATAC CTCTGTTGTG
    GCCAACTCAG TGGCCTTGCT GTATAAGCTC TTTCTAGATT CTTACTTTAA GGAGGGAAAC
    CAGCTTCTCT GCTTCCAGGT TCTCCCCAGG TTGTTTGGCT GCTTGAAGAT TTCACACCTG
    CAGGAGGAGC AGAGCAAAGC CCTGTCCACA TCAGATTGGA CCACAGAGCT TTTGGTTGTG
    GAACAGCTAC TAAACTCAGT GGCCAACAAC AATATCTACA ACATCGCTGC CGACAGAATT
    CGGCACGAAG AGGCTCAGTT CCGCTTTTAC CGCCACGTGG CTGAGCTGCT GATAAACCAT
    GCACAAGCAC CCATACCGGC CTGGTTCCGC TGTCTGAAGA CTTTGATATC TCTGAATCAT
    TTGATTTTGG AGCCAGACCT GGATGACCTG CTGGCTTCAG CGTGGATCGA TGCAGAGGTA
    ACAGAGTTTC GAACCAAAAA AGCCCAGGAG GCGCTTATTC ATACTGTCTT CCAGACTTAT
    GCCAAACTCC GACAAGTGCC ACGGTTGTTT GAAGAGGTTT TGGGAGTGAT CTGTCGTCCA
    GCTGCTGAGG CACTGAGGCA GCCTGTGCTG GCCTCGGGCC CGTCCACGGT ACTCTCTGCA
    TGCCTCCTGG AGCTGCCTCC GAGTCAGATC CTGGACACGT GGTCCCTTGT GCTGGAGAAG
    TTCCAGTCTT TAGTCTTGCC CTATTTGCAG AGTGATGCCG ACATGGCCCT GAAGTCACTG
    TCACTGAGCT CGCTGCTGCA CTGCATCATG TTCAACATGA GGAGCCTGGA CAGCAGCACG
    CCCCTGCCCA TTGTCAGACG GACACAGTGC ATGATGGAGA GGATGCTGAG GGAGCTCGTG
    CAGCCCCTGC TGGCCCTTCT CCTGGACACC CCAGGCCCAG AGCCAGAGCT GTGGCTGCAG
    AAGGTCAGTG ACTCTGTGCT CCTGCTCTCT TACACTTGGG CCCAGGTGGA CGCTATGTTC
    AGTTTGAACT GTAGCCAGTA TCACTCTATG TCTGGGCCCC TTATAGGTGT TGCTCTGGAG
    ATCTCGAACC TCCCTTCGTT GCTCCCAGGT GTAAAAACAC AGCATTGGAA GAAGATAGAG
    AAGTTTACAG CTCAGTTCAG CTCTCTTGGT ACATATTGCT TAGAACAGCT GTACTTGCAG
    AAAATGAAAA GGACTTTAAT GCAAACTAGT TTCCGGTCTG AAGGAGCCAT CCAAAGTTTG
    AGGTGCGATG CTGCCTTTAT TATTGGTTCC GGCAGAAAAA GCTTGAATCA GAGAACTACG
    GCTTCCTGGG ATGGCCAAGT TGGGATGGTG AGTGGACTCA CATACCCTGT AGCACACTGG
    CACTTGATTG TGTCAAATCT CACGATTTTA ATATCCTATC TGTGTCCAGA TGATGTGGGA
    TACCTGGCCA GTGTCCTGCT AAGAACTTTA CCCATGGGCA AAGCCCAGGA AGGCTCAATA
    GATGAAGAGG CATACATCAC ACTGGAAAAA ATATCCAAAG CCTTCCTTCA TAGCCCTCTC
    TTTCCAGAGA TGCAGTCCCT TTATTCTGCT TTCTTAACGT GCGTAACCAC AAGTTGCTCC
    GGCATTCTGT GTTCTGGTGC CCAGCGTGAC TCAGGTCTTG TCAGTCAGCA GCTTCCCTGG
    CTTTTGGAAA AGGACCACAT GGTTGTGGGT CATTGGGAAA ACAGATTTGC AAAAGCTGGA
    CCCGAAGGTA TAGAACCTAG AGGAGAAATT CCCCAGAACT TACTGTCCCT GGTCAAGAGT
    GACTTCCCTA TCCAGCTGGA GGGAGAGCAG TTGGAAAGCA TCCTGGGGCT TTTGGAAGTG
    ATTTCTGCCT TACAGCTGGA CAGCCTCTTG CCACCCTATC ATGTGCATTA TTTTCTTCTG
    TTACTGTCCA TGGCCGTCAC CAAACTAGGA TGCTCTTGCT CCTCCTCACT GGCTCTCAAG
    TTCTTGACGA CTTGCTACCA ACTTCTTGGT TACTTGGAAA GGGGGAAAAG TGCTCGCTCT
    GTGTTCAAGA TCATGTATGG TAGTGATATT TTTGAGATTG TACTGACCTC ATTGTTCAGA
    GCTAGTAGTA GGTTCCTTAT TGAGATGGAT GATCCCGCTT GGCTGGAATT CCTCCAAGTG
    ATAGGGACGT TCTTAGAGGA GCTAATGCAG ATGCTCATTC AAATGAAGCT GAGCTTGGTG
    CTCAATTTTA GAAAAATCAC CGCATTCCTC TCTAGTTCCA AACCATACAC GGAGGCAGCT
    TCAAGCAAAC AATTAGAAAA TCAGAACCCC CAGGGCAGGC AGCTCCTTCT GGTGTCTTTA
    ACCAGGTTGT GCCATGTCCT GGGACCTTTC CTCAAAGAGC AGAAGCTGGG CCAAGAGGCC
    CTAGCAGCAC TGTCTGAGCT GCTGCAGCAG GTTGTGCTGC AGACAGGAGC TGTGCTGCAG
    CTCTGCTCAG TGCCGGGGGC CCAGGGCTGG CGCCTTCCCT CGGTCCTCAT CTCATCCGTC
    AGCACGCTCT TGGAAGCCGA CCTGGGTCAG CACTGCAGGG ATGGAGGGGC CGACATTTCC
    CAAGGAAGCG ACAGGACGCT GCTCTCCCAT GCTGCCCTCT ACCAGGGTGT TTACTCTCAG
    ATACTGCTGG AGTTGCCAGC TCTCGCGGGA CATGATCAGT CTTTTCAGGC AGCCTTGCAG
    TTTTTGACTC TGTTCTTTTT GGCCCCAGAA CTGCATCCCA AAAAGGACTC CGTGTTTACC
    TCCATGTTTC ATTCTGTGAG AAGAGTTCTT GCAGATCCTG AAATTCCTGT TCAGGTCACT
    CAGGATATTG AGCCTCATTT GGGAGCCTTG TTCACCCAAA TGTTAGAGGT TGGGACAACA
    GAGGACTTGA GGCTGGTGAT GCAGTGTATT CTCCAGGGAC TGGATGTCAG TAACATGTGG
    AAAGCAGATG TGCAGGCTGT TGTGTCAGCT GTTACACTGC TGAGGCTGCT ACTGAACTGC
    CCACTCAGTG GAGAGAAAGC AAGTCTGTTG TGGCGTGCGT GTCCCCAGAT AGTCACAGCT
    TTAACACTCT TAAACCGAGA AGCTTGTCAG GAGCAGCCTG TGTCCCTCAC GGTGGTCGGG
    CCTGTCTTAG ACGTCCTGGC TGCACTGCTG CGGCAGGGGG AGGAGGCCAT CGGCAACCCC
    CACCACGTCA GCCTGGCCTT CAGCATCCTT CTCACTGTCC CTTTGGACCA TCTGAAGCCG
    CTGGAGTATG GAAGCGTCTT CCCGAGGCTG CACAACGTGC TCTTCTCAAT CCTGCAGTGT
    CACCCTAAGG TAATGCTGAA AGCCATCCCT TCTTTCTTGA ACTCTTTCAA TAGATTGGTG
    TTTTCAGTTA TGCGGGAAGG GCGGCAGAAG GACAAAGGAA GCATAGATGA CCTGCCTACG
    GTCCTAAAGT GTGCACGCCT GGTTGAAAGG ATGTACAGCC ACATCGCCGC ACGAGCTGAG
    GAGTTCGCTG TGTTTTCCCC ATTCATGGTG GCCCAGTACG TGTTGGAGGT ACAGAAGGTG
    ACCTTATATC CAGCTGTGAA AAGTCTGCTG CAGGAGGGCA TTTACCTCAT CCTGGACCTC
    TGCATCGAGC CTGACGTCCA GTTCCTGCGG GCCTCGCTGC AGCCGGGAAT GAGAGACATC
    TTTAAGGAGC TCTATAATGA CTATCTCAAG TACCACAAGG CCAAACATGA AGGAGAGAAA
    AGATATACGG CCTAA

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