Abcc2 cDNA ORF clone, Rattus norvegicus(Norway rat)

The following Abcc2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Abcc2 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
ORa01078 NM_012833.2
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Rattus norvegicus ATP binding cassette subfamily C member 2 (Abcc2), mRNA. pcDNA3.1-C-(k)DYK or customized vector 22 $811.30
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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 ORa01078
    Clone ID Related Accession (Same CDS sequence) NM_012833.2
    Accession Version NM_012833.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4626bp)
    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 2019-12-27
    Organism Rattus norvegicus(Norway rat)
    Product canalicular multispecific organic anion transporter 1
    Comment Comment: REVIEWED REFSEQ: This record has been curated by NCBI staff. The reference sequence was derived from AABR07006900.1, L49379.1 and X96393.1. On Aug 27, 2014 this sequence version replaced NM_012833.1. Sequence Note: This RefSeq record was created from transcript and genomic sequence data to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on transcript alignments. Publication Note: This RefSeq record includes a subset of the publications that are available for this gene. Please see the Gene record to access additional publications. ##Evidence-Data-START## Transcript exon combination :: X96393.1, L49379.1 [ECO:0000332] RNAseq introns :: single sample supports all introns SAMEA2689597, SAMEA2689598 [ECO:0000348] ##Evidence-Data-END## ##RefSeq-Attributes-START## regulatory uORF :: PMID: 17065236 ##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
    ATGGACAAGT TCTGCAACTC TACTTTTTGG GATCTCTCAT TACTGGAAAG TCCAGAGGCT 
    GACCTGCCTC TTTGTTTTGA GCAAACTGTT CTGGTGTGGA TTCCCTTGGG CTTTCTTTGG
    CTCCTGGCTC CTTGGCAACT TTACAGCGTG TACAGATCCA GGACCAAGAG ATCTTCTATA
    ACCAAATTCT ACCTTGCCAA GCAGGTGTTC GTCGTGTTTC TTCTTATTTT AGCAGCCATA
    GACCTGTCTC TTGCGCTCAC AGAAGATACT GGACAAGCCA CAGTTCCTCC TGTCAGATAT
    ACGAATCCAA TCCTCTACCT GTGCACATGG CTCCTGGTTT TGGCAGTCCA GCACAGCAGG
    CAATGGTGTG TACGAAAGAA CTCTTGGTTC CTGTCTCTGT TCTGGATCCT CTCGGTCTTA
    TGCGGCGTAT TCCAGTTTCA GACTCTGATA CGAGCACTCC TGAAGGACAG CAAGTCCAAC
    ATGGCCTACT CCTACCTGTT CTTCGTCTCC TACGGTTTCC AGATTGTCCT CCTGATTCTT
    ACAGCCTTTT CAGGACCAAG TGACTCAACA CAAACTCCAT CAGTCACGGC TTCCTTTCTG
    AGTAGCATTA CATTTAGTTG GTATGACAGG ACTGTTCTGA AAGGTTACAA GCATCCACTG
    ACACTAGAAG ATGTCTGGGA TATCGATGAA GGGTTTAAAA CAAGGTCAGT CACCAGCAAG
    TTTGAGGCGG CCATGACAAA GGACCTGCAG AAAGCCAGGC AGGCTTTTCA GAGGCGGCTG
    CAGAAGTCCC AGCGGAAACC TGAGGCCACA CTACACGGAC TGAACAAGAA GCAGAGTCAG
    AGCCAAGACG TTCTCGTCCT GGAAGAAGCG AAAAAGAAGT CTGAGAAGAC CACCAAAGAC
    TATCCCAAAT CGTGGTTGAT CAAGTCTCTC TTCAAAACCT TCCACGTAGT GATCCTGAAA
    TCATTTATAC TGAAATTAAT ACATGACCTT TTGGTGTTTC TGAATCCTCA GCTGCTGAAG
    TTGCTGATCG GTTTCGTGAA GAGCTCTAAC TCATACGTGT GGTTTGGCTA TATCTGTGCA
    ATCCTAATGT TTGCTGTGAC TCTCATCCAA TCTTTCTGCC TTCAGTCTTA CTTTCAACAT
    TGTTTTGTGT TGGGAATGTG CGTACGGACA ACCGTCATGT CTTCGATATA TAAGAAGGCA
    TTGACCCTAT CTAACTTGGC TAGGAAGCAG TACACCATTG GAGAGACGGT GAACTTGATG
    TCTGTAGATT CCCAGAAGCT AATGGATGCG ACCAACTACA TGCAGTTGGT GTGGTCAAGT
    GTTATACAGA TTACTTTGTC CATCTTCTTC CTGTGGAGAG AGTTGGGACC GTCCATCTTA
    GCAGGTGTTG GGGTTATGGT TCTCCTAATC CCAGTTAATG GAGTTCTGGC TACCAAGATC
    AGAAATATTC AGGTCCAAAA TATGAAGAAT AAAGACAAAC GTTTAAAAAT CATGAATGAG
    ATTCTCAGTG GAATCAAGAT CCTGAAATAC TTTGCCTGGG AACCTTCATT TCAAGAGCAA
    GTCCAGGGCA TTCGGAAGAA AGAACTCAAG AACTTGCTGC GGTTCGGCCA GCTGCAGAGT
    CTGCTGATCT TCATTTTACA GATAACTCCA ATCCTGGTGT CTGTGGTCAC ATTTTCTGTC
    TATGTCCTGG TGGATAGCGC CAATGTTTTG AATGCGGAGA AGGCATTTAC CTCCATCACC
    CTCTTCAATA TCCTACGCTT CCCTCTGTCC ATGCTTCCCA TGGTGACCTC ATCGATCCTC
    CAGGCCAGTG TTTCTGTGGA CCGGCTGGAG AGGTATTTGG GAGGAGACGA TTTAGACACA
    TCTGCCATTC GCCGCGTCAG CAATTTTGAT AAAGCTGTGA AGTTTTCAGA GGCCTCTTTT
    ACTTGGGACC CGGACTTGGA AGCCACAATC CAAGATGTGA ACCTGGACAT AAAGCCAGGC
    CAACTGGTGG CTGTGGTGGG CACTGTAGGC TCTGGGAAAT CCTCTTTGGT ATCAGCCATG
    CTGGGAGAAA TGGAAAACGT TCACGGGCAC ATCACCATCC AGGGATCCAC AGCCTATGTC
    CCTCAGCAGT CCTGGATTCA GAATGGAACC ATCAAAGACA ACATCCTGTT TGGGTCCGAA
    TACAATGAAA AGAAGTACCA GCAAGTTCTC AAAGCATGCG CTCTCCTCCC AGACTTGGAA
    ATATTGCCTG GAGGAGACAT GGCTGAGATC GGAGAGAAGG GGATAAATCT CAGTGGTGGT
    CAGAAGCAGC GAGTCAGCCT GGCCAGAGCT GCCTATCAAG ATGCTGACAT CTATATTCTG
    GACGATCCCC TGTCGGCTGT GGATGCTCAT GTGGGAAAAC ACATTTTCAA CAAGGTTGTG
    GGCCCCAACG GCCTGTTGGC TGGCAAGACG AGAATCTTTG TTACTCATGG TATTCACTTC
    CTTCCCCAAG TGGATGAGAT TGTAGTTCTG GGGAAAGGCA CCATCTTAGA GAAAGGATCC
    TATCGTGACC TGTTGGACAA GAAGGGAGTG TTTGCTAGGA ACTGGAAGAC CTTCATGAAG
    CATTCAGGGC CTGAAGGAGA GGCCACAGTC AATAATGACA GTGAGGCGGA AGACGACGAT
    GATGGGCTGA TTCCCACCAT GGAGGAAATC CCTGAGGATG CAGCTTCCTT GGCCATGAGA
    AGAGAAAATA GTCTTCGCCG TACACTGAGC CGCAGCTCTA GGTCCAGCAG CCGACGTGGG
    AAGTCCCTCA AAAACTCCTT GAAGATTAAA AATGTGAATG TCTTGAAGGA GAAGGAAAAA
    GAAGTGGAAG GACAAAAACT AATTAAGAAA GAATTTGTGG AAACCGGGAA GGTCAAGTTC
    TCCATCTACC TGAAGTATCT ACAGGCAGTA GGGTGGTGGT CCATACTTTT CATCATCCTT
    TTCTACGGAT TGAATAATGT TGCTTTTATC GGCTCTAACC TCTGGCTGAG TGCTTGGACC
    AGTGACTCTG ACAACTTGAA TGGGACCAAC AATTCGTCTT CTCATAGGGA CATGAGAATT
    GGGGTCTTTG GAGCTCTGGG ATTAGCACAA GGTATATGTT TGCTTATTTC AACTCTGTGG
    AGCATATATG CTTGCAGAAA TGCATCAAAA GCTTTGCACG GGCAGCTGTT AACCAACATC
    CTCCGGGCAC CCATGAGGTT TTTTGACACA ACTCCCACAG GCCGGATTGT GAACAGATTT
    TCTGGTGATA TTTCTACTGT GGACGACTTG CTCCCCCAGA CACTTCGAAG CTGGATGATG
    TGTTTCTTTG GCATCGCTGG CACTCTTGTC ATGATCTGCA TGGCCACCCC AGTCTTCGCT
    ATCATCATCA TTCCTCTCAG CATTCTTTAT ATTTCGGTGC AGGTTTTTTA TGTGGCTACT
    TCCCGCCAGC TGAGACGGTT GGATTCTGTC ACCAAATCTC CGATCTATTC TCACTTCAGT
    GAGACTGTCA CAGGTTTGCC CATTATCCGT GCCTTTGAGC ACCAGCAGCG ATTTCTAGCT
    TGGAATGAGA AGCAGATTGA CATCAACCAG AAATGTGTCT TTTCCTGGAT TACCTCCAAC
    AGGTGGCTTG CAATTCGGCT GGAGCTGGTT GGAAACTTGG TCGTCTTCTG TTCCGCCTTG
    CTGCTGGTTA TTTATAGAAA AACCTTAACC GGGGACGTTG TGGGCTTTGT TCTGTCCAAC
    GCCCTCAATA TCACACAAAC CTTGAACTGG CTAGTGAGGA TGACGTCAGA AGCAGAGACC
    AACATTGTGG CAGTTGAGCG AATAAGTGAA TACATAAATG TAGAGAATGA GGCGCCCTGG
    GTGACTGACA AGAGGCCTCC GGCAGACTGG CCCAGACATG GTGAGATCCA GTTTAACAAC
    TATCAAGTGC GGTATCGGCC GGAGCTGGAT CTGGTACTGA AAGGGATCAC TTGTAACATC
    AAGAGCGGAG AGAAGGTCGG CGTAGTGGGC AGGACTGGGG CTGGGAAATC ATCCCTCACA
    AACTGCCTCT TCAGAATCTT AGAGTCTGCG GGGGGCCAGA TCATCATTGA TGGGATAGAT
    GTTGCCTCCA TTGGACTGCA CGACCTTCGA GAGAGGCTGA CCATCATTCC CCAGGACCCC
    ATTTTGTTCT CGGGGAGTCT GAGGATGAAT CTCGACCCTT TCAACAAATA TTCAGATGAG
    GAGGTTTGGA GGGCCCTGGA GTTGGCTCAC CTCAGATCCT TTGTGTCTGG CCTACAGCTT
    GGGTTGTTAT CCGAAGTGAC AGAGGGTGGT GACAACCTGA GCATAGGGCA GAGGCAGCTC
    CTATGCCTGG GCAGGGCTGT GCTTCGAAAA TCCAAAATCC TGGTCCTGGA TGAAGCCACG
    GCTGCAGTGG ATCTCGAGAC GGATAGCCTC ATTCAGACGA CCATCCGAAA GGAGTTCTCC
    CAGTGCACGG TCATCACCAT CGCTCACAGG CTGCACACCA TCATGGACAG TGACAAGATA
    ATGGTCCTAG ACAACGGGAA GATTGTCGAG TATGGCAGTC CTGAAGAACT GCTGTCCAAC
    AGAGGTTCCT TCTATCTGAT GGCCAAGGAA GCCGGCATTG AAAATGTGAA TCACACAGAG
    CTCTAG

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

    RefSeq NP_036965.1
    CDS214..4839
    Translation

    Target ORF information:

    RefSeq Version NM_012833.2
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus ATP binding cassette subfamily C member 2 (Abcc2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_012833.2

    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
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    ATGGACAAGT TCTGCAACTC TACTTTTTGG GATCTCTCAT TACTGGAAAG TCCAGAGGCT 
    GACCTGCCTC TTTGTTTTGA GCAAACTGTT CTGGTGTGGA TTCCCTTGGG CTTTCTTTGG
    CTCCTGGCTC CTTGGCAACT TTACAGCGTG TACAGATCCA GGACCAAGAG ATCTTCTATA
    ACCAAATTCT ACCTTGCCAA GCAGGTGTTC GTCGTGTTTC TTCTTATTTT AGCAGCCATA
    GACCTGTCTC TTGCGCTCAC AGAAGATACT GGACAAGCCA CAGTTCCTCC TGTCAGATAT
    ACGAATCCAA TCCTCTACCT GTGCACATGG CTCCTGGTTT TGGCAGTCCA GCACAGCAGG
    CAATGGTGTG TACGAAAGAA CTCTTGGTTC CTGTCTCTGT TCTGGATCCT CTCGGTCTTA
    TGCGGCGTAT TCCAGTTTCA GACTCTGATA CGAGCACTCC TGAAGGACAG CAAGTCCAAC
    ATGGCCTACT CCTACCTGTT CTTCGTCTCC TACGGTTTCC AGATTGTCCT CCTGATTCTT
    ACAGCCTTTT CAGGACCAAG TGACTCAACA CAAACTCCAT CAGTCACGGC TTCCTTTCTG
    AGTAGCATTA CATTTAGTTG GTATGACAGG ACTGTTCTGA AAGGTTACAA GCATCCACTG
    ACACTAGAAG ATGTCTGGGA TATCGATGAA GGGTTTAAAA CAAGGTCAGT CACCAGCAAG
    TTTGAGGCGG CCATGACAAA GGACCTGCAG AAAGCCAGGC AGGCTTTTCA GAGGCGGCTG
    CAGAAGTCCC AGCGGAAACC TGAGGCCACA CTACACGGAC TGAACAAGAA GCAGAGTCAG
    AGCCAAGACG TTCTCGTCCT GGAAGAAGCG AAAAAGAAGT CTGAGAAGAC CACCAAAGAC
    TATCCCAAAT CGTGGTTGAT CAAGTCTCTC TTCAAAACCT TCCACGTAGT GATCCTGAAA
    TCATTTATAC TGAAATTAAT ACATGACCTT TTGGTGTTTC TGAATCCTCA GCTGCTGAAG
    TTGCTGATCG GTTTCGTGAA GAGCTCTAAC TCATACGTGT GGTTTGGCTA TATCTGTGCA
    ATCCTAATGT TTGCTGTGAC TCTCATCCAA TCTTTCTGCC TTCAGTCTTA CTTTCAACAT
    TGTTTTGTGT TGGGAATGTG CGTACGGACA ACCGTCATGT CTTCGATATA TAAGAAGGCA
    TTGACCCTAT CTAACTTGGC TAGGAAGCAG TACACCATTG GAGAGACGGT GAACTTGATG
    TCTGTAGATT CCCAGAAGCT AATGGATGCG ACCAACTACA TGCAGTTGGT GTGGTCAAGT
    GTTATACAGA TTACTTTGTC CATCTTCTTC CTGTGGAGAG AGTTGGGACC GTCCATCTTA
    GCAGGTGTTG GGGTTATGGT TCTCCTAATC CCAGTTAATG GAGTTCTGGC TACCAAGATC
    AGAAATATTC AGGTCCAAAA TATGAAGAAT AAAGACAAAC GTTTAAAAAT CATGAATGAG
    ATTCTCAGTG GAATCAAGAT CCTGAAATAC TTTGCCTGGG AACCTTCATT TCAAGAGCAA
    GTCCAGGGCA TTCGGAAGAA AGAACTCAAG AACTTGCTGC GGTTCGGCCA GCTGCAGAGT
    CTGCTGATCT TCATTTTACA GATAACTCCA ATCCTGGTGT CTGTGGTCAC ATTTTCTGTC
    TATGTCCTGG TGGATAGCGC CAATGTTTTG AATGCGGAGA AGGCATTTAC CTCCATCACC
    CTCTTCAATA TCCTACGCTT CCCTCTGTCC ATGCTTCCCA TGGTGACCTC ATCGATCCTC
    CAGGCCAGTG TTTCTGTGGA CCGGCTGGAG AGGTATTTGG GAGGAGACGA TTTAGACACA
    TCTGCCATTC GCCGCGTCAG CAATTTTGAT AAAGCTGTGA AGTTTTCAGA GGCCTCTTTT
    ACTTGGGACC CGGACTTGGA AGCCACAATC CAAGATGTGA ACCTGGACAT AAAGCCAGGC
    CAACTGGTGG CTGTGGTGGG CACTGTAGGC TCTGGGAAAT CCTCTTTGGT ATCAGCCATG
    CTGGGAGAAA TGGAAAACGT TCACGGGCAC ATCACCATCC AGGGATCCAC AGCCTATGTC
    CCTCAGCAGT CCTGGATTCA GAATGGAACC ATCAAAGACA ACATCCTGTT TGGGTCCGAA
    TACAATGAAA AGAAGTACCA GCAAGTTCTC AAAGCATGCG CTCTCCTCCC AGACTTGGAA
    ATATTGCCTG GAGGAGACAT GGCTGAGATC GGAGAGAAGG GGATAAATCT CAGTGGTGGT
    CAGAAGCAGC GAGTCAGCCT GGCCAGAGCT GCCTATCAAG ATGCTGACAT CTATATTCTG
    GACGATCCCC TGTCGGCTGT GGATGCTCAT GTGGGAAAAC ACATTTTCAA CAAGGTTGTG
    GGCCCCAACG GCCTGTTGGC TGGCAAGACG AGAATCTTTG TTACTCATGG TATTCACTTC
    CTTCCCCAAG TGGATGAGAT TGTAGTTCTG GGGAAAGGCA CCATCTTAGA GAAAGGATCC
    TATCGTGACC TGTTGGACAA GAAGGGAGTG TTTGCTAGGA ACTGGAAGAC CTTCATGAAG
    CATTCAGGGC CTGAAGGAGA GGCCACAGTC AATAATGACA GTGAGGCGGA AGACGACGAT
    GATGGGCTGA TTCCCACCAT GGAGGAAATC CCTGAGGATG CAGCTTCCTT GGCCATGAGA
    AGAGAAAATA GTCTTCGCCG TACACTGAGC CGCAGCTCTA GGTCCAGCAG CCGACGTGGG
    AAGTCCCTCA AAAACTCCTT GAAGATTAAA AATGTGAATG TCTTGAAGGA GAAGGAAAAA
    GAAGTGGAAG GACAAAAACT AATTAAGAAA GAATTTGTGG AAACCGGGAA GGTCAAGTTC
    TCCATCTACC TGAAGTATCT ACAGGCAGTA GGGTGGTGGT CCATACTTTT CATCATCCTT
    TTCTACGGAT TGAATAATGT TGCTTTTATC GGCTCTAACC TCTGGCTGAG TGCTTGGACC
    AGTGACTCTG ACAACTTGAA TGGGACCAAC AATTCGTCTT CTCATAGGGA CATGAGAATT
    GGGGTCTTTG GAGCTCTGGG ATTAGCACAA GGTATATGTT TGCTTATTTC AACTCTGTGG
    AGCATATATG CTTGCAGAAA TGCATCAAAA GCTTTGCACG GGCAGCTGTT AACCAACATC
    CTCCGGGCAC CCATGAGGTT TTTTGACACA ACTCCCACAG GCCGGATTGT GAACAGATTT
    TCTGGTGATA TTTCTACTGT GGACGACTTG CTCCCCCAGA CACTTCGAAG CTGGATGATG
    TGTTTCTTTG GCATCGCTGG CACTCTTGTC ATGATCTGCA TGGCCACCCC AGTCTTCGCT
    ATCATCATCA TTCCTCTCAG CATTCTTTAT ATTTCGGTGC AGGTTTTTTA TGTGGCTACT
    TCCCGCCAGC TGAGACGGTT GGATTCTGTC ACCAAATCTC CGATCTATTC TCACTTCAGT
    GAGACTGTCA CAGGTTTGCC CATTATCCGT GCCTTTGAGC ACCAGCAGCG ATTTCTAGCT
    TGGAATGAGA AGCAGATTGA CATCAACCAG AAATGTGTCT TTTCCTGGAT TACCTCCAAC
    AGGTGGCTTG CAATTCGGCT GGAGCTGGTT GGAAACTTGG TCGTCTTCTG TTCCGCCTTG
    CTGCTGGTTA TTTATAGAAA AACCTTAACC GGGGACGTTG TGGGCTTTGT TCTGTCCAAC
    GCCCTCAATA TCACACAAAC CTTGAACTGG CTAGTGAGGA TGACGTCAGA AGCAGAGACC
    AACATTGTGG CAGTTGAGCG AATAAGTGAA TACATAAATG TAGAGAATGA GGCGCCCTGG
    GTGACTGACA AGAGGCCTCC GGCAGACTGG CCCAGACATG GTGAGATCCA GTTTAACAAC
    TATCAAGTGC GGTATCGGCC GGAGCTGGAT CTGGTACTGA AAGGGATCAC TTGTAACATC
    AAGAGCGGAG AGAAGGTCGG CGTAGTGGGC AGGACTGGGG CTGGGAAATC ATCCCTCACA
    AACTGCCTCT TCAGAATCTT AGAGTCTGCG GGGGGCCAGA TCATCATTGA TGGGATAGAT
    GTTGCCTCCA TTGGACTGCA CGACCTTCGA GAGAGGCTGA CCATCATTCC CCAGGACCCC
    ATTTTGTTCT CGGGGAGTCT GAGGATGAAT CTCGACCCTT TCAACAAATA TTCAGATGAG
    GAGGTTTGGA GGGCCCTGGA GTTGGCTCAC CTCAGATCCT TTGTGTCTGG CCTACAGCTT
    GGGTTGTTAT CCGAAGTGAC AGAGGGTGGT GACAACCTGA GCATAGGGCA GAGGCAGCTC
    CTATGCCTGG GCAGGGCTGT GCTTCGAAAA TCCAAAATCC TGGTCCTGGA TGAAGCCACG
    GCTGCAGTGG ATCTCGAGAC GGATAGCCTC ATTCAGACGA CCATCCGAAA GGAGTTCTCC
    CAGTGCACGG TCATCACCAT CGCTCACAGG CTGCACACCA TCATGGACAG TGACAAGATA
    ATGGTCCTAG ACAACGGGAA GATTGTCGAG TATGGCAGTC CTGAAGAACT GCTGTCCAAC
    AGAGGTTCCT TCTATCTGAT GGCCAAGGAA GCCGGCATTG AAAATGTGAA TCACACAGAG
    CTCTAG

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