SYCP2 cDNA ORF clone, Colobus angolensis palliatus

The following SYCP2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the SYCP2 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
OCo182496 XM_011934506.1
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Colobus angolensis palliatus synaptonemal complex protein 2 (SYCP2), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $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 OCo182496
    Clone ID Related Accession (Same CDS sequence) XM_011934506.1
    Accession Version XM_011934506.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4584bp)
    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 2015-03-29
    Organism Colobus angolensis palliatus
    Product synaptonemal complex protein 2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012114444.1) 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 :: Colobus angolensis palliatus 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
    ATGCCAATAA GACCAGATCT CCAGCAGTTG GAAAAATGCA TTGATGATGC TTTAAGAAAA 
    AATGATTTCA AACCTTTGAA AACACTTTTG CAAGTTGATA TTTGTGAAGA TGTGAAGATT
    AAATGCAGCA AACAGTTTTT CCACAAGGTG GACAACCTTA TATGCAGGGA ACTTAATAAA
    GAGGATATCC ACAATGTTTC AGCCATTTTG GTTTCTGTTG GAAGATGTGG CAAAAATATC
    AGTGTATTGG GTCAAGCTGG CCTTCTAACG ATGATAAAAC AAGGACTAAT ACAAAAGATG
    GTTGCCTGGT TTGAAAAATC CAAGGAGATT ATTCAGAGTC AAGGAAATTC AAAAGATGAA
    GCTGTTCTAA ATATGATAGA AGACTTAGTT GATCTTCTGC TGGTCATACA TGATGTCAGT
    GATGAAGGTA AAAAACAAGT AGTGGAAAGT TTCGTACCTC GCATTTGTTC CCTGGTTACT
    GACTCAAGAG TGAATATTTG TATTCAGCAA GAGATAATTA AAAAAATGAA TGCTATGCTT
    GACAAAATGC CTCAAGATGC CGGGAAAATA CTCTCTAACC AAGAAATGTT AATTCTCATG
    AGTAGTATGG GAGAAAGGAT TTTAGATGCT GGAGATTATG ACTTACAGGT AGGCATTGTA
    GAAGCTTTAT GTAGAATGAC CACAGAAAAA CAAAGGCAAG AACTGGCACA TCAGTGGTTT
    TCAATGGATT TTATTGCTAA GGCATTTAAA AGAATTAAGA ACTCTGAATT TGAAACAGAT
    TGCAGGATAT TTCTCAACCT TGTAAATGGC ATGCTTGGAG ACAAAAGAAG GGTCTTTACA
    TTTCCTTGTT TATCAGCATT TCTTGATAAA TATGAGCTGC AAATACCATC AGATGAAAAA
    CTTGAGGAAT TTTGGATTGA TTTTAATCTT GGGAGTCAGA CTCTCTCATT CTACATTGCT
    GGAGATAATG ATGATCATCA ATGGGAAGCA GTTACTGTGC CAGAGGAAAA AGTACAAATA
    TACAGCATTG AAGTGAGAGA ATCAAAGAAG CTACTAACAA TAATTCTGAA AAATATGGTA
    AAAATTAGCA AAAGAGAAGG GAAAGAATTG CTTTTGTATT TTGATGCATC ACTAGAAATC
    ACTAATGTGA CTCAAAAAAT TTTTGGTGCA AACAAACATA GGGAATCTAT CAGAAAACAA
    GGTATTTCAG TTGCCAAAAC ATCGCTGCAT ATACTTTTTG ATGCAAGTGG ATCACAGATT
    CTAGTGCCAG AAAGTCAAAT ATCACCAGTC AGAGAACTCG TTAGTTTAAA GGAAAAATCA
    AAGTCCCCAG AGGAATTTGC TAAACCTTCA AAATATATCA AAAACAGTAA CAAAGGGAAT
    AGAAATGATA GTCAGCTTGA GATAATTACC CCTAGCAAAA GAAAAATGTC TGAAGCATCA
    ATGATTGTTT CTGGGGCAGA TAGATACACT ATGAGAAGTC CAGTACTTTT CAGCAACACA
    TCAATACCAC CACGAAGAAG AAGAATTAAA CCACCACTGC AAATGACGAG TTCTGCAGAG
    AAATCTAGTG TTTCTCAAAC ATCAGAAAAT GGAGTGGATA ATGCTGCATC ACTGAAATCT
    AGACCATCAG AAGAAAGACA TAGGAGAGAT AACACAGACA AACACATCAA AACTGCTAAG
    TGTGTAGAAA ACACAGAAAA TATGAACGTT GAATTCCCAA ACCAAAATTT TAATGAACTC
    CAGGATGTTA TACCTGATTC ACAGGCAGTG GAAAAAAGAG ATACTGCATT ACCTGGTGTT
    TTAGACAACA TCTCTGGAAA TAAAATGCAC AGCAAATGGG CATGTTGGAC ACCTGTAACA
    AACATTCAAC TATGTAATAA CCAAAGAGCA AGTACTTCAT CAGGAGACAC ATTTAATCAA
    GATATTGTTA TAAATAAAAA ACTTACTAAA CAAAAATCCT CTTCAATATC TGATCATAAT
    TCTGAAGAAA CAGGAAAAGT GAAATATAAG AAAGAACGAA CCGACCATCT CAAAATAGAT
    AAAGCAGAAG TAGAAGTTTG CAAGAAACAC AATCAACAAC AAAATCATCC TAAATATTCA
    GGGCAGAAAA GTACTGAAAA TGCCAAGCAG AGTGATTGGC CTGTTGAATC TGAAACTACT
    TTTAAATCGG TTCTCCTAAA TAAGACAATT GAAGAATCGC TGATTTATAG GAAGAAATGC
    ATATTGTCAA AAGATGTGAA TACTGCTACT TGCGATAAAA ATCCTTCTGC TAGCAAAAAT
    ATGCAAAGTC ATAGAAAAGC AGGGAAAGAA TTGACTTCTG AGCTTAATTC CTGGGATTTG
    AAACAAAAAA AAATGAGAGA AAAGTCAAAA GGGAAAGAAT TTACCCATGC AGCAGAATCC
    TTGATAAGCC AAATCAATAA AAGATACAAA ACAAACGATG ACATCAAGTC TACAAGAAAA
    TTAAAGGAGT CTTTGATTAA CAGTGGTTTT TCAAACAAAT CTGTTGTACA ACTCAGTAAG
    GAAAAAGTTC AAAAAAAAAG CTACAGAAAA CTGAAGACTA CTTTTGTCAA TGTTACTTCT
    GAATGCCCAT TGAATGATGT TTACAATTTT AATTTGAACG GAGCCGATGA CCCTATCATA
    AAACTTGGAA TCCAAGAGTT TCAAGCTACA GCTAAAGAAG CCTGTGCGGA TAAGTCGATT
    AGATTGGTAG GTCCAAGGAA TCATGATGAA CTTAAATCTT CTGTCAAAAC AAAAGATAAA
    AAAATTATAA CAAATCATCA AAAGAAAAAT CTATTTAGTG ATACTGAAAC AGAGTACAGA
    TGTGATGACA GCAAGACTGA TATTAGCTGG CTAAGAGAAC CCAAATCAAA ACCACAGCTA
    ATAGACTATA GCAGAAATAA AAATGTGAAG AATCATAAAA GTGGAAAATC AAGATCATCC
    TTGGAAAAGG GACAACCAGC CTCTAAAATG ACACCCAGTA AAAATATCAC CAAAAAGATG
    GACAAGACAG TTCCGGAAGG AAGAATCAGA CTTCCACGAA AAGCAACCAA AACAAAAAAA
    AATTATAAAG ATCTCTCAAA TTCAGAATCA GAGTGTGAAC AAGAATTTTC ACATTCATTT
    AAAGAGAACT TGCTAGCAAA GGAGGAGAAT ATCCATTCCA GAATGAAAAC CGTAAAGCTA
    CCCAAGAAAC AACAGAAAGT CTTCCGTGCT GAAACAGAAA AGGAACTATC AAAACACTGG
    AAAAACTCAT GTCTACTAAA AGATACTATA CAAGATAATT GCCTTGACTT ATCTCCTAGA
    TCTTTATCTG GCAGTCCATC ATCTATAGAA GTAACGAGAT GTGTAGAGAA AATAACAGAA
    AAGGATTTTA TTCAGGATTA TGACTGCATA ACAAAATCTA TATCACCTTA TCCAAAAACT
    TCATCACTTG AATCCTTAAA TAGTAACAGT GGAGTTGGAG GTACAATAAA GTCACCCAAA
    AACAATGAGA AAAACTTCCT GTGTGCAAGT GAAAGTTGTT CACCAATTCC ACGACCACTG
    TTTTTGCCCA GACATACTCC AACTAAGAGT AATACTATTG TAAATAGAAA AAAAAAAAGT
    TCTCTGGTAC TTACACAAGA AACACAAAAC CATAACAGCT ATTCAGACGT AAGCAGTTAT
    AGTTCAGAAA AACGGTTTAT GGAAATTGAA TCTCCAAATA TCAATGAAAA CTATATACAA
    AGCAAAAGAG AGGAAAGTCA TTCAGTATCT TCATTATCCA AGTCTAGTGA AGGCAGAGAG
    AAAACGTGGT TTGACATGCC CTGTGATGCT ACTCATGTAT CAGGCCCCAC TCAACATCTT
    GGTCGCAAAC GGATATACAT AGAAGATAAT CTGAGTAATT CCAATGAAGT AGAAATGGAA
    GTGAAAGGAG AAAGGAGAGC AAACTTGCCT CCCAAAAAAC TGTGTAAAAT TGAAGATGCA
    GATCATCATA TCCACAAAAT GTCTGAAAGT ATATCTTCAT TATCAACAAA TGACTTTTCT
    ATTCCTTGGG AGACCTGGCA AAATGAATTT GCAGGTATAG AGATGACTTA TGAGACTTAT
    GAGAGGCTCA ATTCAGAATT TAAGAGAAGG AATAATATCC GACATAAAAT GTTGAGTTAT
    TTTACTACGC AGTCTTGGAA AACAGCTCAA CAACATCTGA GAACAATGAA TCATCAAAGT
    CAGGACTGTA GGATTAAAAA ACTTGATAAA TTCCAATTCA TTATCATAGA GGAGCTGGAG
    AATTTTGAAA AAGATTCACA GTCTTTAAAA GATTTGGAAA AGGAATTTGT GGACTTTTGG
    GAAAAGATAT TTCAGAAGTT CAGTGCATAT CAAAAAAGTG AACAACAGAG GCTTCATCTT
    TTGAAAACTT CATTGGCTAA AAGTGTCTTC TGTACTACTG ATAATGAAGA AACTATTTTT
    ACATCTGAGA TGTGTTTGAT GAAAGAAGAT ATGAAAGTGC TGCAAGACAG GCTTCTTAAG
    GACATGCTAG AAGAGGAGCT TCTTAATGTA CGCAGAGAAC TGATGTCAGT ATTCATGTCT
    CATGAAAAAA ATGTTAATGT GTGA

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

    RefSeq XP_011789896.1
    CDS124..4707
    Translation

    Target ORF information:

    RefSeq Version XM_011934506.1
    Organism Colobus angolensis palliatus
    Definition Colobus angolensis palliatus synaptonemal complex protein 2 (SYCP2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011934506.1

    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
    ATGCCAATAA GACCAGATCT CCAGCAGTTG GAAAAATGCA TTGATGATGC TTTAAGAAAA 
    AATGATTTCA AACCTTTGAA AACACTTTTG CAAGTTGATA TTTGTGAAGA TGTGAAGATT
    AAATGCAGCA AACAGTTTTT CCACAAGGTG GACAACCTTA TATGCAGGGA ACTTAATAAA
    GAGGATATCC ACAATGTTTC AGCCATTTTG GTTTCTGTTG GAAGATGTGG CAAAAATATC
    AGTGTATTGG GTCAAGCTGG CCTTCTAACG ATGATAAAAC AAGGACTAAT ACAAAAGATG
    GTTGCCTGGT TTGAAAAATC CAAGGAGATT ATTCAGAGTC AAGGAAATTC AAAAGATGAA
    GCTGTTCTAA ATATGATAGA AGACTTAGTT GATCTTCTGC TGGTCATACA TGATGTCAGT
    GATGAAGGTA AAAAACAAGT AGTGGAAAGT TTCGTACCTC GCATTTGTTC CCTGGTTACT
    GACTCAAGAG TGAATATTTG TATTCAGCAA GAGATAATTA AAAAAATGAA TGCTATGCTT
    GACAAAATGC CTCAAGATGC CGGGAAAATA CTCTCTAACC AAGAAATGTT AATTCTCATG
    AGTAGTATGG GAGAAAGGAT TTTAGATGCT GGAGATTATG ACTTACAGGT AGGCATTGTA
    GAAGCTTTAT GTAGAATGAC CACAGAAAAA CAAAGGCAAG AACTGGCACA TCAGTGGTTT
    TCAATGGATT TTATTGCTAA GGCATTTAAA AGAATTAAGA ACTCTGAATT TGAAACAGAT
    TGCAGGATAT TTCTCAACCT TGTAAATGGC ATGCTTGGAG ACAAAAGAAG GGTCTTTACA
    TTTCCTTGTT TATCAGCATT TCTTGATAAA TATGAGCTGC AAATACCATC AGATGAAAAA
    CTTGAGGAAT TTTGGATTGA TTTTAATCTT GGGAGTCAGA CTCTCTCATT CTACATTGCT
    GGAGATAATG ATGATCATCA ATGGGAAGCA GTTACTGTGC CAGAGGAAAA AGTACAAATA
    TACAGCATTG AAGTGAGAGA ATCAAAGAAG CTACTAACAA TAATTCTGAA AAATATGGTA
    AAAATTAGCA AAAGAGAAGG GAAAGAATTG CTTTTGTATT TTGATGCATC ACTAGAAATC
    ACTAATGTGA CTCAAAAAAT TTTTGGTGCA AACAAACATA GGGAATCTAT CAGAAAACAA
    GGTATTTCAG TTGCCAAAAC ATCGCTGCAT ATACTTTTTG ATGCAAGTGG ATCACAGATT
    CTAGTGCCAG AAAGTCAAAT ATCACCAGTC AGAGAACTCG TTAGTTTAAA GGAAAAATCA
    AAGTCCCCAG AGGAATTTGC TAAACCTTCA AAATATATCA AAAACAGTAA CAAAGGGAAT
    AGAAATGATA GTCAGCTTGA GATAATTACC CCTAGCAAAA GAAAAATGTC TGAAGCATCA
    ATGATTGTTT CTGGGGCAGA TAGATACACT ATGAGAAGTC CAGTACTTTT CAGCAACACA
    TCAATACCAC CACGAAGAAG AAGAATTAAA CCACCACTGC AAATGACGAG TTCTGCAGAG
    AAATCTAGTG TTTCTCAAAC ATCAGAAAAT GGAGTGGATA ATGCTGCATC ACTGAAATCT
    AGACCATCAG AAGAAAGACA TAGGAGAGAT AACACAGACA AACACATCAA AACTGCTAAG
    TGTGTAGAAA ACACAGAAAA TATGAACGTT GAATTCCCAA ACCAAAATTT TAATGAACTC
    CAGGATGTTA TACCTGATTC ACAGGCAGTG GAAAAAAGAG ATACTGCATT ACCTGGTGTT
    TTAGACAACA TCTCTGGAAA TAAAATGCAC AGCAAATGGG CATGTTGGAC ACCTGTAACA
    AACATTCAAC TATGTAATAA CCAAAGAGCA AGTACTTCAT CAGGAGACAC ATTTAATCAA
    GATATTGTTA TAAATAAAAA ACTTACTAAA CAAAAATCCT CTTCAATATC TGATCATAAT
    TCTGAAGAAA CAGGAAAAGT GAAATATAAG AAAGAACGAA CCGACCATCT CAAAATAGAT
    AAAGCAGAAG TAGAAGTTTG CAAGAAACAC AATCAACAAC AAAATCATCC TAAATATTCA
    GGGCAGAAAA GTACTGAAAA TGCCAAGCAG AGTGATTGGC CTGTTGAATC TGAAACTACT
    TTTAAATCGG TTCTCCTAAA TAAGACAATT GAAGAATCGC TGATTTATAG GAAGAAATGC
    ATATTGTCAA AAGATGTGAA TACTGCTACT TGCGATAAAA ATCCTTCTGC TAGCAAAAAT
    ATGCAAAGTC ATAGAAAAGC AGGGAAAGAA TTGACTTCTG AGCTTAATTC CTGGGATTTG
    AAACAAAAAA AAATGAGAGA AAAGTCAAAA GGGAAAGAAT TTACCCATGC AGCAGAATCC
    TTGATAAGCC AAATCAATAA AAGATACAAA ACAAACGATG ACATCAAGTC TACAAGAAAA
    TTAAAGGAGT CTTTGATTAA CAGTGGTTTT TCAAACAAAT CTGTTGTACA ACTCAGTAAG
    GAAAAAGTTC AAAAAAAAAG CTACAGAAAA CTGAAGACTA CTTTTGTCAA TGTTACTTCT
    GAATGCCCAT TGAATGATGT TTACAATTTT AATTTGAACG GAGCCGATGA CCCTATCATA
    AAACTTGGAA TCCAAGAGTT TCAAGCTACA GCTAAAGAAG CCTGTGCGGA TAAGTCGATT
    AGATTGGTAG GTCCAAGGAA TCATGATGAA CTTAAATCTT CTGTCAAAAC AAAAGATAAA
    AAAATTATAA CAAATCATCA AAAGAAAAAT CTATTTAGTG ATACTGAAAC AGAGTACAGA
    TGTGATGACA GCAAGACTGA TATTAGCTGG CTAAGAGAAC CCAAATCAAA ACCACAGCTA
    ATAGACTATA GCAGAAATAA AAATGTGAAG AATCATAAAA GTGGAAAATC AAGATCATCC
    TTGGAAAAGG GACAACCAGC CTCTAAAATG ACACCCAGTA AAAATATCAC CAAAAAGATG
    GACAAGACAG TTCCGGAAGG AAGAATCAGA CTTCCACGAA AAGCAACCAA AACAAAAAAA
    AATTATAAAG ATCTCTCAAA TTCAGAATCA GAGTGTGAAC AAGAATTTTC ACATTCATTT
    AAAGAGAACT TGCTAGCAAA GGAGGAGAAT ATCCATTCCA GAATGAAAAC CGTAAAGCTA
    CCCAAGAAAC AACAGAAAGT CTTCCGTGCT GAAACAGAAA AGGAACTATC AAAACACTGG
    AAAAACTCAT GTCTACTAAA AGATACTATA CAAGATAATT GCCTTGACTT ATCTCCTAGA
    TCTTTATCTG GCAGTCCATC ATCTATAGAA GTAACGAGAT GTGTAGAGAA AATAACAGAA
    AAGGATTTTA TTCAGGATTA TGACTGCATA ACAAAATCTA TATCACCTTA TCCAAAAACT
    TCATCACTTG AATCCTTAAA TAGTAACAGT GGAGTTGGAG GTACAATAAA GTCACCCAAA
    AACAATGAGA AAAACTTCCT GTGTGCAAGT GAAAGTTGTT CACCAATTCC ACGACCACTG
    TTTTTGCCCA GACATACTCC AACTAAGAGT AATACTATTG TAAATAGAAA AAAAAAAAGT
    TCTCTGGTAC TTACACAAGA AACACAAAAC CATAACAGCT ATTCAGACGT AAGCAGTTAT
    AGTTCAGAAA AACGGTTTAT GGAAATTGAA TCTCCAAATA TCAATGAAAA CTATATACAA
    AGCAAAAGAG AGGAAAGTCA TTCAGTATCT TCATTATCCA AGTCTAGTGA AGGCAGAGAG
    AAAACGTGGT TTGACATGCC CTGTGATGCT ACTCATGTAT CAGGCCCCAC TCAACATCTT
    GGTCGCAAAC GGATATACAT AGAAGATAAT CTGAGTAATT CCAATGAAGT AGAAATGGAA
    GTGAAAGGAG AAAGGAGAGC AAACTTGCCT CCCAAAAAAC TGTGTAAAAT TGAAGATGCA
    GATCATCATA TCCACAAAAT GTCTGAAAGT ATATCTTCAT TATCAACAAA TGACTTTTCT
    ATTCCTTGGG AGACCTGGCA AAATGAATTT GCAGGTATAG AGATGACTTA TGAGACTTAT
    GAGAGGCTCA ATTCAGAATT TAAGAGAAGG AATAATATCC GACATAAAAT GTTGAGTTAT
    TTTACTACGC AGTCTTGGAA AACAGCTCAA CAACATCTGA GAACAATGAA TCATCAAAGT
    CAGGACTGTA GGATTAAAAA ACTTGATAAA TTCCAATTCA TTATCATAGA GGAGCTGGAG
    AATTTTGAAA AAGATTCACA GTCTTTAAAA GATTTGGAAA AGGAATTTGT GGACTTTTGG
    GAAAAGATAT TTCAGAAGTT CAGTGCATAT CAAAAAAGTG AACAACAGAG GCTTCATCTT
    TTGAAAACTT CATTGGCTAA AAGTGTCTTC TGTACTACTG ATAATGAAGA AACTATTTTT
    ACATCTGAGA TGTGTTTGAT GAAAGAAGAT ATGAAAGTGC TGCAAGACAG GCTTCTTAAG
    GACATGCTAG AAGAGGAGCT TCTTAATGTA CGCAGAGAAC TGATGTCAGT ATTCATGTCT
    CATGAAAAAA ATGTTAATGT GTGA

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