ptch1 cDNA ORF clone, Pundamilia nyererei

The following ptch1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ptch1 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
OPu53704 XM_005721981.1
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Pundamilia nyererei patched 1 (ptch1), 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 OPu53704
    Clone ID Related Accession (Same CDS sequence) XM_005721981.1
    Accession Version XM_005721981.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4656bp)
    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 2015-08-30
    Organism Pundamilia nyererei
    Product protein patched homolog 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_005187407.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Pundamilia nyererei Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGGCCTCGG CTGGTAATGC GCCCTCCGAG CAGGAAAACA GAGACCCCGA TCGGCCGAGG 
    ATAACGCGGA GGAACAGGGG GGACTATACC CGCAACACAC CGCTGGATTT GGAGTATTTG
    CAGCGGCCGA GTTACTGCGA TGCGGGCTTT GCTCTGGAGC AGATTTCAGA GGGGAAGGCA
    ACTGGGAGGA AAGCACCTCT GTGGCTGAGA GCGAAGTTCC AGAGACTTTT ATTTAGGCTG
    GGCTGTTACA TTCAAAAGAA CTGCGGAAAG TTTTTGGTTG TTGGCCTCAT GATTTTTGGA
    GCTTTTGCTG TGGGCTTACG GGCAGCTAAT TTGGAAACGG ATGTGGAGAA ACTCTGGGTG
    GAAGTTGGCG GGCGTGTGAA CCAGGAACTC AAGTATACAA GACAGAAGAT AGGCGAGGAG
    GCCATGTTTA CCCCTCAGCT GATGATCCAG ACGCCGCGGG AGGAGGGAGC CAATGTTCTA
    ACTGTGGAGG CGCTCCTGCA GCACCTGGAG TCAGCTATCC GAGCCAGCAG AGTTCATGTT
    TACCTTTATA ACAGACAATG GAAATTAGAA GACTTATGCT ACAAATCAGG GGAAGTAGTC
    ACAGAAACAC ATCACCTGAA TCAGATCATA GAAAGGCTAC ATCCCTGCCT CATCATCACA
    CCTTTGGACT GCTTCTGGGA GGGGGCTAAG CTCCAGCCTG GAACAGGCTA TCTCCCAGGC
    AAAGGACTTG TGCAGTGGAC CAATTTTGAC CCTAAGGAAT TCCTTGAGGA GTTGCCACAG
    CAAAACCACG TGGAAATCTT TGAGGAGATG TTAGAAAAAG CGGACATTGG GCATGGCTAC
    ATGGATAGAC CCTGCCTGAA CCCAGCCGAT CCTGACTGCC CCCGCACCGC GCCCAATAAG
    AACTCGACTA AGCCATTCGA TGTGGCACGG GCTCTGAGTG GAGGCTGCCA TGGTCTGGCC
    AGGAAGTACA TGCACTGGCA GGAGGAACTG ATTGTTGGAG GGACCACCAA GAATGGCAGC
    GGACCCCTGC TCAGTGCCCA GGCCTTGCAG ACCATCTTCC AGCTGATGAC TCCCAAGCAG
    ATGTTTGAGC ACTTTCGGGG CTACGATGAG GTTTCCCACA TCAACTGGAA TGAAGAAAAG
    GCTGCAGCTA TACTTGAAGC CTGGCAGAGG CGGTACTCTG AGGCGGTGCA GCACAGCGTG
    TCAGCAAACT CGTCTCAGAA GGTCTTATCT TTCACAACCA CCACTCTGGA AGATATTCTC
    AAGTCTTTTT CGGACATAAG TGTTATCCGC GTGGCCAGTG GGTACCTTCT GATGCTGGCC
    TATGCATGCC TGACCATGCT GCGATGGGAC TGTGCCAAGT CTCAGGGGGC TGTGGGGCTG
    GCAGGTGTCC TCCTGGTGAC GTTGTCAGTG GCAGCTGGTT TGGGCCTCTG CTCCCTCCTG
    GGCATTTCCT TCAATGCTGC CACTACGCAG GTGCTTCCCT TTTTGGCTCT GGGAGTTGGA
    GTAGATGATG TGTTTCTCCT CGCCCATGCC TTCAGTGAGA CCGGGCAAAA CAAGAGGATC
    CCATTCGAGG ATCGCACGGG GGAGTGTCTG AAGAGGACAG GGGCCAGTGT GGCCCTTACC
    TCCATCAGCA ACGTCACAGC ATTCTTCATG GCAGCGCTCA TCCCCATCCC AGCGCTCAGA
    GCCTTTTCTC TACAGGCTGC AGTGGTGGTG GTGTTTAACT TTGCCATGGT ACTGCTCATC
    TTTCCTGCCA TCCTCAGCAT GGATCTCTAT CGGCGAGAGG ACAGGCGTTT TGACATTTTC
    TGCTGCTTCT ACAGCCCTTG TTCCAATCGT GTGATTCAGA TAGAGCCACA GGCGTACCTG
    GATGGGACAG AAGGGAGTCG CTACAGCCCT TCCCCGCCAT ATCGTACCCC TCCTCCCTCA
    TATCACATGC CTCCCCCAAG CTACAGCAGT CCCCCTCCTT CCTACAGTAG CCATGGTTTT
    GCTCAGCAGA CCCAAATCAC TATGCAGTCC ACAGTGCAGC TCAGGACGGA GTACGACCCC
    CGAACTCAGG CCTTCTACAC CACAGCTGAG CCCAGATCCC AAATCTCTGT GCAGCCCATC
    AACCCAGCTC CAGCTAGGAC CAACCGTAAC AACGAGTATT ACAGTAGCAG CAATCACGCC
    AACATCAGCA ACAACAACAA CAGTGGGGGC TTGAATAATG GGGGGTCTCG AGGTTCTGCC
    AGCTTCTCCC ATCATCATCA TCCCGCACCT CCTCCTGCTG CATCGACCCC AAGTGCTAGC
    TCAGTTGCTC AGGGTGATGG AGCCTCATCG ACTGGCCAGA GTCCAGAGAA CAACAGCTCC
    ACACGGGACC TGTTGTCCCA GATTGGAGAA GCCTCACTGG GCCTACGCTG CCTCAAGCCC
    CCCTGCTCGC GCTGGACCCT GGCCTCTTTT GCTGAGAAGC ACTATGCGCC ATTCCTTCTG
    CAGCCCACCA CCAAGGTGGT TGTGATTGTG CTGTTCCTCT GCCTGCTGGG AGTCAGTTTA
    TACGGGACCA CCCAAGTGAG GGACGGCCTG GAGCTGACAG ATATTGTACC AAGGGAGACA
    AGCGAGTACG ACTTTCTCGG CGCCCAGTTC AAGTTCTTCT CCTTCTACAA CATGTATGTG
    GTAACACAGC GCGCCGATTA TGCCCAAAAC CAGCCACTGC TTCACCAGCT CCACCAGAGG
    TTCCACACCA TTCGCTACGT GCTGAAGGAG GAAAATGGAC AGCTGCCTCG CATGTGGCTT
    CATTACTTCA GGGACTGGCT GCAAGGTCTC CAGCAGGCTT TTGACAAGGA CTGGGAGGCT
    GGCCGCATCA CCCACAACAA TTATAGGAAT GGCTCTGATG ATGGCGTCCT AGCATATAAA
    CTCTTGGTGC AGACAGGGCG CAGGGACAAG CCCATCAACT TCAACCTGCT GACTCGCCAG
    AGGCTTGTGG ATGCAGATGG GATCATCAAT CCCGGAGCTT TTTACATCTA CCTAACAGCT
    TGGGTCAGCA ATGATCCTGT GGCCTATGCT GCCTCACAAG CTAACATTCG TCCACACCCT
    CCTGAGTGGC TCCACGACCA TACCGACTCC ATGCCCGAGA CACGCCTCAG CATCCCGGCT
    GCTGAGCCCA TCGAATACGC ACAGTTCCCC TTCTACCTCA ACGGGCTCCG GGAGACGCCG
    CAGTTTGTGG AAGCCATCGA GAGCGTACGG GCCATCTGCA GCAACTACAG CCGACAAGGC
    TTGCCCTCCT ACCCCAACGG CTACCCTTTC CTGTTCTGGG AACAGTATGT TAGTCTACGC
    CACTGGCTTC TGCTGTCCAT CAGTGTGGTG CTCGCCTGCA CCTTTCTCGT CTGTGCCCTT
    TTTCTGCTCA ACCCTTGGAC CGCTGGCATT ATAGTGTTGG TGCTTTCTCT CATGACTGTG
    GAGCTGTTTG GCTTCATGGG GCTGATGGAA ATTAAGCTGA GTGCCGTCCC TGTTGTCATT
    CTCATCGCCT CTGTGGGCAT TGGAGTGGAA TTCACTGTCC ATGTGGCCCT GGCATTCCTG
    ACAGCCATAG GGGATCGTCA CAAGCGGGCA GTGCTGGCAC TGGAGCACAT GTTTGCACCG
    GTGCTCGACG GCGCCTTTTC CACGTTTTTA GGCGTCCTGA TGCTCGCAGG CTCTGAGTTT
    GACTTTATTG TCAGGTACTT CTTTGCAGTG TTAGCCATCC TAACAGTTCT TGGGGTACTG
    AATGGATTAG TCCTGCTCCC AGTATTACTA TCATACTTTG GACCTTATCC AGAGGTATCA
    CCAGTTGATG GTCGCAGCCG GTTACCAACC CCATCTCCAG AGGCCCCTCC TCATGTGGTC
    CACTTCTCAG TCCGTCCTCA CCACACCACT GCAGCCACCA CCACCTCTGG TGCAGTTTCA
    GACTCATCAG ACTCAGAGTA CAGCTCAAAC ACCACAGCAT CTGGTATCAG CCAGGAGCTG
    CAAAATTCTA ACCTGCACTC ACACAGAGGA CAAGCTCGAG CAGACGAGCA GCAGTACCAC
    CTCCAGATCA GCAGGGGAAG AGCCAGGACA GAGGAGATGA GGAGGGGAGC ATCAGGACAT
    CGGCGCTCAG CTAGACAGCC TGACCCTCCA GCTTATACTG TGTCCTCGGG TTGTGATCCT
    GGGATGCAGA ATGGAACTAC TCCAAACAGC AGCAGGGACC CCAAGAGCCA GGTGCACTGG
    CAGGGCCCGC CCCCAGCCCT GCCGCGCATG GACGCTTTTG AAACTGCTAC TGAGGCTGGG
    GGCCATTATG GCTCACATAG CCATAGAGAA CACTCAACAG GCCACAGAAG CCGCTCTTCC
    CACAACCCAC AACCTAGTCA TCACCTCCCG CACCAACACC TCAACCCTAC TCCATATGGC
    CAACCCATCA CCACGGTGAC AGCATCGGCC TCAGTCACCG TCGCAGTTCA CCCACCCCCT
    TTGTCCAGCC AGACCCCTGC TTCCACTTAC CCAGGATACG CTGCAGCAGA CAGTTACTGC
    CAGTCAGGGA CAGAGGGGCC AGAGCCTGCC TTCCAGGACC CACATGTGCC TCTCTACACC
    CACACAGGTA CCAGGGGAGT CAAAGTAGAG TCCATGGAGC TCCAAGATTT GGAGTTTGAG
    GCAGCTGAGA GCAACAATGG CAGACGGGCT AGCTGA

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

    RefSeq XP_005722038.1
    CDS383..5038
    Translation

    Target ORF information:

    RefSeq Version XM_005721981.1
    Organism Pundamilia nyererei
    Definition Pundamilia nyererei patched 1 (ptch1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_005721981.1

    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
    ATGGCCTCGG CTGGTAATGC GCCCTCCGAG CAGGAAAACA GAGACCCCGA TCGGCCGAGG 
    ATAACGCGGA GGAACAGGGG GGACTATACC CGCAACACAC CGCTGGATTT GGAGTATTTG
    CAGCGGCCGA GTTACTGCGA TGCGGGCTTT GCTCTGGAGC AGATTTCAGA GGGGAAGGCA
    ACTGGGAGGA AAGCACCTCT GTGGCTGAGA GCGAAGTTCC AGAGACTTTT ATTTAGGCTG
    GGCTGTTACA TTCAAAAGAA CTGCGGAAAG TTTTTGGTTG TTGGCCTCAT GATTTTTGGA
    GCTTTTGCTG TGGGCTTACG GGCAGCTAAT TTGGAAACGG ATGTGGAGAA ACTCTGGGTG
    GAAGTTGGCG GGCGTGTGAA CCAGGAACTC AAGTATACAA GACAGAAGAT AGGCGAGGAG
    GCCATGTTTA CCCCTCAGCT GATGATCCAG ACGCCGCGGG AGGAGGGAGC CAATGTTCTA
    ACTGTGGAGG CGCTCCTGCA GCACCTGGAG TCAGCTATCC GAGCCAGCAG AGTTCATGTT
    TACCTTTATA ACAGACAATG GAAATTAGAA GACTTATGCT ACAAATCAGG GGAAGTAGTC
    ACAGAAACAC ATCACCTGAA TCAGATCATA GAAAGGCTAC ATCCCTGCCT CATCATCACA
    CCTTTGGACT GCTTCTGGGA GGGGGCTAAG CTCCAGCCTG GAACAGGCTA TCTCCCAGGC
    AAAGGACTTG TGCAGTGGAC CAATTTTGAC CCTAAGGAAT TCCTTGAGGA GTTGCCACAG
    CAAAACCACG TGGAAATCTT TGAGGAGATG TTAGAAAAAG CGGACATTGG GCATGGCTAC
    ATGGATAGAC CCTGCCTGAA CCCAGCCGAT CCTGACTGCC CCCGCACCGC GCCCAATAAG
    AACTCGACTA AGCCATTCGA TGTGGCACGG GCTCTGAGTG GAGGCTGCCA TGGTCTGGCC
    AGGAAGTACA TGCACTGGCA GGAGGAACTG ATTGTTGGAG GGACCACCAA GAATGGCAGC
    GGACCCCTGC TCAGTGCCCA GGCCTTGCAG ACCATCTTCC AGCTGATGAC TCCCAAGCAG
    ATGTTTGAGC ACTTTCGGGG CTACGATGAG GTTTCCCACA TCAACTGGAA TGAAGAAAAG
    GCTGCAGCTA TACTTGAAGC CTGGCAGAGG CGGTACTCTG AGGCGGTGCA GCACAGCGTG
    TCAGCAAACT CGTCTCAGAA GGTCTTATCT TTCACAACCA CCACTCTGGA AGATATTCTC
    AAGTCTTTTT CGGACATAAG TGTTATCCGC GTGGCCAGTG GGTACCTTCT GATGCTGGCC
    TATGCATGCC TGACCATGCT GCGATGGGAC TGTGCCAAGT CTCAGGGGGC TGTGGGGCTG
    GCAGGTGTCC TCCTGGTGAC GTTGTCAGTG GCAGCTGGTT TGGGCCTCTG CTCCCTCCTG
    GGCATTTCCT TCAATGCTGC CACTACGCAG GTGCTTCCCT TTTTGGCTCT GGGAGTTGGA
    GTAGATGATG TGTTTCTCCT CGCCCATGCC TTCAGTGAGA CCGGGCAAAA CAAGAGGATC
    CCATTCGAGG ATCGCACGGG GGAGTGTCTG AAGAGGACAG GGGCCAGTGT GGCCCTTACC
    TCCATCAGCA ACGTCACAGC ATTCTTCATG GCAGCGCTCA TCCCCATCCC AGCGCTCAGA
    GCCTTTTCTC TACAGGCTGC AGTGGTGGTG GTGTTTAACT TTGCCATGGT ACTGCTCATC
    TTTCCTGCCA TCCTCAGCAT GGATCTCTAT CGGCGAGAGG ACAGGCGTTT TGACATTTTC
    TGCTGCTTCT ACAGCCCTTG TTCCAATCGT GTGATTCAGA TAGAGCCACA GGCGTACCTG
    GATGGGACAG AAGGGAGTCG CTACAGCCCT TCCCCGCCAT ATCGTACCCC TCCTCCCTCA
    TATCACATGC CTCCCCCAAG CTACAGCAGT CCCCCTCCTT CCTACAGTAG CCATGGTTTT
    GCTCAGCAGA CCCAAATCAC TATGCAGTCC ACAGTGCAGC TCAGGACGGA GTACGACCCC
    CGAACTCAGG CCTTCTACAC CACAGCTGAG CCCAGATCCC AAATCTCTGT GCAGCCCATC
    AACCCAGCTC CAGCTAGGAC CAACCGTAAC AACGAGTATT ACAGTAGCAG CAATCACGCC
    AACATCAGCA ACAACAACAA CAGTGGGGGC TTGAATAATG GGGGGTCTCG AGGTTCTGCC
    AGCTTCTCCC ATCATCATCA TCCCGCACCT CCTCCTGCTG CATCGACCCC AAGTGCTAGC
    TCAGTTGCTC AGGGTGATGG AGCCTCATCG ACTGGCCAGA GTCCAGAGAA CAACAGCTCC
    ACACGGGACC TGTTGTCCCA GATTGGAGAA GCCTCACTGG GCCTACGCTG CCTCAAGCCC
    CCCTGCTCGC GCTGGACCCT GGCCTCTTTT GCTGAGAAGC ACTATGCGCC ATTCCTTCTG
    CAGCCCACCA CCAAGGTGGT TGTGATTGTG CTGTTCCTCT GCCTGCTGGG AGTCAGTTTA
    TACGGGACCA CCCAAGTGAG GGACGGCCTG GAGCTGACAG ATATTGTACC AAGGGAGACA
    AGCGAGTACG ACTTTCTCGG CGCCCAGTTC AAGTTCTTCT CCTTCTACAA CATGTATGTG
    GTAACACAGC GCGCCGATTA TGCCCAAAAC CAGCCACTGC TTCACCAGCT CCACCAGAGG
    TTCCACACCA TTCGCTACGT GCTGAAGGAG GAAAATGGAC AGCTGCCTCG CATGTGGCTT
    CATTACTTCA GGGACTGGCT GCAAGGTCTC CAGCAGGCTT TTGACAAGGA CTGGGAGGCT
    GGCCGCATCA CCCACAACAA TTATAGGAAT GGCTCTGATG ATGGCGTCCT AGCATATAAA
    CTCTTGGTGC AGACAGGGCG CAGGGACAAG CCCATCAACT TCAACCTGCT GACTCGCCAG
    AGGCTTGTGG ATGCAGATGG GATCATCAAT CCCGGAGCTT TTTACATCTA CCTAACAGCT
    TGGGTCAGCA ATGATCCTGT GGCCTATGCT GCCTCACAAG CTAACATTCG TCCACACCCT
    CCTGAGTGGC TCCACGACCA TACCGACTCC ATGCCCGAGA CACGCCTCAG CATCCCGGCT
    GCTGAGCCCA TCGAATACGC ACAGTTCCCC TTCTACCTCA ACGGGCTCCG GGAGACGCCG
    CAGTTTGTGG AAGCCATCGA GAGCGTACGG GCCATCTGCA GCAACTACAG CCGACAAGGC
    TTGCCCTCCT ACCCCAACGG CTACCCTTTC CTGTTCTGGG AACAGTATGT TAGTCTACGC
    CACTGGCTTC TGCTGTCCAT CAGTGTGGTG CTCGCCTGCA CCTTTCTCGT CTGTGCCCTT
    TTTCTGCTCA ACCCTTGGAC CGCTGGCATT ATAGTGTTGG TGCTTTCTCT CATGACTGTG
    GAGCTGTTTG GCTTCATGGG GCTGATGGAA ATTAAGCTGA GTGCCGTCCC TGTTGTCATT
    CTCATCGCCT CTGTGGGCAT TGGAGTGGAA TTCACTGTCC ATGTGGCCCT GGCATTCCTG
    ACAGCCATAG GGGATCGTCA CAAGCGGGCA GTGCTGGCAC TGGAGCACAT GTTTGCACCG
    GTGCTCGACG GCGCCTTTTC CACGTTTTTA GGCGTCCTGA TGCTCGCAGG CTCTGAGTTT
    GACTTTATTG TCAGGTACTT CTTTGCAGTG TTAGCCATCC TAACAGTTCT TGGGGTACTG
    AATGGATTAG TCCTGCTCCC AGTATTACTA TCATACTTTG GACCTTATCC AGAGGTATCA
    CCAGTTGATG GTCGCAGCCG GTTACCAACC CCATCTCCAG AGGCCCCTCC TCATGTGGTC
    CACTTCTCAG TCCGTCCTCA CCACACCACT GCAGCCACCA CCACCTCTGG TGCAGTTTCA
    GACTCATCAG ACTCAGAGTA CAGCTCAAAC ACCACAGCAT CTGGTATCAG CCAGGAGCTG
    CAAAATTCTA ACCTGCACTC ACACAGAGGA CAAGCTCGAG CAGACGAGCA GCAGTACCAC
    CTCCAGATCA GCAGGGGAAG AGCCAGGACA GAGGAGATGA GGAGGGGAGC ATCAGGACAT
    CGGCGCTCAG CTAGACAGCC TGACCCTCCA GCTTATACTG TGTCCTCGGG TTGTGATCCT
    GGGATGCAGA ATGGAACTAC TCCAAACAGC AGCAGGGACC CCAAGAGCCA GGTGCACTGG
    CAGGGCCCGC CCCCAGCCCT GCCGCGCATG GACGCTTTTG AAACTGCTAC TGAGGCTGGG
    GGCCATTATG GCTCACATAG CCATAGAGAA CACTCAACAG GCCACAGAAG CCGCTCTTCC
    CACAACCCAC AACCTAGTCA TCACCTCCCG CACCAACACC TCAACCCTAC TCCATATGGC
    CAACCCATCA CCACGGTGAC AGCATCGGCC TCAGTCACCG TCGCAGTTCA CCCACCCCCT
    TTGTCCAGCC AGACCCCTGC TTCCACTTAC CCAGGATACG CTGCAGCAGA CAGTTACTGC
    CAGTCAGGGA CAGAGGGGCC AGAGCCTGCC TTCCAGGACC CACATGTGCC TCTCTACACC
    CACACAGGTA CCAGGGGAGT CAAAGTAGAG TCCATGGAGC TCCAAGATTT GGAGTTTGAG
    GCAGCTGAGA GCAACAATGG CAGACGGGCT AGCTGA

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