TJP1 cDNA ORF clone, Canis lupus familiaris(dog)

The following TJP1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the TJP1 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
OCe00362 NM_001003140.1
Latest version!
Canis lupus familiaris tight junction protein 1 (TJP1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $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 OCe00362
    Clone ID Related Accession (Same CDS sequence) NM_001003140.1
    Accession Version NM_001003140.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5310bp)
    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 2019-09-20
    Organism Canis lupus familiaris(dog)
    Product tight junction protein ZO-1
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from U55935.1. On Jan 12, 2005 this sequence version replaced XM_536171.1. 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 :: U55935.1 [ECO:0000332] RNAseq introns :: mixed/partial sample support SAMEA103936001, SAMEA103936002 [ECO:0000350] ##Evidence-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
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    ATGTCCGCCA GAGCTGCGGC CGCCAAGAAC ACAGCAATGG AGGAAACAGC TATATGGGAA 
    CAACACACAG TGACGCTTCA CAGGGCACCT GGATTTGGAT TTGGAATTGC AATATCTGGT
    GGAAGAGATA ACCCTCATTT TCAGAGTGGA GAAACTTCCA TAGTAATTTC AGATGTGCTG
    AAAGGGGGAC CTGCTGAAGG ACAGCTACAG GAAAATGACC GAGTTGCAAT GGTTAATGGA
    GTTTCAATGG ATAATGTTGA ACATGCGTTT GCTGTTCAGC AACTAAGGAA AAGTGGGAAG
    AATGCAAAAA TTACCATTCG GAGAAAGAAG AAAGTTCAGA TACCAGTTAG TCGTCCTGAT
    CCTGAACCAG TGTCTGAGAA TGAAGATAGT TATGATGAGG AAGTCCATGA CCCAAGAAGC
    AGCCGTGGTG GTCTGGTCAG TAGAAGGAGT GAGAAGAGTT GGGCAAGGGA CAGGAGTGCA
    AGCAGAGAGA GGAGTTTGTC TCCACGGTCT GATAGGCGAT CTGTGGCCTC CAGTCAACCT
    CCCAAACCTA CCAAAGTCAC ATTGGTGAAA TCCCGGAAAA ATGAAGAATA TGGTCTTCGA
    TTGGCCAGCC ATATATTTGT AAAGGAAATT TCACAAGATA GTTTGGCAGC AAGAGATGGC
    AATATTCAAG AAGGCGATGT TGTATTAAAG ATAAATGGTA CTGTGACAGA AAATATGTCA
    CTGACAGATG CAAAGACTTT GATAGAAAGA TCTAAAGGCA AGTTAAAAAT GGTAGTTCAA
    AGGGATGAAC GGGCTACCCT ATTGAATGTC CCTGATCTTT CTGACAGTAT CCACTCTGCT
    AATGCTTCTG AGAGAGATGA TATTTCAGAA ATTCAGTCAC TGGCATCAGA TCATTCTGGT
    CGATCACATG ATAGACCTCC CCGCCACAGC CGGTCACGGT CACCTGACCA ACGATCAGAG
    CCTTCTGATC ATTCCAGACA CTCTCCACAG CAGCCCAGCA GTGGCAGTCT CCGGAGCAGA
    GAGGAAGAGA GAATTTCTAA ACCTGGGGCT GTCTCAACTC CTGTAAAGCA TGCAGATGAT
    CATACACATA AAACAGTAGA AGAAGTTGTA GTTGAGAGAA ATGAGAAACA AGCACCCAGT
    CTTCCAGAAC CAAAGCCTGT GTATGCTCAA GTTGGACAAC CAGATGTGGA TTTACCTGTC
    AGTCCATCTG ATGGCGTCCT ACCTAATTCA ACTCATGAAG ATGGGATTCT CCGGCCCAGC
    ATGAAATTGG TAAAATTCAG AAAAGGAGAT AGTGTGGGCC TGCGCCTGGC TGGTGGAAAT
    GATGTTGGAA TATTTGTAGC TGGTGTTCTA GAAGATAGCC CTGCAGCCAA AGAAGGCTTA
    GAAGAGGGTG ATCAAATTCT CAGGGTAAAC AATGTAGATT TCACAAACAT CATAAGAGAA
    GAAGCCGTCC TTTTCCTACT CGACCTCCCT AAAGGAGAAG AAGTGACCAT ATTGGCTCAG
    AAGAAGAAAG ATGTTTATCG TCGCATTGTA GAATCAGATG TGGGAGATTC TTTCTATATT
    AGAACCCACT TTGAATATGA AAAGGAATCT CCCTACGGAC TTAGTTTTAA CAAAGGAGAG
    GTGTTTCGTG TTGTGGATAC CTTGTACAAT GGGAAACTAG GCTCTTGGCT CGCTATTCGA
    ATTGGCAAAA ATCATAAAGA AGTAGAACGA GGCATCATCC CTAATAAGAA CAGGGCTGAG
    CAGTTAGCCA GTGTACAGTA CACACTTCCA AAAACAGCTG GGGGAGACCG TGCTGACTTC
    TGGAGATTCC GGGGTCTTCG CAGCTCCAAG AGAAATCTTC GAAAGAGTAG AGAGGATTTG
    TCAGCTCAGC CAGTTCAAAC AAAGTTTCCA GCCTATGAAA GAGTTGTTCT TCGAGAAGCT
    GGATTTCTGA GGCCTGTAAC TATCTTTGGA CCCATAGCTG ATGTTGCCAG AGAAAAGCTG
    GCAAGAGAAG AACCAGATAT TTATCAGATT GCAAAAAGTG AACCACGAGA TGCTGGAACT
    GATCAACGTA GCTCTGGTAT TATTCGTCTT CATACAATAA AACAAATAAT AGATCAGGAC
    AAACATGCTT TATTAGATGT AACACCAAAT GCAGTTGATC GTCTGAATTA TGCCCAGTGG
    TATCCAATTG TAGTATTCCT TAACCCTGAT TCTAAGCAAG GTGTGAAAAC TATGAGGATG
    AGGCTATGCC CAGAATCTCG AAAAAGTGCC AGGAAATTAT ATGAACGGTC TCATAAACTT
    CGTAAAAATA ATCACCATCT TTTTACAACT ACAATTAACT TAAATTCAAT GAATGATGGT
    TGGTATGGTG CATTGAAAGA AGCAATTCAG CAGCAACAGA ACCAGTTGGT ATGGGTTTCT
    GAGGGAAAGG CGGATGGTGC TACAAGTGAT GACCTTGATT TGCATGATGA TCGTCTCTCC
    TACCTGTCAG CCCCAGGTAG TGAATACTCA ATGTATAGCA CGGACAGTAG ACACACTTCT
    GACTATGAAG ACACAGATAC AGAAGGCGGG GCCTACACTG ATCAAGAACT AGATGAAACT
    CTTAATGATG AGGTTGGGAC TCCACCGGAG TCTGCCATTA CACGGTCCTC TGAGCCTGTA
    AGAGAGGACT CCTCTGGAAT GCATCATGAA AACCAAACAT ATCCTCCTTA TTCACCACAA
    GCGCAGCCAC AACCAATTCA TAGAATAGAC TCCCCTGGAT TTAAAACAGC TTCTCAACAG
    AAAGCAGAAG CCTCATCTCC AGTCCCTTAC CTTTCGCCTG AAACAAACCC AGCATCATCA
    ACCTCTGCTG TTAACCATAA TGTAACTTTA ACTAATGTCA GACTGGAGGG GCCTACCCCA
    GCTCCTTCTA CTTCTTACTC ACCACAAGCT GATTCTTTAA GAACACCAAG CACTGAGGCA
    GCTCACATAA TGCTAAGAGA TCAAGAGCCA TCATTGCCGT CGCATGTAGA GCCAGCAAAG
    GTGTATAGAA AAGATCCCTA TCCTGAGGAA ATGATGAGAC AGAACCATGT TTTGAAACAG
    CCAGCTGTTG GTCACCCAGG GCAGAGGCCA GACAAAGAGC CTAATCTGAG CTATGAATCC
    CAACCCCCAT ATGTAGAAAA ACAGGCCAAC AGAGACCTCG AGCAGCCCAC ATACAGATAC
    GACTCCTCAA GCTATACAGA CCAGTTTTCT CGAAACTATG ATCATCGTCT CCGCTATGAA
    GAGCGCATTC CCACATATGA AGAGCAGTGG TCATATTACG ATGACAAACA GCCCTACCAG
    CCTCGGCCTT CTCTTGATAA TCAGCACCCT CGGGACCTTG ACTCCAGACA GCATCCAGAA
    GAGTCCTCAG AAAGAGGGTC TTACCCACGT TTTGAAGAGC CAGCCCCTCT GTCCTATGAC
    AGCAGACCAC GCTATGACCA GCCACCTAGA ACCTCTACCC TACGACACGA AGAGCAACCA
    ACTCCTGGAT ATGACATGCA TAACAGATAC AGACCAGAAG CGCAGTCCTA TTCTTCAGCA
    GGCCCTAAGG CATCTGAACC GAAGCAGTAT TTTGACCAGT ACCCACGAAG TTACGAGCAA
    GTACCATCAC AGGGATTTTC CTCGAAAGCC GGCCACTATG AGCCTCTCCA TGGTGCTGCG
    GTTGTCCCTC CTCTAATACC CGCATCTCAA CATAAGCCAG AAGTTCTGCC TTCAAATACC
    AAACCTCTGC CTCCACCCCC AACTCTGACT GAAGAGGAGG AAGATCCAGC AATGAAACCC
    CAGTCTGTAC TCACTAGAGT AAAAATGTTT GAAAACAAAA GATCTGCATC ATTGGAGAAC
    AAGAAGGATG AAAACCACAC CGCTGGTTTT AAGCCTCCAG AGGTAGCTTC TAAACCTCCA
    GGTGCTCCCA TCATTGGTCC TAAACCCACT CCTCAGAATC AGTTCAGTGA ACATGACAAA
    ACACTGTACA GGATCCCAGA ACCTCAAAAA CCTCAGATGA AGCCACCCGA AGATATTGTT
    CGGTCTAATC ATTATGATCC CGAAGAGGAT GAAGAATATT ATCGAAAGCA GCTCTCCTAC
    TTTGACCGAA GAAGTTTTGA AAACAAGCCT TCTACACACA TTCCTGCTGG CCATCTCTCA
    GAGCCTGCCA AGCCAGTTCA TTCTCAGAAT CAAACAAACT TTTCTAGTTA TTCTTCGAAG
    GGAAAGTCTC CTGAAGCTGA TGCCCCTGAT AGATCATTTG GTGAGAAGCG CTATGAGCCA
    GTCCAGGCCA CTCCCCCTCC TCCCCCATTG CCCTCCCAGT ATGCCCAGCC TTCTCAGCCC
    GGTACCAGCT CCTCTCTTGC CCTCCACACG CATGCCAAGG GGGCACATGG TGAAGGTAAT
    TCAATATCAC TGGACTTTCA GAATTCTTTA GTGTCCAAAC CAGACCCACC TCCATCACAG
    AATAAGCCAG CAACTTTCAG ACCACCAAAC CGAGAAGATA CTGTTCAGTC TACTTTCTAT
    CCACAGAAAA GTTTCCCAGA TAAAGCTCCA GTTAATGGAG CTGAACAGAC TCAGAAAACG
    GTCACTCCAG CATATAATCG ATTCACACCA AAACCATACA CAAGTTCTGC CCGGCCATTT
    GAACGCAAGT TTGAAAGTCC TAAATTCAAC CACAATCTCC TGCCAAGTGA AACAGCACAT
    AAACCTGACT TGTCTTCAAA AGCCCCTGCT TCTCCCAAGA CTCTTGCAAA AGCACATAGT
    CGAGCACAGC CTCCTGAGTT TGACAGTGGA GTTGAAACTT TCTCCATCCA TGCAGATAAA
    CCTAAATATC AAATGAACAA TCTCAGCACA GTGCCTAAAG CTATTCCTGT GAGCCCGTCA
    GCTGTGGAAG AAGATGAAGA TGAGGATGGC CATACTGTGG TGGCCACAGC CCGAGGCGTC
    TTTAACAACA ATGGTGGGGT GTTGAGTTCC ATAGAAACTG GCGTCAGTAT CATCATCCCC
    CAAGGAGCCA TTCCGGAGGG AGTCGAACAG GAAATCTACT TCAAGGTCTG CCGAGACAAC
    AGCATCCTCC CCCCTTTAGA TAAGGAGAAA GGTGAGACAC TGCTGAGCCC CTTAGTGATG
    TGTGGGCCCC ATGGCCTCAA GTTCCTGAAG CCCGTGGAGC TGCGCTTGCC ACACTGTGCG
    TCCATGACTC CTGACGGTTG GTCTTTTGCT CTAAAATCAT CCGACTCCTC GTCGGGTGAT
    CCTAAAACCT GGCAAAACAA GTGTCTTCCT GGAGATCCAA ATTACCTTGT TGGAGCAAAC
    TGTGTTTCTG TCCTGATTGA CCACTTTTAA

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

    RefSeq NP_001003140.1
    CDS13..5322
    Translation

    Target ORF information:

    RefSeq Version NM_001003140.1
    Organism Canis lupus familiaris(dog)
    Definition Canis lupus familiaris tight junction protein 1 (TJP1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001003140.1

    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
    5281
    ATGTCCGCCA GAGCTGCGGC CGCCAAGAAC ACAGCAATGG AGGAAACAGC TATATGGGAA 
    CAACACACAG TGACGCTTCA CAGGGCACCT GGATTTGGAT TTGGAATTGC AATATCTGGT
    GGAAGAGATA ACCCTCATTT TCAGAGTGGA GAAACTTCCA TAGTAATTTC AGATGTGCTG
    AAAGGGGGAC CTGCTGAAGG ACAGCTACAG GAAAATGACC GAGTTGCAAT GGTTAATGGA
    GTTTCAATGG ATAATGTTGA ACATGCGTTT GCTGTTCAGC AACTAAGGAA AAGTGGGAAG
    AATGCAAAAA TTACCATTCG GAGAAAGAAG AAAGTTCAGA TACCAGTTAG TCGTCCTGAT
    CCTGAACCAG TGTCTGAGAA TGAAGATAGT TATGATGAGG AAGTCCATGA CCCAAGAAGC
    AGCCGTGGTG GTCTGGTCAG TAGAAGGAGT GAGAAGAGTT GGGCAAGGGA CAGGAGTGCA
    AGCAGAGAGA GGAGTTTGTC TCCACGGTCT GATAGGCGAT CTGTGGCCTC CAGTCAACCT
    CCCAAACCTA CCAAAGTCAC ATTGGTGAAA TCCCGGAAAA ATGAAGAATA TGGTCTTCGA
    TTGGCCAGCC ATATATTTGT AAAGGAAATT TCACAAGATA GTTTGGCAGC AAGAGATGGC
    AATATTCAAG AAGGCGATGT TGTATTAAAG ATAAATGGTA CTGTGACAGA AAATATGTCA
    CTGACAGATG CAAAGACTTT GATAGAAAGA TCTAAAGGCA AGTTAAAAAT GGTAGTTCAA
    AGGGATGAAC GGGCTACCCT ATTGAATGTC CCTGATCTTT CTGACAGTAT CCACTCTGCT
    AATGCTTCTG AGAGAGATGA TATTTCAGAA ATTCAGTCAC TGGCATCAGA TCATTCTGGT
    CGATCACATG ATAGACCTCC CCGCCACAGC CGGTCACGGT CACCTGACCA ACGATCAGAG
    CCTTCTGATC ATTCCAGACA CTCTCCACAG CAGCCCAGCA GTGGCAGTCT CCGGAGCAGA
    GAGGAAGAGA GAATTTCTAA ACCTGGGGCT GTCTCAACTC CTGTAAAGCA TGCAGATGAT
    CATACACATA AAACAGTAGA AGAAGTTGTA GTTGAGAGAA ATGAGAAACA AGCACCCAGT
    CTTCCAGAAC CAAAGCCTGT GTATGCTCAA GTTGGACAAC CAGATGTGGA TTTACCTGTC
    AGTCCATCTG ATGGCGTCCT ACCTAATTCA ACTCATGAAG ATGGGATTCT CCGGCCCAGC
    ATGAAATTGG TAAAATTCAG AAAAGGAGAT AGTGTGGGCC TGCGCCTGGC TGGTGGAAAT
    GATGTTGGAA TATTTGTAGC TGGTGTTCTA GAAGATAGCC CTGCAGCCAA AGAAGGCTTA
    GAAGAGGGTG ATCAAATTCT CAGGGTAAAC AATGTAGATT TCACAAACAT CATAAGAGAA
    GAAGCCGTCC TTTTCCTACT CGACCTCCCT AAAGGAGAAG AAGTGACCAT ATTGGCTCAG
    AAGAAGAAAG ATGTTTATCG TCGCATTGTA GAATCAGATG TGGGAGATTC TTTCTATATT
    AGAACCCACT TTGAATATGA AAAGGAATCT CCCTACGGAC TTAGTTTTAA CAAAGGAGAG
    GTGTTTCGTG TTGTGGATAC CTTGTACAAT GGGAAACTAG GCTCTTGGCT CGCTATTCGA
    ATTGGCAAAA ATCATAAAGA AGTAGAACGA GGCATCATCC CTAATAAGAA CAGGGCTGAG
    CAGTTAGCCA GTGTACAGTA CACACTTCCA AAAACAGCTG GGGGAGACCG TGCTGACTTC
    TGGAGATTCC GGGGTCTTCG CAGCTCCAAG AGAAATCTTC GAAAGAGTAG AGAGGATTTG
    TCAGCTCAGC CAGTTCAAAC AAAGTTTCCA GCCTATGAAA GAGTTGTTCT TCGAGAAGCT
    GGATTTCTGA GGCCTGTAAC TATCTTTGGA CCCATAGCTG ATGTTGCCAG AGAAAAGCTG
    GCAAGAGAAG AACCAGATAT TTATCAGATT GCAAAAAGTG AACCACGAGA TGCTGGAACT
    GATCAACGTA GCTCTGGTAT TATTCGTCTT CATACAATAA AACAAATAAT AGATCAGGAC
    AAACATGCTT TATTAGATGT AACACCAAAT GCAGTTGATC GTCTGAATTA TGCCCAGTGG
    TATCCAATTG TAGTATTCCT TAACCCTGAT TCTAAGCAAG GTGTGAAAAC TATGAGGATG
    AGGCTATGCC CAGAATCTCG AAAAAGTGCC AGGAAATTAT ATGAACGGTC TCATAAACTT
    CGTAAAAATA ATCACCATCT TTTTACAACT ACAATTAACT TAAATTCAAT GAATGATGGT
    TGGTATGGTG CATTGAAAGA AGCAATTCAG CAGCAACAGA ACCAGTTGGT ATGGGTTTCT
    GAGGGAAAGG CGGATGGTGC TACAAGTGAT GACCTTGATT TGCATGATGA TCGTCTCTCC
    TACCTGTCAG CCCCAGGTAG TGAATACTCA ATGTATAGCA CGGACAGTAG ACACACTTCT
    GACTATGAAG ACACAGATAC AGAAGGCGGG GCCTACACTG ATCAAGAACT AGATGAAACT
    CTTAATGATG AGGTTGGGAC TCCACCGGAG TCTGCCATTA CACGGTCCTC TGAGCCTGTA
    AGAGAGGACT CCTCTGGAAT GCATCATGAA AACCAAACAT ATCCTCCTTA TTCACCACAA
    GCGCAGCCAC AACCAATTCA TAGAATAGAC TCCCCTGGAT TTAAAACAGC TTCTCAACAG
    AAAGCAGAAG CCTCATCTCC AGTCCCTTAC CTTTCGCCTG AAACAAACCC AGCATCATCA
    ACCTCTGCTG TTAACCATAA TGTAACTTTA ACTAATGTCA GACTGGAGGG GCCTACCCCA
    GCTCCTTCTA CTTCTTACTC ACCACAAGCT GATTCTTTAA GAACACCAAG CACTGAGGCA
    GCTCACATAA TGCTAAGAGA TCAAGAGCCA TCATTGCCGT CGCATGTAGA GCCAGCAAAG
    GTGTATAGAA AAGATCCCTA TCCTGAGGAA ATGATGAGAC AGAACCATGT TTTGAAACAG
    CCAGCTGTTG GTCACCCAGG GCAGAGGCCA GACAAAGAGC CTAATCTGAG CTATGAATCC
    CAACCCCCAT ATGTAGAAAA ACAGGCCAAC AGAGACCTCG AGCAGCCCAC ATACAGATAC
    GACTCCTCAA GCTATACAGA CCAGTTTTCT CGAAACTATG ATCATCGTCT CCGCTATGAA
    GAGCGCATTC CCACATATGA AGAGCAGTGG TCATATTACG ATGACAAACA GCCCTACCAG
    CCTCGGCCTT CTCTTGATAA TCAGCACCCT CGGGACCTTG ACTCCAGACA GCATCCAGAA
    GAGTCCTCAG AAAGAGGGTC TTACCCACGT TTTGAAGAGC CAGCCCCTCT GTCCTATGAC
    AGCAGACCAC GCTATGACCA GCCACCTAGA ACCTCTACCC TACGACACGA AGAGCAACCA
    ACTCCTGGAT ATGACATGCA TAACAGATAC AGACCAGAAG CGCAGTCCTA TTCTTCAGCA
    GGCCCTAAGG CATCTGAACC GAAGCAGTAT TTTGACCAGT ACCCACGAAG TTACGAGCAA
    GTACCATCAC AGGGATTTTC CTCGAAAGCC GGCCACTATG AGCCTCTCCA TGGTGCTGCG
    GTTGTCCCTC CTCTAATACC CGCATCTCAA CATAAGCCAG AAGTTCTGCC TTCAAATACC
    AAACCTCTGC CTCCACCCCC AACTCTGACT GAAGAGGAGG AAGATCCAGC AATGAAACCC
    CAGTCTGTAC TCACTAGAGT AAAAATGTTT GAAAACAAAA GATCTGCATC ATTGGAGAAC
    AAGAAGGATG AAAACCACAC CGCTGGTTTT AAGCCTCCAG AGGTAGCTTC TAAACCTCCA
    GGTGCTCCCA TCATTGGTCC TAAACCCACT CCTCAGAATC AGTTCAGTGA ACATGACAAA
    ACACTGTACA GGATCCCAGA ACCTCAAAAA CCTCAGATGA AGCCACCCGA AGATATTGTT
    CGGTCTAATC ATTATGATCC CGAAGAGGAT GAAGAATATT ATCGAAAGCA GCTCTCCTAC
    TTTGACCGAA GAAGTTTTGA AAACAAGCCT TCTACACACA TTCCTGCTGG CCATCTCTCA
    GAGCCTGCCA AGCCAGTTCA TTCTCAGAAT CAAACAAACT TTTCTAGTTA TTCTTCGAAG
    GGAAAGTCTC CTGAAGCTGA TGCCCCTGAT AGATCATTTG GTGAGAAGCG CTATGAGCCA
    GTCCAGGCCA CTCCCCCTCC TCCCCCATTG CCCTCCCAGT ATGCCCAGCC TTCTCAGCCC
    GGTACCAGCT CCTCTCTTGC CCTCCACACG CATGCCAAGG GGGCACATGG TGAAGGTAAT
    TCAATATCAC TGGACTTTCA GAATTCTTTA GTGTCCAAAC CAGACCCACC TCCATCACAG
    AATAAGCCAG CAACTTTCAG ACCACCAAAC CGAGAAGATA CTGTTCAGTC TACTTTCTAT
    CCACAGAAAA GTTTCCCAGA TAAAGCTCCA GTTAATGGAG CTGAACAGAC TCAGAAAACG
    GTCACTCCAG CATATAATCG ATTCACACCA AAACCATACA CAAGTTCTGC CCGGCCATTT
    GAACGCAAGT TTGAAAGTCC TAAATTCAAC CACAATCTCC TGCCAAGTGA AACAGCACAT
    AAACCTGACT TGTCTTCAAA AGCCCCTGCT TCTCCCAAGA CTCTTGCAAA AGCACATAGT
    CGAGCACAGC CTCCTGAGTT TGACAGTGGA GTTGAAACTT TCTCCATCCA TGCAGATAAA
    CCTAAATATC AAATGAACAA TCTCAGCACA GTGCCTAAAG CTATTCCTGT GAGCCCGTCA
    GCTGTGGAAG AAGATGAAGA TGAGGATGGC CATACTGTGG TGGCCACAGC CCGAGGCGTC
    TTTAACAACA ATGGTGGGGT GTTGAGTTCC ATAGAAACTG GCGTCAGTAT CATCATCCCC
    CAAGGAGCCA TTCCGGAGGG AGTCGAACAG GAAATCTACT TCAAGGTCTG CCGAGACAAC
    AGCATCCTCC CCCCTTTAGA TAAGGAGAAA GGTGAGACAC TGCTGAGCCC CTTAGTGATG
    TGTGGGCCCC ATGGCCTCAA GTTCCTGAAG CCCGTGGAGC TGCGCTTGCC ACACTGTGCG
    TCCATGACTC CTGACGGTTG GTCTTTTGCT CTAAAATCAT CCGACTCCTC GTCGGGTGAT
    CCTAAAACCT GGCAAAACAA GTGTCTTCCT GGAGATCCAA ATTACCTTGT TGGAGCAAAC
    TGTGTTTCTG TCCTGATTGA CCACTTTTAA

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