TTC3 cDNA ORF clone, Aquila chrysaetos canadensis

The following TTC3 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the TTC3 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
OAq24601 XM_011588400.1
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Aquila chrysaetos canadensis tetratricopeptide repeat domain 3 (TTC3), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $1021.30
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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 OAq24601
    Clone ID Related Accession (Same CDS sequence) XM_011588400.1
    Accession Version XM_011588400.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5883bp)
    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 2015-03-12
    Organism Aquila chrysaetos canadensis
    Product E3 ubiquitin-protein ligase TTC3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_011950934.1) 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 :: Aquila chrysaetos canadensis 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## ##RefSeq-Attributes-START## ab initio :: 1% of CDS bases ##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
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    5701
    5761
    5821
    5881
    ATGGGTGAAC CTATGGCCGA ATCCGAGTTT GCAGCCTTGG CTTTTTATGC TGGTGATAAA 
    TCTTGCTGTG AATTGGGTCA TGGAGTGTTT GTACAGCAAT CGCTGCATAA GCCTAAAACA
    GATGTTGATC CCTGTGAAGT ATGGTGCAGT CAGCCGGTTG ACACATTAAG AGAATATTGC
    AACGTTATTA AAATACGCAT CTTTTGGCCT CTTCTTTTCA AAAGTGAAAG TAATTCTTTG
    GTAGCTGATT GGAGCAGTTC ACAGATTTTA GACCGGAATT GGAAGAGACT TTGTGATTTA
    GAGGTTTTGG AAGACCTTGT TGATTTAATT AAAAAAGTTG TTAACGTTCC GCCTTTTATT
    GGTGGCATAC TGAGAATTGG CAGCAGAATA GAAAATGGTG TCTTTGATGT TGGGGATGCA
    CTTGATTGGG TTAGATACAC AGGTGATGTC AGTATTCTGC AGAGGCTGGA GAAGCTTGGT
    GATTTTGGTT GGATCTATCT TGAAATTTTC TTTGCTGAAT GCAAACGTTA CATTACTAAA
    GTTGCTTTGG AAGATTGTAA TTTAGTTGAA GAATTTAAAG CTGTGACCTG TGAAAACTGT
    AGGAAGAACA GTGAATCTAT GAAACAAAAA GGAAATGAGG AATTTTCCCA AGGAAACTTT
    GATCGTGCTA TAATGTCATA TACTAAAGCC ATAGAGTTTT GTCCTGCAAA CCATCTTCTG
    TATGGAAACA GAGCTCTTTG TTTAATTCTC ACAAGGCAGT ACAAGAGAGC CCTTGCTGAT
    GGAAAAAGAG CCACTATTTT GAAGCCTAAT TGGCCAAAGG GTCACTACCA CTTCTGTAAG
    GCGCTGTCAT TACTGGGGGA ACATGAACTG GCTTTGGAAG CTAATGAGAG AGCTCAGGAA
    CTATGCAAGA ATATTCTTGA TGGACTTAAG GATCTTATTC AACAAAATGA CAAGTTAAAG
    AAGACATTAG AAGAAATCAA TGGTATTAAA CAACATAAAC AGAAACCAAA GAAGTCGCTT
    CTTGAGAAAA AAGACTGCAG TTCTTCAGAA TCTCATTTAA TAATCTCTGA AGAACAGAAA
    GAAATAGAAA AAGACAGAAA GGGAACACAG TCTGATCCTA AAGATCATCA TTGTCATCAA
    AAACATGATA CCAGGGTGAC TGACATCCAA AGAACAGAAA GCAAAGGTTG GTCTCTGGAG
    TTTCCACCAA GTCAAAGTCA TCAGAACAAA GGAAGACCAA AAACCAAACC TGGTGACTCT
    GAAAAGACGA GAGATCACCT TGATCTGAAG ATAGAGTCTA AAGCTACCCA AGATAAACTC
    TTCTGTACTG TGCAGCAGAT GGATTTAACT ATGTTGCCAG AAGAGGTTAA ATCCCTTGTT
    CGTGATGGTT ATACAGCCTT GATGGACCAG CGGTGTCACA GTGCTGAACA AGCTTTTTCA
    CAATTGTTGA GCATTCTAAA TCCTTCAGAA TTAAAGCAAC TGAATCTTCG TATTATTAAT
    TATGTTGTAA TCATCTATGG ACATGCCACT GCTCTTCTTG GAATAGGACA ACCTGAGGCA
    TTGACAAAGG CTGAAGACCA GTTTAAGAAA ATAATTGAAC AGTACCAGGA AGAGAGATTT
    GGTTGTTTGG CATACTATGG AATTGGAAAA GTATACCTCA GACAAAACAG ATTTTCAGAT
    GCACTCGATC AGTTCATAAA ATCACAAACA ATGGTTAATC ACAAGATTGT ACCTGGAGTA
    TTAACTTGGC GAAGATTGAT TTTAAAGAAT TGTATTGAGG AATGCAAGTT CCCTCCAGAA
    CCAGATGCAG TTTGTCGGTA TCAGCAATGC CATGGCCACT CCAAAATCCA AATATTTTTT
    ACAGACCCAG ACTTTAAGGG TTTTATACGT ATTACTTGCT GTCAGCAATG TAGAGTGGAG
    TTTCATATCA GCTGTTGGAA AAAGCTGAAA ACAACAAAGT ACAGTGATAA AAATGATAAG
    GATTTTCTTC AAGAACTGTG TTTCACTCCT GATTGTACAG GCCTTATTTC AAAAATAGTT
    ATTTTTAGTT CTTCTGGTCT GGTAAAATGT GAATTTGAAC AAAAAATCAC AAAAGCCAAG
    GAACCACCAA GAGCCAGTAT TAAACAGAAA TGTTCAAGTC TTAGGAAGTT AAAAATGAAA
    CAAGAAAAAA AACTACGAAG AAAGCGTGCA CGAGAAGAGA CACAGAATTC TGCTAAGAAG
    AAAACAGAAG AAAACCAGAT GGGAAATGAA CCATCACAAT ACAGTGATCA CAGTGGTTAC
    CTTCAGGATT TATATGCTGG TGATCGAGTG CTGCAGCATA TCAGTCGAAA TGCTGAACAA
    ATAAAAACAG CTGTTCATGA TGCTTCCAAA CTATTAAAGG AATTACTTTC ATGGTTTGTA
    ATCAGTGAGG AGGATTACAC GTCATATTCC AAAACTAGTA GCATGTCACA TGAAGTGATG
    GAGCAGCTCA TCAGTTACTT AATTCAGGAA AAAAACAGAG TTAAAACAAG GGGTTTTATC
    CATGTGCTGA GTGAGCTGGA AGGAGTGGAT CCCAAATTAC ACAAATGGCT GAAACATCTT
    AACAACTTGG GTCTGACAGC TACAAAGAAC TTTCTCCTTC AATATGGACA ATTTTTAAAA
    GAGCTTGACC TTTCTATTTT AACCACACTC TGGAATGAGA AGTATGGTAG TAAATTTGAC
    TATGTGACAA CTAGTTCTGA AGACAAAGAA ATTCGTGATT ATTTCTTAAA ACCACCCCTA
    GAGAAAACTC GTTGTTTCAT ATGGCTGTTA GAAGACAACA GAGAAAATTT TCCATTTCTT
    CATCAAGCAT TAGATGAATT CTTTGATAAA ATGGATGACC CTACCATTAT ATTAAAGAAG
    CAGGGAAATG AAAATATATC GACTAATGGT ATCAAAGTTA AAAACAAAAA CAGGAAGAAG
    AACTCAAAAG ACTTGAGGTC TATTTTAGTA TTATCCAGTG GAGTTAGTAC AGCACCACGA
    GAAGAAGATA AGATATTTAT AGAAGAAAAT ACTTTAGATT TTACAAATTC TTATGAACCA
    TTTGTAATCC CAGAATATCT TCGGGGGCAA CTAGAGGAAT TTGAAGCTCT CTGTGATGTT
    TCAAATAGTA GCAGTTATCA AAGACTTTTG GATAATAACC CAGATCAAAC CTGTGAGAGC
    TTATATGAAT ATTTCTCTCA AATCTTGGAA GAACATGGCC CTATGGAAAT TAATAACAAA
    TTACTAGTTG GGGAATATGA ACATTTCCCT GAAGAAGCTC AAAAGATTGT AGAAGATGAA
    GGTGGTCTGA AATCTTTTCT TCTGAAATCC CTTCGTTTCG TTATGGTGGA TAATCTTATT
    GCCTTAAGAA AGCATGCAGT TCTTATTAAA GAAGATATAA ACAGAAATGA GACTGGAGAT
    AATGAAGAAG AAAATTATAT AGTCCGTGAC GTGCAAGAAT ATTCTTCCCA GAGCAAGCTA
    CAGTTAAATC CAGCTGCTAA GGAATTCAAA CCGCTGTCTT ATCCTAAGCA ACCCCATATA
    TCAACATCTA CTGACTTAAC AGTAGCAAGT TATGAGACTC CACAATATTT GCCCTGGTCT
    TGTCCTACCT CATGTAAGTC AGTGCATTCT TTGCATAATC GGAATACTGA TATCATAGAA
    AAGGAGTCGT CATTTTCAGA CATTTTACTA AAGTGCTTTG ATTCTAAAAA TCCTGGTATA
    TTTTTGCCTC AGACTTCCTG GGGTTATCAA AATGAAAGAA TATTGCCAGT GCTTTCTCAA
    ATGCCTCTCA TGTCAAATGT TGCAGAGCAA CCTACTTATA TTTATGCTGA TCATGTAGCT
    CATCAGGATA ATGACGAATC AGCTATTTCA GACCAAAAAT ACGTCTATAG CAGTTTTACA
    GCAACTGAAA TACAAACGTA TGAAGACCCT CAGCGCCAAC TGGAGAACTC GGATAACACA
    TTTCATGAAG AAAATTTTGC TGTTGCAAAT AGTAAAAATG AAGCTGAATG TGGTATACAG
    GTTAAGACGG AAGAAGAAAC CAGAAGTATA CCTCTAAAGA AAAGCAATCC TCATACAAGG
    ATGATAGCTG TTCAGGTAAA TCATGAAGTA GCTGATAGGG AAACTAATAC CTTGCCTTTT
    CATCCATTTG AAATGCAACA AGGAGATATT CTACGTATGG AAAAAGAGCA TCAGGTATTA
    AAAGAACAAC TTAAAGAAGC ACAGGAAAAA TATGAACAGT TGCAAAGCCG AAGCTTGGAG
    GAAATTAGTG TTTTGAAAGA ACTCCTGAAG AAAAATGTTG AAGAGACAGA GGTATCAAAG
    AATGAACTGG ATTGGTTTCA TCAAGACTTA GAAATACAAG TGAAAAAATG GCAACAGGAG
    AAAAAAGAAA ATCAAGAGAA CTTAAAAGCA CTAAGGAACA CAGCTAAAAA GCATACAGAT
    ACCAATGATA GGTATTCGAA GACCATTGAT GAGAAGGAAA AGCAGTATAA CATATATTTA
    AATACATACC TCGACACCAG TAATAAACTT GCTAATGAGA AAGTAAAATT GGAAGAGCTT
    ATAAAAAAGA GTCAAGATGA CTGCCAAGAG TGTGTGAAAA GAGCTGTTAA AGCAGAGATA
    GCAGTACTCA AAAACTGGAA GGAAACTGAA GTATGCAAGC TAAATGGCAT AGCTGCCAAT
    GCAGAAGCAA ACATCAAGAT GTTGAAGTCC TTGAGCAGCA GCTCAGCTTC AGCAGCACCT
    AAGTTGAAGT CACAGATTGA TTCCTGGGAA ATATTTATTT CAAATGTAAA GAAACAACTG
    GAAAAAGTAA AGGCTGAGTA TGAAGAAAAA ATTCAGATAG TGAAAAATGG TGTACGGCAC
    TGCCTCACTA AAATGGAAAC TGTGGATCTT CCTTCTCCTC CCAGCGTCTT AACAAAACAA
    GGCAGACCTC CAGTCAGTGA TCCAGCCATT GTCGTGTATT CCTCTGCATC TGCACATCTT
    AATTTACTTC CTGCATTTTC AAGTTCTGAA GATCAAGGTC TAACACATGC TTCATTTAAT
    ACACAGGCTG GAGTTAAGCC AGCACGTGCA AATTCTAAGG CTTGTTCTGC AAGTGGTGGA
    TCAGTGAAAG CACACTCCAA ACCTCTGGAA GGATCATATT CTGATAAAGT TTCAGCAACT
    TGCCTGTCAG GGATTTCTGG AAGTAAATCT CAGAATGTCC AGCCACACCA GAACCACCAA
    GATGACTCAG CTATACAACT CAGGCTTTCT GGACTTCCAA ACAACAAAAT GCTTCCAAAA
    GCGTTTGAAA ATATTATTGC ACATCTACAG AGTATATTCC CAAACTATAG CAGTTCAGAC
    TTTACTGTCT TCATAAAAGA CATACAAAGA AGAAATGGGA ATACACTGTC AGGTTTGAGC
    TTCGATGAAA TTCTAAGCAG AGTGACAGAA CTCATTCTGG ACCAACAAAA TAAGGCACCA
    ACTTCAGCAG GGAGACCTGT GAAGTCAGCA TCCTCTGCTG CACCAGCACA GACTGGAACT
    CGGGGTCGGG AAGTACCTGC AGAAGAAAAT GTACCCAGCC CACCCAAGGC AAGACCTGTG
    CATAGCAACA CCTCGAGCAA AAATCCATCT CAGCCAAATC TCCAGCCCTG GGGAAATGTT
    GGAGCAACAC CTAAATCTAA ATGGAAAAAA CTGGACTACA CAGCTTCCAG TGATGATCCT
    TGCACAATAT GTCATGATGA GCTAAGCAGA GACTCATGTG AACTAGAATG TGGGCATCAT
    TTTCACAGAG AATGCATTAG AACATGGCTT AAGCAACATT CCAGTACCTG CCCCATCTGC
    CGCGTTCATG CTCTGTTACC TGAAGATTTT CCTGAGCTTC CTGTACGGAA CAAATATGCC
    TAA

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

    RefSeq XP_011586702.1
    CDS86..5968
    Translation

    Target ORF information:

    RefSeq Version XM_011588400.1
    Organism Aquila chrysaetos canadensis
    Definition Aquila chrysaetos canadensis tetratricopeptide repeat domain 3 (TTC3), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_011588400.1

    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
    5341
    5401
    5461
    5521
    5581
    5641
    5701
    5761
    5821
    5881
    ATGGGTGAAC CTATGGCCGA ATCCGAGTTT GCAGCCTTGG CTTTTTATGC TGGTGATAAA 
    TCTTGCTGTG AATTGGGTCA TGGAGTGTTT GTACAGCAAT CGCTGCATAA GCCTAAAACA
    GATGTTGATC CCTGTGAAGT ATGGTGCAGT CAGCCGGTTG ACACATTAAG AGAATATTGC
    AACGTTATTA AAATACGCAT CTTTTGGCCT CTTCTTTTCA AAAGTGAAAG TAATTCTTTG
    GTAGCTGATT GGAGCAGTTC ACAGATTTTA GACCGGAATT GGAAGAGACT TTGTGATTTA
    GAGGTTTTGG AAGACCTTGT TGATTTAATT AAAAAAGTTG TTAACGTTCC GCCTTTTATT
    GGTGGCATAC TGAGAATTGG CAGCAGAATA GAAAATGGTG TCTTTGATGT TGGGGATGCA
    CTTGATTGGG TTAGATACAC AGGTGATGTC AGTATTCTGC AGAGGCTGGA GAAGCTTGGT
    GATTTTGGTT GGATCTATCT TGAAATTTTC TTTGCTGAAT GCAAACGTTA CATTACTAAA
    GTTGCTTTGG AAGATTGTAA TTTAGTTGAA GAATTTAAAG CTGTGACCTG TGAAAACTGT
    AGGAAGAACA GTGAATCTAT GAAACAAAAA GGAAATGAGG AATTTTCCCA AGGAAACTTT
    GATCGTGCTA TAATGTCATA TACTAAAGCC ATAGAGTTTT GTCCTGCAAA CCATCTTCTG
    TATGGAAACA GAGCTCTTTG TTTAATTCTC ACAAGGCAGT ACAAGAGAGC CCTTGCTGAT
    GGAAAAAGAG CCACTATTTT GAAGCCTAAT TGGCCAAAGG GTCACTACCA CTTCTGTAAG
    GCGCTGTCAT TACTGGGGGA ACATGAACTG GCTTTGGAAG CTAATGAGAG AGCTCAGGAA
    CTATGCAAGA ATATTCTTGA TGGACTTAAG GATCTTATTC AACAAAATGA CAAGTTAAAG
    AAGACATTAG AAGAAATCAA TGGTATTAAA CAACATAAAC AGAAACCAAA GAAGTCGCTT
    CTTGAGAAAA AAGACTGCAG TTCTTCAGAA TCTCATTTAA TAATCTCTGA AGAACAGAAA
    GAAATAGAAA AAGACAGAAA GGGAACACAG TCTGATCCTA AAGATCATCA TTGTCATCAA
    AAACATGATA CCAGGGTGAC TGACATCCAA AGAACAGAAA GCAAAGGTTG GTCTCTGGAG
    TTTCCACCAA GTCAAAGTCA TCAGAACAAA GGAAGACCAA AAACCAAACC TGGTGACTCT
    GAAAAGACGA GAGATCACCT TGATCTGAAG ATAGAGTCTA AAGCTACCCA AGATAAACTC
    TTCTGTACTG TGCAGCAGAT GGATTTAACT ATGTTGCCAG AAGAGGTTAA ATCCCTTGTT
    CGTGATGGTT ATACAGCCTT GATGGACCAG CGGTGTCACA GTGCTGAACA AGCTTTTTCA
    CAATTGTTGA GCATTCTAAA TCCTTCAGAA TTAAAGCAAC TGAATCTTCG TATTATTAAT
    TATGTTGTAA TCATCTATGG ACATGCCACT GCTCTTCTTG GAATAGGACA ACCTGAGGCA
    TTGACAAAGG CTGAAGACCA GTTTAAGAAA ATAATTGAAC AGTACCAGGA AGAGAGATTT
    GGTTGTTTGG CATACTATGG AATTGGAAAA GTATACCTCA GACAAAACAG ATTTTCAGAT
    GCACTCGATC AGTTCATAAA ATCACAAACA ATGGTTAATC ACAAGATTGT ACCTGGAGTA
    TTAACTTGGC GAAGATTGAT TTTAAAGAAT TGTATTGAGG AATGCAAGTT CCCTCCAGAA
    CCAGATGCAG TTTGTCGGTA TCAGCAATGC CATGGCCACT CCAAAATCCA AATATTTTTT
    ACAGACCCAG ACTTTAAGGG TTTTATACGT ATTACTTGCT GTCAGCAATG TAGAGTGGAG
    TTTCATATCA GCTGTTGGAA AAAGCTGAAA ACAACAAAGT ACAGTGATAA AAATGATAAG
    GATTTTCTTC AAGAACTGTG TTTCACTCCT GATTGTACAG GCCTTATTTC AAAAATAGTT
    ATTTTTAGTT CTTCTGGTCT GGTAAAATGT GAATTTGAAC AAAAAATCAC AAAAGCCAAG
    GAACCACCAA GAGCCAGTAT TAAACAGAAA TGTTCAAGTC TTAGGAAGTT AAAAATGAAA
    CAAGAAAAAA AACTACGAAG AAAGCGTGCA CGAGAAGAGA CACAGAATTC TGCTAAGAAG
    AAAACAGAAG AAAACCAGAT GGGAAATGAA CCATCACAAT ACAGTGATCA CAGTGGTTAC
    CTTCAGGATT TATATGCTGG TGATCGAGTG CTGCAGCATA TCAGTCGAAA TGCTGAACAA
    ATAAAAACAG CTGTTCATGA TGCTTCCAAA CTATTAAAGG AATTACTTTC ATGGTTTGTA
    ATCAGTGAGG AGGATTACAC GTCATATTCC AAAACTAGTA GCATGTCACA TGAAGTGATG
    GAGCAGCTCA TCAGTTACTT AATTCAGGAA AAAAACAGAG TTAAAACAAG GGGTTTTATC
    CATGTGCTGA GTGAGCTGGA AGGAGTGGAT CCCAAATTAC ACAAATGGCT GAAACATCTT
    AACAACTTGG GTCTGACAGC TACAAAGAAC TTTCTCCTTC AATATGGACA ATTTTTAAAA
    GAGCTTGACC TTTCTATTTT AACCACACTC TGGAATGAGA AGTATGGTAG TAAATTTGAC
    TATGTGACAA CTAGTTCTGA AGACAAAGAA ATTCGTGATT ATTTCTTAAA ACCACCCCTA
    GAGAAAACTC GTTGTTTCAT ATGGCTGTTA GAAGACAACA GAGAAAATTT TCCATTTCTT
    CATCAAGCAT TAGATGAATT CTTTGATAAA ATGGATGACC CTACCATTAT ATTAAAGAAG
    CAGGGAAATG AAAATATATC GACTAATGGT ATCAAAGTTA AAAACAAAAA CAGGAAGAAG
    AACTCAAAAG ACTTGAGGTC TATTTTAGTA TTATCCAGTG GAGTTAGTAC AGCACCACGA
    GAAGAAGATA AGATATTTAT AGAAGAAAAT ACTTTAGATT TTACAAATTC TTATGAACCA
    TTTGTAATCC CAGAATATCT TCGGGGGCAA CTAGAGGAAT TTGAAGCTCT CTGTGATGTT
    TCAAATAGTA GCAGTTATCA AAGACTTTTG GATAATAACC CAGATCAAAC CTGTGAGAGC
    TTATATGAAT ATTTCTCTCA AATCTTGGAA GAACATGGCC CTATGGAAAT TAATAACAAA
    TTACTAGTTG GGGAATATGA ACATTTCCCT GAAGAAGCTC AAAAGATTGT AGAAGATGAA
    GGTGGTCTGA AATCTTTTCT TCTGAAATCC CTTCGTTTCG TTATGGTGGA TAATCTTATT
    GCCTTAAGAA AGCATGCAGT TCTTATTAAA GAAGATATAA ACAGAAATGA GACTGGAGAT
    AATGAAGAAG AAAATTATAT AGTCCGTGAC GTGCAAGAAT ATTCTTCCCA GAGCAAGCTA
    CAGTTAAATC CAGCTGCTAA GGAATTCAAA CCGCTGTCTT ATCCTAAGCA ACCCCATATA
    TCAACATCTA CTGACTTAAC AGTAGCAAGT TATGAGACTC CACAATATTT GCCCTGGTCT
    TGTCCTACCT CATGTAAGTC AGTGCATTCT TTGCATAATC GGAATACTGA TATCATAGAA
    AAGGAGTCGT CATTTTCAGA CATTTTACTA AAGTGCTTTG ATTCTAAAAA TCCTGGTATA
    TTTTTGCCTC AGACTTCCTG GGGTTATCAA AATGAAAGAA TATTGCCAGT GCTTTCTCAA
    ATGCCTCTCA TGTCAAATGT TGCAGAGCAA CCTACTTATA TTTATGCTGA TCATGTAGCT
    CATCAGGATA ATGACGAATC AGCTATTTCA GACCAAAAAT ACGTCTATAG CAGTTTTACA
    GCAACTGAAA TACAAACGTA TGAAGACCCT CAGCGCCAAC TGGAGAACTC GGATAACACA
    TTTCATGAAG AAAATTTTGC TGTTGCAAAT AGTAAAAATG AAGCTGAATG TGGTATACAG
    GTTAAGACGG AAGAAGAAAC CAGAAGTATA CCTCTAAAGA AAAGCAATCC TCATACAAGG
    ATGATAGCTG TTCAGGTAAA TCATGAAGTA GCTGATAGGG AAACTAATAC CTTGCCTTTT
    CATCCATTTG AAATGCAACA AGGAGATATT CTACGTATGG AAAAAGAGCA TCAGGTATTA
    AAAGAACAAC TTAAAGAAGC ACAGGAAAAA TATGAACAGT TGCAAAGCCG AAGCTTGGAG
    GAAATTAGTG TTTTGAAAGA ACTCCTGAAG AAAAATGTTG AAGAGACAGA GGTATCAAAG
    AATGAACTGG ATTGGTTTCA TCAAGACTTA GAAATACAAG TGAAAAAATG GCAACAGGAG
    AAAAAAGAAA ATCAAGAGAA CTTAAAAGCA CTAAGGAACA CAGCTAAAAA GCATACAGAT
    ACCAATGATA GGTATTCGAA GACCATTGAT GAGAAGGAAA AGCAGTATAA CATATATTTA
    AATACATACC TCGACACCAG TAATAAACTT GCTAATGAGA AAGTAAAATT GGAAGAGCTT
    ATAAAAAAGA GTCAAGATGA CTGCCAAGAG TGTGTGAAAA GAGCTGTTAA AGCAGAGATA
    GCAGTACTCA AAAACTGGAA GGAAACTGAA GTATGCAAGC TAAATGGCAT AGCTGCCAAT
    GCAGAAGCAA ACATCAAGAT GTTGAAGTCC TTGAGCAGCA GCTCAGCTTC AGCAGCACCT
    AAGTTGAAGT CACAGATTGA TTCCTGGGAA ATATTTATTT CAAATGTAAA GAAACAACTG
    GAAAAAGTAA AGGCTGAGTA TGAAGAAAAA ATTCAGATAG TGAAAAATGG TGTACGGCAC
    TGCCTCACTA AAATGGAAAC TGTGGATCTT CCTTCTCCTC CCAGCGTCTT AACAAAACAA
    GGCAGACCTC CAGTCAGTGA TCCAGCCATT GTCGTGTATT CCTCTGCATC TGCACATCTT
    AATTTACTTC CTGCATTTTC AAGTTCTGAA GATCAAGGTC TAACACATGC TTCATTTAAT
    ACACAGGCTG GAGTTAAGCC AGCACGTGCA AATTCTAAGG CTTGTTCTGC AAGTGGTGGA
    TCAGTGAAAG CACACTCCAA ACCTCTGGAA GGATCATATT CTGATAAAGT TTCAGCAACT
    TGCCTGTCAG GGATTTCTGG AAGTAAATCT CAGAATGTCC AGCCACACCA GAACCACCAA
    GATGACTCAG CTATACAACT CAGGCTTTCT GGACTTCCAA ACAACAAAAT GCTTCCAAAA
    GCGTTTGAAA ATATTATTGC ACATCTACAG AGTATATTCC CAAACTATAG CAGTTCAGAC
    TTTACTGTCT TCATAAAAGA CATACAAAGA AGAAATGGGA ATACACTGTC AGGTTTGAGC
    TTCGATGAAA TTCTAAGCAG AGTGACAGAA CTCATTCTGG ACCAACAAAA TAAGGCACCA
    ACTTCAGCAG GGAGACCTGT GAAGTCAGCA TCCTCTGCTG CACCAGCACA GACTGGAACT
    CGGGGTCGGG AAGTACCTGC AGAAGAAAAT GTACCCAGCC CACCCAAGGC AAGACCTGTG
    CATAGCAACA CCTCGAGCAA AAATCCATCT CAGCCAAATC TCCAGCCCTG GGGAAATGTT
    GGAGCAACAC CTAAATCTAA ATGGAAAAAA CTGGACTACA CAGCTTCCAG TGATGATCCT
    TGCACAATAT GTCATGATGA GCTAAGCAGA GACTCATGTG AACTAGAATG TGGGCATCAT
    TTTCACAGAG AATGCATTAG AACATGGCTT AAGCAACATT CCAGTACCTG CCCCATCTGC
    CGCGTTCATG CTCTGTTACC TGAAGATTTT CCTGAGCTTC CTGTACGGAA CAAATATGCC
    TAA

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