PHLPP1 cDNA ORF clone, Macaca mulatta(Rhesus monkey)

The following PHLPP1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the PHLPP1 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
OMb75073 XM_015122148.2
Latest version!
Macaca mulatta PH domain and leucine rich repeat protein phosphatase 1 (PHLPP1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $951.30
$1359.00
OMb52449 XM_015122148.1
Latest version!
Macaca mulatta PH domain and leucine rich repeat protein phosphatase 1 (PHLPP1), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $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 OMb75073
    Clone ID Related Accession (Same CDS sequence) XM_015122148.2
    Accession Version XM_015122148.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5145bp)
    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 2019-04-25
    Organism Macaca mulatta(Rhesus monkey)
    Product PH domain leucine-rich repeat-containing protein phosphatase 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_041771.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Apr 23, 2019 this sequence version replaced XM_015122148.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Macaca mulatta Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 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
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    ATGGAGCCCG CCGCCGCGGC CACGGCGCAG CGACTCCCCG AGCCCGGCAG GGAGGACCGA 
    GCTTCGGCTC CGGCGGCCGC CGCTGCGGCA GCAGCGGCCG CGGCGGCTCT GGCGGCGGCG
    GCTGGGGGCG GCCGGAGTCC GGAGCCCGCG CTGACCCCGG CGGCCCCGAG CGGCGGGAAC
    GGCAGCGGCG GCGGGGCGCG GGAAGAGGCC CCGGGCGAGG CGCCGCCGGG GCCGCTGCCG
    GGCAGAGCAG GGGGTGCCGG GCGCAGGAGG CGGCGTGGGG CGCCCCAGCC CATTGCCGGC
    GGGGCTGCCC CCGTGCCCGG GGCCGGCAGC GGCGCCAACT CCCTCCTGCT GAGGAGAGGG
    CGGCTGAAGA GGAATCTGTC CGCGGCCGCC GCGGCCGCCT CGTCGTCGTC GTCGTCGTCG
    TCGTCGGCCG CTGCTGCCTC GCACTCCCCC GGCGCTGCCG GCCTCCCCGC CTCCTGCTCG
    GCCTCGGCGT CGCTGTGCAC CCGGAGCCTG GACAGGAAGA CGCTGCTCCT GAAGCACCGG
    CAGACGCTGC AGCTGCAGCC GTCGGACCGG GACTGGGTGA GGCACCAGCT CCAGCGCGGT
    TGCGTGCACG TCTTCGACCG CCACATGGCC TCGACCTACC TGCGCCCGGT GCTCTGTACA
    CTGGACACCA CGGCCGGCGA GGTGGCCGCC CGCCTGCTGC AGCTGGGCCA CAAAGGCGGC
    GGCGTGGTGA AGGTGCTGGG CCAGGGGCCC GGAGCTGCCG CCGCCCGGGA GCCAGCTGAG
    CCGCCCCCCG AGGCCGGCCC CCGGCTCGCG CCCCCGGAGC CGCGGGACTC GGAGGCGCTG
    CCCGCGAGGA GCGCGCCGGG TGCCGTCGGG GGTCCTCCGC GCGCGCCCCC CGCCGACCTA
    CCCCTGCCCG CCGGCGTCCC GGGCGGGTGG TCGCGCCGTG CCAGCCCCGC GCCCTCGGAC
    TCCAGCCCCG GCGAGCCTTT CGTCGGGGGC CCTGCCTCTT CTCCCCGCGC CCCGCGGCCT
    GTGGCCTCTG ACACCGAGAG CTTCAGCCTG AGTCCCAGCG CCGAGAGTGT ATCCGACCGG
    CTGGACCCCT ACAGCAGCGG CGGCGGCTCG TCGTCGTCAG AAGAGGTCGA GACCGACGCA
    GCCTCGGCCC CGACGGCGGT CCCGGGCCAA CCTCGCCGTC CCGGCCGCTC CGCGCAGCCC
    CTCCCGCCTC CCCAGACGGC CTCCTCGCCT CGGCCGCAGC AGAAAGCCCC GAGGGCCGTT
    GACAGCCCGG GCGGGGCCGT CCGCGAGGGG TCGTGCGAGG AGAAGGCGGC GGCATTCGTG
    GCCCCGGGAG GCCTCCAGTC GATCCCCGGG AGGAGCGGGG TGACCGCGGA GAAGGCGGCT
    CCGCCGCCCC CGCCGCCCAC CCTGTACGTG CAGCTCCACG GAGAGACCAC CCGGCGCCTG
    GAGGCGGAGG AGAAGCCATT GCAGATCCAA AATGACTACC TCTTCCAACT GGGATTTGGG
    GAGCTGTGGA GGGTGCAGGA GGAAGGCATG GACTCGGAGA TTGGCTGCCT CATCCGCTTC
    TATGCAGGAA AACCTCACAG CACGGGTAGC TCTGAACGGA TTCAGCTCTC AGGAATGTAT
    AATGTCCGTA AAGGCAAAAT GCAGTTGCCA GTGAACCGAT GGACAAGACG CCAAGTCATC
    CTGTGTGGGA CCTGCCTGAT AGTATCATCT GTGAAAGACA GCTTGACCGG AAAGATGCAT
    GTTCTGCCAC TGATTGGTGG AAAAGTAGAA GAAGTGAAAA AGCACCAACA CTGTTTAGCA
    TTTAGCTCCT CTGGACCCCA AAGCCAGACT TACTACATTT GCTTTGATAC TTTCACAGAA
    TACTTAAGGT GGCTGCGACA AGTCTCCAAG GTTGCATCCC AGCGCATTAG CTCAGTGGAC
    CTCTCATGTT GTAGCCTGGA ACATCTGCCT GCCAACCTCT TCTACAGCCA AGACCTCACT
    CATCTCAATT TAAAACAAAA CTTCCTAAGG CAAAACCCTA GCCTTCCAGC TGCCAGGGGG
    CTTAATGAAC TGCAAAGGTT CACCAAGTTG AAGAGTCTTA ATCTTTCCAA TAATCATTTA
    GGGGACTTCC CACTAGCAGT CTGCAGTATT CCAACCCTGG CAGAGCTGAA TGTGTCCTGC
    AATGCCCTGC GATCGGTCCC AGCAGCCGTT GGAGTGATGC ACAACTTACA GACATTTTTG
    TTGGATGGAA ACTTTCTCCA AACCCTTCCT GCTGAGTTGG AGAACATGAA GCAGCTTAGT
    TATCTGGGTC TTTCTTTCAA TGAATTTACT GACATTCCAG AAGTATTGGA GAAATTGACT
    GCTGTGGATA AACTTTGTAT GTCCGGAAAC TGTATGGAGA CCCTTAGGCT ACAGGCTTTA
    AGAAAAATGC CTCACATTAA ACATGTGGAT CTAAGGTTGA ACATAATTAG GAAGCTGATA
    GCAGATGAAG TGGACTTTCT ACAGCATGTT ACTCAGCTTG ACCTACGAGA CAATAAACTT
    GGTGATCTAG ATGCCATGAT TTTCAACAAC ATTGAAGTTT TACACTGTGA AAGGAATCAA
    CTGGTCACAT TAGACATCTG TGGCTATTTC CTAAAAGCAC TCTATGCCTC TTCTAATGAA
    CTTGTTCAAC TTGATGTTTA CCCAGTTCCA AATTATCTGT CCTACATGGA TGTTTCAAGG
    AACCGCTTAG AAAATGTGCC TGAGTGGGTA TGTGAAAGCC GAAAGCTAGA AGTTTTGGAT
    ATTGGCCATA ATCAAATATG TGAACTTCCT GCCCGCTTAT TTTGTAACAG CAGTCTCCGG
    AAACTACTGG CAGGACACAA CCAGTTGGCA AGGCTTCCTG AAAGGCTAGA AAGAACCTCG
    GTGGAGGTCT TGGATGTGCA ACACAACCAG CTCCTTGAGC TCCCGCCTAA CCTTCTGATG
    AAGGCTGACA GCCTGAGATT CCTGAACGCA TCTGCGAACA AACTGGAAAG CCTTCCTCCA
    GCCACGCTTT CTGAAGAGAC AAACAGTATC TTACAAGAGT TGTATTTGAC AAATAACAGC
    CTCACAGACA AATGTGTGCC CTTGTTAACG GGACACCCAC ATTTGAAGAT CCTTCACATG
    GCCTATAACC GACTTCAGAG TTTTCCAGCC AGTAAAATGG CGAAACTGGA GGAACTTGAA
    GAAATTGATC TCAGTGGGAA TAAGCTGAAA GCCATCCCAA CAACGATCAT GAATTGCAGG
    CGCGTGCACA CTGTGATTGC TCACTCCAAC TGCATCGAGG TCTTTCCCGA AGTTATGCAG
    CTCCCAGAGA TCAAGTGTGT GGATCTGAGC TGTAATGAGC TAAGCGAAGT CACATTACCA
    GAAAACCTGC CTCCCAAACT GCAGGAGCTA GACCTGACCG GAAACCCTCG CCTTGTCCTT
    GATCACAAAA CCCTGGAACT ACTGAATAAT ATCCGCTGTT TCAAGATTGA TCAGCCTTCT
    ACAGGAGACG CTTCTGGAGC CCCAGCTGTT TGGAGTCATG GTTACACTGA AGCTTCAGGG
    GTAAAAAACA AGTTGTGTGT CGCAGCCCTG TCGGTGAATA ACTTCTGTGA CAACCGCGAA
    GCCCTCTACG GTGTGTTTGA TGGAGACCGG AATGTGGAGG TGCCCTACCT TCTCCAGTGC
    ACCATGAGTG ACATTTTGGC TGAAGAGCTG CAAAAAACAA AAAATGAAGA AGAATACATG
    GTCAATACAT TCATTGTCAT GCAAAGGAAA CTTGGAACTG CTGGGCAGAA GCTTGGTGGT
    GCCGCTGTCC TTTGTCATAT CAAGCATGAC CCTGTGGACC CAGGAGGATC CTTCACCTTG
    ACCTCTGCTA ATGTGGGCAA GTGCCAAACA GTTCTCTGTC GAAATGGAAA GCCACTGCCT
    CTGTCCAGAT CTTACATCAT GAGCTGTGAA GAAGAGCTGA AGAGGATTAA ACAGCACAAG
    GCCATTATCA CTGAGGATGG CAAGGTGAAC GGGGTGACTG AGTCCACGCG CATCCTGGGC
    TACACCTTCC TCCACCCCAG TGTGGTGCCT CGCCCCCACG TGCAGTCCGT GCTCCTGACC
    CCCCAGGATG AGTTCTTCAT CCTAGGCAGT AAGGGGTTGT GGGATAGCCT GTCCCTCGAG
    GAGGCCGTGG AGGCCGTGCG CAATGTTCCC GACGCCCTGG CTGCCGCCAA GAAGCTGTGT
    ACCCTGGCCC AGAGCTACGG CTGCCACGAC AGCATCAGCG CTGTGGTGGT GCAGCTCAGT
    GTCACCGAGG ACAGCTTCTG CTGCTGCGAG CTCAGCGCCG GTGGGGCCGT GCCACCACCC
    AGCCCTGGCA TCTTCCCTCC CTCAGTGAAC ATGGTGATCA AGGATCGGCC CTCAGACGGG
    TTGGGCGTGC CGTCCTCCAG CAGCGGCATG GCTTCCGAGA TCAGCAGTGA GCTCTCCACT
    TCCGAGATGA GCAGCGAGGT GGGGTCCACA GCCTCCGATG AGCCCCCGCC CGGAGCCCTA
    AGCGAGAACA GCCCTGCCTA CCCCAGTGAG CAGCGCTGCA TGCTCCACCC CGTCTGTCTG
    TCCAACTCCT TCCAGCGCCA GCTGTCCAGC GCCACGTTCT CTAGCGCCTT CTCCGACAAC
    GGCCTTGACA GTGACGATGA GGAGCCCATC GAGGGCGTCT TCACCAATGG CAGCCGGGTG
    GAGGTGGAGG TGGACATCCA CTGCAGCCGG GCCAAGGAGA AGGAGAAACA GCAGCACCTG
    CTTCAGGTGC CAGCAGAGGC CAGCGATGAG GGCATTGTCA TCAGCGCCAA CGAGGATGAG
    CCGGGTCTGC CCAGGAAGGC AGACTTCTCT GCCGTTGGGA CCATTGGGCG CCGGAGGGCC
    AATGGCTCTG TTGCGCCCCA GGAAAGGAGC CACAATATGA TAGAGGTGGC TACAGATGCA
    CCTCTTCGAA AGCCTGGAGG CTATTTTGCT GCCCCGGCTC AGCCAGATCC CGATGATCAG
    TTTATCATAC CCCCGGAGCT GGAAGAGGAG GTCAAAGAAA TCATGAAGCA TCACCAGGAG
    CAACAGCAGC AGCAGCAGCC ACCACCGCCA CCTCAGCTCC AGCCGCAGCT GCCGCGGCAC
    TACCAACTGG ACCAGCTGCC AGATTATTAC GACACGCCAC TATGA

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

    RefSeq XP_014977634.2
    CDS320..5464
    Translation

    Target ORF information:

    RefSeq Version XM_015122148.2
    Organism Macaca mulatta(Rhesus monkey)
    Definition Macaca mulatta PH domain and leucine rich repeat protein phosphatase 1 (PHLPP1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_015122148.2

    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
    4681
    4741
    4801
    4861
    4921
    4981
    5041
    5101
    ATGGAGCCCG CCGCCGCGGC CACGGCGCAG CGACTCCCCG AGCCCGGCAG GGAGGACCGA 
    GCTTCGGCTC CGGCGGCCGC CGCTGCGGCA GCAGCGGCCG CGGCGGCTCT GGCGGCGGCG
    GCTGGGGGCG GCCGGAGTCC GGAGCCCGCG CTGACCCCGG CGGCCCCGAG CGGCGGGAAC
    GGCAGCGGCG GCGGGGCGCG GGAAGAGGCC CCGGGCGAGG CGCCGCCGGG GCCGCTGCCG
    GGCAGAGCAG GGGGTGCCGG GCGCAGGAGG CGGCGTGGGG CGCCCCAGCC CATTGCCGGC
    GGGGCTGCCC CCGTGCCCGG GGCCGGCAGC GGCGCCAACT CCCTCCTGCT GAGGAGAGGG
    CGGCTGAAGA GGAATCTGTC CGCGGCCGCC GCGGCCGCCT CGTCGTCGTC GTCGTCGTCG
    TCGTCGGCCG CTGCTGCCTC GCACTCCCCC GGCGCTGCCG GCCTCCCCGC CTCCTGCTCG
    GCCTCGGCGT CGCTGTGCAC CCGGAGCCTG GACAGGAAGA CGCTGCTCCT GAAGCACCGG
    CAGACGCTGC AGCTGCAGCC GTCGGACCGG GACTGGGTGA GGCACCAGCT CCAGCGCGGT
    TGCGTGCACG TCTTCGACCG CCACATGGCC TCGACCTACC TGCGCCCGGT GCTCTGTACA
    CTGGACACCA CGGCCGGCGA GGTGGCCGCC CGCCTGCTGC AGCTGGGCCA CAAAGGCGGC
    GGCGTGGTGA AGGTGCTGGG CCAGGGGCCC GGAGCTGCCG CCGCCCGGGA GCCAGCTGAG
    CCGCCCCCCG AGGCCGGCCC CCGGCTCGCG CCCCCGGAGC CGCGGGACTC GGAGGCGCTG
    CCCGCGAGGA GCGCGCCGGG TGCCGTCGGG GGTCCTCCGC GCGCGCCCCC CGCCGACCTA
    CCCCTGCCCG CCGGCGTCCC GGGCGGGTGG TCGCGCCGTG CCAGCCCCGC GCCCTCGGAC
    TCCAGCCCCG GCGAGCCTTT CGTCGGGGGC CCTGCCTCTT CTCCCCGCGC CCCGCGGCCT
    GTGGCCTCTG ACACCGAGAG CTTCAGCCTG AGTCCCAGCG CCGAGAGTGT ATCCGACCGG
    CTGGACCCCT ACAGCAGCGG CGGCGGCTCG TCGTCGTCAG AAGAGGTCGA GACCGACGCA
    GCCTCGGCCC CGACGGCGGT CCCGGGCCAA CCTCGCCGTC CCGGCCGCTC CGCGCAGCCC
    CTCCCGCCTC CCCAGACGGC CTCCTCGCCT CGGCCGCAGC AGAAAGCCCC GAGGGCCGTT
    GACAGCCCGG GCGGGGCCGT CCGCGAGGGG TCGTGCGAGG AGAAGGCGGC GGCATTCGTG
    GCCCCGGGAG GCCTCCAGTC GATCCCCGGG AGGAGCGGGG TGACCGCGGA GAAGGCGGCT
    CCGCCGCCCC CGCCGCCCAC CCTGTACGTG CAGCTCCACG GAGAGACCAC CCGGCGCCTG
    GAGGCGGAGG AGAAGCCATT GCAGATCCAA AATGACTACC TCTTCCAACT GGGATTTGGG
    GAGCTGTGGA GGGTGCAGGA GGAAGGCATG GACTCGGAGA TTGGCTGCCT CATCCGCTTC
    TATGCAGGAA AACCTCACAG CACGGGTAGC TCTGAACGGA TTCAGCTCTC AGGAATGTAT
    AATGTCCGTA AAGGCAAAAT GCAGTTGCCA GTGAACCGAT GGACAAGACG CCAAGTCATC
    CTGTGTGGGA CCTGCCTGAT AGTATCATCT GTGAAAGACA GCTTGACCGG AAAGATGCAT
    GTTCTGCCAC TGATTGGTGG AAAAGTAGAA GAAGTGAAAA AGCACCAACA CTGTTTAGCA
    TTTAGCTCCT CTGGACCCCA AAGCCAGACT TACTACATTT GCTTTGATAC TTTCACAGAA
    TACTTAAGGT GGCTGCGACA AGTCTCCAAG GTTGCATCCC AGCGCATTAG CTCAGTGGAC
    CTCTCATGTT GTAGCCTGGA ACATCTGCCT GCCAACCTCT TCTACAGCCA AGACCTCACT
    CATCTCAATT TAAAACAAAA CTTCCTAAGG CAAAACCCTA GCCTTCCAGC TGCCAGGGGG
    CTTAATGAAC TGCAAAGGTT CACCAAGTTG AAGAGTCTTA ATCTTTCCAA TAATCATTTA
    GGGGACTTCC CACTAGCAGT CTGCAGTATT CCAACCCTGG CAGAGCTGAA TGTGTCCTGC
    AATGCCCTGC GATCGGTCCC AGCAGCCGTT GGAGTGATGC ACAACTTACA GACATTTTTG
    TTGGATGGAA ACTTTCTCCA AACCCTTCCT GCTGAGTTGG AGAACATGAA GCAGCTTAGT
    TATCTGGGTC TTTCTTTCAA TGAATTTACT GACATTCCAG AAGTATTGGA GAAATTGACT
    GCTGTGGATA AACTTTGTAT GTCCGGAAAC TGTATGGAGA CCCTTAGGCT ACAGGCTTTA
    AGAAAAATGC CTCACATTAA ACATGTGGAT CTAAGGTTGA ACATAATTAG GAAGCTGATA
    GCAGATGAAG TGGACTTTCT ACAGCATGTT ACTCAGCTTG ACCTACGAGA CAATAAACTT
    GGTGATCTAG ATGCCATGAT TTTCAACAAC ATTGAAGTTT TACACTGTGA AAGGAATCAA
    CTGGTCACAT TAGACATCTG TGGCTATTTC CTAAAAGCAC TCTATGCCTC TTCTAATGAA
    CTTGTTCAAC TTGATGTTTA CCCAGTTCCA AATTATCTGT CCTACATGGA TGTTTCAAGG
    AACCGCTTAG AAAATGTGCC TGAGTGGGTA TGTGAAAGCC GAAAGCTAGA AGTTTTGGAT
    ATTGGCCATA ATCAAATATG TGAACTTCCT GCCCGCTTAT TTTGTAACAG CAGTCTCCGG
    AAACTACTGG CAGGACACAA CCAGTTGGCA AGGCTTCCTG AAAGGCTAGA AAGAACCTCG
    GTGGAGGTCT TGGATGTGCA ACACAACCAG CTCCTTGAGC TCCCGCCTAA CCTTCTGATG
    AAGGCTGACA GCCTGAGATT CCTGAACGCA TCTGCGAACA AACTGGAAAG CCTTCCTCCA
    GCCACGCTTT CTGAAGAGAC AAACAGTATC TTACAAGAGT TGTATTTGAC AAATAACAGC
    CTCACAGACA AATGTGTGCC CTTGTTAACG GGACACCCAC ATTTGAAGAT CCTTCACATG
    GCCTATAACC GACTTCAGAG TTTTCCAGCC AGTAAAATGG CGAAACTGGA GGAACTTGAA
    GAAATTGATC TCAGTGGGAA TAAGCTGAAA GCCATCCCAA CAACGATCAT GAATTGCAGG
    CGCGTGCACA CTGTGATTGC TCACTCCAAC TGCATCGAGG TCTTTCCCGA AGTTATGCAG
    CTCCCAGAGA TCAAGTGTGT GGATCTGAGC TGTAATGAGC TAAGCGAAGT CACATTACCA
    GAAAACCTGC CTCCCAAACT GCAGGAGCTA GACCTGACCG GAAACCCTCG CCTTGTCCTT
    GATCACAAAA CCCTGGAACT ACTGAATAAT ATCCGCTGTT TCAAGATTGA TCAGCCTTCT
    ACAGGAGACG CTTCTGGAGC CCCAGCTGTT TGGAGTCATG GTTACACTGA AGCTTCAGGG
    GTAAAAAACA AGTTGTGTGT CGCAGCCCTG TCGGTGAATA ACTTCTGTGA CAACCGCGAA
    GCCCTCTACG GTGTGTTTGA TGGAGACCGG AATGTGGAGG TGCCCTACCT TCTCCAGTGC
    ACCATGAGTG ACATTTTGGC TGAAGAGCTG CAAAAAACAA AAAATGAAGA AGAATACATG
    GTCAATACAT TCATTGTCAT GCAAAGGAAA CTTGGAACTG CTGGGCAGAA GCTTGGTGGT
    GCCGCTGTCC TTTGTCATAT CAAGCATGAC CCTGTGGACC CAGGAGGATC CTTCACCTTG
    ACCTCTGCTA ATGTGGGCAA GTGCCAAACA GTTCTCTGTC GAAATGGAAA GCCACTGCCT
    CTGTCCAGAT CTTACATCAT GAGCTGTGAA GAAGAGCTGA AGAGGATTAA ACAGCACAAG
    GCCATTATCA CTGAGGATGG CAAGGTGAAC GGGGTGACTG AGTCCACGCG CATCCTGGGC
    TACACCTTCC TCCACCCCAG TGTGGTGCCT CGCCCCCACG TGCAGTCCGT GCTCCTGACC
    CCCCAGGATG AGTTCTTCAT CCTAGGCAGT AAGGGGTTGT GGGATAGCCT GTCCCTCGAG
    GAGGCCGTGG AGGCCGTGCG CAATGTTCCC GACGCCCTGG CTGCCGCCAA GAAGCTGTGT
    ACCCTGGCCC AGAGCTACGG CTGCCACGAC AGCATCAGCG CTGTGGTGGT GCAGCTCAGT
    GTCACCGAGG ACAGCTTCTG CTGCTGCGAG CTCAGCGCCG GTGGGGCCGT GCCACCACCC
    AGCCCTGGCA TCTTCCCTCC CTCAGTGAAC ATGGTGATCA AGGATCGGCC CTCAGACGGG
    TTGGGCGTGC CGTCCTCCAG CAGCGGCATG GCTTCCGAGA TCAGCAGTGA GCTCTCCACT
    TCCGAGATGA GCAGCGAGGT GGGGTCCACA GCCTCCGATG AGCCCCCGCC CGGAGCCCTA
    AGCGAGAACA GCCCTGCCTA CCCCAGTGAG CAGCGCTGCA TGCTCCACCC CGTCTGTCTG
    TCCAACTCCT TCCAGCGCCA GCTGTCCAGC GCCACGTTCT CTAGCGCCTT CTCCGACAAC
    GGCCTTGACA GTGACGATGA GGAGCCCATC GAGGGCGTCT TCACCAATGG CAGCCGGGTG
    GAGGTGGAGG TGGACATCCA CTGCAGCCGG GCCAAGGAGA AGGAGAAACA GCAGCACCTG
    CTTCAGGTGC CAGCAGAGGC CAGCGATGAG GGCATTGTCA TCAGCGCCAA CGAGGATGAG
    CCGGGTCTGC CCAGGAAGGC AGACTTCTCT GCCGTTGGGA CCATTGGGCG CCGGAGGGCC
    AATGGCTCTG TTGCGCCCCA GGAAAGGAGC CACAATATGA TAGAGGTGGC TACAGATGCA
    CCTCTTCGAA AGCCTGGAGG CTATTTTGCT GCCCCGGCTC AGCCAGATCC CGATGATCAG
    TTTATCATAC CCCCGGAGCT GGAAGAGGAG GTCAAAGAAA TCATGAAGCA TCACCAGGAG
    CAACAGCAGC AGCAGCAGCC ACCACCGCCA CCTCAGCTCC AGCCGCAGCT GCCGCGGCAC
    TACCAACTGG ACCAGCTGCC AGATTATTAC GACACGCCAC TATGA

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

    CloneID OMb52449
    Clone ID Related Accession (Same CDS sequence) XM_015122148.1
    Accession Version XM_015122148.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5130bp)
    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 2015-12-20
    Organism Macaca mulatta(Rhesus monkey)
    Product LOW QUALITY PROTEIN: PH domain leucine-rich repeat-containing protein phosphatase 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_014805705.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Macaca mulatta Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.5 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## frameshifts :: corrected 3 indels ##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
    ATGGAGCCCG CCGCCGCGGC CACGGCGCAG CGACTCCCGA GCCGGCAGGG AGGACCGAGC 
    TTCGGCTCCG GCGCCGCCGC TGCGGCAGCA GCGGCCGCGN GCGCTCTGGC GGCGGCGGCT
    GGGGCGGCGG AGTCGGAGCC CGCGCTGACC CGGCGCCCCG AGCGGCGGGA ACGCAGCGGC
    GCGGGGGCGC GGGAAGAGGC CGGGGAGGCG CCGCCGGGCC CGCTGCCGGG CAGAGCAGGG
    GGTCCGGGCG CAGGAGGCGG CGTGGGCGCC CAGCCCATTG CCGGCGGGGG CTGCCCCGTG
    CCGGGGNNCG GCAGCGGCGC CAACTCCCTC CTGCTGAGGA GAGGGCGGCT GAAGAGGAAT
    CTTCCCGCGG CCCCCGCGGC CGCCTCGTCG TCGTCGTCGT CGTCGTCGTC GTCCGCTGCT
    GCCTCGCACT CCCCCGGCGC TGCCGGCCTC CCCGCCTCCT GCTCGGCCTC GGCGTCGCTG
    TGCACCCGGA GCCTGGACAG GAAGACGCTG CTCCTGAAGC ACCGGCAGAC GCTGCAGCTG
    CAGCCGTCGG ACCGGGACTG GGTGAGGCAC CAGCTCCAGC GCGGTTGCGT GCACGTCTTC
    GACCGCCACA TGGCCTCGAC CTACCTGCGC CCGGTGCTCT GTACACTGGA CACCACGGCC
    GGCGAGGTGG CCGCCCGCCT GCTGCAGCTG GGCCACAAAG GCGGCGGCGT GGTGAAGGTG
    CTGGGCCAGG GGCCCGGAGC TGCCGCCGCC CAGGAGCCCG CTGAGCCGTC CCCCGAGGCC
    GGCCCCCGGC TCGCGCCCCC GGAGCCGCGG GACTCGGAGG CGCTGCCCGC GAGGAGCGCG
    CCGGGTGCCG TCGGGGGTCC TCCGCGCGCG CCCCCCGCAG ACCTACCCCT GCCCGCCGGC
    GTCCCGGGCG GGTGGTCGCG CCGTGCCAGC CCCGCGCCCT CGGACTCCAG CCCCGGCGAG
    CCTTTCGTCG GGGGCCCTGC CTCTTCTCCC CGCGCCCCGC GGCCTGTGGC CTCCGACACC
    GAGAGCTTCA GCCTGAGTCC CAGCGCCGAG AGTGTATCCG ACCGGCTGGA CCCCTACAGC
    AGCGGCGGCG GCTCGTCGTC GTCAGAAGAG GTCGAGACCG ACGCAGCCTC GGCCCCGACG
    GCGGTCCCGG GCCAACCTCG CCGTCCCGGC CGCTCCGCGC AGCCCCTCCC GCCTCCCCAG
    ACGGCCTCCT CGCCTCGGCC GCAGCAGAAA GCCCCGAGGG CCGTTGACAG CCCGGGCGGG
    GCCGTCCGCG AGGGGTCGTG CGAGGAGAAG GCGGCGGCAT TCGTGGCCCC GGGAGGCCTC
    CAGTCGATCC CCGGGAGGAG CGGGGTGACC GCGGAGAAGG CGGCTCCGCC GCCCCCGCCG
    CCCACCCTGT ACGTGCAGCT CCACGGAGAG ACCACCCGGC GCCTGGAGGC GGAGGAGAAG
    CCATTGCAGA TCCAAAATGA CTACCTCTTC CAACTGGGAT TTGGGGAGCT GTGGAGGGTG
    CAGGAGGAAG GCATGGACTC GGAGATTGGC TGCCTCATCC GCTTCTATGC AGGAAAACCT
    CACAGCACGG GTAGCTCTGA ACGGATTCAG CTCTCAGGAA TGTATAATGT CCGTAAAGGC
    AAAATGCAGT TGCCAGTGAA CCGATGGACA AGACGCCAAG TCATCCTGTG TGGGACCTGC
    CTGATAGTAT CATCTGTGAA AGACAGCTTG ACCGGAAAGA TGCATGTTCT GCCACTGATT
    GGTGGAAAAG TAGAAGAAGT GAAAAAGCAC CAACACTGTT TAGCATTTAG CTCCTCTGGA
    CCCCAAAGCC AGACTTACTA CATTTGCTTT GATACTTTCA CAGAATACTT AAGGTGGCTG
    CGACAAGTCT CCAAGGTTGC ATCCCAGCGC ATTAGCTCAG TGGACCTCTC ATGTTGTAGC
    CTGGAACATC TGCCTGCCAA CCTCTTCTAC AGCCAAGACC TCACTCATCT CAATTTAAAA
    CAAAACTTCC TAAGGCAAAA CCCTAGCCTT CCAGCTGCCA GGGGGCTTAA TGAACTGCAA
    AGGTTCACCA AGTTGAAGAG TCTTAATCTT TCCAATAATC ATTTAGGGGA CTTCCCACTA
    GCAGTCTGCA GTATTCCAAC CCTGGCAGAG CTGAATGTGT CCTGCAATGC CCTGCGATCG
    GTCCCAGCAG CCGTTGGAGT GATGCACAAC TTACAGACAT TTTTGTTGGA TGGAAACTTT
    CTCCAAACCC TTCCTGCTGA GTTGGAGAAC ATGAAGCAGC TTAGTTATCT GGGTCTTTCT
    TTCAATGAAT TTACTGACAT TCCAGAAGTA TTGGAGAAAT TGACTGCTGT GGATAAACTT
    TGTATGTCCG GAAACTGTAT GGAGACCCTT AGGCTACAGG CTTTAAGAAA AATGCCTCAC
    ATTAAACATG TGGATCTAAG GTTGAACATA ATTAGGAAGC TGATAGCAGA TGAAGTGGAC
    TTTCTACAGC ATGTTACTCA GCTTGACCTA CGAGACAATA AACTTGGTGA TCTAGATGCC
    ATGATTTTCA ACAACATTGA AGTTTTACAC TGTGAAAGGA ATCAACTGGT CACATTAGAC
    ATCTGTGGCT ATTTCCTAAA AGCACTCTAT GCCTCTTCTA ATGAACTTGT TCAACTTGAT
    GTTTACCCAG TTCCAAATTA TCTGTCCTAC ATGGATGTTT CAAGGAACCG CTTAGAAAAT
    GTGCCTGAGT GGGTATGTGA AAGCCGAAAG CTAGAAGTTT TGGATATTGG CCATAATCAA
    ATATGTGAAC TTCCTGCCCG CTTATTTTGT AACAGCAGTC TCCGGAAACT ACTGGCAGGA
    CACAACCAGT TGGCAAGGCT TCCTGAAAGG CTAGAAAGAA CCTCGGTGGA GGTCTTGGAT
    GTGCAACACA ACCAGCTCCT TGAGCTCCCG CCTAACCTTC TGATGAAGGC TGACAGCCTG
    AGATTCCTGA ACGCATCTGC GAACAAACTG GAAAGCCTTC CTCCAGCCAC GCTTTCTGAA
    GAGACAAACA GTATCTTACA AGAGTTGTAT TTGACAAATA ACAGCCTCAC AGACAAATGT
    GTGCCCTTGT TAACGGGACA CCCACATTTG AAGATCCTTC ACATGGCCTA TAACCGACTT
    CAGAGTTTTC CAGCCAGTAA AATGGCGAAA CTGGAGGAAC TTGAAGAAAT TGATCTCAGT
    GGGAATAAGC TGAAAGCCAT CCCAACAACG ATCATGAATT GCAGGCGTGT GCACACTGTG
    ATTGCTCACT CCAACTGCAT CGAGGTCTTT CCCGAAGTTA TGCAGCTCCC AGAGATCAAG
    TGTGTGGATC TGAGCTGTAA TGAGCTAAGC GAAGTCACAT TACCAGAAAA CCTGCCTCCC
    AAACTGCAGG AGCTAGACCT GACCGGAAAC CCTCGCCTTG TCCTTGATCA CAAAACCCTG
    GAACTACTGA ATAATATCCG CTGTTTCAAG ATTGATCAGC CTTCTACAGG AGACGCTTCT
    GGAGCCCCAG CTGTTTGGAG TCATGGTTAC ACTGAAGCTT CGGGGGTAAA AAACAAGTTG
    TGTGTCGCAG CCCTGTCGGT GAATAACTTC TGTGACAACC GCGAAGCCCT CTACGGTGTG
    TTTGATGGAG ACCGGAATGT GGAGGTGCCC TACCTTCTCC AGTGCACCAT GAGTGACATT
    TTGGCTGAAG AGCTGCAAAA AACAAAAAAT GAAGAAGAAT ACATGGTCAA TACATTCATT
    GTCATGCAAA GGAAACTTGG AACTGCTGGG CAGAAGCTTG GTGGTGCCGC TGTCCTTTGT
    CATATCAAGC ATGACCCTGT GGACCCAGGA GGATCCTTCA CCTTGACCTC TGCTAATGTG
    GGCAAGTGCC AAACAGTTCT CTGTCGAAAT GGAAAGCCAC TGCCTCTGTC CAGATCTTAC
    ATCATGAGCT GTGAAGAAGA GCTGAAGAGG ATTAAACAGC ACAAGGCCAT TATCACTGAG
    GATGGCAAGG TGAACGGGGT GACTGAGTCC ACGCGCATCC TGGGCTACAC CTTCCTCCAC
    CCCAGTGTGG TGCCTCGCCC CCACGTGCAG TCCGTGCTCC TGACCCCCCA GGATGAGTTC
    TTCATCCTAG GCAGTAAGGG GTTGTGGGAT AGCCTGTCCC TCGAGGAGGC CGTGGAGGCC
    GTGCGCAATG TTCCCGACGC CCTGGCTGCC GCCAAGAAGC TGTGTACCCT GGCCCAGAGC
    TACGGCTGCC ACGACAGCAT CAGCGCTGTG GTGGTGCAGC TCAGTGTCAC CGAGGACAGC
    TTCTGCTGCT GCGAGCTCAG CGCCGGTGGG GCCGTGCCAC CACCCAGCCC TGGCATCTTC
    CCTCCCTCAG TGAACATGGT GATCAAGGAT CGGCCCTCAG ACGGGTTGGG CGTGCCGTCC
    TCCAGCAGCG GCATGGCTTC CGAGATCAGC AGTGAGCTCT CCACTTCCGA GATGAGCAGC
    GAGGTGGGGT CCACAGCCTC CGATGAGCCC CCGCCCGGAG CCCTAAGCGA GAACAGCCCT
    GCCTACCCCA GTGAGCAGCG CTGCATGCTC CACCCCGTCT GTCTGTCCAA CTCCTTCCAG
    CGCCAGCTGT CCAGCGCCAC GTTCTCTAGC GCCTTCTCCG ACAACGGCCT TGACAGTGAT
    GATGAGGAGC CCATCGAGGG CGTCTTCACC AATGGCAGCC GGGTGGAGGT GGAGGTGGAC
    ATCCACTGCA GCCGGGCCAA GGAGAAGGAG AAACAGCAGC ACCTGCTTCA GGTGCCAGCA
    GAGGCCAGCG ATGAGGGCAT TGTCATCAGC GCCAACGAGG ATGAGCCGGG TCTGCCCAGG
    AAGGCAGACT TCTCTGCCGT TGGGACCATT GGGCGCCGGA GGGCCAATGG CTCTGTTGCG
    CCCCAGGAAA GGAGCCACAA TATGATAGAG GTGGCTACAG ATGCACCTCT TCGAAAGCCT
    GGAGGCTATT TTGCTGCCCC GGCTCAGCCA GATCCCGATG ATCAGTTTAT CATACCCCCG
    GAGCTGGAAG AGGAGGTCAA AGAAATCATG AAGCATCACC AGGAGCAACA GCAGCAGCAG
    CAGCCACCAC CGCCACCTCA GCTCCAGCCG CAGCTGCCGC GGCACTACCA ACTGGACCAG
    CTGCCAGATT ATTACGACAC GCCACTATGA

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

    RefSeq XP_014977634.1
    CDS320..5449
    Translation

    Target ORF information:

    RefSeq Version XM_015122148.1
    Organism Macaca mulatta(Rhesus monkey)
    Definition Macaca mulatta PH domain and leucine rich repeat protein phosphatase 1 (PHLPP1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_015122148.1

    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
    ATGGAGCCCG CCGCCGCGGC CACGGCGCAG CGACTCCCGA GCCGGCAGGG AGGACCGAGC 
    TTCGGCTCCG GCGCCGCCGC TGCGGCAGCA GCGGCCGCGN GCGCTCTGGC GGCGGCGGCT
    GGGGCGGCGG AGTCGGAGCC CGCGCTGACC CGGCGCCCCG AGCGGCGGGA ACGCAGCGGC
    GCGGGGGCGC GGGAAGAGGC CGGGGAGGCG CCGCCGGGCC CGCTGCCGGG CAGAGCAGGG
    GGTCCGGGCG CAGGAGGCGG CGTGGGCGCC CAGCCCATTG CCGGCGGGGG CTGCCCCGTG
    CCGGGGNNCG GCAGCGGCGC CAACTCCCTC CTGCTGAGGA GAGGGCGGCT GAAGAGGAAT
    CTTCCCGCGG CCCCCGCGGC CGCCTCGTCG TCGTCGTCGT CGTCGTCGTC GTCCGCTGCT
    GCCTCGCACT CCCCCGGCGC TGCCGGCCTC CCCGCCTCCT GCTCGGCCTC GGCGTCGCTG
    TGCACCCGGA GCCTGGACAG GAAGACGCTG CTCCTGAAGC ACCGGCAGAC GCTGCAGCTG
    CAGCCGTCGG ACCGGGACTG GGTGAGGCAC CAGCTCCAGC GCGGTTGCGT GCACGTCTTC
    GACCGCCACA TGGCCTCGAC CTACCTGCGC CCGGTGCTCT GTACACTGGA CACCACGGCC
    GGCGAGGTGG CCGCCCGCCT GCTGCAGCTG GGCCACAAAG GCGGCGGCGT GGTGAAGGTG
    CTGGGCCAGG GGCCCGGAGC TGCCGCCGCC CAGGAGCCCG CTGAGCCGTC CCCCGAGGCC
    GGCCCCCGGC TCGCGCCCCC GGAGCCGCGG GACTCGGAGG CGCTGCCCGC GAGGAGCGCG
    CCGGGTGCCG TCGGGGGTCC TCCGCGCGCG CCCCCCGCAG ACCTACCCCT GCCCGCCGGC
    GTCCCGGGCG GGTGGTCGCG CCGTGCCAGC CCCGCGCCCT CGGACTCCAG CCCCGGCGAG
    CCTTTCGTCG GGGGCCCTGC CTCTTCTCCC CGCGCCCCGC GGCCTGTGGC CTCCGACACC
    GAGAGCTTCA GCCTGAGTCC CAGCGCCGAG AGTGTATCCG ACCGGCTGGA CCCCTACAGC
    AGCGGCGGCG GCTCGTCGTC GTCAGAAGAG GTCGAGACCG ACGCAGCCTC GGCCCCGACG
    GCGGTCCCGG GCCAACCTCG CCGTCCCGGC CGCTCCGCGC AGCCCCTCCC GCCTCCCCAG
    ACGGCCTCCT CGCCTCGGCC GCAGCAGAAA GCCCCGAGGG CCGTTGACAG CCCGGGCGGG
    GCCGTCCGCG AGGGGTCGTG CGAGGAGAAG GCGGCGGCAT TCGTGGCCCC GGGAGGCCTC
    CAGTCGATCC CCGGGAGGAG CGGGGTGACC GCGGAGAAGG CGGCTCCGCC GCCCCCGCCG
    CCCACCCTGT ACGTGCAGCT CCACGGAGAG ACCACCCGGC GCCTGGAGGC GGAGGAGAAG
    CCATTGCAGA TCCAAAATGA CTACCTCTTC CAACTGGGAT TTGGGGAGCT GTGGAGGGTG
    CAGGAGGAAG GCATGGACTC GGAGATTGGC TGCCTCATCC GCTTCTATGC AGGAAAACCT
    CACAGCACGG GTAGCTCTGA ACGGATTCAG CTCTCAGGAA TGTATAATGT CCGTAAAGGC
    AAAATGCAGT TGCCAGTGAA CCGATGGACA AGACGCCAAG TCATCCTGTG TGGGACCTGC
    CTGATAGTAT CATCTGTGAA AGACAGCTTG ACCGGAAAGA TGCATGTTCT GCCACTGATT
    GGTGGAAAAG TAGAAGAAGT GAAAAAGCAC CAACACTGTT TAGCATTTAG CTCCTCTGGA
    CCCCAAAGCC AGACTTACTA CATTTGCTTT GATACTTTCA CAGAATACTT AAGGTGGCTG
    CGACAAGTCT CCAAGGTTGC ATCCCAGCGC ATTAGCTCAG TGGACCTCTC ATGTTGTAGC
    CTGGAACATC TGCCTGCCAA CCTCTTCTAC AGCCAAGACC TCACTCATCT CAATTTAAAA
    CAAAACTTCC TAAGGCAAAA CCCTAGCCTT CCAGCTGCCA GGGGGCTTAA TGAACTGCAA
    AGGTTCACCA AGTTGAAGAG TCTTAATCTT TCCAATAATC ATTTAGGGGA CTTCCCACTA
    GCAGTCTGCA GTATTCCAAC CCTGGCAGAG CTGAATGTGT CCTGCAATGC CCTGCGATCG
    GTCCCAGCAG CCGTTGGAGT GATGCACAAC TTACAGACAT TTTTGTTGGA TGGAAACTTT
    CTCCAAACCC TTCCTGCTGA GTTGGAGAAC ATGAAGCAGC TTAGTTATCT GGGTCTTTCT
    TTCAATGAAT TTACTGACAT TCCAGAAGTA TTGGAGAAAT TGACTGCTGT GGATAAACTT
    TGTATGTCCG GAAACTGTAT GGAGACCCTT AGGCTACAGG CTTTAAGAAA AATGCCTCAC
    ATTAAACATG TGGATCTAAG GTTGAACATA ATTAGGAAGC TGATAGCAGA TGAAGTGGAC
    TTTCTACAGC ATGTTACTCA GCTTGACCTA CGAGACAATA AACTTGGTGA TCTAGATGCC
    ATGATTTTCA ACAACATTGA AGTTTTACAC TGTGAAAGGA ATCAACTGGT CACATTAGAC
    ATCTGTGGCT ATTTCCTAAA AGCACTCTAT GCCTCTTCTA ATGAACTTGT TCAACTTGAT
    GTTTACCCAG TTCCAAATTA TCTGTCCTAC ATGGATGTTT CAAGGAACCG CTTAGAAAAT
    GTGCCTGAGT GGGTATGTGA AAGCCGAAAG CTAGAAGTTT TGGATATTGG CCATAATCAA
    ATATGTGAAC TTCCTGCCCG CTTATTTTGT AACAGCAGTC TCCGGAAACT ACTGGCAGGA
    CACAACCAGT TGGCAAGGCT TCCTGAAAGG CTAGAAAGAA CCTCGGTGGA GGTCTTGGAT
    GTGCAACACA ACCAGCTCCT TGAGCTCCCG CCTAACCTTC TGATGAAGGC TGACAGCCTG
    AGATTCCTGA ACGCATCTGC GAACAAACTG GAAAGCCTTC CTCCAGCCAC GCTTTCTGAA
    GAGACAAACA GTATCTTACA AGAGTTGTAT TTGACAAATA ACAGCCTCAC AGACAAATGT
    GTGCCCTTGT TAACGGGACA CCCACATTTG AAGATCCTTC ACATGGCCTA TAACCGACTT
    CAGAGTTTTC CAGCCAGTAA AATGGCGAAA CTGGAGGAAC TTGAAGAAAT TGATCTCAGT
    GGGAATAAGC TGAAAGCCAT CCCAACAACG ATCATGAATT GCAGGCGTGT GCACACTGTG
    ATTGCTCACT CCAACTGCAT CGAGGTCTTT CCCGAAGTTA TGCAGCTCCC AGAGATCAAG
    TGTGTGGATC TGAGCTGTAA TGAGCTAAGC GAAGTCACAT TACCAGAAAA CCTGCCTCCC
    AAACTGCAGG AGCTAGACCT GACCGGAAAC CCTCGCCTTG TCCTTGATCA CAAAACCCTG
    GAACTACTGA ATAATATCCG CTGTTTCAAG ATTGATCAGC CTTCTACAGG AGACGCTTCT
    GGAGCCCCAG CTGTTTGGAG TCATGGTTAC ACTGAAGCTT CGGGGGTAAA AAACAAGTTG
    TGTGTCGCAG CCCTGTCGGT GAATAACTTC TGTGACAACC GCGAAGCCCT CTACGGTGTG
    TTTGATGGAG ACCGGAATGT GGAGGTGCCC TACCTTCTCC AGTGCACCAT GAGTGACATT
    TTGGCTGAAG AGCTGCAAAA AACAAAAAAT GAAGAAGAAT ACATGGTCAA TACATTCATT
    GTCATGCAAA GGAAACTTGG AACTGCTGGG CAGAAGCTTG GTGGTGCCGC TGTCCTTTGT
    CATATCAAGC ATGACCCTGT GGACCCAGGA GGATCCTTCA CCTTGACCTC TGCTAATGTG
    GGCAAGTGCC AAACAGTTCT CTGTCGAAAT GGAAAGCCAC TGCCTCTGTC CAGATCTTAC
    ATCATGAGCT GTGAAGAAGA GCTGAAGAGG ATTAAACAGC ACAAGGCCAT TATCACTGAG
    GATGGCAAGG TGAACGGGGT GACTGAGTCC ACGCGCATCC TGGGCTACAC CTTCCTCCAC
    CCCAGTGTGG TGCCTCGCCC CCACGTGCAG TCCGTGCTCC TGACCCCCCA GGATGAGTTC
    TTCATCCTAG GCAGTAAGGG GTTGTGGGAT AGCCTGTCCC TCGAGGAGGC CGTGGAGGCC
    GTGCGCAATG TTCCCGACGC CCTGGCTGCC GCCAAGAAGC TGTGTACCCT GGCCCAGAGC
    TACGGCTGCC ACGACAGCAT CAGCGCTGTG GTGGTGCAGC TCAGTGTCAC CGAGGACAGC
    TTCTGCTGCT GCGAGCTCAG CGCCGGTGGG GCCGTGCCAC CACCCAGCCC TGGCATCTTC
    CCTCCCTCAG TGAACATGGT GATCAAGGAT CGGCCCTCAG ACGGGTTGGG CGTGCCGTCC
    TCCAGCAGCG GCATGGCTTC CGAGATCAGC AGTGAGCTCT CCACTTCCGA GATGAGCAGC
    GAGGTGGGGT CCACAGCCTC CGATGAGCCC CCGCCCGGAG CCCTAAGCGA GAACAGCCCT
    GCCTACCCCA GTGAGCAGCG CTGCATGCTC CACCCCGTCT GTCTGTCCAA CTCCTTCCAG
    CGCCAGCTGT CCAGCGCCAC GTTCTCTAGC GCCTTCTCCG ACAACGGCCT TGACAGTGAT
    GATGAGGAGC CCATCGAGGG CGTCTTCACC AATGGCAGCC GGGTGGAGGT GGAGGTGGAC
    ATCCACTGCA GCCGGGCCAA GGAGAAGGAG AAACAGCAGC ACCTGCTTCA GGTGCCAGCA
    GAGGCCAGCG ATGAGGGCAT TGTCATCAGC GCCAACGAGG ATGAGCCGGG TCTGCCCAGG
    AAGGCAGACT TCTCTGCCGT TGGGACCATT GGGCGCCGGA GGGCCAATGG CTCTGTTGCG
    CCCCAGGAAA GGAGCCACAA TATGATAGAG GTGGCTACAG ATGCACCTCT TCGAAAGCCT
    GGAGGCTATT TTGCTGCCCC GGCTCAGCCA GATCCCGATG ATCAGTTTAT CATACCCCCG
    GAGCTGGAAG AGGAGGTCAA AGAAATCATG AAGCATCACC AGGAGCAACA GCAGCAGCAG
    CAGCCACCAC CGCCACCTCA GCTCCAGCCG CAGCTGCCGC GGCACTACCA ACTGGACCAG
    CTGCCAGATT ATTACGACAC GCCACTATGA

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