SREBF1 cDNA ORF clone, Propithecus coquereli(Coquerel's sifaka)

The following SREBF1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the SREBF1 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
OPr120372 XM_012664976.1
Latest version!
Propithecus coquereli sterol regulatory element binding transcription factor 1 (SREBF1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OPr120373 XM_012664977.1
Latest version!
Propithecus coquereli sterol regulatory element binding transcription factor 1 (SREBF1), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OPr120374 XM_012664978.1
Latest version!
Propithecus coquereli sterol regulatory element binding transcription factor 1 (SREBF1), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OPr120375 XM_012664979.1
Latest version!
Propithecus coquereli sterol regulatory element binding transcription factor 1 (SREBF1), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00

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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 OPr120372
    Clone ID Related Accession (Same CDS sequence) XM_012664976.1
    Accession Version XM_012664976.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3450bp)
    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 2015-05-31
    Organism Propithecus coquereli(Coquerel's sifaka)
    Product sterol regulatory element-binding protein 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012155796.1) 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 :: Propithecus coquereli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    ATGGACGAGG CGCCCTTCAG CCAGGAGGCT CTGGAGCAGG CGCTGGCCGA GCCGTGCGAC 
    CTGGACGCGG CGCTGCTGAC CGACATCGAA GACATGCTTC AGCTCATCAA CAACCAAGAG
    AGTGACTTCC CTGGCCTGTT CGACCCACCC TATGCTGGAG ACGGGGAAGG AGGCACAGAC
    CCGGCCAGCC CTAATGCCAG CTCCCCAGGC AGCTTGTCCC CACCTCCTGC CATGCTGAGC
    TCCCCTCTTG AAGCCTTCCT GGGGGGACCC AAGGCAGCGC CCTCACCCTT GTCCCCTTCC
    CAGCCCACAC CCACCCCATT GAACATGTAC CCATCTGTGC CCACTTTTCC CCCTGAGCCT
    GGTATCAAGG AAGAGTCAGT GCCACTAAGC ATCCTGCAGC CCCCCACCCC ACAGCCCCTG
    CCAGGGGCCC TCCTATCCCA GAGCTTTCCA GCCCCAACCC CACTGCAGTT CAGCTCCACC
    TCTGTGTTGG GCTACCCCAG CCCTCCTGGA GGCTTCTCTA CAGGGACTCC TCCTGCGAGC
    ACCCAGCAGC CGCTGCCTAG CCTACCACTG GCTTCCCCGC CAGGGGTCCC GCCCGTTTCC
    TTGCACACCC AGGTCCAGAG TGCAGCCCCC CAGCAGCTAC TGACAGCCAC AGCTGCCCCC
    ACAGCAGCCC CAGGAACAAC CACTGTGGCC TCACAGATCC AGCAGGTCCC GGTCTTGCTG
    CAGCCCCACT TCATCAAGGC AGACTCACTG CTCCTGACGG CTATGAAGAC AGATGTGGGG
    GCCACTGTAA AGGCAGCAGG ACTTAGCCCC CTGGTCCCTG GCACGGCTGT GCAGACAGGG
    CCCTTGCAGA CCCTGGTGAG TGGTGGAACC ATCTTGGCAA CGGTGCCACT GGTTGTGGAT
    GCTGACAAGC TGCCCATCAA CCGGCTGGCA GCTGGCAGCA AGGTCCCAGG CTCAGCCCAG
    AGCCGTGGTG AGAAGCGCAC AGCCCACAAT GCCATTGAGA AGCGCTACCG CTCCTCCATC
    AACGACAAGA TCATCGAGCT CAAGGACCTG GTGGTGGGCT CTGAGGCAAA GCTGAATAAA
    TCTGCTGTCT TGCGCAAGGC CATAGACTAC ATCCGATTTC TACAACACAG CAACCAGAAA
    CTCAAGCAGG AGAACCTGAG TCTGCGCACT GCTGCCCACA AAAGCAAATC TCTGAAGGAT
    CTGGTATCCA CCCGTGGCAG CGGAGGAAAC ACAGATGAAC TCATGGAGGG CGTGAAGACC
    GAGGTGGAGG ACACGCTGAC GCCACCACCC TCGGATGCCG GCTCGCCCTC CCAGAGCAGC
    CCTTTGTCCC TTGGCAGCAG GGGCAGTGGC AGTGGTGGCA GTGGCAGTGA CTCGGAGCCT
    GACAGCCCAG CCTTTGAGGA TAGCCAGGTG AAGCCAGAGC AGCGGCTGTC TCCCCACAGC
    CGGGGCATGC TGGACCGCTC CCGCCTGGCC CTGTGCACAC TGGTCTTCCT CTGCTTGTCC
    TGCAACCCCT TGGCCTCCCT GCTAGGAGGC TGGGAAGCTC CTGACCCTGC GGATGCCACC
    AGTGTCTACC ATAGTGTTGG GCGCAACATG CTGGGCACCG AGGGCAGAGA TGGCCCTGGC
    TGGGCCCAGT GGCTGCTGCC CCCACTGATC TGGCTCCTCA ATGGGCTGCT AGTGCTGGTC
    TCCCTGGTGC TTCTCTTTGT CTACGGAGAG CCAGTCACGC GGCCCCACTC AGGCCCCGCC
    GTGCACTTCT GGAGGCATCG CAAACAGGCC GACCTGGACC TGGCCCGGGG GGACTTTGCC
    CAGGCCACCC AGCAGCTGTG GTTGGCCCTG CGAGCGCTGG GCCGGCCCCT GCCCACCTCC
    CACCTGGACC TGGCCTGTAG CCTACTTTGG AACCTCATCC GCCACCTGCT GCAGCGTCTC
    TGGGTGGGCC GTTGGCTGGC AGGCCGGGCA GGGGGCCTGC AAAGGGACTG TGCCCTGCAG
    GCGGATGCTC GCGCCAGCAC CCGAGATGCG GCCCTTGTGT ACCATAAGCT GCACCAGCTG
    CATACCATGG GGAAGTACAC AGGCGGGCAC CTCACTGCCA CCAACCTGGC ACTGAGTGCC
    CTGAACCTGG CGGAGTGTGC GGGGGATGCC ATGTCTGTGG TGACACTGGC AGAGATCTAT
    GTGGCGGCTG CGCTGAGAGT CAAGACCAGT CTCCCACGGT CCTTGCATTT TCTGACACGT
    TTCTTCCTGA GTAGCGCCCG CCAGGCCTGC TTGGCACAGA GTGGCTCAGT GCCTCTTGCC
    ATGCAGTGGC TCTGCCACCC CGTGGGCCAC CGTTTCTTCG TGGATGGGGA CTGGGCCGTG
    CGCAGTGCCC CTCGGGAGAG CCTGTACAGC TTGGCCGGGA ACCCAGTGGA CCCCCTGGCC
    CAGGTGACGC AGCTATTCCG GGAACATCTC TTGGAGCAAG CACTGAACTG TGTGGCCCAG
    CCCAGCACCA CCCCCAGCCC TGGGTCAGCT GATGGAGACA GGGAATTCTC AGATGCCCTC
    GGGTACCTGC AATTGTTGAA CAGCTGTTCC GATGCTGCTG GCGCTCCCGC CTGCAGCTTT
    TCCATCAGCT CCAGCATGGC CACCACGGGC ACAGACCCAG TGGCCAAGTG GTGGGCCTCG
    CTGACGGCTG TGGTGATCCA CTGGCTGCGG CGGGATGAGG AGGCGGCTGA GAGGCTGTAC
    CCGCTGGTGG AACACCTGCC CCGTGCCCTG CAGGAGTCTG AGAGACCCCT GCCCAGGGCG
    GCTCTGCACT CCTTCAAGGC TGCACGGGCC CTGCTGGGCT GTGCAAAGGC AGAATCTGGC
    CCTGCCAGCC TGACCATCTG TGAGAAGGCC AGTGGGTACC TGCGGGACAG CCTGGCCACC
    ACACCAGTTG GCAGCTCCAT TGACAAGGCC GTGCAGCTGT TCCTGTGTGA CCTGCTCCTC
    GTGGTGCGCA CCAGCCTGTG GCGGCAGCAG CAGCCTCCTG CACCTGCCCA GACGTCCCAG
    GGCGCCAGTG TCAGGGCCCA GGCCTCTGCC CTTGAGCTGC GTGGCTTCCA GCGGGACCTG
    AGTGGCCTGA GGCGTCTGGC ACAGACCTTC CGGCCTGCCA TGCGTAGGGT GTTCCTACAT
    GAGGCCACAG CCCGGCTGAT GGCAGGGGCC AGCCCCACGC GGACTCACCA GCTCCTGGAC
    CGCAGTCTGA GGCGGCGGGC AGGCCCGAGT GGCAAAGGAG GCGCAGTGGC GGAGCTGGAG
    CCGCGGCCCA CGCGGAGGGA GCACGCCGAG GCCCTGCTGC TGGCGTCCTG CTACCTGCCG
    CCCGGCTTCC TGTCGGCGCC CGGGCAGCGC GTGGGCATGC TGGCCGAGGC GGCGCGCACG
    CTCGAGAAGC TGGGCGACCG CCGGCTGCTG TACGACTGCC AGCAGATGCT CATACGCCTG
    GGCGGCGGGA CCACCGTCAC CTCCAGCTAG

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

    RefSeq XP_012520430.1
    CDS118..3567
    Translation

    Target ORF information:

    RefSeq Version XM_012664976.1
    Organism Propithecus coquereli(Coquerel's sifaka)
    Definition Propithecus coquereli sterol regulatory element binding transcription factor 1 (SREBF1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_012664976.1

    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
    ATGGACGAGG CGCCCTTCAG CCAGGAGGCT CTGGAGCAGG CGCTGGCCGA GCCGTGCGAC 
    CTGGACGCGG CGCTGCTGAC CGACATCGAA GACATGCTTC AGCTCATCAA CAACCAAGAG
    AGTGACTTCC CTGGCCTGTT CGACCCACCC TATGCTGGAG ACGGGGAAGG AGGCACAGAC
    CCGGCCAGCC CTAATGCCAG CTCCCCAGGC AGCTTGTCCC CACCTCCTGC CATGCTGAGC
    TCCCCTCTTG AAGCCTTCCT GGGGGGACCC AAGGCAGCGC CCTCACCCTT GTCCCCTTCC
    CAGCCCACAC CCACCCCATT GAACATGTAC CCATCTGTGC CCACTTTTCC CCCTGAGCCT
    GGTATCAAGG AAGAGTCAGT GCCACTAAGC ATCCTGCAGC CCCCCACCCC ACAGCCCCTG
    CCAGGGGCCC TCCTATCCCA GAGCTTTCCA GCCCCAACCC CACTGCAGTT CAGCTCCACC
    TCTGTGTTGG GCTACCCCAG CCCTCCTGGA GGCTTCTCTA CAGGGACTCC TCCTGCGAGC
    ACCCAGCAGC CGCTGCCTAG CCTACCACTG GCTTCCCCGC CAGGGGTCCC GCCCGTTTCC
    TTGCACACCC AGGTCCAGAG TGCAGCCCCC CAGCAGCTAC TGACAGCCAC AGCTGCCCCC
    ACAGCAGCCC CAGGAACAAC CACTGTGGCC TCACAGATCC AGCAGGTCCC GGTCTTGCTG
    CAGCCCCACT TCATCAAGGC AGACTCACTG CTCCTGACGG CTATGAAGAC AGATGTGGGG
    GCCACTGTAA AGGCAGCAGG ACTTAGCCCC CTGGTCCCTG GCACGGCTGT GCAGACAGGG
    CCCTTGCAGA CCCTGGTGAG TGGTGGAACC ATCTTGGCAA CGGTGCCACT GGTTGTGGAT
    GCTGACAAGC TGCCCATCAA CCGGCTGGCA GCTGGCAGCA AGGTCCCAGG CTCAGCCCAG
    AGCCGTGGTG AGAAGCGCAC AGCCCACAAT GCCATTGAGA AGCGCTACCG CTCCTCCATC
    AACGACAAGA TCATCGAGCT CAAGGACCTG GTGGTGGGCT CTGAGGCAAA GCTGAATAAA
    TCTGCTGTCT TGCGCAAGGC CATAGACTAC ATCCGATTTC TACAACACAG CAACCAGAAA
    CTCAAGCAGG AGAACCTGAG TCTGCGCACT GCTGCCCACA AAAGCAAATC TCTGAAGGAT
    CTGGTATCCA CCCGTGGCAG CGGAGGAAAC ACAGATGAAC TCATGGAGGG CGTGAAGACC
    GAGGTGGAGG ACACGCTGAC GCCACCACCC TCGGATGCCG GCTCGCCCTC CCAGAGCAGC
    CCTTTGTCCC TTGGCAGCAG GGGCAGTGGC AGTGGTGGCA GTGGCAGTGA CTCGGAGCCT
    GACAGCCCAG CCTTTGAGGA TAGCCAGGTG AAGCCAGAGC AGCGGCTGTC TCCCCACAGC
    CGGGGCATGC TGGACCGCTC CCGCCTGGCC CTGTGCACAC TGGTCTTCCT CTGCTTGTCC
    TGCAACCCCT TGGCCTCCCT GCTAGGAGGC TGGGAAGCTC CTGACCCTGC GGATGCCACC
    AGTGTCTACC ATAGTGTTGG GCGCAACATG CTGGGCACCG AGGGCAGAGA TGGCCCTGGC
    TGGGCCCAGT GGCTGCTGCC CCCACTGATC TGGCTCCTCA ATGGGCTGCT AGTGCTGGTC
    TCCCTGGTGC TTCTCTTTGT CTACGGAGAG CCAGTCACGC GGCCCCACTC AGGCCCCGCC
    GTGCACTTCT GGAGGCATCG CAAACAGGCC GACCTGGACC TGGCCCGGGG GGACTTTGCC
    CAGGCCACCC AGCAGCTGTG GTTGGCCCTG CGAGCGCTGG GCCGGCCCCT GCCCACCTCC
    CACCTGGACC TGGCCTGTAG CCTACTTTGG AACCTCATCC GCCACCTGCT GCAGCGTCTC
    TGGGTGGGCC GTTGGCTGGC AGGCCGGGCA GGGGGCCTGC AAAGGGACTG TGCCCTGCAG
    GCGGATGCTC GCGCCAGCAC CCGAGATGCG GCCCTTGTGT ACCATAAGCT GCACCAGCTG
    CATACCATGG GGAAGTACAC AGGCGGGCAC CTCACTGCCA CCAACCTGGC ACTGAGTGCC
    CTGAACCTGG CGGAGTGTGC GGGGGATGCC ATGTCTGTGG TGACACTGGC AGAGATCTAT
    GTGGCGGCTG CGCTGAGAGT CAAGACCAGT CTCCCACGGT CCTTGCATTT TCTGACACGT
    TTCTTCCTGA GTAGCGCCCG CCAGGCCTGC TTGGCACAGA GTGGCTCAGT GCCTCTTGCC
    ATGCAGTGGC TCTGCCACCC CGTGGGCCAC CGTTTCTTCG TGGATGGGGA CTGGGCCGTG
    CGCAGTGCCC CTCGGGAGAG CCTGTACAGC TTGGCCGGGA ACCCAGTGGA CCCCCTGGCC
    CAGGTGACGC AGCTATTCCG GGAACATCTC TTGGAGCAAG CACTGAACTG TGTGGCCCAG
    CCCAGCACCA CCCCCAGCCC TGGGTCAGCT GATGGAGACA GGGAATTCTC AGATGCCCTC
    GGGTACCTGC AATTGTTGAA CAGCTGTTCC GATGCTGCTG GCGCTCCCGC CTGCAGCTTT
    TCCATCAGCT CCAGCATGGC CACCACGGGC ACAGACCCAG TGGCCAAGTG GTGGGCCTCG
    CTGACGGCTG TGGTGATCCA CTGGCTGCGG CGGGATGAGG AGGCGGCTGA GAGGCTGTAC
    CCGCTGGTGG AACACCTGCC CCGTGCCCTG CAGGAGTCTG AGAGACCCCT GCCCAGGGCG
    GCTCTGCACT CCTTCAAGGC TGCACGGGCC CTGCTGGGCT GTGCAAAGGC AGAATCTGGC
    CCTGCCAGCC TGACCATCTG TGAGAAGGCC AGTGGGTACC TGCGGGACAG CCTGGCCACC
    ACACCAGTTG GCAGCTCCAT TGACAAGGCC GTGCAGCTGT TCCTGTGTGA CCTGCTCCTC
    GTGGTGCGCA CCAGCCTGTG GCGGCAGCAG CAGCCTCCTG CACCTGCCCA GACGTCCCAG
    GGCGCCAGTG TCAGGGCCCA GGCCTCTGCC CTTGAGCTGC GTGGCTTCCA GCGGGACCTG
    AGTGGCCTGA GGCGTCTGGC ACAGACCTTC CGGCCTGCCA TGCGTAGGGT GTTCCTACAT
    GAGGCCACAG CCCGGCTGAT GGCAGGGGCC AGCCCCACGC GGACTCACCA GCTCCTGGAC
    CGCAGTCTGA GGCGGCGGGC AGGCCCGAGT GGCAAAGGAG GCGCAGTGGC GGAGCTGGAG
    CCGCGGCCCA CGCGGAGGGA GCACGCCGAG GCCCTGCTGC TGGCGTCCTG CTACCTGCCG
    CCCGGCTTCC TGTCGGCGCC CGGGCAGCGC GTGGGCATGC TGGCCGAGGC GGCGCGCACG
    CTCGAGAAGC TGGGCGACCG CCGGCTGCTG TACGACTGCC AGCAGATGCT CATACGCCTG
    GGCGGCGGGA CCACCGTCAC CTCCAGCTAG

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

    CloneID OPr120373
    Clone ID Related Accession (Same CDS sequence) XM_012664977.1
    Accession Version XM_012664977.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3378bp)
    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 2015-05-31
    Organism Propithecus coquereli(Coquerel's sifaka)
    Product sterol regulatory element-binding protein 1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012155796.1) 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 :: Propithecus coquereli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    ATGGATTGCA CGTTCGAAGA CATGCTTCAG CTCATCAACA ACCAAGAGAG TGACTTCCCT 
    GGCCTGTTCG ACCCACCCTA TGCTGGAGAC GGGGAAGGAG GCACAGACCC GGCCAGCCCT
    AATGCCAGCT CCCCAGGCAG CTTGTCCCCA CCTCCTGCCA TGCTGAGCTC CCCTCTTGAA
    GCCTTCCTGG GGGGACCCAA GGCAGCGCCC TCACCCTTGT CCCCTTCCCA GCCCACACCC
    ACCCCATTGA ACATGTACCC ATCTGTGCCC ACTTTTCCCC CTGAGCCTGG TATCAAGGAA
    GAGTCAGTGC CACTAAGCAT CCTGCAGCCC CCCACCCCAC AGCCCCTGCC AGGGGCCCTC
    CTATCCCAGA GCTTTCCAGC CCCAACCCCA CTGCAGTTCA GCTCCACCTC TGTGTTGGGC
    TACCCCAGCC CTCCTGGAGG CTTCTCTACA GGGACTCCTC CTGCGAGCAC CCAGCAGCCG
    CTGCCTAGCC TACCACTGGC TTCCCCGCCA GGGGTCCCGC CCGTTTCCTT GCACACCCAG
    GTCCAGAGTG CAGCCCCCCA GCAGCTACTG ACAGCCACAG CTGCCCCCAC AGCAGCCCCA
    GGAACAACCA CTGTGGCCTC ACAGATCCAG CAGGTCCCGG TCTTGCTGCA GCCCCACTTC
    ATCAAGGCAG ACTCACTGCT CCTGACGGCT ATGAAGACAG ATGTGGGGGC CACTGTAAAG
    GCAGCAGGAC TTAGCCCCCT GGTCCCTGGC ACGGCTGTGC AGACAGGGCC CTTGCAGACC
    CTGGTGAGTG GTGGAACCAT CTTGGCAACG GTGCCACTGG TTGTGGATGC TGACAAGCTG
    CCCATCAACC GGCTGGCAGC TGGCAGCAAG GTCCCAGGCT CAGCCCAGAG CCGTGGTGAG
    AAGCGCACAG CCCACAATGC CATTGAGAAG CGCTACCGCT CCTCCATCAA CGACAAGATC
    ATCGAGCTCA AGGACCTGGT GGTGGGCTCT GAGGCAAAGC TGAATAAATC TGCTGTCTTG
    CGCAAGGCCA TAGACTACAT CCGATTTCTA CAACACAGCA ACCAGAAACT CAAGCAGGAG
    AACCTGAGTC TGCGCACTGC TGCCCACAAA AGCAAATCTC TGAAGGATCT GGTATCCACC
    CGTGGCAGCG GAGGAAACAC AGATGAACTC ATGGAGGGCG TGAAGACCGA GGTGGAGGAC
    ACGCTGACGC CACCACCCTC GGATGCCGGC TCGCCCTCCC AGAGCAGCCC TTTGTCCCTT
    GGCAGCAGGG GCAGTGGCAG TGGTGGCAGT GGCAGTGACT CGGAGCCTGA CAGCCCAGCC
    TTTGAGGATA GCCAGGTGAA GCCAGAGCAG CGGCTGTCTC CCCACAGCCG GGGCATGCTG
    GACCGCTCCC GCCTGGCCCT GTGCACACTG GTCTTCCTCT GCTTGTCCTG CAACCCCTTG
    GCCTCCCTGC TAGGAGGCTG GGAAGCTCCT GACCCTGCGG ATGCCACCAG TGTCTACCAT
    AGTGTTGGGC GCAACATGCT GGGCACCGAG GGCAGAGATG GCCCTGGCTG GGCCCAGTGG
    CTGCTGCCCC CACTGATCTG GCTCCTCAAT GGGCTGCTAG TGCTGGTCTC CCTGGTGCTT
    CTCTTTGTCT ACGGAGAGCC AGTCACGCGG CCCCACTCAG GCCCCGCCGT GCACTTCTGG
    AGGCATCGCA AACAGGCCGA CCTGGACCTG GCCCGGGGGG ACTTTGCCCA GGCCACCCAG
    CAGCTGTGGT TGGCCCTGCG AGCGCTGGGC CGGCCCCTGC CCACCTCCCA CCTGGACCTG
    GCCTGTAGCC TACTTTGGAA CCTCATCCGC CACCTGCTGC AGCGTCTCTG GGTGGGCCGT
    TGGCTGGCAG GCCGGGCAGG GGGCCTGCAA AGGGACTGTG CCCTGCAGGC GGATGCTCGC
    GCCAGCACCC GAGATGCGGC CCTTGTGTAC CATAAGCTGC ACCAGCTGCA TACCATGGGG
    AAGTACACAG GCGGGCACCT CACTGCCACC AACCTGGCAC TGAGTGCCCT GAACCTGGCG
    GAGTGTGCGG GGGATGCCAT GTCTGTGGTG ACACTGGCAG AGATCTATGT GGCGGCTGCG
    CTGAGAGTCA AGACCAGTCT CCCACGGTCC TTGCATTTTC TGACACGTTT CTTCCTGAGT
    AGCGCCCGCC AGGCCTGCTT GGCACAGAGT GGCTCAGTGC CTCTTGCCAT GCAGTGGCTC
    TGCCACCCCG TGGGCCACCG TTTCTTCGTG GATGGGGACT GGGCCGTGCG CAGTGCCCCT
    CGGGAGAGCC TGTACAGCTT GGCCGGGAAC CCAGTGGACC CCCTGGCCCA GGTGACGCAG
    CTATTCCGGG AACATCTCTT GGAGCAAGCA CTGAACTGTG TGGCCCAGCC CAGCACCACC
    CCCAGCCCTG GGTCAGCTGA TGGAGACAGG GAATTCTCAG ATGCCCTCGG GTACCTGCAA
    TTGTTGAACA GCTGTTCCGA TGCTGCTGGC GCTCCCGCCT GCAGCTTTTC CATCAGCTCC
    AGCATGGCCA CCACGGGCAC AGACCCAGTG GCCAAGTGGT GGGCCTCGCT GACGGCTGTG
    GTGATCCACT GGCTGCGGCG GGATGAGGAG GCGGCTGAGA GGCTGTACCC GCTGGTGGAA
    CACCTGCCCC GTGCCCTGCA GGAGTCTGAG AGACCCCTGC CCAGGGCGGC TCTGCACTCC
    TTCAAGGCTG CACGGGCCCT GCTGGGCTGT GCAAAGGCAG AATCTGGCCC TGCCAGCCTG
    ACCATCTGTG AGAAGGCCAG TGGGTACCTG CGGGACAGCC TGGCCACCAC ACCAGTTGGC
    AGCTCCATTG ACAAGGCCGT GCAGCTGTTC CTGTGTGACC TGCTCCTCGT GGTGCGCACC
    AGCCTGTGGC GGCAGCAGCA GCCTCCTGCA CCTGCCCAGA CGTCCCAGGG CGCCAGTGTC
    AGGGCCCAGG CCTCTGCCCT TGAGCTGCGT GGCTTCCAGC GGGACCTGAG TGGCCTGAGG
    CGTCTGGCAC AGACCTTCCG GCCTGCCATG CGTAGGGTGT TCCTACATGA GGCCACAGCC
    CGGCTGATGG CAGGGGCCAG CCCCACGCGG ACTCACCAGC TCCTGGACCG CAGTCTGAGG
    CGGCGGGCAG GCCCGAGTGG CAAAGGAGGC GCAGTGGCGG AGCTGGAGCC GCGGCCCACG
    CGGAGGGAGC ACGCCGAGGC CCTGCTGCTG GCGTCCTGCT ACCTGCCGCC CGGCTTCCTG
    TCGGCGCCCG GGCAGCGCGT GGGCATGCTG GCCGAGGCGG CGCGCACGCT CGAGAAGCTG
    GGCGACCGCC GGCTGCTGTA CGACTGCCAG CAGATGCTCA TACGCCTGGG CGGCGGGACC
    ACCGTCACCT CCAGCTAG

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

    RefSeq XP_012520431.1
    CDS128..3505
    Translation

    Target ORF information:

    RefSeq Version XM_012664977.1
    Organism Propithecus coquereli(Coquerel's sifaka)
    Definition Propithecus coquereli sterol regulatory element binding transcription factor 1 (SREBF1), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_012664977.1

    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
    ATGGATTGCA CGTTCGAAGA CATGCTTCAG CTCATCAACA ACCAAGAGAG TGACTTCCCT 
    GGCCTGTTCG ACCCACCCTA TGCTGGAGAC GGGGAAGGAG GCACAGACCC GGCCAGCCCT
    AATGCCAGCT CCCCAGGCAG CTTGTCCCCA CCTCCTGCCA TGCTGAGCTC CCCTCTTGAA
    GCCTTCCTGG GGGGACCCAA GGCAGCGCCC TCACCCTTGT CCCCTTCCCA GCCCACACCC
    ACCCCATTGA ACATGTACCC ATCTGTGCCC ACTTTTCCCC CTGAGCCTGG TATCAAGGAA
    GAGTCAGTGC CACTAAGCAT CCTGCAGCCC CCCACCCCAC AGCCCCTGCC AGGGGCCCTC
    CTATCCCAGA GCTTTCCAGC CCCAACCCCA CTGCAGTTCA GCTCCACCTC TGTGTTGGGC
    TACCCCAGCC CTCCTGGAGG CTTCTCTACA GGGACTCCTC CTGCGAGCAC CCAGCAGCCG
    CTGCCTAGCC TACCACTGGC TTCCCCGCCA GGGGTCCCGC CCGTTTCCTT GCACACCCAG
    GTCCAGAGTG CAGCCCCCCA GCAGCTACTG ACAGCCACAG CTGCCCCCAC AGCAGCCCCA
    GGAACAACCA CTGTGGCCTC ACAGATCCAG CAGGTCCCGG TCTTGCTGCA GCCCCACTTC
    ATCAAGGCAG ACTCACTGCT CCTGACGGCT ATGAAGACAG ATGTGGGGGC CACTGTAAAG
    GCAGCAGGAC TTAGCCCCCT GGTCCCTGGC ACGGCTGTGC AGACAGGGCC CTTGCAGACC
    CTGGTGAGTG GTGGAACCAT CTTGGCAACG GTGCCACTGG TTGTGGATGC TGACAAGCTG
    CCCATCAACC GGCTGGCAGC TGGCAGCAAG GTCCCAGGCT CAGCCCAGAG CCGTGGTGAG
    AAGCGCACAG CCCACAATGC CATTGAGAAG CGCTACCGCT CCTCCATCAA CGACAAGATC
    ATCGAGCTCA AGGACCTGGT GGTGGGCTCT GAGGCAAAGC TGAATAAATC TGCTGTCTTG
    CGCAAGGCCA TAGACTACAT CCGATTTCTA CAACACAGCA ACCAGAAACT CAAGCAGGAG
    AACCTGAGTC TGCGCACTGC TGCCCACAAA AGCAAATCTC TGAAGGATCT GGTATCCACC
    CGTGGCAGCG GAGGAAACAC AGATGAACTC ATGGAGGGCG TGAAGACCGA GGTGGAGGAC
    ACGCTGACGC CACCACCCTC GGATGCCGGC TCGCCCTCCC AGAGCAGCCC TTTGTCCCTT
    GGCAGCAGGG GCAGTGGCAG TGGTGGCAGT GGCAGTGACT CGGAGCCTGA CAGCCCAGCC
    TTTGAGGATA GCCAGGTGAA GCCAGAGCAG CGGCTGTCTC CCCACAGCCG GGGCATGCTG
    GACCGCTCCC GCCTGGCCCT GTGCACACTG GTCTTCCTCT GCTTGTCCTG CAACCCCTTG
    GCCTCCCTGC TAGGAGGCTG GGAAGCTCCT GACCCTGCGG ATGCCACCAG TGTCTACCAT
    AGTGTTGGGC GCAACATGCT GGGCACCGAG GGCAGAGATG GCCCTGGCTG GGCCCAGTGG
    CTGCTGCCCC CACTGATCTG GCTCCTCAAT GGGCTGCTAG TGCTGGTCTC CCTGGTGCTT
    CTCTTTGTCT ACGGAGAGCC AGTCACGCGG CCCCACTCAG GCCCCGCCGT GCACTTCTGG
    AGGCATCGCA AACAGGCCGA CCTGGACCTG GCCCGGGGGG ACTTTGCCCA GGCCACCCAG
    CAGCTGTGGT TGGCCCTGCG AGCGCTGGGC CGGCCCCTGC CCACCTCCCA CCTGGACCTG
    GCCTGTAGCC TACTTTGGAA CCTCATCCGC CACCTGCTGC AGCGTCTCTG GGTGGGCCGT
    TGGCTGGCAG GCCGGGCAGG GGGCCTGCAA AGGGACTGTG CCCTGCAGGC GGATGCTCGC
    GCCAGCACCC GAGATGCGGC CCTTGTGTAC CATAAGCTGC ACCAGCTGCA TACCATGGGG
    AAGTACACAG GCGGGCACCT CACTGCCACC AACCTGGCAC TGAGTGCCCT GAACCTGGCG
    GAGTGTGCGG GGGATGCCAT GTCTGTGGTG ACACTGGCAG AGATCTATGT GGCGGCTGCG
    CTGAGAGTCA AGACCAGTCT CCCACGGTCC TTGCATTTTC TGACACGTTT CTTCCTGAGT
    AGCGCCCGCC AGGCCTGCTT GGCACAGAGT GGCTCAGTGC CTCTTGCCAT GCAGTGGCTC
    TGCCACCCCG TGGGCCACCG TTTCTTCGTG GATGGGGACT GGGCCGTGCG CAGTGCCCCT
    CGGGAGAGCC TGTACAGCTT GGCCGGGAAC CCAGTGGACC CCCTGGCCCA GGTGACGCAG
    CTATTCCGGG AACATCTCTT GGAGCAAGCA CTGAACTGTG TGGCCCAGCC CAGCACCACC
    CCCAGCCCTG GGTCAGCTGA TGGAGACAGG GAATTCTCAG ATGCCCTCGG GTACCTGCAA
    TTGTTGAACA GCTGTTCCGA TGCTGCTGGC GCTCCCGCCT GCAGCTTTTC CATCAGCTCC
    AGCATGGCCA CCACGGGCAC AGACCCAGTG GCCAAGTGGT GGGCCTCGCT GACGGCTGTG
    GTGATCCACT GGCTGCGGCG GGATGAGGAG GCGGCTGAGA GGCTGTACCC GCTGGTGGAA
    CACCTGCCCC GTGCCCTGCA GGAGTCTGAG AGACCCCTGC CCAGGGCGGC TCTGCACTCC
    TTCAAGGCTG CACGGGCCCT GCTGGGCTGT GCAAAGGCAG AATCTGGCCC TGCCAGCCTG
    ACCATCTGTG AGAAGGCCAG TGGGTACCTG CGGGACAGCC TGGCCACCAC ACCAGTTGGC
    AGCTCCATTG ACAAGGCCGT GCAGCTGTTC CTGTGTGACC TGCTCCTCGT GGTGCGCACC
    AGCCTGTGGC GGCAGCAGCA GCCTCCTGCA CCTGCCCAGA CGTCCCAGGG CGCCAGTGTC
    AGGGCCCAGG CCTCTGCCCT TGAGCTGCGT GGCTTCCAGC GGGACCTGAG TGGCCTGAGG
    CGTCTGGCAC AGACCTTCCG GCCTGCCATG CGTAGGGTGT TCCTACATGA GGCCACAGCC
    CGGCTGATGG CAGGGGCCAG CCCCACGCGG ACTCACCAGC TCCTGGACCG CAGTCTGAGG
    CGGCGGGCAG GCCCGAGTGG CAAAGGAGGC GCAGTGGCGG AGCTGGAGCC GCGGCCCACG
    CGGAGGGAGC ACGCCGAGGC CCTGCTGCTG GCGTCCTGCT ACCTGCCGCC CGGCTTCCTG
    TCGGCGCCCG GGCAGCGCGT GGGCATGCTG GCCGAGGCGG CGCGCACGCT CGAGAAGCTG
    GGCGACCGCC GGCTGCTGTA CGACTGCCAG CAGATGCTCA TACGCCTGGG CGGCGGGACC
    ACCGTCACCT CCAGCTAG

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

    CloneID OPr120374
    Clone ID Related Accession (Same CDS sequence) XM_012664978.1
    Accession Version XM_012664978.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3357bp)
    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 2015-05-31
    Organism Propithecus coquereli(Coquerel's sifaka)
    Product sterol regulatory element-binding protein 1 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012155796.1) 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 :: Propithecus coquereli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    ATGCTTCAGC TCATCAACAA CCAAGAGAGT GACTTCCCTG GCCTGTTCGA CCCACCCTAT 
    GCTGGAGACG GGGAAGGAGG CACAGACCCG GCCAGCCCTA ATGCCAGCTC CCCAGGCAGC
    TTGTCCCCAC CTCCTGCCAT GCTGAGCTCC CCTCTTGAAG CCTTCCTGGG GGGACCCAAG
    GCAGCGCCCT CACCCTTGTC CCCTTCCCAG CCCACACCCA CCCCATTGAA CATGTACCCA
    TCTGTGCCCA CTTTTCCCCC TGAGCCTGGT ATCAAGGAAG AGTCAGTGCC ACTAAGCATC
    CTGCAGCCCC CCACCCCACA GCCCCTGCCA GGGGCCCTCC TATCCCAGAG CTTTCCAGCC
    CCAACCCCAC TGCAGTTCAG CTCCACCTCT GTGTTGGGCT ACCCCAGCCC TCCTGGAGGC
    TTCTCTACAG GGACTCCTCC TGCGAGCACC CAGCAGCCGC TGCCTAGCCT ACCACTGGCT
    TCCCCGCCAG GGGTCCCGCC CGTTTCCTTG CACACCCAGG TCCAGAGTGC AGCCCCCCAG
    CAGCTACTGA CAGCCACAGC TGCCCCCACA GCAGCCCCAG GAACAACCAC TGTGGCCTCA
    CAGATCCAGC AGGTCCCGGT CTTGCTGCAG CCCCACTTCA TCAAGGCAGA CTCACTGCTC
    CTGACGGCTA TGAAGACAGA TGTGGGGGCC ACTGTAAAGG CAGCAGGACT TAGCCCCCTG
    GTCCCTGGCA CGGCTGTGCA GACAGGGCCC TTGCAGACCC TGGTGAGTGG TGGAACCATC
    TTGGCAACGG TGCCACTGGT TGTGGATGCT GACAAGCTGC CCATCAACCG GCTGGCAGCT
    GGCAGCAAGG TCCCAGGCTC AGCCCAGAGC CGTGGTGAGA AGCGCACAGC CCACAATGCC
    ATTGAGAAGC GCTACCGCTC CTCCATCAAC GACAAGATCA TCGAGCTCAA GGACCTGGTG
    GTGGGCTCTG AGGCAAAGCT GAATAAATCT GCTGTCTTGC GCAAGGCCAT AGACTACATC
    CGATTTCTAC AACACAGCAA CCAGAAACTC AAGCAGGAGA ACCTGAGTCT GCGCACTGCT
    GCCCACAAAA GCAAATCTCT GAAGGATCTG GTATCCACCC GTGGCAGCGG AGGAAACACA
    GATGAACTCA TGGAGGGCGT GAAGACCGAG GTGGAGGACA CGCTGACGCC ACCACCCTCG
    GATGCCGGCT CGCCCTCCCA GAGCAGCCCT TTGTCCCTTG GCAGCAGGGG CAGTGGCAGT
    GGTGGCAGTG GCAGTGACTC GGAGCCTGAC AGCCCAGCCT TTGAGGATAG CCAGGTGAAG
    CCAGAGCAGC GGCTGTCTCC CCACAGCCGG GGCATGCTGG ACCGCTCCCG CCTGGCCCTG
    TGCACACTGG TCTTCCTCTG CTTGTCCTGC AACCCCTTGG CCTCCCTGCT AGGAGGCTGG
    GAAGCTCCTG ACCCTGCGGA TGCCACCAGT GTCTACCATA GTGTTGGGCG CAACATGCTG
    GGCACCGAGG GCAGAGATGG CCCTGGCTGG GCCCAGTGGC TGCTGCCCCC ACTGATCTGG
    CTCCTCAATG GGCTGCTAGT GCTGGTCTCC CTGGTGCTTC TCTTTGTCTA CGGAGAGCCA
    GTCACGCGGC CCCACTCAGG CCCCGCCGTG CACTTCTGGA GGCATCGCAA ACAGGCCGAC
    CTGGACCTGG CCCGGGGGGA CTTTGCCCAG GCCACCCAGC AGCTGTGGTT GGCCCTGCGA
    GCGCTGGGCC GGCCCCTGCC CACCTCCCAC CTGGACCTGG CCTGTAGCCT ACTTTGGAAC
    CTCATCCGCC ACCTGCTGCA GCGTCTCTGG GTGGGCCGTT GGCTGGCAGG CCGGGCAGGG
    GGCCTGCAAA GGGACTGTGC CCTGCAGGCG GATGCTCGCG CCAGCACCCG AGATGCGGCC
    CTTGTGTACC ATAAGCTGCA CCAGCTGCAT ACCATGGGGA AGTACACAGG CGGGCACCTC
    ACTGCCACCA ACCTGGCACT GAGTGCCCTG AACCTGGCGG AGTGTGCGGG GGATGCCATG
    TCTGTGGTGA CACTGGCAGA GATCTATGTG GCGGCTGCGC TGAGAGTCAA GACCAGTCTC
    CCACGGTCCT TGCATTTTCT GACACGTTTC TTCCTGAGTA GCGCCCGCCA GGCCTGCTTG
    GCACAGAGTG GCTCAGTGCC TCTTGCCATG CAGTGGCTCT GCCACCCCGT GGGCCACCGT
    TTCTTCGTGG ATGGGGACTG GGCCGTGCGC AGTGCCCCTC GGGAGAGCCT GTACAGCTTG
    GCCGGGAACC CAGTGGACCC CCTGGCCCAG GTGACGCAGC TATTCCGGGA ACATCTCTTG
    GAGCAAGCAC TGAACTGTGT GGCCCAGCCC AGCACCACCC CCAGCCCTGG GTCAGCTGAT
    GGAGACAGGG AATTCTCAGA TGCCCTCGGG TACCTGCAAT TGTTGAACAG CTGTTCCGAT
    GCTGCTGGCG CTCCCGCCTG CAGCTTTTCC ATCAGCTCCA GCATGGCCAC CACGGGCACA
    GACCCAGTGG CCAAGTGGTG GGCCTCGCTG ACGGCTGTGG TGATCCACTG GCTGCGGCGG
    GATGAGGAGG CGGCTGAGAG GCTGTACCCG CTGGTGGAAC ACCTGCCCCG TGCCCTGCAG
    GAGTCTGAGA GACCCCTGCC CAGGGCGGCT CTGCACTCCT TCAAGGCTGC ACGGGCCCTG
    CTGGGCTGTG CAAAGGCAGA ATCTGGCCCT GCCAGCCTGA CCATCTGTGA GAAGGCCAGT
    GGGTACCTGC GGGACAGCCT GGCCACCACA CCAGTTGGCA GCTCCATTGA CAAGGCCGTG
    CAGCTGTTCC TGTGTGACCT GCTCCTCGTG GTGCGCACCA GCCTGTGGCG GCAGCAGCAG
    CCTCCTGCAC CTGCCCAGAC GTCCCAGGGC GCCAGTGTCA GGGCCCAGGC CTCTGCCCTT
    GAGCTGCGTG GCTTCCAGCG GGACCTGAGT GGCCTGAGGC GTCTGGCACA GACCTTCCGG
    CCTGCCATGC GTAGGGTGTT CCTACATGAG GCCACAGCCC GGCTGATGGC AGGGGCCAGC
    CCCACGCGGA CTCACCAGCT CCTGGACCGC AGTCTGAGGC GGCGGGCAGG CCCGAGTGGC
    AAAGGAGGCG CAGTGGCGGA GCTGGAGCCG CGGCCCACGC GGAGGGAGCA CGCCGAGGCC
    CTGCTGCTGG CGTCCTGCTA CCTGCCGCCC GGCTTCCTGT CGGCGCCCGG GCAGCGCGTG
    GGCATGCTGG CCGAGGCGGC GCGCACGCTC GAGAAGCTGG GCGACCGCCG GCTGCTGTAC
    GACTGCCAGC AGATGCTCAT ACGCCTGGGC GGCGGGACCA CCGTCACCTC CAGCTAG

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

    RefSeq XP_012520432.1
    CDS47..3403
    Translation

    Target ORF information:

    RefSeq Version XM_012664978.1
    Organism Propithecus coquereli(Coquerel's sifaka)
    Definition Propithecus coquereli sterol regulatory element binding transcription factor 1 (SREBF1), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_012664978.1

    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
    ATGCTTCAGC TCATCAACAA CCAAGAGAGT GACTTCCCTG GCCTGTTCGA CCCACCCTAT 
    GCTGGAGACG GGGAAGGAGG CACAGACCCG GCCAGCCCTA ATGCCAGCTC CCCAGGCAGC
    TTGTCCCCAC CTCCTGCCAT GCTGAGCTCC CCTCTTGAAG CCTTCCTGGG GGGACCCAAG
    GCAGCGCCCT CACCCTTGTC CCCTTCCCAG CCCACACCCA CCCCATTGAA CATGTACCCA
    TCTGTGCCCA CTTTTCCCCC TGAGCCTGGT ATCAAGGAAG AGTCAGTGCC ACTAAGCATC
    CTGCAGCCCC CCACCCCACA GCCCCTGCCA GGGGCCCTCC TATCCCAGAG CTTTCCAGCC
    CCAACCCCAC TGCAGTTCAG CTCCACCTCT GTGTTGGGCT ACCCCAGCCC TCCTGGAGGC
    TTCTCTACAG GGACTCCTCC TGCGAGCACC CAGCAGCCGC TGCCTAGCCT ACCACTGGCT
    TCCCCGCCAG GGGTCCCGCC CGTTTCCTTG CACACCCAGG TCCAGAGTGC AGCCCCCCAG
    CAGCTACTGA CAGCCACAGC TGCCCCCACA GCAGCCCCAG GAACAACCAC TGTGGCCTCA
    CAGATCCAGC AGGTCCCGGT CTTGCTGCAG CCCCACTTCA TCAAGGCAGA CTCACTGCTC
    CTGACGGCTA TGAAGACAGA TGTGGGGGCC ACTGTAAAGG CAGCAGGACT TAGCCCCCTG
    GTCCCTGGCA CGGCTGTGCA GACAGGGCCC TTGCAGACCC TGGTGAGTGG TGGAACCATC
    TTGGCAACGG TGCCACTGGT TGTGGATGCT GACAAGCTGC CCATCAACCG GCTGGCAGCT
    GGCAGCAAGG TCCCAGGCTC AGCCCAGAGC CGTGGTGAGA AGCGCACAGC CCACAATGCC
    ATTGAGAAGC GCTACCGCTC CTCCATCAAC GACAAGATCA TCGAGCTCAA GGACCTGGTG
    GTGGGCTCTG AGGCAAAGCT GAATAAATCT GCTGTCTTGC GCAAGGCCAT AGACTACATC
    CGATTTCTAC AACACAGCAA CCAGAAACTC AAGCAGGAGA ACCTGAGTCT GCGCACTGCT
    GCCCACAAAA GCAAATCTCT GAAGGATCTG GTATCCACCC GTGGCAGCGG AGGAAACACA
    GATGAACTCA TGGAGGGCGT GAAGACCGAG GTGGAGGACA CGCTGACGCC ACCACCCTCG
    GATGCCGGCT CGCCCTCCCA GAGCAGCCCT TTGTCCCTTG GCAGCAGGGG CAGTGGCAGT
    GGTGGCAGTG GCAGTGACTC GGAGCCTGAC AGCCCAGCCT TTGAGGATAG CCAGGTGAAG
    CCAGAGCAGC GGCTGTCTCC CCACAGCCGG GGCATGCTGG ACCGCTCCCG CCTGGCCCTG
    TGCACACTGG TCTTCCTCTG CTTGTCCTGC AACCCCTTGG CCTCCCTGCT AGGAGGCTGG
    GAAGCTCCTG ACCCTGCGGA TGCCACCAGT GTCTACCATA GTGTTGGGCG CAACATGCTG
    GGCACCGAGG GCAGAGATGG CCCTGGCTGG GCCCAGTGGC TGCTGCCCCC ACTGATCTGG
    CTCCTCAATG GGCTGCTAGT GCTGGTCTCC CTGGTGCTTC TCTTTGTCTA CGGAGAGCCA
    GTCACGCGGC CCCACTCAGG CCCCGCCGTG CACTTCTGGA GGCATCGCAA ACAGGCCGAC
    CTGGACCTGG CCCGGGGGGA CTTTGCCCAG GCCACCCAGC AGCTGTGGTT GGCCCTGCGA
    GCGCTGGGCC GGCCCCTGCC CACCTCCCAC CTGGACCTGG CCTGTAGCCT ACTTTGGAAC
    CTCATCCGCC ACCTGCTGCA GCGTCTCTGG GTGGGCCGTT GGCTGGCAGG CCGGGCAGGG
    GGCCTGCAAA GGGACTGTGC CCTGCAGGCG GATGCTCGCG CCAGCACCCG AGATGCGGCC
    CTTGTGTACC ATAAGCTGCA CCAGCTGCAT ACCATGGGGA AGTACACAGG CGGGCACCTC
    ACTGCCACCA ACCTGGCACT GAGTGCCCTG AACCTGGCGG AGTGTGCGGG GGATGCCATG
    TCTGTGGTGA CACTGGCAGA GATCTATGTG GCGGCTGCGC TGAGAGTCAA GACCAGTCTC
    CCACGGTCCT TGCATTTTCT GACACGTTTC TTCCTGAGTA GCGCCCGCCA GGCCTGCTTG
    GCACAGAGTG GCTCAGTGCC TCTTGCCATG CAGTGGCTCT GCCACCCCGT GGGCCACCGT
    TTCTTCGTGG ATGGGGACTG GGCCGTGCGC AGTGCCCCTC GGGAGAGCCT GTACAGCTTG
    GCCGGGAACC CAGTGGACCC CCTGGCCCAG GTGACGCAGC TATTCCGGGA ACATCTCTTG
    GAGCAAGCAC TGAACTGTGT GGCCCAGCCC AGCACCACCC CCAGCCCTGG GTCAGCTGAT
    GGAGACAGGG AATTCTCAGA TGCCCTCGGG TACCTGCAAT TGTTGAACAG CTGTTCCGAT
    GCTGCTGGCG CTCCCGCCTG CAGCTTTTCC ATCAGCTCCA GCATGGCCAC CACGGGCACA
    GACCCAGTGG CCAAGTGGTG GGCCTCGCTG ACGGCTGTGG TGATCCACTG GCTGCGGCGG
    GATGAGGAGG CGGCTGAGAG GCTGTACCCG CTGGTGGAAC ACCTGCCCCG TGCCCTGCAG
    GAGTCTGAGA GACCCCTGCC CAGGGCGGCT CTGCACTCCT TCAAGGCTGC ACGGGCCCTG
    CTGGGCTGTG CAAAGGCAGA ATCTGGCCCT GCCAGCCTGA CCATCTGTGA GAAGGCCAGT
    GGGTACCTGC GGGACAGCCT GGCCACCACA CCAGTTGGCA GCTCCATTGA CAAGGCCGTG
    CAGCTGTTCC TGTGTGACCT GCTCCTCGTG GTGCGCACCA GCCTGTGGCG GCAGCAGCAG
    CCTCCTGCAC CTGCCCAGAC GTCCCAGGGC GCCAGTGTCA GGGCCCAGGC CTCTGCCCTT
    GAGCTGCGTG GCTTCCAGCG GGACCTGAGT GGCCTGAGGC GTCTGGCACA GACCTTCCGG
    CCTGCCATGC GTAGGGTGTT CCTACATGAG GCCACAGCCC GGCTGATGGC AGGGGCCAGC
    CCCACGCGGA CTCACCAGCT CCTGGACCGC AGTCTGAGGC GGCGGGCAGG CCCGAGTGGC
    AAAGGAGGCG CAGTGGCGGA GCTGGAGCCG CGGCCCACGC GGAGGGAGCA CGCCGAGGCC
    CTGCTGCTGG CGTCCTGCTA CCTGCCGCCC GGCTTCCTGT CGGCGCCCGG GCAGCGCGTG
    GGCATGCTGG CCGAGGCGGC GCGCACGCTC GAGAAGCTGG GCGACCGCCG GCTGCTGTAC
    GACTGCCAGC AGATGCTCAT ACGCCTGGGC GGCGGGACCA CCGTCACCTC CAGCTAG

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

    CloneID OPr120375
    Clone ID Related Accession (Same CDS sequence) XM_012664979.1
    Accession Version XM_012664979.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3543bp)
    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 2015-05-31
    Organism Propithecus coquereli(Coquerel's sifaka)
    Product sterol regulatory element-binding protein 1 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012155796.1) 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 :: Propithecus coquereli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    ATGGACGAGG CGCCCTTCAG CCAGGAGGCT CTGGAGCAGG CGCTGGCCGA GCCGTGCGAC 
    CTGGACGCGG CGCTGCTGAC CGACATCGAA GGTGAAGTCC GCGCGGGGAG GGGCCCGAGT
    CAACCGCCTG GACGCCCCGA GGGGGCGGGC GCGGACCGCA GAGCCATGGA TTGCACGTTC
    GAAGACATGC TTCAGCTCAT CAACAACCAA GAGAGTGACT TCCCTGGCCT GTTCGACCCA
    CCCTATGCTG GAGACGGGGA AGGAGGCACA GACCCGGCCA GCCCTAATGC CAGCTCCCCA
    GGCAGCTTGT CCCCACCTCC TGCCATGCTG AGCTCCCCTC TTGAAGCCTT CCTGGGGGGA
    CCCAAGGCAG CGCCCTCACC CTTGTCCCCT TCCCAGCCCA CACCCACCCC ATTGAACATG
    TACCCATCTG TGCCCACTTT TCCCCCTGAG CCTGGTATCA AGGAAGAGTC AGTGCCACTA
    AGCATCCTGC AGCCCCCCAC CCCACAGCCC CTGCCAGGGG CCCTCCTATC CCAGAGCTTT
    CCAGCCCCAA CCCCACTGCA GTTCAGCTCC ACCTCTGTGT TGGGCTACCC CAGCCCTCCT
    GGAGGCTTCT CTACAGGGAC TCCTCCTGCG AGCACCCAGC AGCCGCTGCC TAGCCTACCA
    CTGGCTTCCC CGCCAGGGGT CCCGCCCGTT TCCTTGCACA CCCAGGTCCA GAGTGCAGCC
    CCCCAGCAGC TACTGACAGC CACAGCTGCC CCCACAGCAG CCCCAGGAAC AACCACTGTG
    GCCTCACAGA TCCAGCAGGT CCCGGTCTTG CTGCAGCCCC ACTTCATCAA GGCAGACTCA
    CTGCTCCTGA CGGCTATGAA GACAGATGTG GGGGCCACTG TAAAGGCAGC AGGACTTAGC
    CCCCTGGTCC CTGGCACGGC TGTGCAGACA GGGCCCTTGC AGACCCTGGT GAGTGGTGGA
    ACCATCTTGG CAACGGTGCC ACTGGTTGTG GATGCTGACA AGCTGCCCAT CAACCGGCTG
    GCAGCTGGCA GCAAGGTCCC AGGCTCAGCC CAGAGCCGTG GTGAGAAGCG CACAGCCCAC
    AATGCCATTG AGAAGCGCTA CCGCTCCTCC ATCAACGACA AGATCATCGA GCTCAAGGAC
    CTGGTGGTGG GCTCTGAGGC AAAGCTGAAT AAATCTGCTG TCTTGCGCAA GGCCATAGAC
    TACATCCGAT TTCTACAACA CAGCAACCAG AAACTCAAGC AGGAGAACCT GAGTCTGCGC
    ACTGCTGCCC ACAAAAGCAA ATCTCTGAAG GATCTGGTAT CCACCCGTGG CAGCGGAGGA
    AACACAGATG AACTCATGGA GGGCGTGAAG ACCGAGGTGG AGGACACGCT GACGCCACCA
    CCCTCGGATG CCGGCTCGCC CTCCCAGAGC AGCCCTTTGT CCCTTGGCAG CAGGGGCAGT
    GGCAGTGGTG GCAGTGGCAG TGACTCGGAG CCTGACAGCC CAGCCTTTGA GGATAGCCAG
    GTGAAGCCAG AGCAGCGGCT GTCTCCCCAC AGCCGGGGCA TGCTGGACCG CTCCCGCCTG
    GCCCTGTGCA CACTGGTCTT CCTCTGCTTG TCCTGCAACC CCTTGGCCTC CCTGCTAGGA
    GGCTGGGAAG CTCCTGACCC TGCGGATGCC ACCAGTGTCT ACCATAGTGT TGGGCGCAAC
    ATGCTGGGCA CCGAGGGCAG AGATGGCCCT GGCTGGGCCC AGTGGCTGCT GCCCCCACTG
    ATCTGGCTCC TCAATGGGCT GCTAGTGCTG GTCTCCCTGG TGCTTCTCTT TGTCTACGGA
    GAGCCAGTCA CGCGGCCCCA CTCAGGCCCC GCCGTGCACT TCTGGAGGCA TCGCAAACAG
    GCCGACCTGG ACCTGGCCCG GGGGGACTTT GCCCAGGCCA CCCAGCAGCT GTGGTTGGCC
    CTGCGAGCGC TGGGCCGGCC CCTGCCCACC TCCCACCTGG ACCTGGCCTG TAGCCTACTT
    TGGAACCTCA TCCGCCACCT GCTGCAGCGT CTCTGGGTGG GCCGTTGGCT GGCAGGCCGG
    GCAGGGGGCC TGCAAAGGGA CTGTGCCCTG CAGGCGGATG CTCGCGCCAG CACCCGAGAT
    GCGGCCCTTG TGTACCATAA GCTGCACCAG CTGCATACCA TGGGGAAGTA CACAGGCGGG
    CACCTCACTG CCACCAACCT GGCACTGAGT GCCCTGAACC TGGCGGAGTG TGCGGGGGAT
    GCCATGTCTG TGGTGACACT GGCAGAGATC TATGTGGCGG CTGCGCTGAG AGTCAAGACC
    AGTCTCCCAC GGTCCTTGCA TTTTCTGACA CGTTTCTTCC TGAGTAGCGC CCGCCAGGCC
    TGCTTGGCAC AGAGTGGCTC AGTGCCTCTT GCCATGCAGT GGCTCTGCCA CCCCGTGGGC
    CACCGTTTCT TCGTGGATGG GGACTGGGCC GTGCGCAGTG CCCCTCGGGA GAGCCTGTAC
    AGCTTGGCCG GGAACCCAGT GGACCCCCTG GCCCAGGTGA CGCAGCTATT CCGGGAACAT
    CTCTTGGAGC AAGCACTGAA CTGTGTGGCC CAGCCCAGCA CCACCCCCAG CCCTGGGTCA
    GCTGATGGAG ACAGGGAATT CTCAGATGCC CTCGGGTACC TGCAATTGTT GAACAGCTGT
    TCCGATGCTG CTGGCGCTCC CGCCTGCAGC TTTTCCATCA GCTCCAGCAT GGCCACCACG
    GGCACAGACC CAGTGGCCAA GTGGTGGGCC TCGCTGACGG CTGTGGTGAT CCACTGGCTG
    CGGCGGGATG AGGAGGCGGC TGAGAGGCTG TACCCGCTGG TGGAACACCT GCCCCGTGCC
    CTGCAGGAGT CTGAGAGACC CCTGCCCAGG GCGGCTCTGC ACTCCTTCAA GGCTGCACGG
    GCCCTGCTGG GCTGTGCAAA GGCAGAATCT GGCCCTGCCA GCCTGACCAT CTGTGAGAAG
    GCCAGTGGGT ACCTGCGGGA CAGCCTGGCC ACCACACCAG TTGGCAGCTC CATTGACAAG
    GCCGTGCAGC TGTTCCTGTG TGACCTGCTC CTCGTGGTGC GCACCAGCCT GTGGCGGCAG
    CAGCAGCCTC CTGCACCTGC CCAGACGTCC CAGGGCGCCA GTGTCAGGGC CCAGGCCTCT
    GCCCTTGAGC TGCGTGGCTT CCAGCGGGAC CTGAGTGGCC TGAGGCGTCT GGCACAGACC
    TTCCGGCCTG CCATGCGTAG GGTGTTCCTA CATGAGGCCA CAGCCCGGCT GATGGCAGGG
    GCCAGCCCCA CGCGGACTCA CCAGCTCCTG GACCGCAGTC TGAGGCGGCG GGCAGGCCCG
    AGTGGCAAAG GAGGCGCAGT GGCGGAGCTG GAGCCGCGGC CCACGCGGAG GGAGCACGCC
    GAGGCCCTGC TGCTGGCGTC CTGCTACCTG CCGCCCGGCT TCCTGTCGGC GCCCGGGCAG
    CGCGTGGGCA TGCTGGCCGA GGCGGCGCGC ACGCTCGAGA AGCTGGGCGA CCGCCGGCTG
    CTGTACGACT GCCAGCAGAT GCTCATACGC CTGGGCGGCG GGACCACCGT CACCTCCAGC
    TAG

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

    RefSeq XP_012520433.1
    CDS24..3566
    Translation

    Target ORF information:

    RefSeq Version XM_012664979.1
    Organism Propithecus coquereli(Coquerel's sifaka)
    Definition Propithecus coquereli sterol regulatory element binding transcription factor 1 (SREBF1), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_012664979.1

    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
    ATGGACGAGG CGCCCTTCAG CCAGGAGGCT CTGGAGCAGG CGCTGGCCGA GCCGTGCGAC 
    CTGGACGCGG CGCTGCTGAC CGACATCGAA GGTGAAGTCC GCGCGGGGAG GGGCCCGAGT
    CAACCGCCTG GACGCCCCGA GGGGGCGGGC GCGGACCGCA GAGCCATGGA TTGCACGTTC
    GAAGACATGC TTCAGCTCAT CAACAACCAA GAGAGTGACT TCCCTGGCCT GTTCGACCCA
    CCCTATGCTG GAGACGGGGA AGGAGGCACA GACCCGGCCA GCCCTAATGC CAGCTCCCCA
    GGCAGCTTGT CCCCACCTCC TGCCATGCTG AGCTCCCCTC TTGAAGCCTT CCTGGGGGGA
    CCCAAGGCAG CGCCCTCACC CTTGTCCCCT TCCCAGCCCA CACCCACCCC ATTGAACATG
    TACCCATCTG TGCCCACTTT TCCCCCTGAG CCTGGTATCA AGGAAGAGTC AGTGCCACTA
    AGCATCCTGC AGCCCCCCAC CCCACAGCCC CTGCCAGGGG CCCTCCTATC CCAGAGCTTT
    CCAGCCCCAA CCCCACTGCA GTTCAGCTCC ACCTCTGTGT TGGGCTACCC CAGCCCTCCT
    GGAGGCTTCT CTACAGGGAC TCCTCCTGCG AGCACCCAGC AGCCGCTGCC TAGCCTACCA
    CTGGCTTCCC CGCCAGGGGT CCCGCCCGTT TCCTTGCACA CCCAGGTCCA GAGTGCAGCC
    CCCCAGCAGC TACTGACAGC CACAGCTGCC CCCACAGCAG CCCCAGGAAC AACCACTGTG
    GCCTCACAGA TCCAGCAGGT CCCGGTCTTG CTGCAGCCCC ACTTCATCAA GGCAGACTCA
    CTGCTCCTGA CGGCTATGAA GACAGATGTG GGGGCCACTG TAAAGGCAGC AGGACTTAGC
    CCCCTGGTCC CTGGCACGGC TGTGCAGACA GGGCCCTTGC AGACCCTGGT GAGTGGTGGA
    ACCATCTTGG CAACGGTGCC ACTGGTTGTG GATGCTGACA AGCTGCCCAT CAACCGGCTG
    GCAGCTGGCA GCAAGGTCCC AGGCTCAGCC CAGAGCCGTG GTGAGAAGCG CACAGCCCAC
    AATGCCATTG AGAAGCGCTA CCGCTCCTCC ATCAACGACA AGATCATCGA GCTCAAGGAC
    CTGGTGGTGG GCTCTGAGGC AAAGCTGAAT AAATCTGCTG TCTTGCGCAA GGCCATAGAC
    TACATCCGAT TTCTACAACA CAGCAACCAG AAACTCAAGC AGGAGAACCT GAGTCTGCGC
    ACTGCTGCCC ACAAAAGCAA ATCTCTGAAG GATCTGGTAT CCACCCGTGG CAGCGGAGGA
    AACACAGATG AACTCATGGA GGGCGTGAAG ACCGAGGTGG AGGACACGCT GACGCCACCA
    CCCTCGGATG CCGGCTCGCC CTCCCAGAGC AGCCCTTTGT CCCTTGGCAG CAGGGGCAGT
    GGCAGTGGTG GCAGTGGCAG TGACTCGGAG CCTGACAGCC CAGCCTTTGA GGATAGCCAG
    GTGAAGCCAG AGCAGCGGCT GTCTCCCCAC AGCCGGGGCA TGCTGGACCG CTCCCGCCTG
    GCCCTGTGCA CACTGGTCTT CCTCTGCTTG TCCTGCAACC CCTTGGCCTC CCTGCTAGGA
    GGCTGGGAAG CTCCTGACCC TGCGGATGCC ACCAGTGTCT ACCATAGTGT TGGGCGCAAC
    ATGCTGGGCA CCGAGGGCAG AGATGGCCCT GGCTGGGCCC AGTGGCTGCT GCCCCCACTG
    ATCTGGCTCC TCAATGGGCT GCTAGTGCTG GTCTCCCTGG TGCTTCTCTT TGTCTACGGA
    GAGCCAGTCA CGCGGCCCCA CTCAGGCCCC GCCGTGCACT TCTGGAGGCA TCGCAAACAG
    GCCGACCTGG ACCTGGCCCG GGGGGACTTT GCCCAGGCCA CCCAGCAGCT GTGGTTGGCC
    CTGCGAGCGC TGGGCCGGCC CCTGCCCACC TCCCACCTGG ACCTGGCCTG TAGCCTACTT
    TGGAACCTCA TCCGCCACCT GCTGCAGCGT CTCTGGGTGG GCCGTTGGCT GGCAGGCCGG
    GCAGGGGGCC TGCAAAGGGA CTGTGCCCTG CAGGCGGATG CTCGCGCCAG CACCCGAGAT
    GCGGCCCTTG TGTACCATAA GCTGCACCAG CTGCATACCA TGGGGAAGTA CACAGGCGGG
    CACCTCACTG CCACCAACCT GGCACTGAGT GCCCTGAACC TGGCGGAGTG TGCGGGGGAT
    GCCATGTCTG TGGTGACACT GGCAGAGATC TATGTGGCGG CTGCGCTGAG AGTCAAGACC
    AGTCTCCCAC GGTCCTTGCA TTTTCTGACA CGTTTCTTCC TGAGTAGCGC CCGCCAGGCC
    TGCTTGGCAC AGAGTGGCTC AGTGCCTCTT GCCATGCAGT GGCTCTGCCA CCCCGTGGGC
    CACCGTTTCT TCGTGGATGG GGACTGGGCC GTGCGCAGTG CCCCTCGGGA GAGCCTGTAC
    AGCTTGGCCG GGAACCCAGT GGACCCCCTG GCCCAGGTGA CGCAGCTATT CCGGGAACAT
    CTCTTGGAGC AAGCACTGAA CTGTGTGGCC CAGCCCAGCA CCACCCCCAG CCCTGGGTCA
    GCTGATGGAG ACAGGGAATT CTCAGATGCC CTCGGGTACC TGCAATTGTT GAACAGCTGT
    TCCGATGCTG CTGGCGCTCC CGCCTGCAGC TTTTCCATCA GCTCCAGCAT GGCCACCACG
    GGCACAGACC CAGTGGCCAA GTGGTGGGCC TCGCTGACGG CTGTGGTGAT CCACTGGCTG
    CGGCGGGATG AGGAGGCGGC TGAGAGGCTG TACCCGCTGG TGGAACACCT GCCCCGTGCC
    CTGCAGGAGT CTGAGAGACC CCTGCCCAGG GCGGCTCTGC ACTCCTTCAA GGCTGCACGG
    GCCCTGCTGG GCTGTGCAAA GGCAGAATCT GGCCCTGCCA GCCTGACCAT CTGTGAGAAG
    GCCAGTGGGT ACCTGCGGGA CAGCCTGGCC ACCACACCAG TTGGCAGCTC CATTGACAAG
    GCCGTGCAGC TGTTCCTGTG TGACCTGCTC CTCGTGGTGC GCACCAGCCT GTGGCGGCAG
    CAGCAGCCTC CTGCACCTGC CCAGACGTCC CAGGGCGCCA GTGTCAGGGC CCAGGCCTCT
    GCCCTTGAGC TGCGTGGCTT CCAGCGGGAC CTGAGTGGCC TGAGGCGTCT GGCACAGACC
    TTCCGGCCTG CCATGCGTAG GGTGTTCCTA CATGAGGCCA CAGCCCGGCT GATGGCAGGG
    GCCAGCCCCA CGCGGACTCA CCAGCTCCTG GACCGCAGTC TGAGGCGGCG GGCAGGCCCG
    AGTGGCAAAG GAGGCGCAGT GGCGGAGCTG GAGCCGCGGC CCACGCGGAG GGAGCACGCC
    GAGGCCCTGC TGCTGGCGTC CTGCTACCTG CCGCCCGGCT TCCTGTCGGC GCCCGGGCAG
    CGCGTGGGCA TGCTGGCCGA GGCGGCGCGC ACGCTCGAGA AGCTGGGCGA CCGCCGGCTG
    CTGTACGACT GCCAGCAGAT GCTCATACGC CTGGGCGGCG GGACCACCGT CACCTCCAGC
    TAG

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