scaf1 cDNA ORF clone, Salmo salar(Atlantic salmon)

The following scaf1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the scaf1 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
OAt13026 XM_014192259.1
Latest version!
Salmo salar SR-related CTD-associated factor 1 (scaf1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
OAt13027 XM_014192260.1
Latest version!
Salmo salar SR-related CTD-associated factor 1 (scaf1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00

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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 OAt13026
    Clone ID Related Accession (Same CDS sequence) XM_014192259.1
    Accession Version XM_014192259.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4389bp)
    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 1442678400000
    Organism Salmo salar(Atlantic salmon)
    Product splicing factor, arginine/serine-rich 19 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012333569.1) 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 :: Salmo salar Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    ATGCCTGCCG TCCCTCCTCC TCACGGGATC ACAGAGACTG CCAAGAGCCC CCTGCCCTCC 
    TCCACATCTC CCTCCTCTCC TTCCTCCTCT CCTGCCTCCC CACCTTCCTC TTCATCCTCC
    TCTCCTGGAG CTGTGGCAAC CAGCTACCAC AACGACATCC AGGAGGGAAG GGCCAACAGC
    GTGATGATGG GTGACGTAGT GTCCTCCACT TCCGCCTCCC TGGCTCCCCC CTCCTCTCAC
    TCTGACCCCC CTTTCTCCTC CTCTGATCCC TTGTTATGTC TCTCCCCACC CCCTGTGGGC
    ACCGACGGAC AAAAAGAGGG CGAGACGGAG ATCTACGACC CTTTTCACCC TACGGAAGGA
    GAGAGGGAGG GAGGAGCGGC CGAGGAGGAG GAGGAAGGGG AAAAGTACGA CCCCTTTGAT
    CCGACCGGCT CTCCCCCCTC AGAGAGAGAG GAGGAGGAGC GAGCGACAGG GGGAGGGAGG
    GAGAGAGGGA ACAGCGTGAG CAGCAAGGGG AGCGATGCCA GAGGGAAGAA AAGGAAGGCA
    GAGACGGGGA GGACAGGAGG AGAGGAGAAA GACAATGCTC CTCCAGACTC CACGGACACT
    CTCTCTGTTC TCCCGCTCTC CCCGCGCTCC CTCCCTCTCC CCCTCCGGAG GAGGCTGGAC
    CGAACCAAAG AGCCCCGGGT GAAAGTACGG GACAGGAGAG AGAAGGCGGA CCACTCGGAC
    CACTCTGAAA TTGAGGAGGG TGAGATCGTG GGGGCCACCG AGAGGGACGG AGGGAATAGG
    GAGGAGAGAG GCCGGGAAGG AATCGTTCCT CTCGTCCTCC CCATCTCCTC CGGCAGTCCT
    TTCCTCCACG GGGGAGCTAA GCCGGAGAGG ATCCTGAGGG TGCTGGATGG GGATAGCTTT
    GTGTCGGTGC GGGCTGAGGG GGACTGGGCG GGGCCGGTGA TGCCTGGCAG GGAGGATGGG
    GAGCCCATGG AGGAGGATGA GGAAGAAGAA GAAGAAGAAG AGGTGGTGGT CGGGGCGGGA
    GATCTTAGGA GGAAGCTGGT CAGCCGGCGT AAAGCAAGAT ACCGTTCCTC CTTCCCTTCT
    TCCCTCTCAC CTCAGCACCT CCCATTGTCT CCTCACACCC TCCTTCTGCC TTCCCCCCCC
    TCCACTGCCG AGAAGGACAA GAGCCGCAAG TCCTCCAAGA GCTCCAAGGA GAGGGAGCGG
    CGCAAGCGGA AGGAGGGCAA GGTAGGGGAG GAGGAGGAGA GTAGGAGGAG GAGGAAGAAA
    AGGAAAGAGA AGGATGGTGG AGGAGAGAAG AGTGGTGAGA GGAAGGAAAG ACACAGGGAA
    AGGGAGAGGG GGCGGCGGAG TGAGAAAGAG AAGAAAACAA AGGTGGAGGA GAGAGGGAGG
    AGCAGCAGAA GCGATAGCAG GAAGAGGAAG AAGAGACGAT GGAGCACCCC GGAATCTTCA
    GCACGCCCCC GCTCACAGAA CTCCTCAGTG CAGCAAACGC ACGGGGGTCG CTCCTGGTCA
    AACACTTCAG AGGACCAACA CAGAGAGAGA GATGGGGACA GAGACCGGTA CAGAGACCGA
    GATGGGGAAC GAGATGGAGC TCGAGACAAG GACAGAAAGA AAGATGACAC CCGGAGAAGG
    GAGAGGGATG GAGACTCGAG CCGGATAAAG AGGGAAAGAG AGCGAGACGG CGTCCGCGAA
    TCGACCAGCC GAGAAAGAGG CAGCTCCAAG AGGTCCAAAG GAAGCATAGA ACGAAGGCAC
    CGGGACAGGC ACCGGGACAG GGACAGGCAC CGGGACAGGC ACCGGGACAG GGACAGGGAC
    AGAGAAAGGG ACAGGGACAG AGAAAGGGAC AGAGAGCGGG ACAGGCACCG AGACAGGGAC
    AGAGACAGGG ACAGAGAAAG GGACAGGGTC AGAGAAGAAG ACAGGGAAAG ACGTAGAGAC
    GGTCGTCCCG TGGTGCCACC GTCCATCCAA GATCTCAATG GCTCTGACCT GTTCGCCATC
    AAGCGCACCA TCACAGTCAC CACGACCACC ACCACCACTC TCCCCGGTTC CCCCCCGCTG
    GCTCCATCCT CCCCCCGCAG CCCCTCCCAG GGCTCGGACA AGCCCCACAA GAGAAAGAAG
    AAGAGGCGTC GGCGCTCGGA CGAAGAGTTG GAAGACGGCA TGGGCCGGCG TGGGAGCCGC
    TCCCTCTCGC CGCCGTCACA TTACCATGGC TACGACTCGG ACCATTTCTC AGACAAACTG
    GAGATAAACA TGCACTCTCT GGACGGGGAG GCCCTGGACT CAGACTACCC CTCTATAGAA
    GACTCCCCAC CCCCTCCCCA GCTTCTGGAA CCCGCTGCCC CCAGCGCCAA ACCCAAGACC
    GCCACCAAAC CTGGACGCCA CCACTTCAAG AAGAAATCCC GAACGGGCAC GAAAGCTGGT
    CAGTCCGAGT CGTCCTCTTC CTCCTCGGTT CGACCCAAAG GCAAGGGGCT CTCCACCTCC
    TCACTCTCCC CAACCCAGGC CGCCCTAGCC ACCCTTCCCT CGGCCAAACG AGGGCGGAAG
    ATGGGGAAGG AGAAAGAGCG CGGGGAAAAA GGGGGAAAGA AAGAGTCTGG TCGGTCTGGC
    AGGTCCAAGA AATTAAGCGG TGGTGGGAGG AAAGCCAAGC TGCAATCCAA AGTGTCAGTG
    CTCGTGCGTG AGGGCGTGAG CAGCACCACG GGGGGCCCGG TGGGCTCTGG GAAGCTGGGC
    ATGGAGCTCC TCGGGGCAGG CGGGTCAGTA GGGGGCTCTG GGATGCCGGT GGTGGGAGGT
    TCCATTGCGG TGGTCTTTAG GAGGGACAAT GAGAGCAGGT CTCCGTTCCT CAAGCCCTGC
    TCTGAGCCTC TATTGCTGAG TGGACGCAAC AAGGACCTGG GGAAGGTGGG CAAACGCAGT
    TCCCTGGCCG CTCCCCCTTC CTCCTCGCTG GCCAATCCCA CGGTGGCAAC GCTGAAGTCC
    AAGAAGGCCA AGCCCAGCTC CACCACCTCC ACTTCCTCCT CGGCGTCTTC GCCATCATCG
    TCCCTGGCAA CCAAGCGTAG GCGGCGGCTG GCTAAGAAGA CGCGGGGAGA GAAAGGCTTA
    GCCGCTGGTT TGACGGACGT GGATGGCGCC ATGGCCAACT GTAGCTCTGA GGGCGGCGGC
    TGGGGTGGGC CTTCCTCCGA CATCCAATCA GGAGTCGGGA CAAAACCCTC CAGTCCACAC
    TCTGGTCCAG CCGGTCCAAC CCCTTCCTCA TCCTCTTCTT CATCATCCTC CTCTTCTACC
    AGTGTCCTCC CCCCGTCCTC CTCACCCCCC CACACCCCTC CGCCGTCCCT CACCACCTCG
    CGTGATGCTC GGGAGTCGTC TCCCGACTCG CAGACTGTGG ACAGCAGCTG TAAGACCCCT
    GAGCCCTCCT TCCTTCCCGA GGATTGCCCT GTTCAGACCC AGAGCACCCC CAACCTGCCC
    CCCTCCAGTC CCACGTCCGT ACCCTCCTCC CAGGGGGGAG GCCTCTCACA GTACGGCCCC
    TCCAGCATGA AGCCCCTCCC TCTGGAAGAA GCCTCCAAAT CCCTGGCCTC ACCCCCTTGC
    TCCTCCTCAT CTGGCTCTGC CCTCGCCTCT CTCTCCCTTC CTCCTTCCTC CACAGACCCC
    TCCTCCTCTT CCTCTTCTTC TGTTTCTTCA TCCTCAGCCA ACAAGCTGCC ACCGCCTCCT
    CCTCCCCCTC CTGCTGCCCC TACCCTCCCC TGGAGTCTGC AGACAGGAGT GGACTGCACA
    GCCGGAGGAG TTTTAGCATT GACAGCTCTG CTGTTTAAGA TGGAAGAGGC CAATATCGCA
    AGTAGAGCCA AAGCCCAAGA GTTCATTCAT GCTACAAGCC AGATTCTCTC CCAAACCAAT
    CAGAACCATT CATCGCAGCA TGCCCCTTCC TCTTCTTCCT CCTCCCAGGT TCCTCCTCCC
    CCTGGCCCCA CCCCTGCCCA GTTCATCCTG CACAGCTCTC TCCCAATGGT GGGCTGCACC
    AAAACCCCAC CCAGCCACCT GCACCCTGGC ATGTCTATGG GTGGCGGCTG TGCCCAGACC
    CCGCCCCCTC CCATGCCCTC TGGGTTCTCG GGAGGGTCCG GGGGCTCCAG TGATATAGGC
    TGGGACAATG AGAGCAAGGA CCCTGACAAG TACCTGAAGA AGCTCCACAC TCAGGAGCGT
    GCGGTGGAGG AGGTGAAGCT GGCCATTAAG CCGTACTACC AGCGTAAAGA CATTAACAAG
    GACGACTACA AGGACATCCT GAGGAAGGCA GTACACAAGA TCTGCCACAG TCGAACGGGA
    GAGATCAACC CGGTCAAGGT GAGCAACCTG GTCAAGCTTT ATGTTCAGAG GTACAAGTAC
    TTCAGGAAGC ACGGTCGAAA GATGGACGAG GAAGAGAGGG AGGACAGAGA GATGGATTCC
    TCCTATTGA

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

    RefSeq XP_014047734.1
    CDS9..4397
    Translation

    Target ORF information:

    RefSeq Version XM_014192259.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar SR-related CTD-associated factor 1 (scaf1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014192259.1

    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
    ATGCCTGCCG TCCCTCCTCC TCACGGGATC ACAGAGACTG CCAAGAGCCC CCTGCCCTCC 
    TCCACATCTC CCTCCTCTCC TTCCTCCTCT CCTGCCTCCC CACCTTCCTC TTCATCCTCC
    TCTCCTGGAG CTGTGGCAAC CAGCTACCAC AACGACATCC AGGAGGGAAG GGCCAACAGC
    GTGATGATGG GTGACGTAGT GTCCTCCACT TCCGCCTCCC TGGCTCCCCC CTCCTCTCAC
    TCTGACCCCC CTTTCTCCTC CTCTGATCCC TTGTTATGTC TCTCCCCACC CCCTGTGGGC
    ACCGACGGAC AAAAAGAGGG CGAGACGGAG ATCTACGACC CTTTTCACCC TACGGAAGGA
    GAGAGGGAGG GAGGAGCGGC CGAGGAGGAG GAGGAAGGGG AAAAGTACGA CCCCTTTGAT
    CCGACCGGCT CTCCCCCCTC AGAGAGAGAG GAGGAGGAGC GAGCGACAGG GGGAGGGAGG
    GAGAGAGGGA ACAGCGTGAG CAGCAAGGGG AGCGATGCCA GAGGGAAGAA AAGGAAGGCA
    GAGACGGGGA GGACAGGAGG AGAGGAGAAA GACAATGCTC CTCCAGACTC CACGGACACT
    CTCTCTGTTC TCCCGCTCTC CCCGCGCTCC CTCCCTCTCC CCCTCCGGAG GAGGCTGGAC
    CGAACCAAAG AGCCCCGGGT GAAAGTACGG GACAGGAGAG AGAAGGCGGA CCACTCGGAC
    CACTCTGAAA TTGAGGAGGG TGAGATCGTG GGGGCCACCG AGAGGGACGG AGGGAATAGG
    GAGGAGAGAG GCCGGGAAGG AATCGTTCCT CTCGTCCTCC CCATCTCCTC CGGCAGTCCT
    TTCCTCCACG GGGGAGCTAA GCCGGAGAGG ATCCTGAGGG TGCTGGATGG GGATAGCTTT
    GTGTCGGTGC GGGCTGAGGG GGACTGGGCG GGGCCGGTGA TGCCTGGCAG GGAGGATGGG
    GAGCCCATGG AGGAGGATGA GGAAGAAGAA GAAGAAGAAG AGGTGGTGGT CGGGGCGGGA
    GATCTTAGGA GGAAGCTGGT CAGCCGGCGT AAAGCAAGAT ACCGTTCCTC CTTCCCTTCT
    TCCCTCTCAC CTCAGCACCT CCCATTGTCT CCTCACACCC TCCTTCTGCC TTCCCCCCCC
    TCCACTGCCG AGAAGGACAA GAGCCGCAAG TCCTCCAAGA GCTCCAAGGA GAGGGAGCGG
    CGCAAGCGGA AGGAGGGCAA GGTAGGGGAG GAGGAGGAGA GTAGGAGGAG GAGGAAGAAA
    AGGAAAGAGA AGGATGGTGG AGGAGAGAAG AGTGGTGAGA GGAAGGAAAG ACACAGGGAA
    AGGGAGAGGG GGCGGCGGAG TGAGAAAGAG AAGAAAACAA AGGTGGAGGA GAGAGGGAGG
    AGCAGCAGAA GCGATAGCAG GAAGAGGAAG AAGAGACGAT GGAGCACCCC GGAATCTTCA
    GCACGCCCCC GCTCACAGAA CTCCTCAGTG CAGCAAACGC ACGGGGGTCG CTCCTGGTCA
    AACACTTCAG AGGACCAACA CAGAGAGAGA GATGGGGACA GAGACCGGTA CAGAGACCGA
    GATGGGGAAC GAGATGGAGC TCGAGACAAG GACAGAAAGA AAGATGACAC CCGGAGAAGG
    GAGAGGGATG GAGACTCGAG CCGGATAAAG AGGGAAAGAG AGCGAGACGG CGTCCGCGAA
    TCGACCAGCC GAGAAAGAGG CAGCTCCAAG AGGTCCAAAG GAAGCATAGA ACGAAGGCAC
    CGGGACAGGC ACCGGGACAG GGACAGGCAC CGGGACAGGC ACCGGGACAG GGACAGGGAC
    AGAGAAAGGG ACAGGGACAG AGAAAGGGAC AGAGAGCGGG ACAGGCACCG AGACAGGGAC
    AGAGACAGGG ACAGAGAAAG GGACAGGGTC AGAGAAGAAG ACAGGGAAAG ACGTAGAGAC
    GGTCGTCCCG TGGTGCCACC GTCCATCCAA GATCTCAATG GCTCTGACCT GTTCGCCATC
    AAGCGCACCA TCACAGTCAC CACGACCACC ACCACCACTC TCCCCGGTTC CCCCCCGCTG
    GCTCCATCCT CCCCCCGCAG CCCCTCCCAG GGCTCGGACA AGCCCCACAA GAGAAAGAAG
    AAGAGGCGTC GGCGCTCGGA CGAAGAGTTG GAAGACGGCA TGGGCCGGCG TGGGAGCCGC
    TCCCTCTCGC CGCCGTCACA TTACCATGGC TACGACTCGG ACCATTTCTC AGACAAACTG
    GAGATAAACA TGCACTCTCT GGACGGGGAG GCCCTGGACT CAGACTACCC CTCTATAGAA
    GACTCCCCAC CCCCTCCCCA GCTTCTGGAA CCCGCTGCCC CCAGCGCCAA ACCCAAGACC
    GCCACCAAAC CTGGACGCCA CCACTTCAAG AAGAAATCCC GAACGGGCAC GAAAGCTGGT
    CAGTCCGAGT CGTCCTCTTC CTCCTCGGTT CGACCCAAAG GCAAGGGGCT CTCCACCTCC
    TCACTCTCCC CAACCCAGGC CGCCCTAGCC ACCCTTCCCT CGGCCAAACG AGGGCGGAAG
    ATGGGGAAGG AGAAAGAGCG CGGGGAAAAA GGGGGAAAGA AAGAGTCTGG TCGGTCTGGC
    AGGTCCAAGA AATTAAGCGG TGGTGGGAGG AAAGCCAAGC TGCAATCCAA AGTGTCAGTG
    CTCGTGCGTG AGGGCGTGAG CAGCACCACG GGGGGCCCGG TGGGCTCTGG GAAGCTGGGC
    ATGGAGCTCC TCGGGGCAGG CGGGTCAGTA GGGGGCTCTG GGATGCCGGT GGTGGGAGGT
    TCCATTGCGG TGGTCTTTAG GAGGGACAAT GAGAGCAGGT CTCCGTTCCT CAAGCCCTGC
    TCTGAGCCTC TATTGCTGAG TGGACGCAAC AAGGACCTGG GGAAGGTGGG CAAACGCAGT
    TCCCTGGCCG CTCCCCCTTC CTCCTCGCTG GCCAATCCCA CGGTGGCAAC GCTGAAGTCC
    AAGAAGGCCA AGCCCAGCTC CACCACCTCC ACTTCCTCCT CGGCGTCTTC GCCATCATCG
    TCCCTGGCAA CCAAGCGTAG GCGGCGGCTG GCTAAGAAGA CGCGGGGAGA GAAAGGCTTA
    GCCGCTGGTT TGACGGACGT GGATGGCGCC ATGGCCAACT GTAGCTCTGA GGGCGGCGGC
    TGGGGTGGGC CTTCCTCCGA CATCCAATCA GGAGTCGGGA CAAAACCCTC CAGTCCACAC
    TCTGGTCCAG CCGGTCCAAC CCCTTCCTCA TCCTCTTCTT CATCATCCTC CTCTTCTACC
    AGTGTCCTCC CCCCGTCCTC CTCACCCCCC CACACCCCTC CGCCGTCCCT CACCACCTCG
    CGTGATGCTC GGGAGTCGTC TCCCGACTCG CAGACTGTGG ACAGCAGCTG TAAGACCCCT
    GAGCCCTCCT TCCTTCCCGA GGATTGCCCT GTTCAGACCC AGAGCACCCC CAACCTGCCC
    CCCTCCAGTC CCACGTCCGT ACCCTCCTCC CAGGGGGGAG GCCTCTCACA GTACGGCCCC
    TCCAGCATGA AGCCCCTCCC TCTGGAAGAA GCCTCCAAAT CCCTGGCCTC ACCCCCTTGC
    TCCTCCTCAT CTGGCTCTGC CCTCGCCTCT CTCTCCCTTC CTCCTTCCTC CACAGACCCC
    TCCTCCTCTT CCTCTTCTTC TGTTTCTTCA TCCTCAGCCA ACAAGCTGCC ACCGCCTCCT
    CCTCCCCCTC CTGCTGCCCC TACCCTCCCC TGGAGTCTGC AGACAGGAGT GGACTGCACA
    GCCGGAGGAG TTTTAGCATT GACAGCTCTG CTGTTTAAGA TGGAAGAGGC CAATATCGCA
    AGTAGAGCCA AAGCCCAAGA GTTCATTCAT GCTACAAGCC AGATTCTCTC CCAAACCAAT
    CAGAACCATT CATCGCAGCA TGCCCCTTCC TCTTCTTCCT CCTCCCAGGT TCCTCCTCCC
    CCTGGCCCCA CCCCTGCCCA GTTCATCCTG CACAGCTCTC TCCCAATGGT GGGCTGCACC
    AAAACCCCAC CCAGCCACCT GCACCCTGGC ATGTCTATGG GTGGCGGCTG TGCCCAGACC
    CCGCCCCCTC CCATGCCCTC TGGGTTCTCG GGAGGGTCCG GGGGCTCCAG TGATATAGGC
    TGGGACAATG AGAGCAAGGA CCCTGACAAG TACCTGAAGA AGCTCCACAC TCAGGAGCGT
    GCGGTGGAGG AGGTGAAGCT GGCCATTAAG CCGTACTACC AGCGTAAAGA CATTAACAAG
    GACGACTACA AGGACATCCT GAGGAAGGCA GTACACAAGA TCTGCCACAG TCGAACGGGA
    GAGATCAACC CGGTCAAGGT GAGCAACCTG GTCAAGCTTT ATGTTCAGAG GTACAAGTAC
    TTCAGGAAGC ACGGTCGAAA GATGGACGAG GAAGAGAGGG AGGACAGAGA GATGGATTCC
    TCCTATTGA

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

    CloneID OAt13027
    Clone ID Related Accession (Same CDS sequence) XM_014192260.1
    Accession Version XM_014192260.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4323bp)
    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 1442678400000
    Organism Salmo salar(Atlantic salmon)
    Product splicing factor, arginine/serine-rich 19 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012333569.1) 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 :: Salmo salar Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    ATGCCTGCCG TCCCTCCTCC TCACGGGATC ACAGAGACTG CCAAGAGCCC CCTGCCCTCC 
    TCCACATCTC CCTCCTCTCC TTCCTCCTCT CCTGCCTCCC CACCTTCCTC TTCATCCTCC
    TCTCCTGGAG CTGTGGCAAC CAGCTACCAC AACGACATCC AGGAGGGAAG GGCCAACAGC
    GTGATGATGG GTGACGTAGT GTCCTCCACT TCCGCCTCCC TGGCTCCCCC CTCCTCTCAC
    TCTGACCCCC CTTTCTCCTC CTCTGATCCC TTGTTATGTC TCTCCCCACC CCCTGTGGGC
    ACCGACGGAC AAAAAGAGGG CGAGACGGAG ATCTACGACC CTTTTCACCC TACGGAAGGA
    GAGAGGGAGG GAGGAGCGGC CGAGGAGGAG GAGGAAGGGG AAAAGTACGA CCCCTTTGAT
    CCGACCGGCT CTCCCCCCTC AGAGAGAGAG GAGGAGGAGC GAGCGACAGG GGGAGGGAGG
    GAGAGAGGGA ACAGCGTGAG CAGCAAGGGG AGCGATGCCA GAGGGAAGAA AAGGAAGGCA
    GAGACGGGGA GGACAGGAGG AGAGGAGAAA GACAATGCTC CTCCAGACTC CACGGACACT
    CTCTCTGTTC TCCCGCTCTC CCCGCGCTCC CTCCCTCTCC CCCTCCGGAG GAGGCTGGAC
    CGAACCAAAG AGCCCCGGGT GAAAGTACGG GACAGGAGAG AGAAGGCGGA CCACTCGGAC
    CACTCTGAAA TTGAGGAGGG TGAGATCGTG GGGGCCACCG AGAGGGACGG AGGGAATAGG
    GAGGAGAGAG GCCGGGAAGG AATCGTTCCT CTCGTCCTCC CCATCTCCTC CGGCAGTCCT
    TTCCTCCACG GGGGAGCTAA GCCGGAGAGG ATCCTGAGGG TGCTGGATGG GGATAGCTTT
    GTGTCGGTGC GGGCTGAGGG GGACTGGGCG GGGCCGGTGA TGCCTGGCAG GGAGGATGGG
    GAGCCCATGG AGGAGGATGA GGAAGAAGAA GAAGAAGAAG AGGTGGTGGT CGGGGCGGGA
    GATCTTAGGA GGAAGCTGGT CAGCCGGCGT AAAGCAAGAT ACCGTTCCTC CTTCCCTTCT
    TCCCTCTCAC CTCAGCACCT CCCATTGTCT CCTCACACCC TCCTTCTGCC TTCCCCCCCC
    TCCACTGCCG AGAAGGACAA GAGCCGCAAG TCCTCCAAGA GCTCCAAGGA GAGGGAGCGG
    CGCAAGCGGA AGGAGGGCAA GGTAGGGGAG GAGGAGGAGA GTAGGAGGAG GAGGAAGAAA
    AGGAAAGAGA AGGATGGTGG AGGAGAGAAG AGTGGTGAGA GGAAGGAAAG ACACAGGGAA
    AGGGAGAGGG GGCGGCGGAG TGAGAAAGAG AAGAAAACAA AGGTGGAGGA GAGAGGGAGG
    AGCAGCAGAA GCGATAGCAG GAAGAGGAAG AAGAGACGAT GGAGCACCCC GGAATCTTCA
    GCACGCCCCC GCTCACAGAA CTCCTCAGTG CAGCAAACGC ACGGGGGTCG CTCCTGGTCA
    AACACTTCAG AGGACCAACA CAGAGAGAGA GATGGGGACA GAGACCGGTA CAGAGACCGA
    GATGGGGAAC GAGATGGAGC TCGAGACAAG GACAGAAAGA AAGATGACAC CCGGAGAAGG
    GAGAGGGATG GAGACTCGAG CCGGATAAAG AGGGAAAGAG AGCGAGACGG CGTCCGCGAA
    TCGACCAGCC GAGAAAGAGG CAGCTCCAAG AGGTCCAAAG GAAGCATAGA ACGAAGGCAC
    CGGGACAGGC ACCGGGACAG GGACAGGCAC CGGGACAGGC ACCGGGACAG GGACAGGGAC
    AGAGAAAGGG ACAGGGACAG AGAAAGGGAC AGAGAGCGGG ACAGGCACCG AGACAGGGAC
    AGAGACAGGG ACAGAGAAAG GGACAGGGTC AGAGAAGAAG ACAGGGAAAG ACGTAGAGAC
    GGTCGTCCCG TGGTGCCACC GTCCATCCAA GATCTCAATG GCTCTGACCT GTTCGCCATC
    AAGCGCACCA TCACAGTCAC CACGACCACC ACCACCACTC TCCCCGGTTC CCCCCCGCTG
    GCTCCATCCT CCCCCCGCAG CCCCTCCCAG GGCTCGGACA AGCCCCACAA GAGAAAGAAG
    AAGAGGCGTC GGCGCTCGGA CGAAGAGTTG GAAGACGGCA TGGGCCGGCG TGGGAGCCGC
    TCCCTCTCGC CGCCGTCACA TTACCATGGC TACGACTCGG ACCATTTCTC AGACAAACTG
    GAGATAAACA TGCACTCTCT GGACGGGGAG GCCCTGGACT CAGACTACCC CTCTATAGAA
    GACTCCCCAC CCCCTCCCCA GCTTCTGGAA CCCGCTGCCC CCAGCGCCAA ACCCAAGACC
    GCCACCAAAC CTGGACGCCA CCACTTCAAG AAGAAATCCC GAACGGGCAC GAAAGCTGGT
    CAGTCCGAGT CGTCCTCTTC CTCCTCGGTT CGACCCAAAG GCAAGGGGCT CTCCACCTCC
    TCACTCTCCC CAACCCAGGC CGCCCTAGCC ACCCTTCCCT CGGCCAAACG AGGGCGGAAG
    ATGGGGAAGG AGAAAGAGCG CGGGGAAAAA GGGGGAAAGA AAGAGTCTGG TCGGTCTGGC
    AGGTCCAAGA AATTAAGCGG TGGTGGGAGG AAAGCCAAGC TGCAATCCAA AGTGTCAGTG
    CTCGTGCGTG AGGGCGTGAG CAGCACCACG GGGGGCCCGG TGGGCTCTGG GAAGCTGGGC
    ATGGAGCTCC TCGGGGCAGG CGGGTCAGTA GGGGGCTCTG GGATGCCGGT GGTGGGAGGT
    TCCATTGCGG TGGTCTTTAG GAGGGACAAT GAGAGCAGGT CTCCGTTCCT CAAGCCCTGC
    TCTGAGCCTC TATTGCTGAG TGGACGCAAC AAGGACCTGG GGAAGGTGGG CAAACGCAGT
    TCCCTGGCCG CTCCCCCTTC CTCCTCGCTG GCCAATCCCA CGGTGGCAAC GCTGAAGTCC
    AAGAAGGCCA AGCCCAGCTC CACCACCTCC ACTTCCTCCT CGGCGTCTTC GCCATCATCG
    TCCCTGGCAA CCAAGCGTAG GCGGCGGCTG GCTAAGAAGA CGCGGGGAGA GAAAGGCTTA
    GCCGCTGGTT TGACGGACGT GGATGGCGCC ATGGCCAACT GTAGCTCTGA GGGCGGCGGC
    TGGGGTGGGC CTTCCTCCGA CATCCAATCA GGAGTCGGGA CAAAACCCTC CAGTCCACAC
    TCTGGTCCAG CCGGTCCAAC CCCTTCCTCA TCCTCTTCTT CATCATCCTC CTCTTCTACC
    AGTGTCCTCC CCCCGTCCTC CTCACCCCCC CACACCCCTC CGCCGTCCCT CACCACCTCG
    CGTGATGCTC GGGAGTCGTC TCCCGACTCG CAGACTGTGG ACAGCAGCTG TAAGACCCCT
    GAGCCCTCCT TCCTTCCCGA GGATTGCCCT GTTCAGACCC AGAGCACCCC CAACCTGCCC
    CCCTCCAGTC CCACGTCCGT ACCCTCCTCC CAGGGGGGAG GCCTCTCACA GTACGGCCCC
    TCCAGCATGA AGCCCCTCCC TCTGGAAGAA GCCTCCAAAT CCCTGGCCTC ACCCCCTTGC
    TCCTCCTCAT CTGGCTCTGC CCTCGCCTCT CTCTCCCTTC CTCCTTCCTC CACAGACCCC
    TCCTCCTCTT CCTCTTCTTC TGTTTCTTCA TCCTCAGCCA ACAAGCTGCC ACCGCCTCCT
    CCTCCCCCTC CTGCTGCCCC TACCCTCCCC TGGAGTCTGC AGACAGGAGT GGACTGCACA
    GCCGGAGGAG TTTTAGCATT GACAGCTCTG CTGTTTAAGA TGGAAGAGGC CAATATCGCA
    AGTAGAGCCA AAGCCCAAGA GTTCATTCAT GCTACAAGCC AGGTTCCTCC TCCCCCTGGC
    CCCACCCCTG CCCAGTTCAT CCTGCACAGC TCTCTCCCAA TGGTGGGCTG CACCAAAACC
    CCACCCAGCC ACCTGCACCC TGGCATGTCT ATGGGTGGCG GCTGTGCCCA GACCCCGCCC
    CCTCCCATGC CCTCTGGGTT CTCGGGAGGG TCCGGGGGCT CCAGTGATAT AGGCTGGGAC
    AATGAGAGCA AGGACCCTGA CAAGTACCTG AAGAAGCTCC ACACTCAGGA GCGTGCGGTG
    GAGGAGGTGA AGCTGGCCAT TAAGCCGTAC TACCAGCGTA AAGACATTAA CAAGGACGAC
    TACAAGGACA TCCTGAGGAA GGCAGTACAC AAGATCTGCC ACAGTCGAAC GGGAGAGATC
    AACCCGGTCA AGGTGAGCAA CCTGGTCAAG CTTTATGTTC AGAGGTACAA GTACTTCAGG
    AAGCACGGTC GAAAGATGGA CGAGGAAGAG AGGGAGGACA GAGAGATGGA TTCCTCCTAT
    TGA

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

    RefSeq XP_014047735.1
    CDS9..4331
    Translation

    Target ORF information:

    RefSeq Version XM_014192260.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar SR-related CTD-associated factor 1 (scaf1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014192260.1

    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
    ATGCCTGCCG TCCCTCCTCC TCACGGGATC ACAGAGACTG CCAAGAGCCC CCTGCCCTCC 
    TCCACATCTC CCTCCTCTCC TTCCTCCTCT CCTGCCTCCC CACCTTCCTC TTCATCCTCC
    TCTCCTGGAG CTGTGGCAAC CAGCTACCAC AACGACATCC AGGAGGGAAG GGCCAACAGC
    GTGATGATGG GTGACGTAGT GTCCTCCACT TCCGCCTCCC TGGCTCCCCC CTCCTCTCAC
    TCTGACCCCC CTTTCTCCTC CTCTGATCCC TTGTTATGTC TCTCCCCACC CCCTGTGGGC
    ACCGACGGAC AAAAAGAGGG CGAGACGGAG ATCTACGACC CTTTTCACCC TACGGAAGGA
    GAGAGGGAGG GAGGAGCGGC CGAGGAGGAG GAGGAAGGGG AAAAGTACGA CCCCTTTGAT
    CCGACCGGCT CTCCCCCCTC AGAGAGAGAG GAGGAGGAGC GAGCGACAGG GGGAGGGAGG
    GAGAGAGGGA ACAGCGTGAG CAGCAAGGGG AGCGATGCCA GAGGGAAGAA AAGGAAGGCA
    GAGACGGGGA GGACAGGAGG AGAGGAGAAA GACAATGCTC CTCCAGACTC CACGGACACT
    CTCTCTGTTC TCCCGCTCTC CCCGCGCTCC CTCCCTCTCC CCCTCCGGAG GAGGCTGGAC
    CGAACCAAAG AGCCCCGGGT GAAAGTACGG GACAGGAGAG AGAAGGCGGA CCACTCGGAC
    CACTCTGAAA TTGAGGAGGG TGAGATCGTG GGGGCCACCG AGAGGGACGG AGGGAATAGG
    GAGGAGAGAG GCCGGGAAGG AATCGTTCCT CTCGTCCTCC CCATCTCCTC CGGCAGTCCT
    TTCCTCCACG GGGGAGCTAA GCCGGAGAGG ATCCTGAGGG TGCTGGATGG GGATAGCTTT
    GTGTCGGTGC GGGCTGAGGG GGACTGGGCG GGGCCGGTGA TGCCTGGCAG GGAGGATGGG
    GAGCCCATGG AGGAGGATGA GGAAGAAGAA GAAGAAGAAG AGGTGGTGGT CGGGGCGGGA
    GATCTTAGGA GGAAGCTGGT CAGCCGGCGT AAAGCAAGAT ACCGTTCCTC CTTCCCTTCT
    TCCCTCTCAC CTCAGCACCT CCCATTGTCT CCTCACACCC TCCTTCTGCC TTCCCCCCCC
    TCCACTGCCG AGAAGGACAA GAGCCGCAAG TCCTCCAAGA GCTCCAAGGA GAGGGAGCGG
    CGCAAGCGGA AGGAGGGCAA GGTAGGGGAG GAGGAGGAGA GTAGGAGGAG GAGGAAGAAA
    AGGAAAGAGA AGGATGGTGG AGGAGAGAAG AGTGGTGAGA GGAAGGAAAG ACACAGGGAA
    AGGGAGAGGG GGCGGCGGAG TGAGAAAGAG AAGAAAACAA AGGTGGAGGA GAGAGGGAGG
    AGCAGCAGAA GCGATAGCAG GAAGAGGAAG AAGAGACGAT GGAGCACCCC GGAATCTTCA
    GCACGCCCCC GCTCACAGAA CTCCTCAGTG CAGCAAACGC ACGGGGGTCG CTCCTGGTCA
    AACACTTCAG AGGACCAACA CAGAGAGAGA GATGGGGACA GAGACCGGTA CAGAGACCGA
    GATGGGGAAC GAGATGGAGC TCGAGACAAG GACAGAAAGA AAGATGACAC CCGGAGAAGG
    GAGAGGGATG GAGACTCGAG CCGGATAAAG AGGGAAAGAG AGCGAGACGG CGTCCGCGAA
    TCGACCAGCC GAGAAAGAGG CAGCTCCAAG AGGTCCAAAG GAAGCATAGA ACGAAGGCAC
    CGGGACAGGC ACCGGGACAG GGACAGGCAC CGGGACAGGC ACCGGGACAG GGACAGGGAC
    AGAGAAAGGG ACAGGGACAG AGAAAGGGAC AGAGAGCGGG ACAGGCACCG AGACAGGGAC
    AGAGACAGGG ACAGAGAAAG GGACAGGGTC AGAGAAGAAG ACAGGGAAAG ACGTAGAGAC
    GGTCGTCCCG TGGTGCCACC GTCCATCCAA GATCTCAATG GCTCTGACCT GTTCGCCATC
    AAGCGCACCA TCACAGTCAC CACGACCACC ACCACCACTC TCCCCGGTTC CCCCCCGCTG
    GCTCCATCCT CCCCCCGCAG CCCCTCCCAG GGCTCGGACA AGCCCCACAA GAGAAAGAAG
    AAGAGGCGTC GGCGCTCGGA CGAAGAGTTG GAAGACGGCA TGGGCCGGCG TGGGAGCCGC
    TCCCTCTCGC CGCCGTCACA TTACCATGGC TACGACTCGG ACCATTTCTC AGACAAACTG
    GAGATAAACA TGCACTCTCT GGACGGGGAG GCCCTGGACT CAGACTACCC CTCTATAGAA
    GACTCCCCAC CCCCTCCCCA GCTTCTGGAA CCCGCTGCCC CCAGCGCCAA ACCCAAGACC
    GCCACCAAAC CTGGACGCCA CCACTTCAAG AAGAAATCCC GAACGGGCAC GAAAGCTGGT
    CAGTCCGAGT CGTCCTCTTC CTCCTCGGTT CGACCCAAAG GCAAGGGGCT CTCCACCTCC
    TCACTCTCCC CAACCCAGGC CGCCCTAGCC ACCCTTCCCT CGGCCAAACG AGGGCGGAAG
    ATGGGGAAGG AGAAAGAGCG CGGGGAAAAA GGGGGAAAGA AAGAGTCTGG TCGGTCTGGC
    AGGTCCAAGA AATTAAGCGG TGGTGGGAGG AAAGCCAAGC TGCAATCCAA AGTGTCAGTG
    CTCGTGCGTG AGGGCGTGAG CAGCACCACG GGGGGCCCGG TGGGCTCTGG GAAGCTGGGC
    ATGGAGCTCC TCGGGGCAGG CGGGTCAGTA GGGGGCTCTG GGATGCCGGT GGTGGGAGGT
    TCCATTGCGG TGGTCTTTAG GAGGGACAAT GAGAGCAGGT CTCCGTTCCT CAAGCCCTGC
    TCTGAGCCTC TATTGCTGAG TGGACGCAAC AAGGACCTGG GGAAGGTGGG CAAACGCAGT
    TCCCTGGCCG CTCCCCCTTC CTCCTCGCTG GCCAATCCCA CGGTGGCAAC GCTGAAGTCC
    AAGAAGGCCA AGCCCAGCTC CACCACCTCC ACTTCCTCCT CGGCGTCTTC GCCATCATCG
    TCCCTGGCAA CCAAGCGTAG GCGGCGGCTG GCTAAGAAGA CGCGGGGAGA GAAAGGCTTA
    GCCGCTGGTT TGACGGACGT GGATGGCGCC ATGGCCAACT GTAGCTCTGA GGGCGGCGGC
    TGGGGTGGGC CTTCCTCCGA CATCCAATCA GGAGTCGGGA CAAAACCCTC CAGTCCACAC
    TCTGGTCCAG CCGGTCCAAC CCCTTCCTCA TCCTCTTCTT CATCATCCTC CTCTTCTACC
    AGTGTCCTCC CCCCGTCCTC CTCACCCCCC CACACCCCTC CGCCGTCCCT CACCACCTCG
    CGTGATGCTC GGGAGTCGTC TCCCGACTCG CAGACTGTGG ACAGCAGCTG TAAGACCCCT
    GAGCCCTCCT TCCTTCCCGA GGATTGCCCT GTTCAGACCC AGAGCACCCC CAACCTGCCC
    CCCTCCAGTC CCACGTCCGT ACCCTCCTCC CAGGGGGGAG GCCTCTCACA GTACGGCCCC
    TCCAGCATGA AGCCCCTCCC TCTGGAAGAA GCCTCCAAAT CCCTGGCCTC ACCCCCTTGC
    TCCTCCTCAT CTGGCTCTGC CCTCGCCTCT CTCTCCCTTC CTCCTTCCTC CACAGACCCC
    TCCTCCTCTT CCTCTTCTTC TGTTTCTTCA TCCTCAGCCA ACAAGCTGCC ACCGCCTCCT
    CCTCCCCCTC CTGCTGCCCC TACCCTCCCC TGGAGTCTGC AGACAGGAGT GGACTGCACA
    GCCGGAGGAG TTTTAGCATT GACAGCTCTG CTGTTTAAGA TGGAAGAGGC CAATATCGCA
    AGTAGAGCCA AAGCCCAAGA GTTCATTCAT GCTACAAGCC AGGTTCCTCC TCCCCCTGGC
    CCCACCCCTG CCCAGTTCAT CCTGCACAGC TCTCTCCCAA TGGTGGGCTG CACCAAAACC
    CCACCCAGCC ACCTGCACCC TGGCATGTCT ATGGGTGGCG GCTGTGCCCA GACCCCGCCC
    CCTCCCATGC CCTCTGGGTT CTCGGGAGGG TCCGGGGGCT CCAGTGATAT AGGCTGGGAC
    AATGAGAGCA AGGACCCTGA CAAGTACCTG AAGAAGCTCC ACACTCAGGA GCGTGCGGTG
    GAGGAGGTGA AGCTGGCCAT TAAGCCGTAC TACCAGCGTA AAGACATTAA CAAGGACGAC
    TACAAGGACA TCCTGAGGAA GGCAGTACAC AAGATCTGCC ACAGTCGAAC GGGAGAGATC
    AACCCGGTCA AGGTGAGCAA CCTGGTCAAG CTTTATGTTC AGAGGTACAA GTACTTCAGG
    AAGCACGGTC GAAAGATGGA CGAGGAAGAG AGGGAGGACA GAGAGATGGA TTCCTCCTAT
    TGA

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