LOC106608256 cDNA ORF clone, Salmo salar(Atlantic salmon)

The following LOC106608256 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC106608256 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
OAt23109 XM_014206109.1
Latest version!
Salmo salar formin-like (LOC106608256), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
OAt23108 XM_014206108.1
Latest version!
Salmo salar formin-like (LOC106608256), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
$1159.00

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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 OAt23109
    Clone ID Related Accession (Same CDS sequence) XM_014206109.1
    Accession Version XM_014206109.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4461bp)
    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 formin-like isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012335338.1) annotated using gene prediction method: Gnomon. 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
    4441
    ATGAACGGAG TGAACACTAA CGACAACACT GACGCCGCTC AGGGGAAGGC CTCTTCCAAC 
    TCATTCCTTG ACAGATTCTC CACCGTCTTT ACTCACCCAG ACAGGTCAGA GTCTCAGCGG
    CCTGACGACA TGATGGCGGT CCTGAAGTTC TTCCAGACTC TCTCTGAAGA GAGCGAGACA
    GACACTTCTC CCAACACTTC TCCTGGGAAC ATCCACAGCA GTCATGAAGT TGTTGAAGTC
    AATGGAAATG AGAGGACAGA AGGAAAGGAT TCAAGTGCAG TAGGTGTGGT GCAGAAGAAT
    GGAGAATCCA CCACTACCAC CACAGTTATG GAACATGACA GCATGAATGG AACTCTGGGC
    CAGATGACTG TAGTACCGAG GAACATGGAC TCAGAAAAGG AAGAGAATGC AAACAGCAAC
    TGTCTTGTCC AACCAGAAGA CATCATTTCA GAGTCTCATT TAGGTATATA TGGTGAGTCA
    ACAGACCAAC CAGATGATTG CATTTCAGAA AGGCTGTCCT ACTTACAAGG ATATAGTGGG
    TCAACTGACC CTGTTGAACA GAGAGTGATG ATAAACAAAC ATAGGAACAG TGTGTCTTCA
    GAGGACTGCA GTATGAAGGA GCCTATAGAC ACACAAAATA CCACAGACAC AGCCAATCAG
    GACATGACAA CTGACTGTCC CAGTACAGAC AAGTTGGAAT CAACTGACCA GCACAGTCAG
    TGTGTGTCAA CAAACAACCG TCATCAAGAT AGGGTCACAA ACAATTATGA TAAAGACAAA
    GTCAAGGAGA TGAAGCACAC AGAGGTGTCG ACAGACAACT ACAACAGGCT GGCCTGGTTA
    ACAGACAGTG AAACCAATCC ACGAGCCAGA AGTTATCAGG AAATATTTAC ATATGATAAC
    CACAGCCAAG ACTCACCTGC TGACAGCAAA GACTTACCTG CTGCTGATGT TGTAGCCACA
    GACCTTGCTA ACCCCTCTGC AGTAATGGCT GGGGAACCTG CTACTAGTAC ACCACTACCT
    TCAAACACCA GAAAACTGGT GATAACCATG ACCAGGACTG AGCCTATATC TGATGACCGG
    CAGCATACAG TCTCTGAAAC TGAGAGCCTG TTAGAGGCTG GAGATCCTGA AACTGAGAGC
    CTGTTAGAGG CTGGAGATCC TGAAACTGAG AGACAGTTAG AGGCTGGAGA GGCTGAAACT
    GAGAGTCTGT TAGAGGTTGG AGAGGCTGAA ACTGAGAGAC TGTTAGAAGC TGGAGATCCT
    GAAACTGAGA GTCTGTTAGA GGCTGGAGAG GCTGAAACTG AGAGTCTGTT AGAAGCTGGA
    GAGGCTGAAA CTGAGAGCCT GTTAGAGGCT GGAGATCCTG AAACTGAGAG TCTGTTAGAG
    GCTGGAGAGG CTGAAACTGA GAGTCTGTTA GAAGCTGGAG AGGCTGAAAC TGAGAGACTA
    TTAGAAGCTG GAGAGGCTGA AACTGAGAGC CTGTTAAAGG CTGGGGAGAC TGTTAATGCA
    CTGGTCGAGG AACTTCCTCA CGCATCTGTT CCTGTGTCTG AGATCACAGC CCATTCTACA
    GCCCAGTCCT CTCAGCCCTG TAGCCCCCAG GATGGAGTCC CAACCCCAGC CCCAGCCAGT
    CCCCAGGATG GAGTCCCAAC CCCAGCACCA GCCAGTCCCC AGGATGGAGT CCCAACCCCA
    GCACCAGCCA GTCCCCAGGA TGGAGCCCCA ACCCCAGCAC CAGCCAGTCC CCAGGACGGG
    CTCCCAGCAC CAGCCAGTCC CCAGGATGGG CTCCCAGCCT TAACCCCAGG TCCAACCAGT
    GGCCCTCCCT CTGGCACCAT CTCCACCAGA ACCACCTTCT CCCCCGGTTC CCCCGTGGAC
    AAGCCCCTCC AATTCCCTGC CTTGTTCAGT GGTCTGAGGA TCCCAAAGAA GGGGGCGACA
    GTGCCGGAAC AGGACATAGT GGGCAAGATC AAAACATCAA CCCCAGCAGG CCTGAGTGTG
    GACAAGCTTG TGAGGAGAAA GCTGAAGGCA GTTCGCAGGA GGCAGGGGAG CTTCTTGGAC
    CAGCTCTCCC AGTTCCTGAA CCTGGAGAAG GATGTTAACA GTAAGACAGA GGAGTTTACA
    GGAGAGGACA GGAGGGAGTT TACAGGAAAG GAGAGGAAGG AGTCTACAGA AGAGGAGAGG
    AGGAAGTATT CAGGAGAGGA CAGGAGGGAG TCTACAGGAG AGGAGAGGAG GGAATCTTCA
    GGAGAGGACA GGTGGGAGTC TACAGCAGAG TACAGGAGGG AGTCAGAACC CTCAGACGAG
    ACCGAAGGAG TCAGAGTTGA ACCTGAGGAT GGGATGGAGG AGAAGGAGAA GGAGAAGACA
    GAACAGGAAG AGGGAGGAGA ACAGCAGAAA ACAGGAGAGG AGAAAAAGAC AGACCAGGAC
    ACAGAGAAAG AGAAGACTGA AGTTCTGTCT TTGATAGAGC CTCCGGAATC TTCAGAACCT
    TCACAGACTC TAGAATTCTC AGAACCTTTA GAACCTCAGA AGCCTCCTCC CTCCAGTGCT
    GAGGTGGCGT TCGATGCCTT CAAGGCCTTC TTCATCCCCA GGCCCCTGAG GAGAGAGGGA
    GACAGGGGCG ACCAGGAGGC AAAGAGGAAG GCCTGGATCT TTGAGAGAAC CTCCAAGACT
    CCTGAAAAGA AAAACATCAC TGACTCAAAA CCGGAGGCAT CGATCTCAGG TGATGGAGAG
    GACCGGTCCA CCCCAGGCCG TCTGCAGGCC ATCTGGCCCC CGACTAAGGA GGAGAAGGTT
    GGACTGAAAT ACACAGAAGC AGAACACCAG GCAGCCCTCC TGCAGCTGAA GAGAGAATGC
    AACGAGGAGG TGGAGAAAAT ACAGGAGGAC TATAGGAAGC AGCTGCGCCA GCTGAGAGGG
    GACAACGAAG AGTGTGTATC CCATCTGGAG GTCACCTTGG CCAGGCTACA AAGTGACTTG
    GCCCTGGGTG CCCACCACCG CCGTGGAGAC CTCCGAGACG TGGCCGTATC CACGGGAGAT
    GACCTCTCAT CCCGGGCCTT CCACACTGTG TGCGTCCAGA CGGACCACAT GACCTTCCCC
    CAACCCCCCC TCAACTTGCC TAAGAGACTG GACCTGGCTT CTATCAGTCT AAATCTGTCT
    GGACAGGCTA CCGCTCCCTC TTCTTCCCCC GTTCATCTCC CTCTACCTCC TGCTCCTCCA
    CTCCCACTAT CCGAGCCACC TGCACCTCAT GAAGGCTTAT TATCAGGCAA CCTAGCCCTT
    CCTCCCCCTC CTCCTCCTCC TCTTCCTTTC CTTCCTGCTC TAACCCAGAC CCAGGGACTC
    GACGGGCCCC CTCCATCTCT TCCACCCCCT CCACCAGGGT CCGCCCCTCC ACCTCCACCC
    CCTCCACCAG GCTGTGGCCC CCCACCACCT CCCCCTCCAG GGTGTCTGAC CTTCAGTACC
    ATGCTAGATA AACCCCCCAG GAAGCCGGCT GTGCAACCAG CCTGCCCCAT GAAGCCTCTC
    TACTGGACCA GGATACAGAC ACAGGACAAC AATAAAGACA CACTGTGGAA CTCTCTTGAG
    GAACCCGACA TCATCAACAC CACAGAGTTT GAAGACCTGT TCTCCAAGAC CACCATACAG
    ACCAAGAGAA GACCTCTGGC AGAGGCCTAT GAGAAGAAAG CCAAGGCCAA GAAGATCATG
    AAGCTTCTGG ATGGGAAGCG TTCCCAGGCC GTTGGGATAC TCATCTCTAG TCTGCACCTG
    GAGATGAAGG ACATACAGCA AGCTGTGCTG AATGTGGACA ACTCCGTAGT GGACGTGGAA
    ACCATCCAGG CTTTATACGA AAACAGAGCC CAGCCTGATG AGCTGGAGCG GATAAAGAAA
    CACTACCAAA CTTTCGAGGA GGAGCAGGTC AAGCTGCTGG ACAAACCTGA ACAGTTCCTG
    TTTGAGTTAT CTCAGATACC AGACTTCCCA GACAGGGCTT CATGTATCAT CTTCCAGTCT
    GTCTTCATAG ACGCCATCGC CTCCATTCAG CACAAGTTGG ACATTGTCTC TCGCGTCTGC
    AAGGATCTGA TGGACACCTC CAGTGTGAGG GAAGTGATGG GTCTGATTCT AGCCCTGGGG
    AACCATATGA ACGGGGGCAA CAGGACCAGA GGACAGGCTG ACGGCTTTGG ACTGGAGATC
    CTGCCCAAAC TAAAGGACGT CAAGAGCAGG GACAATCGTA TCAGTTTGGT TGACTATGTG
    ACATCGTACT ATCTCCGCAA CCTGGACGAG AACGCTGGAA CAGAGAGAAG TGTCTTCCCT
    CTCCCTGAGC CTCAGGATGT GTTCCTGGCT GCCCAGGTCA AGTTTGAAGA CATCACCAAG
    GACCTGAGAC AGCTGAGACG AGACCTGACA GTGTGTGAGA AAGGAGTTCA GAAGGTGTGT
    TCCAGCTCAT CTGAAGAACA TCTCCAGCCA TTTAAGGACA AAATGGAGTC GTTTGTTCTG
    ATTGCTTCCA CGAGCTGGTG A

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

    RefSeq XP_014061584.1
    CDS1167..5627
    Translation

    Target ORF information:

    RefSeq Version XM_014206109.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar formin-like (LOC106608256), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014206109.1

    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
    ATGAACGGAG TGAACACTAA CGACAACACT GACGCCGCTC AGGGGAAGGC CTCTTCCAAC 
    TCATTCCTTG ACAGATTCTC CACCGTCTTT ACTCACCCAG ACAGGTCAGA GTCTCAGCGG
    CCTGACGACA TGATGGCGGT CCTGAAGTTC TTCCAGACTC TCTCTGAAGA GAGCGAGACA
    GACACTTCTC CCAACACTTC TCCTGGGAAC ATCCACAGCA GTCATGAAGT TGTTGAAGTC
    AATGGAAATG AGAGGACAGA AGGAAAGGAT TCAAGTGCAG TAGGTGTGGT GCAGAAGAAT
    GGAGAATCCA CCACTACCAC CACAGTTATG GAACATGACA GCATGAATGG AACTCTGGGC
    CAGATGACTG TAGTACCGAG GAACATGGAC TCAGAAAAGG AAGAGAATGC AAACAGCAAC
    TGTCTTGTCC AACCAGAAGA CATCATTTCA GAGTCTCATT TAGGTATATA TGGTGAGTCA
    ACAGACCAAC CAGATGATTG CATTTCAGAA AGGCTGTCCT ACTTACAAGG ATATAGTGGG
    TCAACTGACC CTGTTGAACA GAGAGTGATG ATAAACAAAC ATAGGAACAG TGTGTCTTCA
    GAGGACTGCA GTATGAAGGA GCCTATAGAC ACACAAAATA CCACAGACAC AGCCAATCAG
    GACATGACAA CTGACTGTCC CAGTACAGAC AAGTTGGAAT CAACTGACCA GCACAGTCAG
    TGTGTGTCAA CAAACAACCG TCATCAAGAT AGGGTCACAA ACAATTATGA TAAAGACAAA
    GTCAAGGAGA TGAAGCACAC AGAGGTGTCG ACAGACAACT ACAACAGGCT GGCCTGGTTA
    ACAGACAGTG AAACCAATCC ACGAGCCAGA AGTTATCAGG AAATATTTAC ATATGATAAC
    CACAGCCAAG ACTCACCTGC TGACAGCAAA GACTTACCTG CTGCTGATGT TGTAGCCACA
    GACCTTGCTA ACCCCTCTGC AGTAATGGCT GGGGAACCTG CTACTAGTAC ACCACTACCT
    TCAAACACCA GAAAACTGGT GATAACCATG ACCAGGACTG AGCCTATATC TGATGACCGG
    CAGCATACAG TCTCTGAAAC TGAGAGCCTG TTAGAGGCTG GAGATCCTGA AACTGAGAGC
    CTGTTAGAGG CTGGAGATCC TGAAACTGAG AGACAGTTAG AGGCTGGAGA GGCTGAAACT
    GAGAGTCTGT TAGAGGTTGG AGAGGCTGAA ACTGAGAGAC TGTTAGAAGC TGGAGATCCT
    GAAACTGAGA GTCTGTTAGA GGCTGGAGAG GCTGAAACTG AGAGTCTGTT AGAAGCTGGA
    GAGGCTGAAA CTGAGAGCCT GTTAGAGGCT GGAGATCCTG AAACTGAGAG TCTGTTAGAG
    GCTGGAGAGG CTGAAACTGA GAGTCTGTTA GAAGCTGGAG AGGCTGAAAC TGAGAGACTA
    TTAGAAGCTG GAGAGGCTGA AACTGAGAGC CTGTTAAAGG CTGGGGAGAC TGTTAATGCA
    CTGGTCGAGG AACTTCCTCA CGCATCTGTT CCTGTGTCTG AGATCACAGC CCATTCTACA
    GCCCAGTCCT CTCAGCCCTG TAGCCCCCAG GATGGAGTCC CAACCCCAGC CCCAGCCAGT
    CCCCAGGATG GAGTCCCAAC CCCAGCACCA GCCAGTCCCC AGGATGGAGT CCCAACCCCA
    GCACCAGCCA GTCCCCAGGA TGGAGCCCCA ACCCCAGCAC CAGCCAGTCC CCAGGACGGG
    CTCCCAGCAC CAGCCAGTCC CCAGGATGGG CTCCCAGCCT TAACCCCAGG TCCAACCAGT
    GGCCCTCCCT CTGGCACCAT CTCCACCAGA ACCACCTTCT CCCCCGGTTC CCCCGTGGAC
    AAGCCCCTCC AATTCCCTGC CTTGTTCAGT GGTCTGAGGA TCCCAAAGAA GGGGGCGACA
    GTGCCGGAAC AGGACATAGT GGGCAAGATC AAAACATCAA CCCCAGCAGG CCTGAGTGTG
    GACAAGCTTG TGAGGAGAAA GCTGAAGGCA GTTCGCAGGA GGCAGGGGAG CTTCTTGGAC
    CAGCTCTCCC AGTTCCTGAA CCTGGAGAAG GATGTTAACA GTAAGACAGA GGAGTTTACA
    GGAGAGGACA GGAGGGAGTT TACAGGAAAG GAGAGGAAGG AGTCTACAGA AGAGGAGAGG
    AGGAAGTATT CAGGAGAGGA CAGGAGGGAG TCTACAGGAG AGGAGAGGAG GGAATCTTCA
    GGAGAGGACA GGTGGGAGTC TACAGCAGAG TACAGGAGGG AGTCAGAACC CTCAGACGAG
    ACCGAAGGAG TCAGAGTTGA ACCTGAGGAT GGGATGGAGG AGAAGGAGAA GGAGAAGACA
    GAACAGGAAG AGGGAGGAGA ACAGCAGAAA ACAGGAGAGG AGAAAAAGAC AGACCAGGAC
    ACAGAGAAAG AGAAGACTGA AGTTCTGTCT TTGATAGAGC CTCCGGAATC TTCAGAACCT
    TCACAGACTC TAGAATTCTC AGAACCTTTA GAACCTCAGA AGCCTCCTCC CTCCAGTGCT
    GAGGTGGCGT TCGATGCCTT CAAGGCCTTC TTCATCCCCA GGCCCCTGAG GAGAGAGGGA
    GACAGGGGCG ACCAGGAGGC AAAGAGGAAG GCCTGGATCT TTGAGAGAAC CTCCAAGACT
    CCTGAAAAGA AAAACATCAC TGACTCAAAA CCGGAGGCAT CGATCTCAGG TGATGGAGAG
    GACCGGTCCA CCCCAGGCCG TCTGCAGGCC ATCTGGCCCC CGACTAAGGA GGAGAAGGTT
    GGACTGAAAT ACACAGAAGC AGAACACCAG GCAGCCCTCC TGCAGCTGAA GAGAGAATGC
    AACGAGGAGG TGGAGAAAAT ACAGGAGGAC TATAGGAAGC AGCTGCGCCA GCTGAGAGGG
    GACAACGAAG AGTGTGTATC CCATCTGGAG GTCACCTTGG CCAGGCTACA AAGTGACTTG
    GCCCTGGGTG CCCACCACCG CCGTGGAGAC CTCCGAGACG TGGCCGTATC CACGGGAGAT
    GACCTCTCAT CCCGGGCCTT CCACACTGTG TGCGTCCAGA CGGACCACAT GACCTTCCCC
    CAACCCCCCC TCAACTTGCC TAAGAGACTG GACCTGGCTT CTATCAGTCT AAATCTGTCT
    GGACAGGCTA CCGCTCCCTC TTCTTCCCCC GTTCATCTCC CTCTACCTCC TGCTCCTCCA
    CTCCCACTAT CCGAGCCACC TGCACCTCAT GAAGGCTTAT TATCAGGCAA CCTAGCCCTT
    CCTCCCCCTC CTCCTCCTCC TCTTCCTTTC CTTCCTGCTC TAACCCAGAC CCAGGGACTC
    GACGGGCCCC CTCCATCTCT TCCACCCCCT CCACCAGGGT CCGCCCCTCC ACCTCCACCC
    CCTCCACCAG GCTGTGGCCC CCCACCACCT CCCCCTCCAG GGTGTCTGAC CTTCAGTACC
    ATGCTAGATA AACCCCCCAG GAAGCCGGCT GTGCAACCAG CCTGCCCCAT GAAGCCTCTC
    TACTGGACCA GGATACAGAC ACAGGACAAC AATAAAGACA CACTGTGGAA CTCTCTTGAG
    GAACCCGACA TCATCAACAC CACAGAGTTT GAAGACCTGT TCTCCAAGAC CACCATACAG
    ACCAAGAGAA GACCTCTGGC AGAGGCCTAT GAGAAGAAAG CCAAGGCCAA GAAGATCATG
    AAGCTTCTGG ATGGGAAGCG TTCCCAGGCC GTTGGGATAC TCATCTCTAG TCTGCACCTG
    GAGATGAAGG ACATACAGCA AGCTGTGCTG AATGTGGACA ACTCCGTAGT GGACGTGGAA
    ACCATCCAGG CTTTATACGA AAACAGAGCC CAGCCTGATG AGCTGGAGCG GATAAAGAAA
    CACTACCAAA CTTTCGAGGA GGAGCAGGTC AAGCTGCTGG ACAAACCTGA ACAGTTCCTG
    TTTGAGTTAT CTCAGATACC AGACTTCCCA GACAGGGCTT CATGTATCAT CTTCCAGTCT
    GTCTTCATAG ACGCCATCGC CTCCATTCAG CACAAGTTGG ACATTGTCTC TCGCGTCTGC
    AAGGATCTGA TGGACACCTC CAGTGTGAGG GAAGTGATGG GTCTGATTCT AGCCCTGGGG
    AACCATATGA ACGGGGGCAA CAGGACCAGA GGACAGGCTG ACGGCTTTGG ACTGGAGATC
    CTGCCCAAAC TAAAGGACGT CAAGAGCAGG GACAATCGTA TCAGTTTGGT TGACTATGTG
    ACATCGTACT ATCTCCGCAA CCTGGACGAG AACGCTGGAA CAGAGAGAAG TGTCTTCCCT
    CTCCCTGAGC CTCAGGATGT GTTCCTGGCT GCCCAGGTCA AGTTTGAAGA CATCACCAAG
    GACCTGAGAC AGCTGAGACG AGACCTGACA GTGTGTGAGA AAGGAGTTCA GAAGGTGTGT
    TCCAGCTCAT CTGAAGAACA TCTCCAGCCA TTTAAGGACA AAATGGAGTC GTTTGTTCTG
    ATTGCTTCCA CGAGCTGGTG A

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

    CloneID OAt23108
    Clone ID Related Accession (Same CDS sequence) XM_014206108.1
    Accession Version XM_014206108.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4776bp)
    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 formin-like isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012335338.1) 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
    4441
    4501
    4561
    4621
    4681
    4741
    ATGAACGGAG TGAACACTAA CGACAACACT GACGCCGCTC AGGGGAAGGC CTCTTCCAAC 
    TCATTCCTTG ACAGATTCTC CACCGTCTTT ACTCACCCAG ACAGGTCAGA GTCTCAGCGG
    CCTGACGACA TGATGGCGGT CCTGAAGTTC TTCCAGACTC TCTCTGAAGA GAGCGAGACA
    GACACTTCTC CCAACACTTC TCCTGGGAAC ATCCACAGCA GTCATGAAGT TGTTGAAGTC
    AATGGAAATG AGAGGACAGA AGGAAAGGAT TCAAGTGCAG TAGGTGTGGT GCAGAAGAAT
    GGAGAATCCA CCACTACCAC CACAGTTATG GAACATGACA GCATGAATGG AACTCTGGGC
    CAGATGACTG TAGTACCGAG GAACATGGAC TCAGAAAAGG AAGAGAATGC AAACAGCAAC
    TGTCTTGTCC AACCAGAAGA CATCATTTCA GAGTCTCATT TAGGTATATA TGGTGAGTCA
    ACAGACCAAC CAGATGATTG CATTTCAGAA AGGCTGTCCT ACTTACAAGG ATATAGTGGG
    TCAACTGACC CTGTTGAACA GAGAGTGATG ATAAACAAAC ATAGGAACAG TGTGTCTTCA
    GAGGACTGCA GTATGAAGGA GCCTATAGAC ACACAAAATA CCACAGACAC AGCCAATCAG
    GACATGACAA CTGACTGTCC CAGTACAGAC AAGTTGGAAT CAACTGACCA GCACAGTCAG
    TGTGTGTCAA CAAACAACCG TCATCAAGAT AGGGTCACAA ACAATTATGA TAAAGACAAA
    GTCAAGGAGA TGAAGCACAC AGAGGTGTCG ACAGACAACT ACAACAGGCT GGCCTGGTTA
    ACAGACAGTG AAACCAATCC ACGAGCCAGA AGTTATCAGG AAATATTTAC ATATGATAAC
    CACAGCCAAG ACTCACCTGC TGACAGCAAA GACTTACCTG CTGCTGATGT TGTAGCCACA
    GACCTTGCTA ACCCCTCTGC AGTAATGGCT GGGGAACCTG CTACTAGTAC ACCACTACCT
    TCAAACACCA GAAAACTGGT GATAACCATG ACCAGGACTG AGCCTATATC TGATGACCGG
    CAGCATACAG TCTCTGAAAC TGAGAGCCTG TTAGAGGCTG GAGATCCTGA AACTGAGAGC
    CTGTTAGAGG CTGGAGATCC TGAAACTGAG AGACAGTTAG AGGCTGGAGA GGCTGAAACT
    GAGAGTCTGT TAGAGGTTGG AGAGGCTGAA ACTGAGAGAC TGTTAGAAGC TGGAGATCCT
    GAAACTGAGA GTCTGTTAGA GGCTGGAGAG GCTGAAACTG AGAGTCTGTT AGAAGCTGGA
    GAGGCTGAAA CTGAGAGCCT GTTAGAGGCT GGAGATCCTG AAACTGAGAG TCTGTTAGAG
    GCTGGAGAGG CTGAAACTGA GAGTCTGTTA GAAGCTGGAG AGGCTGAAAC TGAGAGACTA
    TTAGAAGCTG GAGAGGCTGA AACTGAGAGC CTGTTAAAGG CTGGGGAGAC TGTTAATGCA
    CTGGTCGAGG AACTTCCTCA CGCATCTGTT CCTGTGTCTG AGATCACAGC CCATTCTACA
    GCCCAGTCCT CTCAGCCCTG TAGCCCCCAG GATGGAGTCC CAACCCCAGC CCCAGCCAGT
    CCCCAGGATG GAGTCCCAAC CCCAGCACCA GCCAGTCCCC AGGATGGAGT CCCAACCCCA
    GCACCAGCCA GTCCCCAGGA TGGAGCCCCA ACCCCAGCAC CAGCCAGTCC CCAGGACGGG
    CTCCCAGCAC CAGCCAGTCC CCAGGATGGG CTCCCAGCCT TAACCCCAGG TCCAACCAGT
    GGCCCTCCCT CTGGCACCAT CTCCACCAGA ACCACCTTCT CCCCCGGTTC CCCCGTGGAC
    AAGCCCCTCC AATTCCCTGC CTTGTTCAGT GGTCTGAGGA TCCCAAAGAA GGGGGCGACA
    GTGCCGGAAC AGGACATAGT GGGCAAGATC AAAACATCAA CCCCAGCAGG CCTGAGTGTG
    GACAAGCTTG TGAGGAGAAA GCTGAAGGCA GTTCGCAGGA GGCAGGGGAG CTTCTTGGAC
    CAGCTCTCCC AGTTCCTGAA CCTGGAGAAG GATGTTAACA GTAAGACAGA GGAGTTTACA
    GGAGAGGACA GGAGGGAGTT TACAGGAAAG GAGAGGAAGG AGTCTACAGA AGAGGAGAGG
    AGGAAGTATT CAGGAGAGGA CAGGAGGGAG TCTACAGGAG AGGAGAGGAG GGAATCTTCA
    GGAGAGGACA GGTGGGAGTC TACAGCAGAG TACAGGAGGG AGTCAGAACC CTCAGACGAG
    ACCGAAGGAG TCAGAGTTGA ACCTGAGGAT GGGATGGAGG AGAAGGAGAA GGAGAAGACA
    GAACAGGAAG AGGGAGGAGA ACAGCAGAAA ACAGGAGAGG AGAAAAAGAC AGACCAGGAC
    ACAGAGAAAG AGAAGACTGA AGTTCTGTCT TTGATAGAGC CTCCGGAATC TTCAGAACCT
    TCACAGACTC TAGAATTCTC AGAACCTTTA GAACCTCAGA AGCCTCCTCC CTCCAGTGCT
    GAGGTGGCGT TCGATGCCTT CAAGGCCTTC TTCATCCCCA GGCCCCTGAG GAGAGAGGGA
    GACAGGGGCG ACCAGGAGGC AAAGAGGAAG GCCTGGATCT TTGAGAGAAC CTCCAAGACT
    CCTGAAAAGA AAAACATCAC TGACTCAAAA CCGGAGGCAT CGATCTCAGG TGATGGAGAG
    GACCGGTCCA CCCCAGGCCG TCTGCAGGCC ATCTGGCCCC CGACTAAGGA GGAGAAGGTT
    GGACTGAAAT ACACAGAAGC AGAACACCAG GCAGCCCTCC TGCAGCTGAA GAGAGAATGC
    AACGAGGAGG TGGAGAAAAT ACAGGAGGAC TATAGGAAGC AGCTGCGCCA GCTGAGAGGG
    GACAACGAAG AGTGTGTATC CCATCTGGAG GTCACCTTGG CCAGGCTACA AAGTGACTTG
    GCCCTGGGTG CCCACCACCG CCGTGGAGAC CTCCGAGACG TGGCCGTATC CACGGGAGAT
    GACCTCTCAT CCCGGGCCTT CCACACTGTG TGCGTCCAGA CGGACCACAT GACCTTCCCC
    CAACCCCCCC TCAACTTGCC TAAGAGACTG GACCTGGCTT CTATCAGTCT AAATCTGTCT
    GGACAGGCTA CCGCTCCCTC TTCTTCCCCC GTTCATCTCC CTCTACCTCC TGCTCCTCCA
    CTCCCACTAT CCGAGCCACC TGCACCTCAT GAAGGCTTAT TATCAGGCAA CCTAGCCCTT
    CCTCCCCCTC CTCCTCCTCC TCTTCCTTTC CTTCCTGCTC TAACCCAGAC CCAGGGACTC
    GACGGGCCCC CTCCATCTCT TCCACCCCCT CCACCAGGGT CCGCCCCTCC ACCTCCACCC
    CCTCCACCAG GCTGTGGCCC CCCACCACCT CCCCCTCCAG GGTGTCTGAC CTTCAGTACC
    ATGCTAGATA AACCCCCCAG GAAGCCGGCT GTGCAACCAG CCTGCCCCAT GAAGCCTCTC
    TACTGGACCA GGATACAGAC ACAGGACAAC AATAAAGACA CACTGTGGAA CTCTCTTGAG
    GAACCCGACA TCATCAACAC CACAGAGTTT GAAGACCTGT TCTCCAAGAC CACCATACAG
    ACCAAGAGAA GACCTCTGGC AGAGGCCTAT GAGAAGAAAG CCAAGGCCAA GAAGATCATG
    AAGCTTCTGG ATGGGAAGCG TTCCCAGGCC GTTGGGATAC TCATCTCTAG TCTGCACCTG
    GAGATGAAGG ACATACAGCA AGCTGTGCTG AATGTGGACA ACTCCGTAGT GGACGTGGAA
    ACCATCCAGG CTTTATACGA AAACAGAGCC CAGCCTGATG AGCTGGAGCG GATAAAGAAA
    CACTACCAAA CTTTCGAGGA GGAGCAGGTC AAGCTGCTGG ACAAACCTGA ACAGTTCCTG
    TTTGAGTTAT CTCAGATACC AGACTTCCCA GACAGGGCTT CATGTATCAT CTTCCAGTCT
    GTCTTCATAG ACGCCATCGC CTCCATTCAG CACAAGTTGG ACATTGTCTC TCGCGTCTGC
    AAGGATCTGA TGGACACCTC CAGTGTGAGG GAAGTGATGG GTCTGATTCT AGCCCTGGGG
    AACCATATGA ACGGGGGCAA CAGGACCAGA GGACAGGCTG ACGGCTTTGG ACTGGAGATC
    CTGCCCAAAC TAAAGGACGT CAAGAGCAGG GACAATCGTA TCAGTTTGGT TGACTATGTG
    ACATCGTACT ATCTCCGCAA CCTGGACGAG AACGCTGGAA CAGAGAGAAG TGTCTTCCCT
    CTCCCTGAGC CTCAGGATGT GTTCCTGGCT GCCCAGGTCA AGTTTGAAGA CATCACCAAG
    GACCTGAGAC AGCTGAGACG AGACCTGACA GTGTGTGAGA AAGGAGTTCA GAAGGTGTGT
    TCCAGCTCAT CTGAAGAACA TCTCCAGCCA TTTAAGGACA AAATGGAGTC GTTTGTTCTG
    ATTGCGAGTA ATGAACAAGA TGAAGTGCAT GCCCAGTTGA TGTTTGCACA AAAAAGCTTC
    CACGAGCTGG TGACGTTCTT AGGGTTGAAG CCCAAGACAG GAGAGACTGA AGTGGCGACA
    GGTCACTTCT TTATGCTGTG GTTTGAGTTC TGTACCGACT TCAAGACCAG GTGGAAGAGA
    GAGAACAAGA ATATATCCAA AGAGAGGCTG AAAGAGGCCC AGCTGTCGGT GAAGAAGATT
    ACAGCAGACA AGAAGGTGGA GACTAGGAAG ATCAACCCTA ATAGTCTGAA AGACAGGCTA
    CGCCAGAAGG AAGCTAACAT GGTGGCCACA AGCTGA

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

    RefSeq XP_014061583.1
    CDS1167..5942
    Translation

    Target ORF information:

    RefSeq Version XM_014206108.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar formin-like (LOC106608256), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014206108.1

    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
    ATGAACGGAG TGAACACTAA CGACAACACT GACGCCGCTC AGGGGAAGGC CTCTTCCAAC 
    TCATTCCTTG ACAGATTCTC CACCGTCTTT ACTCACCCAG ACAGGTCAGA GTCTCAGCGG
    CCTGACGACA TGATGGCGGT CCTGAAGTTC TTCCAGACTC TCTCTGAAGA GAGCGAGACA
    GACACTTCTC CCAACACTTC TCCTGGGAAC ATCCACAGCA GTCATGAAGT TGTTGAAGTC
    AATGGAAATG AGAGGACAGA AGGAAAGGAT TCAAGTGCAG TAGGTGTGGT GCAGAAGAAT
    GGAGAATCCA CCACTACCAC CACAGTTATG GAACATGACA GCATGAATGG AACTCTGGGC
    CAGATGACTG TAGTACCGAG GAACATGGAC TCAGAAAAGG AAGAGAATGC AAACAGCAAC
    TGTCTTGTCC AACCAGAAGA CATCATTTCA GAGTCTCATT TAGGTATATA TGGTGAGTCA
    ACAGACCAAC CAGATGATTG CATTTCAGAA AGGCTGTCCT ACTTACAAGG ATATAGTGGG
    TCAACTGACC CTGTTGAACA GAGAGTGATG ATAAACAAAC ATAGGAACAG TGTGTCTTCA
    GAGGACTGCA GTATGAAGGA GCCTATAGAC ACACAAAATA CCACAGACAC AGCCAATCAG
    GACATGACAA CTGACTGTCC CAGTACAGAC AAGTTGGAAT CAACTGACCA GCACAGTCAG
    TGTGTGTCAA CAAACAACCG TCATCAAGAT AGGGTCACAA ACAATTATGA TAAAGACAAA
    GTCAAGGAGA TGAAGCACAC AGAGGTGTCG ACAGACAACT ACAACAGGCT GGCCTGGTTA
    ACAGACAGTG AAACCAATCC ACGAGCCAGA AGTTATCAGG AAATATTTAC ATATGATAAC
    CACAGCCAAG ACTCACCTGC TGACAGCAAA GACTTACCTG CTGCTGATGT TGTAGCCACA
    GACCTTGCTA ACCCCTCTGC AGTAATGGCT GGGGAACCTG CTACTAGTAC ACCACTACCT
    TCAAACACCA GAAAACTGGT GATAACCATG ACCAGGACTG AGCCTATATC TGATGACCGG
    CAGCATACAG TCTCTGAAAC TGAGAGCCTG TTAGAGGCTG GAGATCCTGA AACTGAGAGC
    CTGTTAGAGG CTGGAGATCC TGAAACTGAG AGACAGTTAG AGGCTGGAGA GGCTGAAACT
    GAGAGTCTGT TAGAGGTTGG AGAGGCTGAA ACTGAGAGAC TGTTAGAAGC TGGAGATCCT
    GAAACTGAGA GTCTGTTAGA GGCTGGAGAG GCTGAAACTG AGAGTCTGTT AGAAGCTGGA
    GAGGCTGAAA CTGAGAGCCT GTTAGAGGCT GGAGATCCTG AAACTGAGAG TCTGTTAGAG
    GCTGGAGAGG CTGAAACTGA GAGTCTGTTA GAAGCTGGAG AGGCTGAAAC TGAGAGACTA
    TTAGAAGCTG GAGAGGCTGA AACTGAGAGC CTGTTAAAGG CTGGGGAGAC TGTTAATGCA
    CTGGTCGAGG AACTTCCTCA CGCATCTGTT CCTGTGTCTG AGATCACAGC CCATTCTACA
    GCCCAGTCCT CTCAGCCCTG TAGCCCCCAG GATGGAGTCC CAACCCCAGC CCCAGCCAGT
    CCCCAGGATG GAGTCCCAAC CCCAGCACCA GCCAGTCCCC AGGATGGAGT CCCAACCCCA
    GCACCAGCCA GTCCCCAGGA TGGAGCCCCA ACCCCAGCAC CAGCCAGTCC CCAGGACGGG
    CTCCCAGCAC CAGCCAGTCC CCAGGATGGG CTCCCAGCCT TAACCCCAGG TCCAACCAGT
    GGCCCTCCCT CTGGCACCAT CTCCACCAGA ACCACCTTCT CCCCCGGTTC CCCCGTGGAC
    AAGCCCCTCC AATTCCCTGC CTTGTTCAGT GGTCTGAGGA TCCCAAAGAA GGGGGCGACA
    GTGCCGGAAC AGGACATAGT GGGCAAGATC AAAACATCAA CCCCAGCAGG CCTGAGTGTG
    GACAAGCTTG TGAGGAGAAA GCTGAAGGCA GTTCGCAGGA GGCAGGGGAG CTTCTTGGAC
    CAGCTCTCCC AGTTCCTGAA CCTGGAGAAG GATGTTAACA GTAAGACAGA GGAGTTTACA
    GGAGAGGACA GGAGGGAGTT TACAGGAAAG GAGAGGAAGG AGTCTACAGA AGAGGAGAGG
    AGGAAGTATT CAGGAGAGGA CAGGAGGGAG TCTACAGGAG AGGAGAGGAG GGAATCTTCA
    GGAGAGGACA GGTGGGAGTC TACAGCAGAG TACAGGAGGG AGTCAGAACC CTCAGACGAG
    ACCGAAGGAG TCAGAGTTGA ACCTGAGGAT GGGATGGAGG AGAAGGAGAA GGAGAAGACA
    GAACAGGAAG AGGGAGGAGA ACAGCAGAAA ACAGGAGAGG AGAAAAAGAC AGACCAGGAC
    ACAGAGAAAG AGAAGACTGA AGTTCTGTCT TTGATAGAGC CTCCGGAATC TTCAGAACCT
    TCACAGACTC TAGAATTCTC AGAACCTTTA GAACCTCAGA AGCCTCCTCC CTCCAGTGCT
    GAGGTGGCGT TCGATGCCTT CAAGGCCTTC TTCATCCCCA GGCCCCTGAG GAGAGAGGGA
    GACAGGGGCG ACCAGGAGGC AAAGAGGAAG GCCTGGATCT TTGAGAGAAC CTCCAAGACT
    CCTGAAAAGA AAAACATCAC TGACTCAAAA CCGGAGGCAT CGATCTCAGG TGATGGAGAG
    GACCGGTCCA CCCCAGGCCG TCTGCAGGCC ATCTGGCCCC CGACTAAGGA GGAGAAGGTT
    GGACTGAAAT ACACAGAAGC AGAACACCAG GCAGCCCTCC TGCAGCTGAA GAGAGAATGC
    AACGAGGAGG TGGAGAAAAT ACAGGAGGAC TATAGGAAGC AGCTGCGCCA GCTGAGAGGG
    GACAACGAAG AGTGTGTATC CCATCTGGAG GTCACCTTGG CCAGGCTACA AAGTGACTTG
    GCCCTGGGTG CCCACCACCG CCGTGGAGAC CTCCGAGACG TGGCCGTATC CACGGGAGAT
    GACCTCTCAT CCCGGGCCTT CCACACTGTG TGCGTCCAGA CGGACCACAT GACCTTCCCC
    CAACCCCCCC TCAACTTGCC TAAGAGACTG GACCTGGCTT CTATCAGTCT AAATCTGTCT
    GGACAGGCTA CCGCTCCCTC TTCTTCCCCC GTTCATCTCC CTCTACCTCC TGCTCCTCCA
    CTCCCACTAT CCGAGCCACC TGCACCTCAT GAAGGCTTAT TATCAGGCAA CCTAGCCCTT
    CCTCCCCCTC CTCCTCCTCC TCTTCCTTTC CTTCCTGCTC TAACCCAGAC CCAGGGACTC
    GACGGGCCCC CTCCATCTCT TCCACCCCCT CCACCAGGGT CCGCCCCTCC ACCTCCACCC
    CCTCCACCAG GCTGTGGCCC CCCACCACCT CCCCCTCCAG GGTGTCTGAC CTTCAGTACC
    ATGCTAGATA AACCCCCCAG GAAGCCGGCT GTGCAACCAG CCTGCCCCAT GAAGCCTCTC
    TACTGGACCA GGATACAGAC ACAGGACAAC AATAAAGACA CACTGTGGAA CTCTCTTGAG
    GAACCCGACA TCATCAACAC CACAGAGTTT GAAGACCTGT TCTCCAAGAC CACCATACAG
    ACCAAGAGAA GACCTCTGGC AGAGGCCTAT GAGAAGAAAG CCAAGGCCAA GAAGATCATG
    AAGCTTCTGG ATGGGAAGCG TTCCCAGGCC GTTGGGATAC TCATCTCTAG TCTGCACCTG
    GAGATGAAGG ACATACAGCA AGCTGTGCTG AATGTGGACA ACTCCGTAGT GGACGTGGAA
    ACCATCCAGG CTTTATACGA AAACAGAGCC CAGCCTGATG AGCTGGAGCG GATAAAGAAA
    CACTACCAAA CTTTCGAGGA GGAGCAGGTC AAGCTGCTGG ACAAACCTGA ACAGTTCCTG
    TTTGAGTTAT CTCAGATACC AGACTTCCCA GACAGGGCTT CATGTATCAT CTTCCAGTCT
    GTCTTCATAG ACGCCATCGC CTCCATTCAG CACAAGTTGG ACATTGTCTC TCGCGTCTGC
    AAGGATCTGA TGGACACCTC CAGTGTGAGG GAAGTGATGG GTCTGATTCT AGCCCTGGGG
    AACCATATGA ACGGGGGCAA CAGGACCAGA GGACAGGCTG ACGGCTTTGG ACTGGAGATC
    CTGCCCAAAC TAAAGGACGT CAAGAGCAGG GACAATCGTA TCAGTTTGGT TGACTATGTG
    ACATCGTACT ATCTCCGCAA CCTGGACGAG AACGCTGGAA CAGAGAGAAG TGTCTTCCCT
    CTCCCTGAGC CTCAGGATGT GTTCCTGGCT GCCCAGGTCA AGTTTGAAGA CATCACCAAG
    GACCTGAGAC AGCTGAGACG AGACCTGACA GTGTGTGAGA AAGGAGTTCA GAAGGTGTGT
    TCCAGCTCAT CTGAAGAACA TCTCCAGCCA TTTAAGGACA AAATGGAGTC GTTTGTTCTG
    ATTGCGAGTA ATGAACAAGA TGAAGTGCAT GCCCAGTTGA TGTTTGCACA AAAAAGCTTC
    CACGAGCTGG TGACGTTCTT AGGGTTGAAG CCCAAGACAG GAGAGACTGA AGTGGCGACA
    GGTCACTTCT TTATGCTGTG GTTTGAGTTC TGTACCGACT TCAAGACCAG GTGGAAGAGA
    GAGAACAAGA ATATATCCAA AGAGAGGCTG AAAGAGGCCC AGCTGTCGGT GAAGAAGATT
    ACAGCAGACA AGAAGGTGGA GACTAGGAAG ATCAACCCTA ATAGTCTGAA AGACAGGCTA
    CGCCAGAAGG AAGCTAACAT GGTGGCCACA AGCTGA

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