nup153 cDNA ORF clone, Seriola lalandi dorsalis

The following nup153 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the nup153 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
OSe157640 XM_023412196.1
Latest version!
Seriola lalandi dorsalis nucleoporin 153 (nup153), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00
OSe157641 XM_023412197.1
Latest version!
Seriola lalandi dorsalis nucleoporin 153 (nup153), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00

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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 OSe157640
    Clone ID Related Accession (Same CDS sequence) XM_023412196.1
    Accession Version XM_023412196.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4617bp)
    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 2017-12-25
    Organism Seriola lalandi dorsalis
    Product nuclear pore complex protein Nup153 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019525029.1) 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 Name :: Seriola lalandi dorsalis Annotation Release 100 Annotation Version :: 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    ATGGCGGCCA CGGGTGGAGG GAAAATTAGA AGCAGGAGAT ATCACATCGC CTCTAAACCT 
    TACGCCAAGA GTAAACAGCA GCAGTCAGGC CTCATCAGTC GAGTGACAGA CACAGTAAAG
    AGCATCGTTC CTTCCTGGCT TCAGAAATAC TTCAAGAATG AAGATGCTCC TGAAGGAGGG
    GGGGCTGTAC AAGGGACAGA CCAGAACTGC CAGCCTCCTC CTACTCCACC TCCTCCTAAT
    GGCAGTGAAG AGGGACCTCC TCCCCTTGAT GGACGTGACT CCCCAGAGCC TAGCACCAGT
    AACACAGAGC CCTCAACCAG TCGGGCATCC CTGAACTTTC AGGAGTATGT GCTTTCTCGA
    CCACCTCTGA GTCGCTCCCA CCTCCATTTT CCCCCGCTAG ATGCCTCCTC CCCAATGCTG
    GGGGCTTCCA GCAGTCTCTT CTCCCAGCCC TCCACCTCCT CAGCCCCTGG CCCCTTTTCC
    ACAGGCTTTT CCTTGGTCAA AGAAATCAAG GACAACCTCT CGCAGCATGA AGATGATAAC
    ATTTCCACCA CGAGCGGGTT CTCCTCTCGC GCCTCTGACA AAGATGTCCC CACTTCCAAA
    ACGGCATCAC TTCCCCAGCT TTGGTCACCA GAGATGGACA GAACAAACTC TGGGCCCCAG
    CCCTCCCACT CCAGTCTGAA AAAGCCTGCT TTCAACCTGT CCGTTTTCGG AAATTCCTCC
    AATTCAACAT TAAACAGCAC AGCGCTGAAC TCCAGCCAGC TTGGAGATTC TCCCTTCTAC
    CCCGGGAAGA CCACGTATGG TGGGGCAGCT GCAGTCAGGA GCTCTCGCAC ACGTCCTGGA
    ACGCCATACC AGGCCCCGGT GAGGAGACAG ATCAAGGCCA AGCCTGCTGG TGCTCAGCCC
    TGTGGCGTGA CCAGTGCTAC AGCCAGACGC ATCTTGCAGT CCTTGGAGCG CATGTCGAGC
    CCTCTGGCTG ATGCCAAGAG AATCCCAGCA GCAGCCTCAT CCCCCATGTC ACCATCGATG
    GATGGCACAA ACCTAGATGT TTCACATTTC CAGTCGAAAA AGAAACGGAT GGATCCTACC
    CTCCCGCCGG TTCAGAAGTT GGTGGTTCCT GCTGCAGCCT CTGTGTCAGG AAACCGCTCT
    GTGTCCTTCA GGCCTACTTT GACTCCTGGA GGAGTGAGCC GAACTCTGGA CAGGACCCTA
    CGAGAGACGC CCACAAGACA ATCACCGCAA CTACCTAAAG CAACCCCCGG TCCATCTCAA
    AGCACAATGG GTTCCAGTGG GCCAGCCTAT CCTCTGTCCA GCACGCCTGC AGCCAGCAGC
    GTCGGTTCTG GAGGGGGCAA GATGAAGAGA GAGCGGACCA GTACACGACC CTCCTCCAAA
    CGCCCTGAAG AGGATGAGGT GGCTGAGATA CCCGACCTTC CAACCATTTC ACTTCCCATC
    AGCACCTCCG CCTTGCCCAC CTTCAGCTTC TCCTCCCCTC TTCCACCTCT CACCACCTCC
    ACAACCATCA GCACCCCCTC CAAGGCCACG GCCATTACTC CTGCGAAGGA AACATTCACA
    AATAAGGAGC CTCCAACGGC CACGACACCC CCCTGTGTAC CTTTTACATT TTCCTCCCCT
    ATTGTCAAAG CAACTGCTGC TAGCCCCCCT TGCTTTTCCC CCTCGGCTGG ATTTACTTTT
    AGTGCACCTG TAGCAAAAAT GGGTCCCTCC ATGTCAAACG GGAAGCTCGC CACTCCCATT
    GCAGCAGCAG TGAAGCCAGC AGCAAACAAA AGCACAGAAG ACTTTGAAGG GCCCTTTAAA
    CCAGCCAAGG TCCTGAAGCA GGGCAGCGTG CTGGATCTTC TCAAAGCACC TGGTTTTGCC
    TCTCCTGTTG CTCGGACTTC CCCAGGCCCA GACAACTCTC CCCACCAGAC CTCCACACAA
    TCCACTGCCC CCTCCTCCTC CTCCACTTCC ACAACCACCT CTTCCCTCTC TTCTTCAACA
    GGGCTCAGTG ATTTGTTTAA AGCCCCGCTA AACTGGAGCT GTGATGTGTG CTTGGTGCAG
    AACAAGCCAT CAGATGCAAA GTGTGTTTGC TGTATGGCCC CCCAGCCCAA CTCCTCCTCA
    TCTAAATCTA TGGACAGTAA GCCTTCACCC ACAACCTCGG TTGGGCTGGA GAGCAGCATC
    ACGAACACCA CCTCCACCAC TACAACCACC ACAGGTTTCG GCACAATGTT TTCCAAACCT
    GCAGGAACCT GGGACTGTGA TACGTGTCTT GTTCTAAATA AACCTGATGC AGTAAAGTGT
    GTGGCCTGTG AAACGGCCAA ACCCGGGACA GGACTGAAAC CCTCACTGAC TCTTCCTTCT
    GCCTTCTCAG CTGTTAAGAC TGTACCCACC TCCACAGCCC CTGTTTCCAC AGGGTTCATC
    GGATTTGGAG ACAAGTTCAA AAAACCTGAA GGTTCATGGG AGTGTGATAT ATGTTTGGTA
    CAGAACAAGG CAGGGGACAC AAAGTGTGTG GCCTGCATGA GCGCTAAACC AGGAGCATCA
    GCAGGAACAT CATCAGGAGC TTCAGCAGAA TCCTCTTCAG CCAGCACTGC TCCAGTGTTT
    GGTTTGGGAG ATAAATTCAA GAAGCCAGAG GGTGCCTGGG ATTGTGATGT CTGTCTTGTA
    CAGAATAAGG CTGCTGATGT TCAGTGTGTT GCTTGTCAGA CAGCCAAACC TGGAGCTAAC
    GTGGAGCCTA AAGCTTTTGG TTCGTCTTTT GGTTCGTCAT CTGGTGGGAC TTCAGGCTCT
    TCTACCTCTA GTTCTGGAGG TTTTAAGTTT GGCACATCAG ACAGTACCTC TGGGTCTGGA
    TCTGGAGGTT TCAAGTTTGG GGGCTCATTT TCAGAAACCT CCTCGTCTTC ATCATCAGGT
    GGATTCAAAT TTGGAATCCC ATTTGGAAGC TCCTCATCAG AAACCACTTC TCAAGACACT
    AATGCCTCAT CAGGGTTTAA ATTTGGCAGC TCATCTGAGG GCTTTAAATT TGGGGCTGCC
    TCTAGTGATG ACAAAAAGTC AGACCAACCT GCCACAGGTT CTGGGTTTAA ATTTGGAACC
    AGTGGTGGGA TAGTGTTTGG AAATGGATCG TCTAGCACAG AAAGCAACTC TTCTAAGGGC
    GGCTTCACCT TTGGACTGTC AAAACCTGAA GAGAAAACAT CAGACACCAC CACCGCCACC
    ACCACCACGT CATCCTCTGT TAGTTTCACT CCTCCCGCTT CCTCTCAAGG AAAGAGCGAC
    AGTGCTGCAT CATCAAACGA CACCACATCA ACAATCACCA ATTTAACCAC CACAACCACC
    ACCACTGGGT CTGTTTTTGG GAGACTGGGA GAGCCAAGTT TGGCAACAAC GACACCACAA
    GGGGGCTCTA CGTTTGGATC CTTACAGGCA GACAAAGATC CAGCTGCTCC CACGTTTACC
    TTTGGGAAGC CAGAGGAAAA GAAGGAAGTC GCTGCCTCCT CAGCTCCATC TTCCTTCCTC
    TTTGGTGCTT CTAGTAAGGA TGTAGATGCG ACACCAGCAG CGGCCACTTC TGGTGGCTTT
    TCCTTCAGCA AGCCCAGTGC TCCAACAGAA CAACCTCCAC CCGCATACAC CTTTGGAAAG
    CCAGCAGATA AGAGCGAAAC ATCTACTGCA GAGGCCCCAA AGCCCTCTTT CACCTTTGGA
    CAAAGTGCTA CAGATTCAAC TGCTGCTGCT CCAAAACCAG CATTTTCCTT TATAGCTAGT
    AATCCTACCA ACACCACCAA CTCCACCACT TCGTCATCCT CAACTCCAAC TCCCAGTCTG
    TTCGGCAGCA GCGGCAGCAA CAGCTCCACC CAGGCTCCAG CTCCCTCTGC AGCGCCCGGC
    ACTTTCATGT TTGGTCAGCC TGCTGCAACC TCCAGTGATA CTGCTCCAGC TAAAGCGTTT
    GTCTTTGGCC AGAACCAGGA TGGCCAGCTG CCTGCTCCCT CAGCTGCTCC TCTGAACTCT
    GTTCCCGCCC CAGCTCAAGC TCAGCCCTTC ATCTTTGGTG CTCCTGCCAG TGCTGCTGCC
    CCTGCCCCTG CCCCTGCCCC TGCCCCTGCC CCTGCCCCTG CCCCTGCTCC TGCTGCTCCA
    TCCTTCAGTT TTGGAGCAGC AGCACCCTCT GCTGTCTCAT CTTCAGCTCC GTCTGCAGCT
    CCCTCTCCAT TTGTGTTCAG CTCAGCCCCC GCTGGTGGGT TTGGGGCCAA CCAGACTCCT
    TCATTTGGCT CATCTTTCGG ATCCCCTTTC ACAGCTGCAC CCTCCCAGAG CCCAGCCTTT
    GGGGCCAAAC CCAATGCCGC ACCTGTCTTT GGACAGCAGG CCAACTCCAC ACCTGTATTT
    GGGGCGGCTG CTAATTCTGC ACCAGGTGGA GGCTTTCAGT TTGGAGGAGC CAGTGCATTC
    GGAGCTACAA ACAACACCTC AGGTGTATTT ACTTTTGGAG TCGGTTCCAC AGCATCTCCC
    GCCCCCCCTG CCAACCCTCC CATTGCACCC CAGTCAGGAG CACCTGGAGG TGGATTCAAC
    TTCTCACAAC CCCCTACATT CAATATTGGG TCAGCTAAAT CCTTCACCGC CTCTCCTGCT
    GGACAGCAAG CGATTGCTGG GCGCAAGATC AAGACAGCAG TGCGGCGCAG AAAGTAG

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

    RefSeq XP_023267964.1
    CDS28..4644
    Translation

    Target ORF information:

    RefSeq Version XM_023412196.1
    Organism Seriola lalandi dorsalis
    Definition Seriola lalandi dorsalis nucleoporin 153 (nup153), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_023412196.1

    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
    ATGGCGGCCA CGGGTGGAGG GAAAATTAGA AGCAGGAGAT ATCACATCGC CTCTAAACCT 
    TACGCCAAGA GTAAACAGCA GCAGTCAGGC CTCATCAGTC GAGTGACAGA CACAGTAAAG
    AGCATCGTTC CTTCCTGGCT TCAGAAATAC TTCAAGAATG AAGATGCTCC TGAAGGAGGG
    GGGGCTGTAC AAGGGACAGA CCAGAACTGC CAGCCTCCTC CTACTCCACC TCCTCCTAAT
    GGCAGTGAAG AGGGACCTCC TCCCCTTGAT GGACGTGACT CCCCAGAGCC TAGCACCAGT
    AACACAGAGC CCTCAACCAG TCGGGCATCC CTGAACTTTC AGGAGTATGT GCTTTCTCGA
    CCACCTCTGA GTCGCTCCCA CCTCCATTTT CCCCCGCTAG ATGCCTCCTC CCCAATGCTG
    GGGGCTTCCA GCAGTCTCTT CTCCCAGCCC TCCACCTCCT CAGCCCCTGG CCCCTTTTCC
    ACAGGCTTTT CCTTGGTCAA AGAAATCAAG GACAACCTCT CGCAGCATGA AGATGATAAC
    ATTTCCACCA CGAGCGGGTT CTCCTCTCGC GCCTCTGACA AAGATGTCCC CACTTCCAAA
    ACGGCATCAC TTCCCCAGCT TTGGTCACCA GAGATGGACA GAACAAACTC TGGGCCCCAG
    CCCTCCCACT CCAGTCTGAA AAAGCCTGCT TTCAACCTGT CCGTTTTCGG AAATTCCTCC
    AATTCAACAT TAAACAGCAC AGCGCTGAAC TCCAGCCAGC TTGGAGATTC TCCCTTCTAC
    CCCGGGAAGA CCACGTATGG TGGGGCAGCT GCAGTCAGGA GCTCTCGCAC ACGTCCTGGA
    ACGCCATACC AGGCCCCGGT GAGGAGACAG ATCAAGGCCA AGCCTGCTGG TGCTCAGCCC
    TGTGGCGTGA CCAGTGCTAC AGCCAGACGC ATCTTGCAGT CCTTGGAGCG CATGTCGAGC
    CCTCTGGCTG ATGCCAAGAG AATCCCAGCA GCAGCCTCAT CCCCCATGTC ACCATCGATG
    GATGGCACAA ACCTAGATGT TTCACATTTC CAGTCGAAAA AGAAACGGAT GGATCCTACC
    CTCCCGCCGG TTCAGAAGTT GGTGGTTCCT GCTGCAGCCT CTGTGTCAGG AAACCGCTCT
    GTGTCCTTCA GGCCTACTTT GACTCCTGGA GGAGTGAGCC GAACTCTGGA CAGGACCCTA
    CGAGAGACGC CCACAAGACA ATCACCGCAA CTACCTAAAG CAACCCCCGG TCCATCTCAA
    AGCACAATGG GTTCCAGTGG GCCAGCCTAT CCTCTGTCCA GCACGCCTGC AGCCAGCAGC
    GTCGGTTCTG GAGGGGGCAA GATGAAGAGA GAGCGGACCA GTACACGACC CTCCTCCAAA
    CGCCCTGAAG AGGATGAGGT GGCTGAGATA CCCGACCTTC CAACCATTTC ACTTCCCATC
    AGCACCTCCG CCTTGCCCAC CTTCAGCTTC TCCTCCCCTC TTCCACCTCT CACCACCTCC
    ACAACCATCA GCACCCCCTC CAAGGCCACG GCCATTACTC CTGCGAAGGA AACATTCACA
    AATAAGGAGC CTCCAACGGC CACGACACCC CCCTGTGTAC CTTTTACATT TTCCTCCCCT
    ATTGTCAAAG CAACTGCTGC TAGCCCCCCT TGCTTTTCCC CCTCGGCTGG ATTTACTTTT
    AGTGCACCTG TAGCAAAAAT GGGTCCCTCC ATGTCAAACG GGAAGCTCGC CACTCCCATT
    GCAGCAGCAG TGAAGCCAGC AGCAAACAAA AGCACAGAAG ACTTTGAAGG GCCCTTTAAA
    CCAGCCAAGG TCCTGAAGCA GGGCAGCGTG CTGGATCTTC TCAAAGCACC TGGTTTTGCC
    TCTCCTGTTG CTCGGACTTC CCCAGGCCCA GACAACTCTC CCCACCAGAC CTCCACACAA
    TCCACTGCCC CCTCCTCCTC CTCCACTTCC ACAACCACCT CTTCCCTCTC TTCTTCAACA
    GGGCTCAGTG ATTTGTTTAA AGCCCCGCTA AACTGGAGCT GTGATGTGTG CTTGGTGCAG
    AACAAGCCAT CAGATGCAAA GTGTGTTTGC TGTATGGCCC CCCAGCCCAA CTCCTCCTCA
    TCTAAATCTA TGGACAGTAA GCCTTCACCC ACAACCTCGG TTGGGCTGGA GAGCAGCATC
    ACGAACACCA CCTCCACCAC TACAACCACC ACAGGTTTCG GCACAATGTT TTCCAAACCT
    GCAGGAACCT GGGACTGTGA TACGTGTCTT GTTCTAAATA AACCTGATGC AGTAAAGTGT
    GTGGCCTGTG AAACGGCCAA ACCCGGGACA GGACTGAAAC CCTCACTGAC TCTTCCTTCT
    GCCTTCTCAG CTGTTAAGAC TGTACCCACC TCCACAGCCC CTGTTTCCAC AGGGTTCATC
    GGATTTGGAG ACAAGTTCAA AAAACCTGAA GGTTCATGGG AGTGTGATAT ATGTTTGGTA
    CAGAACAAGG CAGGGGACAC AAAGTGTGTG GCCTGCATGA GCGCTAAACC AGGAGCATCA
    GCAGGAACAT CATCAGGAGC TTCAGCAGAA TCCTCTTCAG CCAGCACTGC TCCAGTGTTT
    GGTTTGGGAG ATAAATTCAA GAAGCCAGAG GGTGCCTGGG ATTGTGATGT CTGTCTTGTA
    CAGAATAAGG CTGCTGATGT TCAGTGTGTT GCTTGTCAGA CAGCCAAACC TGGAGCTAAC
    GTGGAGCCTA AAGCTTTTGG TTCGTCTTTT GGTTCGTCAT CTGGTGGGAC TTCAGGCTCT
    TCTACCTCTA GTTCTGGAGG TTTTAAGTTT GGCACATCAG ACAGTACCTC TGGGTCTGGA
    TCTGGAGGTT TCAAGTTTGG GGGCTCATTT TCAGAAACCT CCTCGTCTTC ATCATCAGGT
    GGATTCAAAT TTGGAATCCC ATTTGGAAGC TCCTCATCAG AAACCACTTC TCAAGACACT
    AATGCCTCAT CAGGGTTTAA ATTTGGCAGC TCATCTGAGG GCTTTAAATT TGGGGCTGCC
    TCTAGTGATG ACAAAAAGTC AGACCAACCT GCCACAGGTT CTGGGTTTAA ATTTGGAACC
    AGTGGTGGGA TAGTGTTTGG AAATGGATCG TCTAGCACAG AAAGCAACTC TTCTAAGGGC
    GGCTTCACCT TTGGACTGTC AAAACCTGAA GAGAAAACAT CAGACACCAC CACCGCCACC
    ACCACCACGT CATCCTCTGT TAGTTTCACT CCTCCCGCTT CCTCTCAAGG AAAGAGCGAC
    AGTGCTGCAT CATCAAACGA CACCACATCA ACAATCACCA ATTTAACCAC CACAACCACC
    ACCACTGGGT CTGTTTTTGG GAGACTGGGA GAGCCAAGTT TGGCAACAAC GACACCACAA
    GGGGGCTCTA CGTTTGGATC CTTACAGGCA GACAAAGATC CAGCTGCTCC CACGTTTACC
    TTTGGGAAGC CAGAGGAAAA GAAGGAAGTC GCTGCCTCCT CAGCTCCATC TTCCTTCCTC
    TTTGGTGCTT CTAGTAAGGA TGTAGATGCG ACACCAGCAG CGGCCACTTC TGGTGGCTTT
    TCCTTCAGCA AGCCCAGTGC TCCAACAGAA CAACCTCCAC CCGCATACAC CTTTGGAAAG
    CCAGCAGATA AGAGCGAAAC ATCTACTGCA GAGGCCCCAA AGCCCTCTTT CACCTTTGGA
    CAAAGTGCTA CAGATTCAAC TGCTGCTGCT CCAAAACCAG CATTTTCCTT TATAGCTAGT
    AATCCTACCA ACACCACCAA CTCCACCACT TCGTCATCCT CAACTCCAAC TCCCAGTCTG
    TTCGGCAGCA GCGGCAGCAA CAGCTCCACC CAGGCTCCAG CTCCCTCTGC AGCGCCCGGC
    ACTTTCATGT TTGGTCAGCC TGCTGCAACC TCCAGTGATA CTGCTCCAGC TAAAGCGTTT
    GTCTTTGGCC AGAACCAGGA TGGCCAGCTG CCTGCTCCCT CAGCTGCTCC TCTGAACTCT
    GTTCCCGCCC CAGCTCAAGC TCAGCCCTTC ATCTTTGGTG CTCCTGCCAG TGCTGCTGCC
    CCTGCCCCTG CCCCTGCCCC TGCCCCTGCC CCTGCCCCTG CCCCTGCTCC TGCTGCTCCA
    TCCTTCAGTT TTGGAGCAGC AGCACCCTCT GCTGTCTCAT CTTCAGCTCC GTCTGCAGCT
    CCCTCTCCAT TTGTGTTCAG CTCAGCCCCC GCTGGTGGGT TTGGGGCCAA CCAGACTCCT
    TCATTTGGCT CATCTTTCGG ATCCCCTTTC ACAGCTGCAC CCTCCCAGAG CCCAGCCTTT
    GGGGCCAAAC CCAATGCCGC ACCTGTCTTT GGACAGCAGG CCAACTCCAC ACCTGTATTT
    GGGGCGGCTG CTAATTCTGC ACCAGGTGGA GGCTTTCAGT TTGGAGGAGC CAGTGCATTC
    GGAGCTACAA ACAACACCTC AGGTGTATTT ACTTTTGGAG TCGGTTCCAC AGCATCTCCC
    GCCCCCCCTG CCAACCCTCC CATTGCACCC CAGTCAGGAG CACCTGGAGG TGGATTCAAC
    TTCTCACAAC CCCCTACATT CAATATTGGG TCAGCTAAAT CCTTCACCGC CTCTCCTGCT
    GGACAGCAAG CGATTGCTGG GCGCAAGATC AAGACAGCAG TGCGGCGCAG AAAGTAG

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

    CloneID OSe157641
    Clone ID Related Accession (Same CDS sequence) XM_023412197.1
    Accession Version XM_023412197.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4614bp)
    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 2017-12-25
    Organism Seriola lalandi dorsalis
    Product nuclear pore complex protein Nup153 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019525029.1) 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 Name :: Seriola lalandi dorsalis Annotation Release 100 Annotation Version :: 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.0 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
    ATGGCGGCCA CGGGTGGAGG GAAAATTAGA AGCAGGAGAT ATCACATCGC CTCTAAACCT 
    TACGCCAAGA GTAAACAGCA GTCAGGCCTC ATCAGTCGAG TGACAGACAC AGTAAAGAGC
    ATCGTTCCTT CCTGGCTTCA GAAATACTTC AAGAATGAAG ATGCTCCTGA AGGAGGGGGG
    GCTGTACAAG GGACAGACCA GAACTGCCAG CCTCCTCCTA CTCCACCTCC TCCTAATGGC
    AGTGAAGAGG GACCTCCTCC CCTTGATGGA CGTGACTCCC CAGAGCCTAG CACCAGTAAC
    ACAGAGCCCT CAACCAGTCG GGCATCCCTG AACTTTCAGG AGTATGTGCT TTCTCGACCA
    CCTCTGAGTC GCTCCCACCT CCATTTTCCC CCGCTAGATG CCTCCTCCCC AATGCTGGGG
    GCTTCCAGCA GTCTCTTCTC CCAGCCCTCC ACCTCCTCAG CCCCTGGCCC CTTTTCCACA
    GGCTTTTCCT TGGTCAAAGA AATCAAGGAC AACCTCTCGC AGCATGAAGA TGATAACATT
    TCCACCACGA GCGGGTTCTC CTCTCGCGCC TCTGACAAAG ATGTCCCCAC TTCCAAAACG
    GCATCACTTC CCCAGCTTTG GTCACCAGAG ATGGACAGAA CAAACTCTGG GCCCCAGCCC
    TCCCACTCCA GTCTGAAAAA GCCTGCTTTC AACCTGTCCG TTTTCGGAAA TTCCTCCAAT
    TCAACATTAA ACAGCACAGC GCTGAACTCC AGCCAGCTTG GAGATTCTCC CTTCTACCCC
    GGGAAGACCA CGTATGGTGG GGCAGCTGCA GTCAGGAGCT CTCGCACACG TCCTGGAACG
    CCATACCAGG CCCCGGTGAG GAGACAGATC AAGGCCAAGC CTGCTGGTGC TCAGCCCTGT
    GGCGTGACCA GTGCTACAGC CAGACGCATC TTGCAGTCCT TGGAGCGCAT GTCGAGCCCT
    CTGGCTGATG CCAAGAGAAT CCCAGCAGCA GCCTCATCCC CCATGTCACC ATCGATGGAT
    GGCACAAACC TAGATGTTTC ACATTTCCAG TCGAAAAAGA AACGGATGGA TCCTACCCTC
    CCGCCGGTTC AGAAGTTGGT GGTTCCTGCT GCAGCCTCTG TGTCAGGAAA CCGCTCTGTG
    TCCTTCAGGC CTACTTTGAC TCCTGGAGGA GTGAGCCGAA CTCTGGACAG GACCCTACGA
    GAGACGCCCA CAAGACAATC ACCGCAACTA CCTAAAGCAA CCCCCGGTCC ATCTCAAAGC
    ACAATGGGTT CCAGTGGGCC AGCCTATCCT CTGTCCAGCA CGCCTGCAGC CAGCAGCGTC
    GGTTCTGGAG GGGGCAAGAT GAAGAGAGAG CGGACCAGTA CACGACCCTC CTCCAAACGC
    CCTGAAGAGG ATGAGGTGGC TGAGATACCC GACCTTCCAA CCATTTCACT TCCCATCAGC
    ACCTCCGCCT TGCCCACCTT CAGCTTCTCC TCCCCTCTTC CACCTCTCAC CACCTCCACA
    ACCATCAGCA CCCCCTCCAA GGCCACGGCC ATTACTCCTG CGAAGGAAAC ATTCACAAAT
    AAGGAGCCTC CAACGGCCAC GACACCCCCC TGTGTACCTT TTACATTTTC CTCCCCTATT
    GTCAAAGCAA CTGCTGCTAG CCCCCCTTGC TTTTCCCCCT CGGCTGGATT TACTTTTAGT
    GCACCTGTAG CAAAAATGGG TCCCTCCATG TCAAACGGGA AGCTCGCCAC TCCCATTGCA
    GCAGCAGTGA AGCCAGCAGC AAACAAAAGC ACAGAAGACT TTGAAGGGCC CTTTAAACCA
    GCCAAGGTCC TGAAGCAGGG CAGCGTGCTG GATCTTCTCA AAGCACCTGG TTTTGCCTCT
    CCTGTTGCTC GGACTTCCCC AGGCCCAGAC AACTCTCCCC ACCAGACCTC CACACAATCC
    ACTGCCCCCT CCTCCTCCTC CACTTCCACA ACCACCTCTT CCCTCTCTTC TTCAACAGGG
    CTCAGTGATT TGTTTAAAGC CCCGCTAAAC TGGAGCTGTG ATGTGTGCTT GGTGCAGAAC
    AAGCCATCAG ATGCAAAGTG TGTTTGCTGT ATGGCCCCCC AGCCCAACTC CTCCTCATCT
    AAATCTATGG ACAGTAAGCC TTCACCCACA ACCTCGGTTG GGCTGGAGAG CAGCATCACG
    AACACCACCT CCACCACTAC AACCACCACA GGTTTCGGCA CAATGTTTTC CAAACCTGCA
    GGAACCTGGG ACTGTGATAC GTGTCTTGTT CTAAATAAAC CTGATGCAGT AAAGTGTGTG
    GCCTGTGAAA CGGCCAAACC CGGGACAGGA CTGAAACCCT CACTGACTCT TCCTTCTGCC
    TTCTCAGCTG TTAAGACTGT ACCCACCTCC ACAGCCCCTG TTTCCACAGG GTTCATCGGA
    TTTGGAGACA AGTTCAAAAA ACCTGAAGGT TCATGGGAGT GTGATATATG TTTGGTACAG
    AACAAGGCAG GGGACACAAA GTGTGTGGCC TGCATGAGCG CTAAACCAGG AGCATCAGCA
    GGAACATCAT CAGGAGCTTC AGCAGAATCC TCTTCAGCCA GCACTGCTCC AGTGTTTGGT
    TTGGGAGATA AATTCAAGAA GCCAGAGGGT GCCTGGGATT GTGATGTCTG TCTTGTACAG
    AATAAGGCTG CTGATGTTCA GTGTGTTGCT TGTCAGACAG CCAAACCTGG AGCTAACGTG
    GAGCCTAAAG CTTTTGGTTC GTCTTTTGGT TCGTCATCTG GTGGGACTTC AGGCTCTTCT
    ACCTCTAGTT CTGGAGGTTT TAAGTTTGGC ACATCAGACA GTACCTCTGG GTCTGGATCT
    GGAGGTTTCA AGTTTGGGGG CTCATTTTCA GAAACCTCCT CGTCTTCATC ATCAGGTGGA
    TTCAAATTTG GAATCCCATT TGGAAGCTCC TCATCAGAAA CCACTTCTCA AGACACTAAT
    GCCTCATCAG GGTTTAAATT TGGCAGCTCA TCTGAGGGCT TTAAATTTGG GGCTGCCTCT
    AGTGATGACA AAAAGTCAGA CCAACCTGCC ACAGGTTCTG GGTTTAAATT TGGAACCAGT
    GGTGGGATAG TGTTTGGAAA TGGATCGTCT AGCACAGAAA GCAACTCTTC TAAGGGCGGC
    TTCACCTTTG GACTGTCAAA ACCTGAAGAG AAAACATCAG ACACCACCAC CGCCACCACC
    ACCACGTCAT CCTCTGTTAG TTTCACTCCT CCCGCTTCCT CTCAAGGAAA GAGCGACAGT
    GCTGCATCAT CAAACGACAC CACATCAACA ATCACCAATT TAACCACCAC AACCACCACC
    ACTGGGTCTG TTTTTGGGAG ACTGGGAGAG CCAAGTTTGG CAACAACGAC ACCACAAGGG
    GGCTCTACGT TTGGATCCTT ACAGGCAGAC AAAGATCCAG CTGCTCCCAC GTTTACCTTT
    GGGAAGCCAG AGGAAAAGAA GGAAGTCGCT GCCTCCTCAG CTCCATCTTC CTTCCTCTTT
    GGTGCTTCTA GTAAGGATGT AGATGCGACA CCAGCAGCGG CCACTTCTGG TGGCTTTTCC
    TTCAGCAAGC CCAGTGCTCC AACAGAACAA CCTCCACCCG CATACACCTT TGGAAAGCCA
    GCAGATAAGA GCGAAACATC TACTGCAGAG GCCCCAAAGC CCTCTTTCAC CTTTGGACAA
    AGTGCTACAG ATTCAACTGC TGCTGCTCCA AAACCAGCAT TTTCCTTTAT AGCTAGTAAT
    CCTACCAACA CCACCAACTC CACCACTTCG TCATCCTCAA CTCCAACTCC CAGTCTGTTC
    GGCAGCAGCG GCAGCAACAG CTCCACCCAG GCTCCAGCTC CCTCTGCAGC GCCCGGCACT
    TTCATGTTTG GTCAGCCTGC TGCAACCTCC AGTGATACTG CTCCAGCTAA AGCGTTTGTC
    TTTGGCCAGA ACCAGGATGG CCAGCTGCCT GCTCCCTCAG CTGCTCCTCT GAACTCTGTT
    CCCGCCCCAG CTCAAGCTCA GCCCTTCATC TTTGGTGCTC CTGCCAGTGC TGCTGCCCCT
    GCCCCTGCCC CTGCCCCTGC CCCTGCCCCT GCCCCTGCCC CTGCTCCTGC TGCTCCATCC
    TTCAGTTTTG GAGCAGCAGC ACCCTCTGCT GTCTCATCTT CAGCTCCGTC TGCAGCTCCC
    TCTCCATTTG TGTTCAGCTC AGCCCCCGCT GGTGGGTTTG GGGCCAACCA GACTCCTTCA
    TTTGGCTCAT CTTTCGGATC CCCTTTCACA GCTGCACCCT CCCAGAGCCC AGCCTTTGGG
    GCCAAACCCA ATGCCGCACC TGTCTTTGGA CAGCAGGCCA ACTCCACACC TGTATTTGGG
    GCGGCTGCTA ATTCTGCACC AGGTGGAGGC TTTCAGTTTG GAGGAGCCAG TGCATTCGGA
    GCTACAAACA ACACCTCAGG TGTATTTACT TTTGGAGTCG GTTCCACAGC ATCTCCCGCC
    CCCCCTGCCA ACCCTCCCAT TGCACCCCAG TCAGGAGCAC CTGGAGGTGG ATTCAACTTC
    TCACAACCCC CTACATTCAA TATTGGGTCA GCTAAATCCT TCACCGCCTC TCCTGCTGGA
    CAGCAAGCGA TTGCTGGGCG CAAGATCAAG ACAGCAGTGC GGCGCAGAAA GTAG

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

    RefSeq XP_023267965.1
    CDS11..4624
    Translation

    Target ORF information:

    RefSeq Version XM_023412197.1
    Organism Seriola lalandi dorsalis
    Definition Seriola lalandi dorsalis nucleoporin 153 (nup153), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_023412197.1

    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
    ATGGCGGCCA CGGGTGGAGG GAAAATTAGA AGCAGGAGAT ATCACATCGC CTCTAAACCT 
    TACGCCAAGA GTAAACAGCA GTCAGGCCTC ATCAGTCGAG TGACAGACAC AGTAAAGAGC
    ATCGTTCCTT CCTGGCTTCA GAAATACTTC AAGAATGAAG ATGCTCCTGA AGGAGGGGGG
    GCTGTACAAG GGACAGACCA GAACTGCCAG CCTCCTCCTA CTCCACCTCC TCCTAATGGC
    AGTGAAGAGG GACCTCCTCC CCTTGATGGA CGTGACTCCC CAGAGCCTAG CACCAGTAAC
    ACAGAGCCCT CAACCAGTCG GGCATCCCTG AACTTTCAGG AGTATGTGCT TTCTCGACCA
    CCTCTGAGTC GCTCCCACCT CCATTTTCCC CCGCTAGATG CCTCCTCCCC AATGCTGGGG
    GCTTCCAGCA GTCTCTTCTC CCAGCCCTCC ACCTCCTCAG CCCCTGGCCC CTTTTCCACA
    GGCTTTTCCT TGGTCAAAGA AATCAAGGAC AACCTCTCGC AGCATGAAGA TGATAACATT
    TCCACCACGA GCGGGTTCTC CTCTCGCGCC TCTGACAAAG ATGTCCCCAC TTCCAAAACG
    GCATCACTTC CCCAGCTTTG GTCACCAGAG ATGGACAGAA CAAACTCTGG GCCCCAGCCC
    TCCCACTCCA GTCTGAAAAA GCCTGCTTTC AACCTGTCCG TTTTCGGAAA TTCCTCCAAT
    TCAACATTAA ACAGCACAGC GCTGAACTCC AGCCAGCTTG GAGATTCTCC CTTCTACCCC
    GGGAAGACCA CGTATGGTGG GGCAGCTGCA GTCAGGAGCT CTCGCACACG TCCTGGAACG
    CCATACCAGG CCCCGGTGAG GAGACAGATC AAGGCCAAGC CTGCTGGTGC TCAGCCCTGT
    GGCGTGACCA GTGCTACAGC CAGACGCATC TTGCAGTCCT TGGAGCGCAT GTCGAGCCCT
    CTGGCTGATG CCAAGAGAAT CCCAGCAGCA GCCTCATCCC CCATGTCACC ATCGATGGAT
    GGCACAAACC TAGATGTTTC ACATTTCCAG TCGAAAAAGA AACGGATGGA TCCTACCCTC
    CCGCCGGTTC AGAAGTTGGT GGTTCCTGCT GCAGCCTCTG TGTCAGGAAA CCGCTCTGTG
    TCCTTCAGGC CTACTTTGAC TCCTGGAGGA GTGAGCCGAA CTCTGGACAG GACCCTACGA
    GAGACGCCCA CAAGACAATC ACCGCAACTA CCTAAAGCAA CCCCCGGTCC ATCTCAAAGC
    ACAATGGGTT CCAGTGGGCC AGCCTATCCT CTGTCCAGCA CGCCTGCAGC CAGCAGCGTC
    GGTTCTGGAG GGGGCAAGAT GAAGAGAGAG CGGACCAGTA CACGACCCTC CTCCAAACGC
    CCTGAAGAGG ATGAGGTGGC TGAGATACCC GACCTTCCAA CCATTTCACT TCCCATCAGC
    ACCTCCGCCT TGCCCACCTT CAGCTTCTCC TCCCCTCTTC CACCTCTCAC CACCTCCACA
    ACCATCAGCA CCCCCTCCAA GGCCACGGCC ATTACTCCTG CGAAGGAAAC ATTCACAAAT
    AAGGAGCCTC CAACGGCCAC GACACCCCCC TGTGTACCTT TTACATTTTC CTCCCCTATT
    GTCAAAGCAA CTGCTGCTAG CCCCCCTTGC TTTTCCCCCT CGGCTGGATT TACTTTTAGT
    GCACCTGTAG CAAAAATGGG TCCCTCCATG TCAAACGGGA AGCTCGCCAC TCCCATTGCA
    GCAGCAGTGA AGCCAGCAGC AAACAAAAGC ACAGAAGACT TTGAAGGGCC CTTTAAACCA
    GCCAAGGTCC TGAAGCAGGG CAGCGTGCTG GATCTTCTCA AAGCACCTGG TTTTGCCTCT
    CCTGTTGCTC GGACTTCCCC AGGCCCAGAC AACTCTCCCC ACCAGACCTC CACACAATCC
    ACTGCCCCCT CCTCCTCCTC CACTTCCACA ACCACCTCTT CCCTCTCTTC TTCAACAGGG
    CTCAGTGATT TGTTTAAAGC CCCGCTAAAC TGGAGCTGTG ATGTGTGCTT GGTGCAGAAC
    AAGCCATCAG ATGCAAAGTG TGTTTGCTGT ATGGCCCCCC AGCCCAACTC CTCCTCATCT
    AAATCTATGG ACAGTAAGCC TTCACCCACA ACCTCGGTTG GGCTGGAGAG CAGCATCACG
    AACACCACCT CCACCACTAC AACCACCACA GGTTTCGGCA CAATGTTTTC CAAACCTGCA
    GGAACCTGGG ACTGTGATAC GTGTCTTGTT CTAAATAAAC CTGATGCAGT AAAGTGTGTG
    GCCTGTGAAA CGGCCAAACC CGGGACAGGA CTGAAACCCT CACTGACTCT TCCTTCTGCC
    TTCTCAGCTG TTAAGACTGT ACCCACCTCC ACAGCCCCTG TTTCCACAGG GTTCATCGGA
    TTTGGAGACA AGTTCAAAAA ACCTGAAGGT TCATGGGAGT GTGATATATG TTTGGTACAG
    AACAAGGCAG GGGACACAAA GTGTGTGGCC TGCATGAGCG CTAAACCAGG AGCATCAGCA
    GGAACATCAT CAGGAGCTTC AGCAGAATCC TCTTCAGCCA GCACTGCTCC AGTGTTTGGT
    TTGGGAGATA AATTCAAGAA GCCAGAGGGT GCCTGGGATT GTGATGTCTG TCTTGTACAG
    AATAAGGCTG CTGATGTTCA GTGTGTTGCT TGTCAGACAG CCAAACCTGG AGCTAACGTG
    GAGCCTAAAG CTTTTGGTTC GTCTTTTGGT TCGTCATCTG GTGGGACTTC AGGCTCTTCT
    ACCTCTAGTT CTGGAGGTTT TAAGTTTGGC ACATCAGACA GTACCTCTGG GTCTGGATCT
    GGAGGTTTCA AGTTTGGGGG CTCATTTTCA GAAACCTCCT CGTCTTCATC ATCAGGTGGA
    TTCAAATTTG GAATCCCATT TGGAAGCTCC TCATCAGAAA CCACTTCTCA AGACACTAAT
    GCCTCATCAG GGTTTAAATT TGGCAGCTCA TCTGAGGGCT TTAAATTTGG GGCTGCCTCT
    AGTGATGACA AAAAGTCAGA CCAACCTGCC ACAGGTTCTG GGTTTAAATT TGGAACCAGT
    GGTGGGATAG TGTTTGGAAA TGGATCGTCT AGCACAGAAA GCAACTCTTC TAAGGGCGGC
    TTCACCTTTG GACTGTCAAA ACCTGAAGAG AAAACATCAG ACACCACCAC CGCCACCACC
    ACCACGTCAT CCTCTGTTAG TTTCACTCCT CCCGCTTCCT CTCAAGGAAA GAGCGACAGT
    GCTGCATCAT CAAACGACAC CACATCAACA ATCACCAATT TAACCACCAC AACCACCACC
    ACTGGGTCTG TTTTTGGGAG ACTGGGAGAG CCAAGTTTGG CAACAACGAC ACCACAAGGG
    GGCTCTACGT TTGGATCCTT ACAGGCAGAC AAAGATCCAG CTGCTCCCAC GTTTACCTTT
    GGGAAGCCAG AGGAAAAGAA GGAAGTCGCT GCCTCCTCAG CTCCATCTTC CTTCCTCTTT
    GGTGCTTCTA GTAAGGATGT AGATGCGACA CCAGCAGCGG CCACTTCTGG TGGCTTTTCC
    TTCAGCAAGC CCAGTGCTCC AACAGAACAA CCTCCACCCG CATACACCTT TGGAAAGCCA
    GCAGATAAGA GCGAAACATC TACTGCAGAG GCCCCAAAGC CCTCTTTCAC CTTTGGACAA
    AGTGCTACAG ATTCAACTGC TGCTGCTCCA AAACCAGCAT TTTCCTTTAT AGCTAGTAAT
    CCTACCAACA CCACCAACTC CACCACTTCG TCATCCTCAA CTCCAACTCC CAGTCTGTTC
    GGCAGCAGCG GCAGCAACAG CTCCACCCAG GCTCCAGCTC CCTCTGCAGC GCCCGGCACT
    TTCATGTTTG GTCAGCCTGC TGCAACCTCC AGTGATACTG CTCCAGCTAA AGCGTTTGTC
    TTTGGCCAGA ACCAGGATGG CCAGCTGCCT GCTCCCTCAG CTGCTCCTCT GAACTCTGTT
    CCCGCCCCAG CTCAAGCTCA GCCCTTCATC TTTGGTGCTC CTGCCAGTGC TGCTGCCCCT
    GCCCCTGCCC CTGCCCCTGC CCCTGCCCCT GCCCCTGCCC CTGCTCCTGC TGCTCCATCC
    TTCAGTTTTG GAGCAGCAGC ACCCTCTGCT GTCTCATCTT CAGCTCCGTC TGCAGCTCCC
    TCTCCATTTG TGTTCAGCTC AGCCCCCGCT GGTGGGTTTG GGGCCAACCA GACTCCTTCA
    TTTGGCTCAT CTTTCGGATC CCCTTTCACA GCTGCACCCT CCCAGAGCCC AGCCTTTGGG
    GCCAAACCCA ATGCCGCACC TGTCTTTGGA CAGCAGGCCA ACTCCACACC TGTATTTGGG
    GCGGCTGCTA ATTCTGCACC AGGTGGAGGC TTTCAGTTTG GAGGAGCCAG TGCATTCGGA
    GCTACAAACA ACACCTCAGG TGTATTTACT TTTGGAGTCG GTTCCACAGC ATCTCCCGCC
    CCCCCTGCCA ACCCTCCCAT TGCACCCCAG TCAGGAGCAC CTGGAGGTGG ATTCAACTTC
    TCACAACCCC CTACATTCAA TATTGGGTCA GCTAAATCCT TCACCGCCTC TCCTGCTGGA
    CAGCAAGCGA TTGCTGGGCG CAAGATCAAG ACAGCAGTGC GGCGCAGAAA GTAG

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