OT_ostta14g01740 cDNA ORF clone, Ostreococcus tauri

The following OT_ostta14g01740 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the OT_ostta14g01740 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
OOd06177 XM_003082949.1
Latest version!
Ostreococcus tauri putative transportin (ISS) (Ot14g02060) mRNA, complete cds. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OOd77888 XM_003082949.2
Latest version!
Ostreococcus tauri Armadillo-type fold (OT_ostta14g01740), partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
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2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
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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 OOd06177
    Clone ID Related Accession (Same CDS sequence) XM_003082949.1
    Accession Version XM_003082949.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2835bp)
    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 1373472000000
    Organism Ostreococcus tauri
    Product putative transportin (ISS)
    Comment PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NC_014439). COMPLETENESS: incomplete on both ends.

    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
    ATGCGTCTCC ACGAAACCCC ACCACGCGAT CGCGATCGCG CCGCCGCCAC CGCGCGTTCG 
    ATCCCGCGCG TGGAAAAAAG ACGGACGCTA ATTGATGCGC GCATTGACGT CAAACCTCGC
    GCGCGCGCGC GGGAGAACGG CGCGCGCGCG GTCGCGGTCG CGCGAACGAC GTCCGGGNNN
    NNNNNNNNNN NNNNNNNGCT GGGAAGCTTG GAGCGATGCG CGACTTTTCC GGACTTTAAT
    CTGTACCTCG CGCACGTGTT GACGAGCGAG GAGGAGCCGG GGCGACGAGA GGACGTGCGA
    CAGTCGGCGG GGTTGCTGCT GAAGAATAAT CTCAAGACGT CGTGGACGAC GACGATGAGC
    GAGGAATATC GCGCGTTCGT GCGAGAGACG CTGGTGCGAT CGCTCGGACA CGGGTCGAGG
    TTGATTCGAA CGACGTGCGG GACGTGCGTG GCGGTGATCG TGCGGTGTGG TGGGGTGGAG
    AATTGGCCGA CGCTGTGGCC GGCGCTGGCG GCGGCGGTGG AGCAGGGCGA CGATAACTCT
    CGAGACGGCG CTTTGGACGC TTTGTACAAG GCGTGCGAGG AGGTGAACGG GAGATTGGAC
    GTCAAGGTGC CGGGGATGTC GGATTCCCCG GCGGGTGTGC TCATCCCGAG GCTCTTCGCG
    CTCTTCCAGG CGCCGAGCGC GAAGGTGCGT CAGCAGTCGG TGGGCGTTGT GAACATGATC
    GCCCCGTGCT GGCCGGAGAA CCACTACGCG CTACTGGACA CTTATCTTCA GGGTCTGTTC
    GCGCTCGCGA ACGATCCTGA TAACGATGTG CGCAGGCTCG TGTGCTCGGG ATTGGTGATG
    TTGATCAACG TATGCCCGGA AAAGTTGGCC CCAAACTTGC GCCAAATCAT CACGTACATG
    CTCGAGAGGC AAGACGACGA GGACAAGGAT GTGGCCATGG AGTCGTGCGA GTTCTGGGGA
    GCGTTTTGTG AGGCCGACCT CGGGGATGAT TACGTTCAGA TCTTGCGCGA GTTCACGCCG
    AGACTCATTC CGGTGCTTTT GACAAATATG GCGTACCAAG AGGACGACGA CGAGGTGATA
    CAAGCTGAGG ACGACGAGGT AAACGTTGGC AGGGAAGACA GAGACCAGGA TATTAAACCC
    ACATTCCGTG ACACCAAGGA TAAGGGCTCG CAGGGTGACG AGGCTGATGA CGGCCAGGAT
    GACACGGATG ACTTTGTGTG GAACCTGCGG AAGAGCTCTG CAAACGGACT TGACATTCTT
    TCAAACGTGT TCGGAGACGA GCTTTTGCCC ATCATACTTC CCGTTGTCGA GCAAAGGCTA
    CGTGAGTCGC GATGGGAGAT CCGCGAGAGC GCCATACTAG CACTCGGAGC GGTGGCGGAG
    GGTTGTTCGG CTGGTTTGCT CCCGTACCTT CCAACGCTTA TCACCTTTTT GTTGCCCATG
    TTGGATGATG CTCGTCCACT GGTACGATCA ACGACGTGTT GGACGCTCAG TCGATTCTCT
    CCGTGGGTGC TTCAGTGCGC GAGACCGTCG AACGACCCCA ACGCCATGCC GCAACAACAA
    GGAATGGAGC AGCTCAACAC ACTGATAACG GCTCAGTGCA AGAGGTGTTT GGATCATAAT
    AAGCACGTGC AGGCGGCGGC TTGCGGAGCA ATTGCGACCG TACTCGCTGA AGGTCGGGAC
    ACGATGGCTC CCTGGGCCGA GACAGTCGTA CAAACCCTCA CGCAGGCATT GGGGATGTAC
    CAACGCAAAA ATTTGCGCAA CCTGTATGAC GCACTCACTA TGCTCGCCGA AAACATCGGT
    CCGTCGCTGC AAGAAGCTCG ATTCGCTGGA GCTCTTTTGC CTGGAATGAT CCATAGATGG
    GATACCGCGA ATGGGGCTGA TCCAGAGCTC TTCCACTTGC TTGAATGCCT CACGGCGCTC
    ATCATTGGTT TCGGTGGGGC TGCAGGACAG TACAGTTCTG GAATCTTCAC GAAGTGCAAC
    GCCGCTCTGG GACTGATGCT TCAGCGCCGC GTCGCCGTAC AACGCGGCGA AATTCCAGCT
    GAGGAGTATT CTGTCGACGT TGTCATTTGT ACCCTTGACT TGCTTTCGGG TCTGTGCGAG
    GGTCTCGGAC CAGATATTGA AACTCTTGTG GCGCAGTCGC AACTCCGGGA AATCATTCTC
    GCCTGCTGCG TCGATGAATC TCCTGGAGTG AAACGAAGTG CCTATGCGCT CGTTGGTGAT
    CTCGCTCGCT CGTGCACCGC TCAGTTGAAC GCATCATTGC AGCAGTTCAT GGAGCTGATA
    ATCACGCAGC TCCAACCGTC GAATGTCGTC TCCATGACTA TGTCAGTGTG CAACAACGCG
    AGCTGGGCCG CGGGTGAGTT GGCCATTAGA ACTCCGCCCG ATGCTCTGCG TCCGTTCGTC
    GCGCCGTTAG CTCAGTGCAT GGTTCAAATT CTAGACATGC GCATGGTCAA CAGAGCTCTT
    GGTGAAAATG CGGCTATCAC GCTGGGACGC CTGGCGATGG TTTGTCCGGA AGACTTGCAA
    AGCGGTCTCT CCCACTTCGT GAACTCTTGG TGCTCTGCTC TTCGACGGCT TCGGGATGGT
    GTTGAAAAGG AGCACGGCTT TCAGGGATTG TGCAAGTTGA TCCAGATGAA TCCGACCGCC
    GCTGAGGGTG GGTTGGGTGC GTTCGTCGAG GCTATAGCCT CCTGGCGAGT GTGCCGTAAT
    GAGGCACTCG TTGCCACAAT GGGGCAGCTC CTCGTTGGCT TCAAGGATCA CATCGGAGCG
    CAAAAGTGGG AAATTGTAAA GCGTGATCTG GAACCGGGCG TCACGAGGAA ACTGGCGGAG
    CAGTACAATG TTTGA

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

    RefSeq XP_003082997.1
    CDS1..2835
    Translation

    Target ORF information:

    RefSeq Version XM_003082949.1
    Organism Ostreococcus tauri
    Definition Ostreococcus tauri putative transportin (ISS) (Ot14g02060) mRNA, complete cds.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003082949.1

    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
    ATGCGTCTCC ACGAAACCCC ACCACGCGAT CGCGATCGCG CCGCCGCCAC CGCGCGTTCG 
    ATCCCGCGCG TGGAAAAAAG ACGGACGCTA ATTGATGCGC GCATTGACGT CAAACCTCGC
    GCGCGCGCGC GGGAGAACGG CGCGCGCGCG GTCGCGGTCG CGCGAACGAC GTCCGGGNNN
    NNNNNNNNNN NNNNNNNGCT GGGAAGCTTG GAGCGATGCG CGACTTTTCC GGACTTTAAT
    CTGTACCTCG CGCACGTGTT GACGAGCGAG GAGGAGCCGG GGCGACGAGA GGACGTGCGA
    CAGTCGGCGG GGTTGCTGCT GAAGAATAAT CTCAAGACGT CGTGGACGAC GACGATGAGC
    GAGGAATATC GCGCGTTCGT GCGAGAGACG CTGGTGCGAT CGCTCGGACA CGGGTCGAGG
    TTGATTCGAA CGACGTGCGG GACGTGCGTG GCGGTGATCG TGCGGTGTGG TGGGGTGGAG
    AATTGGCCGA CGCTGTGGCC GGCGCTGGCG GCGGCGGTGG AGCAGGGCGA CGATAACTCT
    CGAGACGGCG CTTTGGACGC TTTGTACAAG GCGTGCGAGG AGGTGAACGG GAGATTGGAC
    GTCAAGGTGC CGGGGATGTC GGATTCCCCG GCGGGTGTGC TCATCCCGAG GCTCTTCGCG
    CTCTTCCAGG CGCCGAGCGC GAAGGTGCGT CAGCAGTCGG TGGGCGTTGT GAACATGATC
    GCCCCGTGCT GGCCGGAGAA CCACTACGCG CTACTGGACA CTTATCTTCA GGGTCTGTTC
    GCGCTCGCGA ACGATCCTGA TAACGATGTG CGCAGGCTCG TGTGCTCGGG ATTGGTGATG
    TTGATCAACG TATGCCCGGA AAAGTTGGCC CCAAACTTGC GCCAAATCAT CACGTACATG
    CTCGAGAGGC AAGACGACGA GGACAAGGAT GTGGCCATGG AGTCGTGCGA GTTCTGGGGA
    GCGTTTTGTG AGGCCGACCT CGGGGATGAT TACGTTCAGA TCTTGCGCGA GTTCACGCCG
    AGACTCATTC CGGTGCTTTT GACAAATATG GCGTACCAAG AGGACGACGA CGAGGTGATA
    CAAGCTGAGG ACGACGAGGT AAACGTTGGC AGGGAAGACA GAGACCAGGA TATTAAACCC
    ACATTCCGTG ACACCAAGGA TAAGGGCTCG CAGGGTGACG AGGCTGATGA CGGCCAGGAT
    GACACGGATG ACTTTGTGTG GAACCTGCGG AAGAGCTCTG CAAACGGACT TGACATTCTT
    TCAAACGTGT TCGGAGACGA GCTTTTGCCC ATCATACTTC CCGTTGTCGA GCAAAGGCTA
    CGTGAGTCGC GATGGGAGAT CCGCGAGAGC GCCATACTAG CACTCGGAGC GGTGGCGGAG
    GGTTGTTCGG CTGGTTTGCT CCCGTACCTT CCAACGCTTA TCACCTTTTT GTTGCCCATG
    TTGGATGATG CTCGTCCACT GGTACGATCA ACGACGTGTT GGACGCTCAG TCGATTCTCT
    CCGTGGGTGC TTCAGTGCGC GAGACCGTCG AACGACCCCA ACGCCATGCC GCAACAACAA
    GGAATGGAGC AGCTCAACAC ACTGATAACG GCTCAGTGCA AGAGGTGTTT GGATCATAAT
    AAGCACGTGC AGGCGGCGGC TTGCGGAGCA ATTGCGACCG TACTCGCTGA AGGTCGGGAC
    ACGATGGCTC CCTGGGCCGA GACAGTCGTA CAAACCCTCA CGCAGGCATT GGGGATGTAC
    CAACGCAAAA ATTTGCGCAA CCTGTATGAC GCACTCACTA TGCTCGCCGA AAACATCGGT
    CCGTCGCTGC AAGAAGCTCG ATTCGCTGGA GCTCTTTTGC CTGGAATGAT CCATAGATGG
    GATACCGCGA ATGGGGCTGA TCCAGAGCTC TTCCACTTGC TTGAATGCCT CACGGCGCTC
    ATCATTGGTT TCGGTGGGGC TGCAGGACAG TACAGTTCTG GAATCTTCAC GAAGTGCAAC
    GCCGCTCTGG GACTGATGCT TCAGCGCCGC GTCGCCGTAC AACGCGGCGA AATTCCAGCT
    GAGGAGTATT CTGTCGACGT TGTCATTTGT ACCCTTGACT TGCTTTCGGG TCTGTGCGAG
    GGTCTCGGAC CAGATATTGA AACTCTTGTG GCGCAGTCGC AACTCCGGGA AATCATTCTC
    GCCTGCTGCG TCGATGAATC TCCTGGAGTG AAACGAAGTG CCTATGCGCT CGTTGGTGAT
    CTCGCTCGCT CGTGCACCGC TCAGTTGAAC GCATCATTGC AGCAGTTCAT GGAGCTGATA
    ATCACGCAGC TCCAACCGTC GAATGTCGTC TCCATGACTA TGTCAGTGTG CAACAACGCG
    AGCTGGGCCG CGGGTGAGTT GGCCATTAGA ACTCCGCCCG ATGCTCTGCG TCCGTTCGTC
    GCGCCGTTAG CTCAGTGCAT GGTTCAAATT CTAGACATGC GCATGGTCAA CAGAGCTCTT
    GGTGAAAATG CGGCTATCAC GCTGGGACGC CTGGCGATGG TTTGTCCGGA AGACTTGCAA
    AGCGGTCTCT CCCACTTCGT GAACTCTTGG TGCTCTGCTC TTCGACGGCT TCGGGATGGT
    GTTGAAAAGG AGCACGGCTT TCAGGGATTG TGCAAGTTGA TCCAGATGAA TCCGACCGCC
    GCTGAGGGTG GGTTGGGTGC GTTCGTCGAG GCTATAGCCT CCTGGCGAGT GTGCCGTAAT
    GAGGCACTCG TTGCCACAAT GGGGCAGCTC CTCGTTGGCT TCAAGGATCA CATCGGAGCG
    CAAAAGTGGG AAATTGTAAA GCGTGATCTG GAACCGGGCG TCACGAGGAA ACTGGCGGAG
    CAGTACAATG TTTGA

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

    CloneID OOd77888
    Clone ID Related Accession (Same CDS sequence) XM_003082949.2
    Accession Version XM_003082949.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2730bp)
    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 1509984000000
    Organism Ostreococcus tauri
    Product Armadillo-type fold
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NC_014439). On Nov 8, 2017 this sequence version replaced XM_003082949.1. COMPLETENESS: incomplete on both ends.

    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
    ATGTCCACGT GGGCGCCCGC GACGGCGGGC ACGGCGCAGA TCGTCGCCCT GATCGCCGAG 
    TACTTGGACC CGAGGGCGAA TCAGCGAGAG ATGCTGGGAA GGTTGGAGCG ATGCGCGACT
    TTTCCGGACT TTAATCTGTA CCTCGCGCAC GTGTTGACGA GCGAGGAGGA GCCGGGGCGA
    CGAGAGGACG TGCGACAGTC GGCGGGGTTG CTGCTGAAGA ATAATCTCAA GACGTCGTGG
    ACGACGACGA TGAGCGAGGA ATATCGCGCG TTCGTGCGAG AGACGCTGGT GCGATCGCTC
    GGACACGGGT CGAGGTTGAT TCGAACGACG TGCGGGACGT GCGTGGCGGT GATCGTGCGG
    TGTGGTGGGG TGGAGAATTG GCCGACGCTG TGGCCGGCGC TGGCGGCGGC GGTGGAGCAG
    GGCGACGATA ACTCTCGAGA CGGCGCTTTG GACGCTTTGT ACAAGGCGTG CGAGGAGGTG
    AACGGGAGAT TGGACGTCAA GGTGCCGGGG ATGTCGGATT CCCCGGCGGG TGTGCTCATC
    CCGAGGCTCT TCGCGCTCTT CCAGGCGCCG AGCGCGAAGG TGCGTCAGCA GTCGGTGGGC
    GTTGTGAACA TGATCGCCCC GTGCTGGCCG GAGAACCACT ACGCGCTACT GGACACTTAT
    CTTCAGGGTC TGTTCGCGCT CGCGAACGAT CCTGATAACG ATGTGCGCAG GCTCGTGTGC
    TCGGGATTGG TGATGTTGAT CAACGTATGC CCGGAAAAGT TGGCCCCAAA CTTGCGCCAA
    ATCATCACGT ACATGCTCGA GAGGCAAGAC GACGAGGACA AGGATGTGGC CATGGAGTCG
    TGCGAGTTCT GGGGAGCGTT TTGTGAGGCC GACCTCGGGG ATGATTACGT TCAGATCTTG
    CGCGAGTTCA CGCCGAGACT CATTCCGGTG CTTTTGACAA ATATGGCGTA CCAAGAGGAC
    GACGACGAGG TGATACAAGC TGAGGACGAC GAGGTAAACG TTGGCAGGGA AGACAGAGAC
    CAGGATATTA AACCCACATT CCGTGACACC AAGGATAAGG GCTCGCAGGG TGACGAGGCT
    GATGACGGCC AGGATGACAC GGATGACTTT GTGTGGAACC TGCGGAAGAG CTCTGCAAAC
    GGACTTGACA TTCTTTCAAA CGTGTTCGGA GACGAGCTTT TGCCCATCAT ACTTCCCGTT
    GTCGAGCAAA GGCTACGTGA GTCGCGATGG GAGATCCGCG AGAGCGCCAT ACTAGCACTC
    GGAGCGGTGG CGGAGGGTTG TTCGGCTGGT TTGCTCCCGT ACCTTCCAAC GCTTATCACC
    TTTTTGTTGC CCATGTTGGA TGATGCTCGT CCACTGGTAC GATCAACGAC GTGTTGGACG
    CTCAGTCGAT TCTCTCCGTG GGTGCTTCAG TGCGCGAGAC CGTCGAACGA CCCCAACGCC
    ATGCCGCAAC AACAAGGAAT GGAGCAGCTC AACACACTGA TAACGGCTCA GTGCAAGAGG
    TGTTTGGATC ATAATAAGCA CGTGCAGGCG GCGGCTTGCG GAGCAATTGC GACCGTACTC
    GCTGAAGGTC GGGACACGAT GGCTCCCTGG GCCGAGACAG TCGTACAAAC CCTCACGCAG
    GCATTGGGGA TGTACCAACG CAAAAATTTG CGCAACCTGT ATGACGCACT CACTATGCTC
    GCCGAAAACA TCGGTCCGTC GCTGCAAGAA GCTCGATTCG CTGGAGCTCT TTTGCCTGGA
    ATGATCCATA GATGGGATAC CGCGAATGGG GCTGATCCAG AGCTCTTCCA CTTGCTTGAA
    TGCCTCACGG CGCTCATCAT TGGTTTCGGT GGGGCTGCAG GACAGTACAG TTCTGGAATC
    TTCACGAAGT GCAACGCCGC TCTGGGACTG ATGCTTCAGC GCCGCGTCGC CGTACAACGC
    GGCGAAATTC CAGCTGAGGA GTATTCTGTC GACGTTGTCA TTTGTACCCT TGACTTGCTT
    TCGGGTCTGT GCGAGGGTCT CGGACCAGAT ATTGAAACTC TTGTGGCGCA GTCGCAACTC
    CGGGAAATCA TTCTCGCCTG CTGCGTCGAT GAATCTCCTG GAGTGAAACG AAGTGCCTAT
    GCGCTCGTTG GTGATCTCGC TCGCTCGTGC ACCGCTCAGT TGAACGCATC ATTGCAGCAG
    TTCATGGAGC TGATAATCAC GCAGCTCCAA CCGTCGAATG TCGTCTCCAT GACTATGTCA
    GTGTGCAACA ACGCGAGCTG GGCCGCGGGT GAGTTGGCCA TTAGAACTCC GCCCGATGCT
    CTGCGTCCGT TCGTCGCGCC GTTAGCTCAG TGCATGGTTC AAATTCTAGA CATGCGCATG
    GTCAACAGAG CTCTTGGTGA AAATGCGGCT ATCACGCTGG GACGCCTGGC GATGGTTTGT
    CCGGAAGACT TGCAAAGCGG TCTCTCCCAC TTCGTGAACT CTTGGTGCTC TGCTCTTCGA
    CGGCTTCGGG ATGGTGTTGA AAAGGAGCAC GGCTTTCAGG GATTGTGCAA GTTGATCCAG
    ATGAATCCGA CCGCCGCTGA GGGTGGGTTG GGTGCGTTCG TCGAGGCTAT AGCCTCCTGG
    CGAGTGTGCC GTAATGAGGC ACTCGTTGCC ACAATGGGGC AGCTCCTCGT TGGCTTCAAG
    GATCACATCG GAGCGCAAAA GTGGGAAATT GTAAAGCGTG ATCTGGAACC GGGCGTCACG
    AGGAAACTGG CGGAGCAGTA CAATGTTTGA

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

    RefSeq XP_003082997.2
    CDS1..2730
    Translation

    Target ORF information:

    RefSeq Version XM_003082949.2
    Organism Ostreococcus tauri
    Definition Ostreococcus tauri Armadillo-type fold (OT_ostta14g01740), partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003082949.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    ATGTCCACGT GGGCGCCCGC GACGGCGGGC ACGGCGCAGA TCGTCGCCCT GATCGCCGAG 
    TACTTGGACC CGAGGGCGAA TCAGCGAGAG ATGCTGGGAA GGTTGGAGCG ATGCGCGACT
    TTTCCGGACT TTAATCTGTA CCTCGCGCAC GTGTTGACGA GCGAGGAGGA GCCGGGGCGA
    CGAGAGGACG TGCGACAGTC GGCGGGGTTG CTGCTGAAGA ATAATCTCAA GACGTCGTGG
    ACGACGACGA TGAGCGAGGA ATATCGCGCG TTCGTGCGAG AGACGCTGGT GCGATCGCTC
    GGACACGGGT CGAGGTTGAT TCGAACGACG TGCGGGACGT GCGTGGCGGT GATCGTGCGG
    TGTGGTGGGG TGGAGAATTG GCCGACGCTG TGGCCGGCGC TGGCGGCGGC GGTGGAGCAG
    GGCGACGATA ACTCTCGAGA CGGCGCTTTG GACGCTTTGT ACAAGGCGTG CGAGGAGGTG
    AACGGGAGAT TGGACGTCAA GGTGCCGGGG ATGTCGGATT CCCCGGCGGG TGTGCTCATC
    CCGAGGCTCT TCGCGCTCTT CCAGGCGCCG AGCGCGAAGG TGCGTCAGCA GTCGGTGGGC
    GTTGTGAACA TGATCGCCCC GTGCTGGCCG GAGAACCACT ACGCGCTACT GGACACTTAT
    CTTCAGGGTC TGTTCGCGCT CGCGAACGAT CCTGATAACG ATGTGCGCAG GCTCGTGTGC
    TCGGGATTGG TGATGTTGAT CAACGTATGC CCGGAAAAGT TGGCCCCAAA CTTGCGCCAA
    ATCATCACGT ACATGCTCGA GAGGCAAGAC GACGAGGACA AGGATGTGGC CATGGAGTCG
    TGCGAGTTCT GGGGAGCGTT TTGTGAGGCC GACCTCGGGG ATGATTACGT TCAGATCTTG
    CGCGAGTTCA CGCCGAGACT CATTCCGGTG CTTTTGACAA ATATGGCGTA CCAAGAGGAC
    GACGACGAGG TGATACAAGC TGAGGACGAC GAGGTAAACG TTGGCAGGGA AGACAGAGAC
    CAGGATATTA AACCCACATT CCGTGACACC AAGGATAAGG GCTCGCAGGG TGACGAGGCT
    GATGACGGCC AGGATGACAC GGATGACTTT GTGTGGAACC TGCGGAAGAG CTCTGCAAAC
    GGACTTGACA TTCTTTCAAA CGTGTTCGGA GACGAGCTTT TGCCCATCAT ACTTCCCGTT
    GTCGAGCAAA GGCTACGTGA GTCGCGATGG GAGATCCGCG AGAGCGCCAT ACTAGCACTC
    GGAGCGGTGG CGGAGGGTTG TTCGGCTGGT TTGCTCCCGT ACCTTCCAAC GCTTATCACC
    TTTTTGTTGC CCATGTTGGA TGATGCTCGT CCACTGGTAC GATCAACGAC GTGTTGGACG
    CTCAGTCGAT TCTCTCCGTG GGTGCTTCAG TGCGCGAGAC CGTCGAACGA CCCCAACGCC
    ATGCCGCAAC AACAAGGAAT GGAGCAGCTC AACACACTGA TAACGGCTCA GTGCAAGAGG
    TGTTTGGATC ATAATAAGCA CGTGCAGGCG GCGGCTTGCG GAGCAATTGC GACCGTACTC
    GCTGAAGGTC GGGACACGAT GGCTCCCTGG GCCGAGACAG TCGTACAAAC CCTCACGCAG
    GCATTGGGGA TGTACCAACG CAAAAATTTG CGCAACCTGT ATGACGCACT CACTATGCTC
    GCCGAAAACA TCGGTCCGTC GCTGCAAGAA GCTCGATTCG CTGGAGCTCT TTTGCCTGGA
    ATGATCCATA GATGGGATAC CGCGAATGGG GCTGATCCAG AGCTCTTCCA CTTGCTTGAA
    TGCCTCACGG CGCTCATCAT TGGTTTCGGT GGGGCTGCAG GACAGTACAG TTCTGGAATC
    TTCACGAAGT GCAACGCCGC TCTGGGACTG ATGCTTCAGC GCCGCGTCGC CGTACAACGC
    GGCGAAATTC CAGCTGAGGA GTATTCTGTC GACGTTGTCA TTTGTACCCT TGACTTGCTT
    TCGGGTCTGT GCGAGGGTCT CGGACCAGAT ATTGAAACTC TTGTGGCGCA GTCGCAACTC
    CGGGAAATCA TTCTCGCCTG CTGCGTCGAT GAATCTCCTG GAGTGAAACG AAGTGCCTAT
    GCGCTCGTTG GTGATCTCGC TCGCTCGTGC ACCGCTCAGT TGAACGCATC ATTGCAGCAG
    TTCATGGAGC TGATAATCAC GCAGCTCCAA CCGTCGAATG TCGTCTCCAT GACTATGTCA
    GTGTGCAACA ACGCGAGCTG GGCCGCGGGT GAGTTGGCCA TTAGAACTCC GCCCGATGCT
    CTGCGTCCGT TCGTCGCGCC GTTAGCTCAG TGCATGGTTC AAATTCTAGA CATGCGCATG
    GTCAACAGAG CTCTTGGTGA AAATGCGGCT ATCACGCTGG GACGCCTGGC GATGGTTTGT
    CCGGAAGACT TGCAAAGCGG TCTCTCCCAC TTCGTGAACT CTTGGTGCTC TGCTCTTCGA
    CGGCTTCGGG ATGGTGTTGA AAAGGAGCAC GGCTTTCAGG GATTGTGCAA GTTGATCCAG
    ATGAATCCGA CCGCCGCTGA GGGTGGGTTG GGTGCGTTCG TCGAGGCTAT AGCCTCCTGG
    CGAGTGTGCC GTAATGAGGC ACTCGTTGCC ACAATGGGGC AGCTCCTCGT TGGCTTCAAG
    GATCACATCG GAGCGCAAAA GTGGGAAATT GTAAAGCGTG ATCTGGAACC GGGCGTCACG
    AGGAAACTGG CGGAGCAGTA CAATGTTTGA

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