MICPUN_97912 cDNA ORF clone, Micromonas commoda

The following MICPUN_97912 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the MICPUN_97912 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
OMg05455 XM_002504700.1
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Micromonas commoda condensin complex component partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
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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 OMg05455
    Clone ID Related Accession (Same CDS sequence) XM_002504700.1
    Accession Version XM_002504700.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3513bp)
    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 1498060800000
    Organism Micromonas commoda
    Product condensin complex component
    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_013046). 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
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    ATGTACGTCG AGGAAGTGTG CATCGACGGC TTCAAGTCCT ACGCGCAGCG GACCGTTGTC 
    CCGGCGTTCG ACCCCCTGTT CAACGCCATC ACCGGCCTGA ACGGGTCCGG TAAATCCAAC
    ATCCTGGACT CGATATGCTT CGTGCTGGGC ATCACCAACC TATCGCAGGT TCGTGCGGCG
    TCGCTGCAGG AGCTTGTGTA CAAGCAGGGC CAGGCGGGCG TCACCAAGGC GTCCGTATCC
    ATCACCTTCA ACAACGCCGA TAAGTCCCGC TCCCCCGTGG GCTACGAGCA CTGCGACCAG
    ATCATCGTCA CCAGGCAGAT CGTCATCGGC GGCAGAAACA AGTACCTCAT CAACGGCCAC
    GTCGCGCAGC CAACGCGCGT GCAGAACCTC TTCCACTCCG TGCAGCTCAA CGTCAACAAC
    CCGCACTTCC TCATCATGCA GGGGCGCATC ACCAAGGTTC TCAACATGAA GCCGCCGGAG
    ATCCTCGGCA TGCTCGAGGA AGCCGCGGGC ACGCGCATGT ACGAGACGAA GAAGGACGCC
    GCGCTCAAGA CGCTCGAGAA GAAGCAGACG AAGGTTGACG AGATCGACAA GCTCCTCGAG
    GAGGAGATCT TGCCCACCAT CGAGAAGCTC CGCAAGGAAC GCGGCGATTA CATGAAGTGG
    CAGCTCGGCA ACGACTCTCT CGAGCGCCTC CGCCGCTTCT GCGTGGCGTG GGAGTTTTCG
    CGGTGCAAGG AGGCCGTGGA GGGCCAGAGC GAGGGGGAGA CGGCGGTCAA GTCCCAGCTC
    GAGGAGCTCG ACGCGCGCGC GCACGACCGC GCCGCGCAGG GTGCCGACGT GGAGGCTGAG
    ATGAAACGCG TCGCGAAGGA GAAGGCTTCC AAGGCGGGGG GCGCGATGAC CTCGGCGTCC
    GCGGAGGTTG ACGAGCTCTC CAAGGAGCTC GTGAAGCACA CCGCGGCGTG GACGCACAAG
    AAGGACGCGG TCAAGGCTGA GAAGAAGAAC GTCGAGAAGT TCCAGAAGCA GGCCCAGAAG
    CACGAGGAGG CGACGGCTAA GGAGGCGGAG AGACTCGACC AACTCGCCGC CGACGCCGAC
    GCCCGCGCCG AGGCGCTCAA GGATGCCGAG CTCAAGGCGG AGAAGGCTGA GATCTCGGGC
    AGCGGCGCGG GAGGCGACGG CGACAAGTCC CTCCAGACGC AGCTCACCGA GGCTAACGCG
    TCAGTCGCCG ACGCCACCGC GTCGGCTAAG AACGCGGCTC TCACCGCGAA GCACTGCGAA
    AAGGAGCTCG CGGCCGGCGG CGGCGAGTCG TCCACCAACC TCGACGCCCT GGAGGCTGAG
    TGCGAGACAA AGCGCAAAAT CCTCGACAAG GCTCAGGAGA AGGTTGACGT CCTGAACGGC
    CACCTCGCGG GCCTCGACTT CAAGTTCAAG GACCCGGAGG CCAAGTTCGA CCGCTCTCGC
    GTCAAGGGCG TGGTCGCCAA GCTCATGCAG GTCAAAGACC CGGCGATGTC CACCGCCCTC
    GAGGTTGTCG CCGGCGGTAA GCTGTACCAA GTCGTGGTCG ACACCGAGGT GACCGGCAAG
    GCTCTGCTGT CCAAGGGTCA ACTCCAGAAG AGGGTCACCA TCATCCCGCT CAACAAGATT
    GACGCGCGAA CGTGCTCCAA CTCCCAGTGC GCGGCCGCCG AGAGGGTCTC TCACGGCGAC
    GCCAAGCTGG CGCTGTCCCT CGTCACCTGC GACGCCGAGG TTGAAGCCGT GATGGCGTAC
    GTATTCGGCA AGGCTTTCGT GTGCAAGGAT GCCGCCACCG CGCGCGCCGT CGCGTTCGAC
    AAGGACGTCC TCACCAACTG CGTCACCGTC GAGGGCGACC TGCTCAACCC CGGCGGCTTG
    CTCACCGGCG GGTCGCGCAA CAACGGCAAC TCCGTCCTCG CCAAGCTTCA CGCCCTCCAC
    TCCGCCGAGA CGGCGCTCGA CGCCGCCAAG GCGTCGCTCG CCGAGGTGGA ATCCAAGCTG
    AAGGAGTGCG CCACTGCCGC CAAGGCCTCC GCCAAGCTCG AGGCTGCGCT GGACCAGGCT
    GAGCACGCGC TCGGTCTCGT CAGGCAAAAG TGCGAGGGGT CCGAGTCGCA CCAGCTCGGG
    GAGAAGGTTG CGAAACTCGA AGCCGATCTC GCCGCCGCCA AAGAGGCGGG CGCCGCCGCC
    GACGAGAAGA AGGCGACCGC GTCCGAGACC GCGGCGATGC TCAAGAAGGA GATCGAGTCG
    TTCGCGAAGG AGCGTGATTC GCGCCTCAAG GCTGCGGAGA AGGCGCTCAA GGATGCGCGT
    ACGGCCGTGA ACAAGGCGAG GGCGGACGTT AAATCGGCGG AGGGCGAGAT GACCGCCGCG
    AGGGTGGAGC GCGAGTCCGC CGCCGCCGAG AAGGACGCCA TCGCCGAGAA CATCGCGCAG
    GCCGAAGCCG CCGTCGCGGA GCTCGAGCTC GAGGCTGCGG AGCTCGAGAA GGAGGTTGAG
    CGCCGCCGCG CCGCCTACGA CGAGAGGGCT GCCGCGTTGG ACGCTCTCAA GTCTGAGCTG
    GCGGCTTGCG ACAAGGAGAG CGCCAGGCTG CAAAAGACGC TCGCCAAGAT GGAACGCGAG
    GCGGACGCGG ACGCGGTCGA GCGCAAGAAG CTCGAACACA AGCTCGCGCG CATGGAGAAG
    GACGCCGACG AGTCCCGCGC CGCGCTCAAG GCGTTGCGCG AGGAGCACCC GTGGATCGAC
    GCCGAGGAGC GTTACTTTGG CGAAGCAAAC GGCGACTATG ATTTCGACGC GAGGGACCCC
    GTCGCCGCCA CCGAGGAGTT GGCCAAGGCT GAGTCCGAGC AGGCGTCCCT CGCCAAGCGC
    ATCAACAAGA AGGTCATCGC GATGTTCGAC AAGGCTGAGG CTGAGTTCAA GGCGCTCCAG
    GAGAAGCGCA GGATCGTGCT CAACGATAGG TCCAAGATTG AAGCCGTCAT CGGCGAGTTG
    GATGAGAAGA AGAAGGAGGC TCTGAAGGTG ACGTGGGAGA AGGTGACGGG CGATTTCGGT
    TCCATCTTCA GCACCCTACT CCCCGGTACC ACCGCCAAGC TCGAACCCCC CGAGGGAGAG
    TCCTTCCTCG CCGGTCTGGA GGTGCGGGTC GCGTTTGGGG GTGTGTGGAA GGAGTCCCTC
    ACCGAGCTCT CCGGCGGCCA GCGCTCGCTG CTGGCGCTCT CGCTGATCCT CGCGCTTCTG
    CTCTTCAAGC CGGCGCCCAT CTACATCCTC GACGAGGTGG ACGCCGCGCT CGACCTGAGC
    CACACGCAGA ACATCGGGCG CATGATCCGC GCGCACTTCC CGTACTCCCA GTTCATCGTC
    GTGTCCCTGA AGGAGGGCAT GTTCAACAAC GCCAACTGCA TCTTCAGGAC CAAATTCGTC
    GACGGCGTCT CCACGGTGAC GAGGACGGTG CCCGCGCTCA AGGCTGCCGA TAACGCCTCG
    GAGATGGGGG GAATCGACGC GGCGAGCAAG AAGAGGGCGG CGGCGAAGGG AAAGGTCGGA
    AGGAACGGCG CCAAGGAGAA CGTTCCCGCG TGA

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

    RefSeq XP_002504746.1
    CDS1..3513
    Translation

    Target ORF information:

    RefSeq Version XM_002504700.1
    Organism Micromonas commoda
    Definition Micromonas commoda condensin complex component partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002504700.1

    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
    ATGTACGTCG AGGAAGTGTG CATCGACGGC TTCAAGTCCT ACGCGCAGCG GACCGTTGTC 
    CCGGCGTTCG ACCCCCTGTT CAACGCCATC ACCGGCCTGA ACGGGTCCGG TAAATCCAAC
    ATCCTGGACT CGATATGCTT CGTGCTGGGC ATCACCAACC TATCGCAGGT TCGTGCGGCG
    TCGCTGCAGG AGCTTGTGTA CAAGCAGGGC CAGGCGGGCG TCACCAAGGC GTCCGTATCC
    ATCACCTTCA ACAACGCCGA TAAGTCCCGC TCCCCCGTGG GCTACGAGCA CTGCGACCAG
    ATCATCGTCA CCAGGCAGAT CGTCATCGGC GGCAGAAACA AGTACCTCAT CAACGGCCAC
    GTCGCGCAGC CAACGCGCGT GCAGAACCTC TTCCACTCCG TGCAGCTCAA CGTCAACAAC
    CCGCACTTCC TCATCATGCA GGGGCGCATC ACCAAGGTTC TCAACATGAA GCCGCCGGAG
    ATCCTCGGCA TGCTCGAGGA AGCCGCGGGC ACGCGCATGT ACGAGACGAA GAAGGACGCC
    GCGCTCAAGA CGCTCGAGAA GAAGCAGACG AAGGTTGACG AGATCGACAA GCTCCTCGAG
    GAGGAGATCT TGCCCACCAT CGAGAAGCTC CGCAAGGAAC GCGGCGATTA CATGAAGTGG
    CAGCTCGGCA ACGACTCTCT CGAGCGCCTC CGCCGCTTCT GCGTGGCGTG GGAGTTTTCG
    CGGTGCAAGG AGGCCGTGGA GGGCCAGAGC GAGGGGGAGA CGGCGGTCAA GTCCCAGCTC
    GAGGAGCTCG ACGCGCGCGC GCACGACCGC GCCGCGCAGG GTGCCGACGT GGAGGCTGAG
    ATGAAACGCG TCGCGAAGGA GAAGGCTTCC AAGGCGGGGG GCGCGATGAC CTCGGCGTCC
    GCGGAGGTTG ACGAGCTCTC CAAGGAGCTC GTGAAGCACA CCGCGGCGTG GACGCACAAG
    AAGGACGCGG TCAAGGCTGA GAAGAAGAAC GTCGAGAAGT TCCAGAAGCA GGCCCAGAAG
    CACGAGGAGG CGACGGCTAA GGAGGCGGAG AGACTCGACC AACTCGCCGC CGACGCCGAC
    GCCCGCGCCG AGGCGCTCAA GGATGCCGAG CTCAAGGCGG AGAAGGCTGA GATCTCGGGC
    AGCGGCGCGG GAGGCGACGG CGACAAGTCC CTCCAGACGC AGCTCACCGA GGCTAACGCG
    TCAGTCGCCG ACGCCACCGC GTCGGCTAAG AACGCGGCTC TCACCGCGAA GCACTGCGAA
    AAGGAGCTCG CGGCCGGCGG CGGCGAGTCG TCCACCAACC TCGACGCCCT GGAGGCTGAG
    TGCGAGACAA AGCGCAAAAT CCTCGACAAG GCTCAGGAGA AGGTTGACGT CCTGAACGGC
    CACCTCGCGG GCCTCGACTT CAAGTTCAAG GACCCGGAGG CCAAGTTCGA CCGCTCTCGC
    GTCAAGGGCG TGGTCGCCAA GCTCATGCAG GTCAAAGACC CGGCGATGTC CACCGCCCTC
    GAGGTTGTCG CCGGCGGTAA GCTGTACCAA GTCGTGGTCG ACACCGAGGT GACCGGCAAG
    GCTCTGCTGT CCAAGGGTCA ACTCCAGAAG AGGGTCACCA TCATCCCGCT CAACAAGATT
    GACGCGCGAA CGTGCTCCAA CTCCCAGTGC GCGGCCGCCG AGAGGGTCTC TCACGGCGAC
    GCCAAGCTGG CGCTGTCCCT CGTCACCTGC GACGCCGAGG TTGAAGCCGT GATGGCGTAC
    GTATTCGGCA AGGCTTTCGT GTGCAAGGAT GCCGCCACCG CGCGCGCCGT CGCGTTCGAC
    AAGGACGTCC TCACCAACTG CGTCACCGTC GAGGGCGACC TGCTCAACCC CGGCGGCTTG
    CTCACCGGCG GGTCGCGCAA CAACGGCAAC TCCGTCCTCG CCAAGCTTCA CGCCCTCCAC
    TCCGCCGAGA CGGCGCTCGA CGCCGCCAAG GCGTCGCTCG CCGAGGTGGA ATCCAAGCTG
    AAGGAGTGCG CCACTGCCGC CAAGGCCTCC GCCAAGCTCG AGGCTGCGCT GGACCAGGCT
    GAGCACGCGC TCGGTCTCGT CAGGCAAAAG TGCGAGGGGT CCGAGTCGCA CCAGCTCGGG
    GAGAAGGTTG CGAAACTCGA AGCCGATCTC GCCGCCGCCA AAGAGGCGGG CGCCGCCGCC
    GACGAGAAGA AGGCGACCGC GTCCGAGACC GCGGCGATGC TCAAGAAGGA GATCGAGTCG
    TTCGCGAAGG AGCGTGATTC GCGCCTCAAG GCTGCGGAGA AGGCGCTCAA GGATGCGCGT
    ACGGCCGTGA ACAAGGCGAG GGCGGACGTT AAATCGGCGG AGGGCGAGAT GACCGCCGCG
    AGGGTGGAGC GCGAGTCCGC CGCCGCCGAG AAGGACGCCA TCGCCGAGAA CATCGCGCAG
    GCCGAAGCCG CCGTCGCGGA GCTCGAGCTC GAGGCTGCGG AGCTCGAGAA GGAGGTTGAG
    CGCCGCCGCG CCGCCTACGA CGAGAGGGCT GCCGCGTTGG ACGCTCTCAA GTCTGAGCTG
    GCGGCTTGCG ACAAGGAGAG CGCCAGGCTG CAAAAGACGC TCGCCAAGAT GGAACGCGAG
    GCGGACGCGG ACGCGGTCGA GCGCAAGAAG CTCGAACACA AGCTCGCGCG CATGGAGAAG
    GACGCCGACG AGTCCCGCGC CGCGCTCAAG GCGTTGCGCG AGGAGCACCC GTGGATCGAC
    GCCGAGGAGC GTTACTTTGG CGAAGCAAAC GGCGACTATG ATTTCGACGC GAGGGACCCC
    GTCGCCGCCA CCGAGGAGTT GGCCAAGGCT GAGTCCGAGC AGGCGTCCCT CGCCAAGCGC
    ATCAACAAGA AGGTCATCGC GATGTTCGAC AAGGCTGAGG CTGAGTTCAA GGCGCTCCAG
    GAGAAGCGCA GGATCGTGCT CAACGATAGG TCCAAGATTG AAGCCGTCAT CGGCGAGTTG
    GATGAGAAGA AGAAGGAGGC TCTGAAGGTG ACGTGGGAGA AGGTGACGGG CGATTTCGGT
    TCCATCTTCA GCACCCTACT CCCCGGTACC ACCGCCAAGC TCGAACCCCC CGAGGGAGAG
    TCCTTCCTCG CCGGTCTGGA GGTGCGGGTC GCGTTTGGGG GTGTGTGGAA GGAGTCCCTC
    ACCGAGCTCT CCGGCGGCCA GCGCTCGCTG CTGGCGCTCT CGCTGATCCT CGCGCTTCTG
    CTCTTCAAGC CGGCGCCCAT CTACATCCTC GACGAGGTGG ACGCCGCGCT CGACCTGAGC
    CACACGCAGA ACATCGGGCG CATGATCCGC GCGCACTTCC CGTACTCCCA GTTCATCGTC
    GTGTCCCTGA AGGAGGGCAT GTTCAACAAC GCCAACTGCA TCTTCAGGAC CAAATTCGTC
    GACGGCGTCT CCACGGTGAC GAGGACGGTG CCCGCGCTCA AGGCTGCCGA TAACGCCTCG
    GAGATGGGGG GAATCGACGC GGCGAGCAAG AAGAGGGCGG CGGCGAAGGG AAAGGTCGGA
    AGGAACGGCG CCAAGGAGAA CGTTCCCGCG TGA

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

  • PubMed

    Green evolution and dynamic adaptations revealed by genomes of the marine picoeukaryotes Micromonas.
    Science (New York, N.Y.)324(5924)268-72(2009 Apr)
    Worden AZ,Lee JH,Mock T,Rouzé P,Simmons MP,Aerts AL,Allen AE,Cuvelier ML,Derelle E,Everett MV,Foulon E,Grimwood J,Gundlach H,Henrissat B,Napoli C,McDonald SM,Parker MS,Rombauts S,Salamov A,Von Dassow P,Badger JH,Coutinho PM,Demir E,Dubchak I,Gentemann C,Eikrem W,Gready JE,John U,Lanier W,Lindquist EA,Lucas S,Mayer KF,Moreau H,Not F,Otillar R,Panaud O,Pangilinan J,Paulsen I,Piegu B,Poliakov A,Robbens S,Schmutz J,Toulza E,Wyss T,Zelensky A,Zhou K,Armbrust EV,Bhattacharya D,Goodenough UW,Van de Peer Y,Grigoriev IV