CC1G_13601 cDNA ORF clone, Coprinopsis cinerea okayama7#130(Coprinus cinereus okayama7#130)

The following CC1G_13601 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the CC1G_13601 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
OCj08293 XM_002912022.1
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Coprinopsis cinerea okayama7#130 hypothetical protein (CC1G_13601), partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $951.30
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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 OCj08293
    Clone ID Related Accession (Same CDS sequence) XM_002912022.1
    Accession Version XM_002912022.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5697bp)
    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 1503763200000
    Organism Coprinopsis cinerea okayama7#130(Coprinus cinereus okayama7#130)
    Product hypothetical protein
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NW_003307544). COMPLETENESS: incomplete on the 5' 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
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    ATGGAAGAGG ACGATATCTC CTTTCTCGAT GTCCCGGCTG ACGCTGCGTC GACGTCGTAC 
    GAGAGACAGC TGTCGTCGCT TAAGACCTAC CTAGATTCCC TCCCATATGA ATGCGAAACT
    GTTGAACAGT TCCAAGAAAT CCTGGAGGAT ATCGTAGGAA AGATATGCAT TGCTGCAGAG
    GCGAAGCATT GGAACATGCT TACCCAGTGG GATGGACTGC TTCAATGCTG GTTGACTTTG
    CTTTATCCAA TGCCGACGAC GACGAGGGCG AAGCTCATTC GAGTGTACTA CGAACTGTGT
    ATTCTTCCTG GAGTCGACGC ACGTTGCGTT CGCAGTTGGG CGGATACGCT CTCTCGGCTT
    ATTGGAAGCA AGTATAGAGG CTTGCGGAAG CTCGAGCCTT CCGACTTGGA GTTACCTTGG
    GAGCCACTGT GGGAGATGGT GAAGAAAGAG CTGTGGCCTA AATTGCCTGC TACCGATGTC
    TCTCGAAACA TTGTCACTTT GCTGTTCTAC GTGATAGACA AGTGCAGGCC CTACTACCCT
    CCCAGCTCTG TCCCAGAGAT GCTCGACACG TTTCTGCCGA TGTTAACTCA AGAGAGCTTA
    TTGACCATGA TCCCTGTATT GACTTCTTTC CTCCCCCTCA CCCAAAGTCG CCTGTACATC
    CCTCCTCTGT TCAAGATTTG GGAGGCGTTC AATTCGTCCA TTGTGGATGA CCGCATGCTC
    GAACTCTGTG GCGACCTCTC CGAAGAACAT GTCGCTGGTA CTGCTGGGGA AGATGGCGAA
    TACGCGGCTG AGTGGAAAGA TGTGGGTATT TGGACGCAGT GGCAGTGGGA TTTACTGTCT
    GGGAAATGTA TGGGCTCTAC CAATATGCCG GTCGGACTTC TGGGGGGCCA ACTCAACACG
    ACCTCTGGCA TCGCGGACAG CAACAGCAAA CACGATGCCG TAGCGAAGAT TTTCGTATAT
    TCGATGAGAG TTGACGGTGA AGTCCGGGAT ACGTCTGCAG AAGCTTCGAA GCAGACTGGC
    TACTTGGCTG GTTCCAAGGC GCTGAGTTCT CTCGAGAAGC TTATCAACAG TTCGGAAAGC
    TACTTCCACC CGTCCAATAC AGGACCTTGG ACTCTAAGTC TGACCTCGTT GATTCAACGC
    CTGTGCGCGG AATTTATCAC TCGGTACAAC GAGCAAGATA CTCCAAACTG CAAAGTCCCA
    GAGTCCCAAC GCCTGACTCC TCAAATCCGC CGCGCATTTG TGACACTTCT GAGAACCCCC
    GCACTGCTTT CGATGTTCGC CAAAGACGCC GTCTCGGCCA GCTACGCCCA GGGTGCGCTG
    AGGACGTTGG CGATGCTTGA ACCCAAGCTT GTCATGCCGG AGTTGCTTGA CAGGGCATAC
    GGTGGTTTGG AGGTTGTCAA CGAGACGCAT CGGACTACCG GCGTACTCAG TACGCTGTCC
    GGTGTTGCAA GGCCTCTGGT TACGAGTAAC ATTTGGTTGG GAGGACAGAA GCACTTGGTT
    CCCTTGCTGG ATCTATGCTT GCCTGGTATC GATCTGAACG ATCCGACGAA GACGATCTAC
    GCTTGCATGT TCATCGTCAA CACTGTTCAA CACATCAAGG TCGGAGATCT GTCTGCGCAT
    CAGGGCGGCG TCCCTTTCAC TAGCGATTTT GGAGAGGACA GGATGGACGT TGACGAGCAT
    GTGGACCACC TCCCGGACGA CCTTGGAGGC CCTGTTCTTA GTCGGGAAGA AGAGCAGTCG
    CTGACTCGTG ATAGCACCTC TGGCTTTGCT GACTGGGTCG TCTCACTCTT CCGACGAGTC
    TTCACTCTCT ACGAGAACCT CCCCGAAGAA GGTGGCAAAC GGAACGTCAC AGGAGGACGT
    ACGGAAGAGA GCGTCCTCAA ACATATCAAG GGAATGCTGG ACATGGTCTG CTTGCACCTT
    TCCGAACCTA TCTTCGACCT CGTCTTGAAA CTCGTCTACG AGTATGCGAC AACGAACGCC
    AAGTCGAATG CGGTCAGAGC GTTTGGCCAG TTGATTTCGT CGATGGCCAA GGCGAATCCG
    GCGAAGGTCG TGGCTAGATT CTTGCCCCAT TGTGCGGAGC AGATTGAGGA AGAGCTGAGG
    CATGGCGCGT CGAGTGTGAG GACGACGTCG ACGCATGCGG CTGTGCCATC CGATACCACA
    TTGCATTGGA ATTTGGCCAT ACTGCGAGGG TGCCTGGGGT ATGGAGCCAG TGCGCTCCTC
    GACTATAAGC CTTTGATTCT TCGACTGCTT TCGGTAGCAG TGGAAAAGAC CAAGAGCGAG
    CGCGGGTACA CGAGCACTGG TCGACTCATC ACCAGAATCT TGACAACGCT GAGCTCCGTC
    TACCCATTGA ATGGCCGATT CGTGAACACC TCTGAATGGG AACAGCCAGG CAAGTGCCTT
    TGGCTGCACT TTGACCGCTC CCACAACCAG CATTGGGGTA AATTGTATGA ACCGAAAGAC
    GTTCAAATCG ATTGGCATGT GCCTTCGGCG GAAGAGATCG ACTTCGTACT TGAGATCATG
    GACACCATCG AGAAGCCCAT GCTCGACAAA GTCGAGTCTC TCCTCGAGAA CACTTCCAAG
    TGGGACCACG TTTCAAGGAA CGATTTCTGC AGGTTCCTCC AAGCGGCTCG AGCCGTCTGG
    ATAGGCCTTC CTACGATCTA CAGAATCCAA GAACCCGAAG TCGTCCGACC ACTGCTCCTA
    CCCGAATACG AAGTACCCGA CATGCTTGTT AAAGCGCTCA ACGTTAACTG CGGTTTCGTG
    CTCACTGACC CCAGTGATCC GCGATACCAA AAGGTTGCTG CCTATCGCGA GAGGTTCGGT
    CGCCTTCTCG TCAAAGCGTC GTCTATCTTG CGTCAGAACA GCGGAGGAGA AGACCACATC
    GATGCTGTGA TCTATGTTAC TCGGTGCATC GACACTTATT TGGGGTCGTA CGGTGTGAGC
    AATAGCGAGT ATGATGCGAT GCAGAAGAAT TACAAGCAAG CCCGCGAGTT GAACCGCTCG
    TGGTTACGCC AGAAGGATAA CTCGAGGTTG ATTTTTGTGA AGAGGGCGCA CGTATATCAT
    ATGAGCCGGC TTCATATCCA GTCCATGTTT AGATATAGGT CTGAGCTAGA TGACCAATTA
    CTGCTAGAAT TGGCCGAGCT GTCGCTTTTG CAGTATACGA GGATCAGAAG GCAGGCACAA
    GCGACTTTGA TTACTGCTAC CATGCGATAC GTCAGATCCA CAAGACTGAT TTTGCCGACA
    ATCTTCAAGG GCTTGACCCG TGGAAGCGAT GCTGACGCGA TCAAGGGTGC TCTGTATGTC
    CTCTCGAGCA GAGGCATTGC TGGGTACACA TTGTCAGACC TTGAATACAA CAAGACGTAC
    CTCCTGTCGA TCCTCGAGTG TCAGCATGAA GAGAAGCCTT CAATCCAGAA GCTTGTCTCA
    TCGGTGGCGA GCGATACGCT ATCGCTAGTT AACGAAGACC ATACGCACAC AGCTGCCTAT
    CGCTTGAAGA CACCGCGCCT CGATGCCGCC ATTGCAGATC TTCGTCCAGA ATTCTCGGAT
    TCGTTCCCCG ACCAGCGCCT GGCAACTGTG GTGCTCGAGA AAAACAAGGC TCGGGTTGAA
    CGAAGGCTGC AGCTTTCAGA GGAGATCATC TTAGATGTCT TGGAGGTCGC GAAGAGATCG
    ACAACACATT GGCGCTATTC CCAAATCGCG CTGCAATTCC TGTCGAACTT GATCTGGAGA
    GAGGTTCTAG TCTCACCCGA GTTGGCTAAG TTCGTAGCCG AGCAGACGGT TAGCCCGCAG
    CAAACGATAC GTTCGCATGC GCAGAGGACA GCGGCACTTC TCCTTTACCA CGTCAAGATA
    CGGACTTACT CGAAAACGAG GGAAGATCGA TGGGCGGAAA AGTGGGCAAG TCCATGGAAA
    ACCCAGGTTC CTGTGAATGA CCCGGCGACC TTCCTCGACG AGTATCACAG AGGGATTCAA
    CAGTCGACTG GCAACATTTA CATCGACAAG TTCGCCACTG GATTCTTGTC ATGGGCGCCT
    AAAGTCAATG CCTATCACTC CCCGGACAGT GTTTCCGCTG TCCAGTGGGA AGAGGCCTCT
    TTGCCAATGA TGCACGCCTT CCACAGCGTT GTCGGTGGGC CAGACTATGT CAAACGGATT
    GCCACCCTCT GGGGGCAGGA ATCGGATAAG AATGTCGCGA GCTTGGATCT CAGGATGGAG
    AACGTGGTCT ACCTCAAGCT TCTATCTAAG TTCTACGGAG ATGCCTTATT GCCTAAAGTG
    CTAGAAGAGG CAGATTCGTT GGTCGTAGAT GCCGATAAAT TCAAGCAACG AGCTGGTGCC
    GAGTTTGTTC TGTCGGTTCT TAGAGGGTCG AAGCATTGGC CTACAAAAAG CTCCGCGCCC
    CTCTGGAAGT GGCTAGAAGG AAAGCTAGAT GCTATCTTCG CGCAAATCAA ACCAGATACG
    CTTTCTCTCT GGGAACAAGT CATCCATTCT CAATTAACGT TCCGCGACCC TAGAAGAAAC
    AAGGTCCTGG TCGATTGGAT CAGAAGAATA CCATTGGAGT TCAGCGGCTC CTCTGCGTTT
    GATATGACCA AGTCCTTGAC CATGTTCGGG GCGCTCCTTG CGACCACTGC GTTTATGGAA
    CGGTCTCAAG GGAAGAAATA TATCGACCTA TTCTTCAACA ATATTAGCAC GGATTATGCA
    GAGTTACGGC AACATCTCTG CAATCATTTG TATTTGCTTA TGCGGAACCT GTGGCAGCCG
    TGGCATGCTT CGACGGAAGC TTTCGTGAGC GCTTGCACCG AATCCAACGA TGCCCTGCAA
    GTTCGGAGGG CCATTTACAT GGACCATATC TCCGAAATAA TATCGAACCT GCCGAAATGG
    AGAGAGGAGA GGCTGCCTCC TCCGAGGGTG AACCAATCGC AGTACGACAA GGTGGGACTG
    ACCGTACTAC AATGGATTTG GATATCGGCA TACGGAGCCC CCGCACATTT GGTGATCCCT
    TATGTCGTTC CTCTGCTACC TGAAATTCTT CGGATGTCAG AGCTGAGTGA CAACACCGAT
    CTGCAAGCGT ACAGTTCTGG TGTCCTCTAT GTTCTGTCGG CGTTGACTCC GTTGTCCGAC
    TATGTCAACC CTATCCTTGA CCAATTCGTC ACTTCCATCG AGTCGTCGCC GTCATGGCGT
    ACGCGCTTGC ACGGCCTGCC CGCGGTGGCC ATATTCTTCT TCAGGAATTT GTTGACCCTG
    TCACAGTCGC AAATGGACAG GGTGCTAAGA GTGCTTTTGG ACTGCCTCTC GAATGAGAAC
    GTCGAAGTTC GGGACATGGC TGCGAAAGTG CTTTCGAGTG TGGTCCGAAC ATCGCAGCGT
    CAAAGCATTA TTCCACTCAA GAATCGATTC ACGGCTTTGG CCAGGAAAAC CACGCTTCCG
    GCGAGAAAAC ATCCTGAATA CGCGACACGG TTACGCACAC TTCACTCTGC TATCCTTGGG
    TTGTGTGCTC TCCTTGAAAG CTTCCCTTAC TCGGTCGAGC CCTGGATGCC ACCTCTCACT
    GAGGTTCTGG CTCCCCACGC AACCGACCCA CCTCCGATTT CCACCACCAT TCGAAAGTGT
    GCATCGGAAT TCAAAAAGAC GCATCAGGAT ACCTGGCACA AAGATCAACA CCTGTTCGAC
    GAGGATCAAC TGCAGAGTCT ATCCACAATG GTGGTTGGGA CCTCATATTA TGCTTGA

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

    RefSeq XP_002912068.1
    CDS1..5697
    Translation

    Target ORF information:

    RefSeq Version XM_002912022.1
    Organism Coprinopsis cinerea okayama7#130(Coprinus cinereus okayama7#130)
    Definition Coprinopsis cinerea okayama7#130 hypothetical protein (CC1G_13601), partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002912022.1

    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
    4801
    4861
    4921
    4981
    5041
    5101
    5161
    5221
    5281
    5341
    5401
    5461
    5521
    5581
    5641
    ATGGAAGAGG ACGATATCTC CTTTCTCGAT GTCCCGGCTG ACGCTGCGTC GACGTCGTAC 
    GAGAGACAGC TGTCGTCGCT TAAGACCTAC CTAGATTCCC TCCCATATGA ATGCGAAACT
    GTTGAACAGT TCCAAGAAAT CCTGGAGGAT ATCGTAGGAA AGATATGCAT TGCTGCAGAG
    GCGAAGCATT GGAACATGCT TACCCAGTGG GATGGACTGC TTCAATGCTG GTTGACTTTG
    CTTTATCCAA TGCCGACGAC GACGAGGGCG AAGCTCATTC GAGTGTACTA CGAACTGTGT
    ATTCTTCCTG GAGTCGACGC ACGTTGCGTT CGCAGTTGGG CGGATACGCT CTCTCGGCTT
    ATTGGAAGCA AGTATAGAGG CTTGCGGAAG CTCGAGCCTT CCGACTTGGA GTTACCTTGG
    GAGCCACTGT GGGAGATGGT GAAGAAAGAG CTGTGGCCTA AATTGCCTGC TACCGATGTC
    TCTCGAAACA TTGTCACTTT GCTGTTCTAC GTGATAGACA AGTGCAGGCC CTACTACCCT
    CCCAGCTCTG TCCCAGAGAT GCTCGACACG TTTCTGCCGA TGTTAACTCA AGAGAGCTTA
    TTGACCATGA TCCCTGTATT GACTTCTTTC CTCCCCCTCA CCCAAAGTCG CCTGTACATC
    CCTCCTCTGT TCAAGATTTG GGAGGCGTTC AATTCGTCCA TTGTGGATGA CCGCATGCTC
    GAACTCTGTG GCGACCTCTC CGAAGAACAT GTCGCTGGTA CTGCTGGGGA AGATGGCGAA
    TACGCGGCTG AGTGGAAAGA TGTGGGTATT TGGACGCAGT GGCAGTGGGA TTTACTGTCT
    GGGAAATGTA TGGGCTCTAC CAATATGCCG GTCGGACTTC TGGGGGGCCA ACTCAACACG
    ACCTCTGGCA TCGCGGACAG CAACAGCAAA CACGATGCCG TAGCGAAGAT TTTCGTATAT
    TCGATGAGAG TTGACGGTGA AGTCCGGGAT ACGTCTGCAG AAGCTTCGAA GCAGACTGGC
    TACTTGGCTG GTTCCAAGGC GCTGAGTTCT CTCGAGAAGC TTATCAACAG TTCGGAAAGC
    TACTTCCACC CGTCCAATAC AGGACCTTGG ACTCTAAGTC TGACCTCGTT GATTCAACGC
    CTGTGCGCGG AATTTATCAC TCGGTACAAC GAGCAAGATA CTCCAAACTG CAAAGTCCCA
    GAGTCCCAAC GCCTGACTCC TCAAATCCGC CGCGCATTTG TGACACTTCT GAGAACCCCC
    GCACTGCTTT CGATGTTCGC CAAAGACGCC GTCTCGGCCA GCTACGCCCA GGGTGCGCTG
    AGGACGTTGG CGATGCTTGA ACCCAAGCTT GTCATGCCGG AGTTGCTTGA CAGGGCATAC
    GGTGGTTTGG AGGTTGTCAA CGAGACGCAT CGGACTACCG GCGTACTCAG TACGCTGTCC
    GGTGTTGCAA GGCCTCTGGT TACGAGTAAC ATTTGGTTGG GAGGACAGAA GCACTTGGTT
    CCCTTGCTGG ATCTATGCTT GCCTGGTATC GATCTGAACG ATCCGACGAA GACGATCTAC
    GCTTGCATGT TCATCGTCAA CACTGTTCAA CACATCAAGG TCGGAGATCT GTCTGCGCAT
    CAGGGCGGCG TCCCTTTCAC TAGCGATTTT GGAGAGGACA GGATGGACGT TGACGAGCAT
    GTGGACCACC TCCCGGACGA CCTTGGAGGC CCTGTTCTTA GTCGGGAAGA AGAGCAGTCG
    CTGACTCGTG ATAGCACCTC TGGCTTTGCT GACTGGGTCG TCTCACTCTT CCGACGAGTC
    TTCACTCTCT ACGAGAACCT CCCCGAAGAA GGTGGCAAAC GGAACGTCAC AGGAGGACGT
    ACGGAAGAGA GCGTCCTCAA ACATATCAAG GGAATGCTGG ACATGGTCTG CTTGCACCTT
    TCCGAACCTA TCTTCGACCT CGTCTTGAAA CTCGTCTACG AGTATGCGAC AACGAACGCC
    AAGTCGAATG CGGTCAGAGC GTTTGGCCAG TTGATTTCGT CGATGGCCAA GGCGAATCCG
    GCGAAGGTCG TGGCTAGATT CTTGCCCCAT TGTGCGGAGC AGATTGAGGA AGAGCTGAGG
    CATGGCGCGT CGAGTGTGAG GACGACGTCG ACGCATGCGG CTGTGCCATC CGATACCACA
    TTGCATTGGA ATTTGGCCAT ACTGCGAGGG TGCCTGGGGT ATGGAGCCAG TGCGCTCCTC
    GACTATAAGC CTTTGATTCT TCGACTGCTT TCGGTAGCAG TGGAAAAGAC CAAGAGCGAG
    CGCGGGTACA CGAGCACTGG TCGACTCATC ACCAGAATCT TGACAACGCT GAGCTCCGTC
    TACCCATTGA ATGGCCGATT CGTGAACACC TCTGAATGGG AACAGCCAGG CAAGTGCCTT
    TGGCTGCACT TTGACCGCTC CCACAACCAG CATTGGGGTA AATTGTATGA ACCGAAAGAC
    GTTCAAATCG ATTGGCATGT GCCTTCGGCG GAAGAGATCG ACTTCGTACT TGAGATCATG
    GACACCATCG AGAAGCCCAT GCTCGACAAA GTCGAGTCTC TCCTCGAGAA CACTTCCAAG
    TGGGACCACG TTTCAAGGAA CGATTTCTGC AGGTTCCTCC AAGCGGCTCG AGCCGTCTGG
    ATAGGCCTTC CTACGATCTA CAGAATCCAA GAACCCGAAG TCGTCCGACC ACTGCTCCTA
    CCCGAATACG AAGTACCCGA CATGCTTGTT AAAGCGCTCA ACGTTAACTG CGGTTTCGTG
    CTCACTGACC CCAGTGATCC GCGATACCAA AAGGTTGCTG CCTATCGCGA GAGGTTCGGT
    CGCCTTCTCG TCAAAGCGTC GTCTATCTTG CGTCAGAACA GCGGAGGAGA AGACCACATC
    GATGCTGTGA TCTATGTTAC TCGGTGCATC GACACTTATT TGGGGTCGTA CGGTGTGAGC
    AATAGCGAGT ATGATGCGAT GCAGAAGAAT TACAAGCAAG CCCGCGAGTT GAACCGCTCG
    TGGTTACGCC AGAAGGATAA CTCGAGGTTG ATTTTTGTGA AGAGGGCGCA CGTATATCAT
    ATGAGCCGGC TTCATATCCA GTCCATGTTT AGATATAGGT CTGAGCTAGA TGACCAATTA
    CTGCTAGAAT TGGCCGAGCT GTCGCTTTTG CAGTATACGA GGATCAGAAG GCAGGCACAA
    GCGACTTTGA TTACTGCTAC CATGCGATAC GTCAGATCCA CAAGACTGAT TTTGCCGACA
    ATCTTCAAGG GCTTGACCCG TGGAAGCGAT GCTGACGCGA TCAAGGGTGC TCTGTATGTC
    CTCTCGAGCA GAGGCATTGC TGGGTACACA TTGTCAGACC TTGAATACAA CAAGACGTAC
    CTCCTGTCGA TCCTCGAGTG TCAGCATGAA GAGAAGCCTT CAATCCAGAA GCTTGTCTCA
    TCGGTGGCGA GCGATACGCT ATCGCTAGTT AACGAAGACC ATACGCACAC AGCTGCCTAT
    CGCTTGAAGA CACCGCGCCT CGATGCCGCC ATTGCAGATC TTCGTCCAGA ATTCTCGGAT
    TCGTTCCCCG ACCAGCGCCT GGCAACTGTG GTGCTCGAGA AAAACAAGGC TCGGGTTGAA
    CGAAGGCTGC AGCTTTCAGA GGAGATCATC TTAGATGTCT TGGAGGTCGC GAAGAGATCG
    ACAACACATT GGCGCTATTC CCAAATCGCG CTGCAATTCC TGTCGAACTT GATCTGGAGA
    GAGGTTCTAG TCTCACCCGA GTTGGCTAAG TTCGTAGCCG AGCAGACGGT TAGCCCGCAG
    CAAACGATAC GTTCGCATGC GCAGAGGACA GCGGCACTTC TCCTTTACCA CGTCAAGATA
    CGGACTTACT CGAAAACGAG GGAAGATCGA TGGGCGGAAA AGTGGGCAAG TCCATGGAAA
    ACCCAGGTTC CTGTGAATGA CCCGGCGACC TTCCTCGACG AGTATCACAG AGGGATTCAA
    CAGTCGACTG GCAACATTTA CATCGACAAG TTCGCCACTG GATTCTTGTC ATGGGCGCCT
    AAAGTCAATG CCTATCACTC CCCGGACAGT GTTTCCGCTG TCCAGTGGGA AGAGGCCTCT
    TTGCCAATGA TGCACGCCTT CCACAGCGTT GTCGGTGGGC CAGACTATGT CAAACGGATT
    GCCACCCTCT GGGGGCAGGA ATCGGATAAG AATGTCGCGA GCTTGGATCT CAGGATGGAG
    AACGTGGTCT ACCTCAAGCT TCTATCTAAG TTCTACGGAG ATGCCTTATT GCCTAAAGTG
    CTAGAAGAGG CAGATTCGTT GGTCGTAGAT GCCGATAAAT TCAAGCAACG AGCTGGTGCC
    GAGTTTGTTC TGTCGGTTCT TAGAGGGTCG AAGCATTGGC CTACAAAAAG CTCCGCGCCC
    CTCTGGAAGT GGCTAGAAGG AAAGCTAGAT GCTATCTTCG CGCAAATCAA ACCAGATACG
    CTTTCTCTCT GGGAACAAGT CATCCATTCT CAATTAACGT TCCGCGACCC TAGAAGAAAC
    AAGGTCCTGG TCGATTGGAT CAGAAGAATA CCATTGGAGT TCAGCGGCTC CTCTGCGTTT
    GATATGACCA AGTCCTTGAC CATGTTCGGG GCGCTCCTTG CGACCACTGC GTTTATGGAA
    CGGTCTCAAG GGAAGAAATA TATCGACCTA TTCTTCAACA ATATTAGCAC GGATTATGCA
    GAGTTACGGC AACATCTCTG CAATCATTTG TATTTGCTTA TGCGGAACCT GTGGCAGCCG
    TGGCATGCTT CGACGGAAGC TTTCGTGAGC GCTTGCACCG AATCCAACGA TGCCCTGCAA
    GTTCGGAGGG CCATTTACAT GGACCATATC TCCGAAATAA TATCGAACCT GCCGAAATGG
    AGAGAGGAGA GGCTGCCTCC TCCGAGGGTG AACCAATCGC AGTACGACAA GGTGGGACTG
    ACCGTACTAC AATGGATTTG GATATCGGCA TACGGAGCCC CCGCACATTT GGTGATCCCT
    TATGTCGTTC CTCTGCTACC TGAAATTCTT CGGATGTCAG AGCTGAGTGA CAACACCGAT
    CTGCAAGCGT ACAGTTCTGG TGTCCTCTAT GTTCTGTCGG CGTTGACTCC GTTGTCCGAC
    TATGTCAACC CTATCCTTGA CCAATTCGTC ACTTCCATCG AGTCGTCGCC GTCATGGCGT
    ACGCGCTTGC ACGGCCTGCC CGCGGTGGCC ATATTCTTCT TCAGGAATTT GTTGACCCTG
    TCACAGTCGC AAATGGACAG GGTGCTAAGA GTGCTTTTGG ACTGCCTCTC GAATGAGAAC
    GTCGAAGTTC GGGACATGGC TGCGAAAGTG CTTTCGAGTG TGGTCCGAAC ATCGCAGCGT
    CAAAGCATTA TTCCACTCAA GAATCGATTC ACGGCTTTGG CCAGGAAAAC CACGCTTCCG
    GCGAGAAAAC ATCCTGAATA CGCGACACGG TTACGCACAC TTCACTCTGC TATCCTTGGG
    TTGTGTGCTC TCCTTGAAAG CTTCCCTTAC TCGGTCGAGC CCTGGATGCC ACCTCTCACT
    GAGGTTCTGG CTCCCCACGC AACCGACCCA CCTCCGATTT CCACCACCAT TCGAAAGTGT
    GCATCGGAAT TCAAAAAGAC GCATCAGGAT ACCTGGCACA AAGATCAACA CCTGTTCGAC
    GAGGATCAAC TGCAGAGTCT ATCCACAATG GTGGTTGGGA CCTCATATTA TGCTTGA

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

  • PubMed

    Insights into evolution of multicellular fungi from the assembled chromosomes of the mushroom Coprinopsis cinerea (Coprinus cinereus).
    Proceedings of the National Academy of Sciences of the United States of America107(26)11889-94(2010 Jun)
    Stajich JE,Wilke SK,Ahrén D,Au CH,Birren BW,Borodovsky M,Burns C,Canbäck B,Casselton LA,Cheng CK,Deng J,Dietrich FS,Fargo DC,Farman ML,Gathman AC,Goldberg J,Guigó R,Hoegger PJ,Hooker JB,Huggins A,James TY,Kamada T,Kilaru S,Kodira C,Kües U,Kupfer D,Kwan HS,Lomsadze A,Li W,Lilly WW,Ma LJ,Mackey AJ,Manning G,Martin F,Muraguchi H,Natvig DO,Palmerini H,Ramesh MA,Rehmeyer CJ,Roe BA,Shenoy N,Stanke M,Ter-Hovhannisyan V,Tunlid A,Velagapudi R,Vision TJ,Zeng Q,Zolan ME,Pukkila PJ