NCU09520 cDNA ORF clone, Neurospora crassa OR74A

The following NCU09520 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the NCU09520 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
ONf10752 XM_953422.2
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Neurospora crassa OR74A hypothetical protein (NCU09520), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $1021.30
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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 ONf10752
    Clone ID Related Accession (Same CDS sequence) XM_953422.2
    Accession Version XM_953422.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5121bp)
    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 2017-10-10
    Organism Neurospora crassa OR74A
    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 (NC_026503). On Feb 23, 2015 this sequence version replaced XM_953422.1.

    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
    ATGCGGAATG TATCTGAAAG AGCTCGGGAG TGGCAGACCT TCAGATTCCT GTCGACAGTT 
    CGGGATAGCC GTGCCGTGCC CGACCCGGCC CACACATCCC CGAGCAAAAG CCGCCGGGCA
    TCATCCGACA CCGTTCTAAC GGCACTTGCC CAGCTCGGTG TCCTTCAACT TTCGGCGCGA
    CGAGGGGTCC TGTCTCTCTT TGATCACGAT GTGCAACACA TTGCTGCTGA AGCAACACCA
    ACACTGCCGC TTCGACCTTA CGCCCGTGAT GAAATCACCC CTCTCCTTTT GCGCGGGCGC
    GACATCTCCA GAAGCGAGGT TATTTGTGAC AATGTCATCC GTGAACAGAG ACGGCATCCC
    GAGGACCTCA TCGTCTTCGT GATACCCGAC CTTCTGGCCG ACCCGCGGTT TCATCACATC
    CCATCTCTTC TTGAGCAGGA AATATATCCT CGGTTCTACG CAGGCGTCCC CATCTGCTCG
    CCTTCTGGTG TCGTCATAGG CTTGTTCTCG GTTTTTGACA CAAGCCCGCG GCAAAAGCTC
    GACGAGTTGG ATATCGACTT TATGAAGGAC CTTTCTCGGA CAATCTCACG CCAATTGGGG
    TCCTACAGGA AGCAATCGGT ATTACTCCAG ACCGAGCGTA TCCTGAGAGG AGTGGTAAGC
    TATTCGGAGG GAAGGGACGA CATTTCCGAC CTATCGGAGT ATCATGCAGA AAGAGACACC
    GTCCATCCGT GCCAGCGGGA TACACGGGAC ACATATCTAT TTGATCGCCA TTGCGTGTCT
    TACTTCCCAC AGAGCAACGG CTCAATAGAT CCGCCAACGC ATACCACAGT ATCTGAAGAT
    GCCATAGATG GAACGCTGAG CAGCAGCGAG TATGAGGCTG AACATCTCAG AAAGCTTTCC
    CTCCCCGACC ACAGATCATT GGACTCGCGG TTGAAGGCGG GTGACACTCA CAGCAGGGGC
    AGTGATAAAC CAATGCCACC AGACACGCCA ACTCAGGGAA CGCTAGGCGC CGACGTTCGG
    CTGTCTGAGA TCCAGAAGAG TTTCGCAAAG GCATCAAACA TTATCCGACA ATCTATGGAT
    GCAGCCGGAG TAATCTTTCT GGATGCCAAC ACGAGCCCTT TCCATTGCTG GCAAGACGGT
    GATGCAAACA CTACGTCAGA TGTACATCCC AGGGCAGCAA GCATCTCCTC CAACAAAGTC
    AATGGCGTTG CGAATTCTGA AATCGACTTG GAAGTTAAAC CGCACAAACG GCCCTGTGAC
    ATTCTTGGGT TCTCTGTGAC ACCAACGGGG ACGCCTGACG GGACAACGAT AGATCCCACG
    GGTCCCTTAC GGCACCCCGG GCCTCACCGC AGCTGGCGGG TCCTCTCAGA GAGCTTCCTT
    CGCAAGCTCC TGCGACGTTA TCCACGTGGG ACTATCTGGG AATTTGACGC CGCAGGCAAC
    TTCATCAGTG CATCGGAAGC CGTACCAATG CCGTCCCCGC CCTCATCGAC AAGCCCCTCA
    TGTCCCTACT CTGACTCGGA AATCGACACC GCCGCCAAAA GACAACGACG TGGCCGGGCA
    CGGAGAAAAA GTGGTACATT AATGCGAAAG CCACGGAAGA GTGAGTGGGA CACCATCCAC
    GCGGCATTCC CCGAGGCCCG AGCAGTATCC TTCTTTCCCC TGTGGGGGAC CCAGATGCAG
    CGCTGGTTCG CCGCCGGGCT GTCATGGTCC AGAGAATCAT TGCGCACCCT CGCACCGCAG
    GATGAACTTG GCCTGTTCAA CGCGTTTGGC AAGAATATCA TGGCCGAGGT GGCCCGTATC
    GACGCGACGC TTGCCAACCA GGCCAAGTCA GACATGCTTG GATCCATTTC GCACGAGATG
    CTGTCGCCAT TGCACGGCAT CCTTGGCGCT GCGGAGCTTC TGCTTGATAC CGACCTCAGC
    ACTTCCCAGA TGGAGCTCAT CTGCCTTGTA GAGGCTTCGG TCAGGACACT GCTGGACACT
    GTCGACCATC TCCTAGACCA TTCCAAAATC AACAGTCTAG TGGAGAACAC CAAACTCTCC
    AATGCCCGAC GAGGTTCCTT CCAGTCAGAC GACCTAGAGC ACAGTGAAGG CCCTGATCTC
    AGTGGCCCAC CAGAAACATC CAGGACGCGA TTGCGATCTG GCAGCCTAGC ACCCAAACCC
    TGGCCATGGG AGCGACCGAC CTTGACCCGC TTCTACGACA TAGACCTCGC CGTCATGCTG
    GAAGAAGTCG TCGAGTCCCT CTATGCGGGC TATTCCTTCC AGCGATGGTG CAACCAACGT
    GGCGCCGATC CAGGTGATGA CAACGTCGCT ATCCATCTGG ACATCGACCC TACCGTTAAT
    TGGTCTTACT ACGCCCAACC CGGAGCATTG CGCCGCATCC TCATGAACTT ATTCGGTAAC
    GCACTAAAGT TCACTCACAA AGGATTCATC AATCTCTCTC TGACCGCTCA ACCTATCCCA
    TCCGAACCAC GCCCTTCTTT CGCCTCCACA GACCTTGACG ACGAAGCAGA AGACCCAGGC
    ATCGAAACGG ACAGCAAGCA CTCCTCTTCC TACCCCAAAT CCAAGACCGG GTGGAATGAC
    CAGAACCGCT CAAACGTAGT GCTCACCGTT TCGGACACAG GCAAGGGAAT CACCCAACGC
    TTTCTCCGTG AAAAGGCCTT TTCTCCCTTT CAAAAGGAAG ACAGTCTCAC CCCTGGCCCT
    GGCCTTGGCC TTTCTATCGT GAAACAGATT GTCTGTGCCC TCAATGGGCG CGTCGTCATT
    GACTCTCGAC CTGGCGAAGG GACGACAGTC AGAGTGATCA TACCACTTCA GCATTCGAGC
    CCAGAAACAA CGAGTGAGGA TAGGGACATG GTGGAGCATA AGGAGGCGCT GGGTGGGTTG
    AGGATTTGCT TACTTGGTTT CGATGGGCTG GGAGACGGTG ATCCCGATGG AAATCAGTGG
    GGCGAGCCGG TCAGTGCAAA GGAGAGAAAA GTACTGAGGG GGAGGATCAT GGAGAGGATG
    TGTAGGGATT GGCTTGGATC TCAGGTGGTG ACGAACCCGG CGGAGGCGCA GATGACAATC
    TGTAGCGATC GGTTTGTGTT GGAAATGTGC ACAAAAGATG GCGCTGATGA CAAGACTGGT
    GGGAGGGGGT TCGCATCGAA GACGTTGGCC GGCCCATTGG TGGTGGTGTG TGGGAATGAA
    GTTGTTGCGC AGAATCTGTC ACTGGCTAGG GGGGAATCTG CTGCCGGAGG GAAAGGGGAG
    GCAAGCGTCA TGGAGTTCAT CGGTCAGCCG GTTGGGCCAA GGAAGCTGGC TAAGACACTG
    AGGAAGTGCC TTCAGCAGCA TCCAGTCTCG CTGAAGGAAA GAGAGGGTGA ACGAACCTCA
    TCCGAGTCTA GCATCGATCT GGATGTTCTA CAGAGAAAGA TGTCGGACCC GGAGGTCTTC
    CAGATCGCCA ACAAGAAGTC GCGGTTCTTG CCTTATCTGG CAGATGATTT CGGGGATAAC
    TTGTTTTCGA CGGACCAGGG GACGGCGGCT GCTGCCACAA GGCCTCTGGT GCAGAGAATC
    AAAAGCACTG GTGGAAGGCC TTTGGTGCAG CGGACGTCCA TGGGGAAGGA TGGGAAGGGA
    GAAGGGGGGA AGATGGGGTA TGCTCCAGTG TCCGACATGG AGGAAGGAGA AAAGGTGGAG
    GAAGCGGCAA TCCCCGAACC GACGCTACTA CAGAACGTGA AGCAAGAAGA GACTTCCCTA
    CCTCTATCAT CGCAGAAAAA GAACATCAAG ATGCCGCTGA CCAGGCCTCC ACTGCCACCA
    CGGTACCATA CTGGGAAAGA GAAAACGAAC AGCATGGACC TCGGCTTCAC TACTGTATCC
    ATCTCCGAGG TGTCGTCGCC GTTCGATTCG ATTATCTCGC CACCGGTCCT GACCAATGTC
    CCTGCCTCCC CCGAGGATGA ACAGGTGTCG CCTATGTCGC ATGCCATCAA CACGATTCCC
    CCTTCCGGTA CTATTGATGC AAGCACCAGC ATCATCGGCA ATGCTGGCCC TACAGGTGGG
    GCCATCGTTG GGGCTGCTGC CGCCCCCGCC ACGAGCAACA CAATGACAGG TACCGAGGCC
    GTTCCGAATG TGCCACTGCC GCCGAAACCG CTCGAGCTGC TCGAACCGTA CGAAGTCCAG
    CGCCAGCAAT CAATACTAAT AACCTCCCCA GTGCTCACGG GAGGGCAACC ACCTGAACTT
    CATCTCGATA CACGTCGCCT CTCAAAGGCA TCTAATTTCT CTATGAATAC AACCTCCTCC
    CCATCCCAAC CTTCGCCCCC CTCTCAATCC CTGTCAAACT CGCCCTCTCA ACCCCGTAAG
    ATCTCTTCCA ATTTTTCACC AAATCAGGAC GAAAAGGCCT GCCTCCTAGT AGACGACAAC
    CCCATCAACC TTCACATCCT CGCCTCGGCA ATGCGTAAGA CGCATCGCCC CTATGCGACT
    GCCCGCAACG GACTGGAGGC AGTGGAGATC TACAAGGAGA ACCCGGGACG GTACAAGTGG
    GTGTTGATGG ACATCAGCAT GCCGGTGATG GACGGGTTGG AGGCGACGAG GAAGATCAGG
    GAGTTTGAGA GGGAGTACCC TGTGCAAAGG AGTAGGAGCT TGGGAAGGGG TCTGGGCACT
    AAAAGGGGGA GTGGAGCAAC CGAGGTGACG AATGCGGCAA GGGCTCGAGC TGGGAGTTTG
    GATTTTGCAG ATATGCGTGG TGTTGAAGTG CAGGCGGACG TCGAAACCGG TGCCGTGAGT
    GGAGCTGGAA ATGGGAAGCG AGTTATCCGG AAGAAGGCTG GACGGGCATC TCTCAATGGA
    ATTGGGCTTG CGTCAGCTCC GCTCATGGAT CAGGACAGGG GTGCGCCTAC AGAATGGGAT
    GCTCAAGTGG TACAGAACCT GGAAGCGGAA ACTGTTCAGC AAGTCGATGG CGAAGAGAAG
    AGTGATGAAG GTGTAACAGG GCTAGAGGAG AACAGCACAG AAGGGGAACT TATCAATGGT
    CTGGAGCCCG CAACAGTCGT AGCGCTCACA GGAGTTACAA GCGGGACGAT ACAGAAGGAT
    GCGCTGGCGA GCGGGGTGGA TTTGTTTTTG ACGAAGCCGG TTAGGATGAA GGATTTGGGG
    GCAATCTTGG GAGATGGTTG A

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

    RefSeq XP_958515.2
    CDS91..5211
    Translation

    Target ORF information:

    RefSeq Version XM_953422.2
    Organism Neurospora crassa OR74A
    Definition Neurospora crassa OR74A hypothetical protein (NCU09520), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_953422.2

    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
    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
    ATGCGGAATG TATCTGAAAG AGCTCGGGAG TGGCAGACCT TCAGATTCCT GTCGACAGTT 
    CGGGATAGCC GTGCCGTGCC CGACCCGGCC CACACATCCC CGAGCAAAAG CCGCCGGGCA
    TCATCCGACA CCGTTCTAAC GGCACTTGCC CAGCTCGGTG TCCTTCAACT TTCGGCGCGA
    CGAGGGGTCC TGTCTCTCTT TGATCACGAT GTGCAACACA TTGCTGCTGA AGCAACACCA
    ACACTGCCGC TTCGACCTTA CGCCCGTGAT GAAATCACCC CTCTCCTTTT GCGCGGGCGC
    GACATCTCCA GAAGCGAGGT TATTTGTGAC AATGTCATCC GTGAACAGAG ACGGCATCCC
    GAGGACCTCA TCGTCTTCGT GATACCCGAC CTTCTGGCCG ACCCGCGGTT TCATCACATC
    CCATCTCTTC TTGAGCAGGA AATATATCCT CGGTTCTACG CAGGCGTCCC CATCTGCTCG
    CCTTCTGGTG TCGTCATAGG CTTGTTCTCG GTTTTTGACA CAAGCCCGCG GCAAAAGCTC
    GACGAGTTGG ATATCGACTT TATGAAGGAC CTTTCTCGGA CAATCTCACG CCAATTGGGG
    TCCTACAGGA AGCAATCGGT ATTACTCCAG ACCGAGCGTA TCCTGAGAGG AGTGGTAAGC
    TATTCGGAGG GAAGGGACGA CATTTCCGAC CTATCGGAGT ATCATGCAGA AAGAGACACC
    GTCCATCCGT GCCAGCGGGA TACACGGGAC ACATATCTAT TTGATCGCCA TTGCGTGTCT
    TACTTCCCAC AGAGCAACGG CTCAATAGAT CCGCCAACGC ATACCACAGT ATCTGAAGAT
    GCCATAGATG GAACGCTGAG CAGCAGCGAG TATGAGGCTG AACATCTCAG AAAGCTTTCC
    CTCCCCGACC ACAGATCATT GGACTCGCGG TTGAAGGCGG GTGACACTCA CAGCAGGGGC
    AGTGATAAAC CAATGCCACC AGACACGCCA ACTCAGGGAA CGCTAGGCGC CGACGTTCGG
    CTGTCTGAGA TCCAGAAGAG TTTCGCAAAG GCATCAAACA TTATCCGACA ATCTATGGAT
    GCAGCCGGAG TAATCTTTCT GGATGCCAAC ACGAGCCCTT TCCATTGCTG GCAAGACGGT
    GATGCAAACA CTACGTCAGA TGTACATCCC AGGGCAGCAA GCATCTCCTC CAACAAAGTC
    AATGGCGTTG CGAATTCTGA AATCGACTTG GAAGTTAAAC CGCACAAACG GCCCTGTGAC
    ATTCTTGGGT TCTCTGTGAC ACCAACGGGG ACGCCTGACG GGACAACGAT AGATCCCACG
    GGTCCCTTAC GGCACCCCGG GCCTCACCGC AGCTGGCGGG TCCTCTCAGA GAGCTTCCTT
    CGCAAGCTCC TGCGACGTTA TCCACGTGGG ACTATCTGGG AATTTGACGC CGCAGGCAAC
    TTCATCAGTG CATCGGAAGC CGTACCAATG CCGTCCCCGC CCTCATCGAC AAGCCCCTCA
    TGTCCCTACT CTGACTCGGA AATCGACACC GCCGCCAAAA GACAACGACG TGGCCGGGCA
    CGGAGAAAAA GTGGTACATT AATGCGAAAG CCACGGAAGA GTGAGTGGGA CACCATCCAC
    GCGGCATTCC CCGAGGCCCG AGCAGTATCC TTCTTTCCCC TGTGGGGGAC CCAGATGCAG
    CGCTGGTTCG CCGCCGGGCT GTCATGGTCC AGAGAATCAT TGCGCACCCT CGCACCGCAG
    GATGAACTTG GCCTGTTCAA CGCGTTTGGC AAGAATATCA TGGCCGAGGT GGCCCGTATC
    GACGCGACGC TTGCCAACCA GGCCAAGTCA GACATGCTTG GATCCATTTC GCACGAGATG
    CTGTCGCCAT TGCACGGCAT CCTTGGCGCT GCGGAGCTTC TGCTTGATAC CGACCTCAGC
    ACTTCCCAGA TGGAGCTCAT CTGCCTTGTA GAGGCTTCGG TCAGGACACT GCTGGACACT
    GTCGACCATC TCCTAGACCA TTCCAAAATC AACAGTCTAG TGGAGAACAC CAAACTCTCC
    AATGCCCGAC GAGGTTCCTT CCAGTCAGAC GACCTAGAGC ACAGTGAAGG CCCTGATCTC
    AGTGGCCCAC CAGAAACATC CAGGACGCGA TTGCGATCTG GCAGCCTAGC ACCCAAACCC
    TGGCCATGGG AGCGACCGAC CTTGACCCGC TTCTACGACA TAGACCTCGC CGTCATGCTG
    GAAGAAGTCG TCGAGTCCCT CTATGCGGGC TATTCCTTCC AGCGATGGTG CAACCAACGT
    GGCGCCGATC CAGGTGATGA CAACGTCGCT ATCCATCTGG ACATCGACCC TACCGTTAAT
    TGGTCTTACT ACGCCCAACC CGGAGCATTG CGCCGCATCC TCATGAACTT ATTCGGTAAC
    GCACTAAAGT TCACTCACAA AGGATTCATC AATCTCTCTC TGACCGCTCA ACCTATCCCA
    TCCGAACCAC GCCCTTCTTT CGCCTCCACA GACCTTGACG ACGAAGCAGA AGACCCAGGC
    ATCGAAACGG ACAGCAAGCA CTCCTCTTCC TACCCCAAAT CCAAGACCGG GTGGAATGAC
    CAGAACCGCT CAAACGTAGT GCTCACCGTT TCGGACACAG GCAAGGGAAT CACCCAACGC
    TTTCTCCGTG AAAAGGCCTT TTCTCCCTTT CAAAAGGAAG ACAGTCTCAC CCCTGGCCCT
    GGCCTTGGCC TTTCTATCGT GAAACAGATT GTCTGTGCCC TCAATGGGCG CGTCGTCATT
    GACTCTCGAC CTGGCGAAGG GACGACAGTC AGAGTGATCA TACCACTTCA GCATTCGAGC
    CCAGAAACAA CGAGTGAGGA TAGGGACATG GTGGAGCATA AGGAGGCGCT GGGTGGGTTG
    AGGATTTGCT TACTTGGTTT CGATGGGCTG GGAGACGGTG ATCCCGATGG AAATCAGTGG
    GGCGAGCCGG TCAGTGCAAA GGAGAGAAAA GTACTGAGGG GGAGGATCAT GGAGAGGATG
    TGTAGGGATT GGCTTGGATC TCAGGTGGTG ACGAACCCGG CGGAGGCGCA GATGACAATC
    TGTAGCGATC GGTTTGTGTT GGAAATGTGC ACAAAAGATG GCGCTGATGA CAAGACTGGT
    GGGAGGGGGT TCGCATCGAA GACGTTGGCC GGCCCATTGG TGGTGGTGTG TGGGAATGAA
    GTTGTTGCGC AGAATCTGTC ACTGGCTAGG GGGGAATCTG CTGCCGGAGG GAAAGGGGAG
    GCAAGCGTCA TGGAGTTCAT CGGTCAGCCG GTTGGGCCAA GGAAGCTGGC TAAGACACTG
    AGGAAGTGCC TTCAGCAGCA TCCAGTCTCG CTGAAGGAAA GAGAGGGTGA ACGAACCTCA
    TCCGAGTCTA GCATCGATCT GGATGTTCTA CAGAGAAAGA TGTCGGACCC GGAGGTCTTC
    CAGATCGCCA ACAAGAAGTC GCGGTTCTTG CCTTATCTGG CAGATGATTT CGGGGATAAC
    TTGTTTTCGA CGGACCAGGG GACGGCGGCT GCTGCCACAA GGCCTCTGGT GCAGAGAATC
    AAAAGCACTG GTGGAAGGCC TTTGGTGCAG CGGACGTCCA TGGGGAAGGA TGGGAAGGGA
    GAAGGGGGGA AGATGGGGTA TGCTCCAGTG TCCGACATGG AGGAAGGAGA AAAGGTGGAG
    GAAGCGGCAA TCCCCGAACC GACGCTACTA CAGAACGTGA AGCAAGAAGA GACTTCCCTA
    CCTCTATCAT CGCAGAAAAA GAACATCAAG ATGCCGCTGA CCAGGCCTCC ACTGCCACCA
    CGGTACCATA CTGGGAAAGA GAAAACGAAC AGCATGGACC TCGGCTTCAC TACTGTATCC
    ATCTCCGAGG TGTCGTCGCC GTTCGATTCG ATTATCTCGC CACCGGTCCT GACCAATGTC
    CCTGCCTCCC CCGAGGATGA ACAGGTGTCG CCTATGTCGC ATGCCATCAA CACGATTCCC
    CCTTCCGGTA CTATTGATGC AAGCACCAGC ATCATCGGCA ATGCTGGCCC TACAGGTGGG
    GCCATCGTTG GGGCTGCTGC CGCCCCCGCC ACGAGCAACA CAATGACAGG TACCGAGGCC
    GTTCCGAATG TGCCACTGCC GCCGAAACCG CTCGAGCTGC TCGAACCGTA CGAAGTCCAG
    CGCCAGCAAT CAATACTAAT AACCTCCCCA GTGCTCACGG GAGGGCAACC ACCTGAACTT
    CATCTCGATA CACGTCGCCT CTCAAAGGCA TCTAATTTCT CTATGAATAC AACCTCCTCC
    CCATCCCAAC CTTCGCCCCC CTCTCAATCC CTGTCAAACT CGCCCTCTCA ACCCCGTAAG
    ATCTCTTCCA ATTTTTCACC AAATCAGGAC GAAAAGGCCT GCCTCCTAGT AGACGACAAC
    CCCATCAACC TTCACATCCT CGCCTCGGCA ATGCGTAAGA CGCATCGCCC CTATGCGACT
    GCCCGCAACG GACTGGAGGC AGTGGAGATC TACAAGGAGA ACCCGGGACG GTACAAGTGG
    GTGTTGATGG ACATCAGCAT GCCGGTGATG GACGGGTTGG AGGCGACGAG GAAGATCAGG
    GAGTTTGAGA GGGAGTACCC TGTGCAAAGG AGTAGGAGCT TGGGAAGGGG TCTGGGCACT
    AAAAGGGGGA GTGGAGCAAC CGAGGTGACG AATGCGGCAA GGGCTCGAGC TGGGAGTTTG
    GATTTTGCAG ATATGCGTGG TGTTGAAGTG CAGGCGGACG TCGAAACCGG TGCCGTGAGT
    GGAGCTGGAA ATGGGAAGCG AGTTATCCGG AAGAAGGCTG GACGGGCATC TCTCAATGGA
    ATTGGGCTTG CGTCAGCTCC GCTCATGGAT CAGGACAGGG GTGCGCCTAC AGAATGGGAT
    GCTCAAGTGG TACAGAACCT GGAAGCGGAA ACTGTTCAGC AAGTCGATGG CGAAGAGAAG
    AGTGATGAAG GTGTAACAGG GCTAGAGGAG AACAGCACAG AAGGGGAACT TATCAATGGT
    CTGGAGCCCG CAACAGTCGT AGCGCTCACA GGAGTTACAA GCGGGACGAT ACAGAAGGAT
    GCGCTGGCGA GCGGGGTGGA TTTGTTTTTG ACGAAGCCGG TTAGGATGAA GGATTTGGGG
    GCAATCTTGG GAGATGGTTG A

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

  • PubMed

    The genome sequence of the filamentous fungus Neurospora crassa.
    Nature422(6934)859-68(2003 Apr)
    Galagan JE,Calvo SE,Borkovich KA,Selker EU,Read ND,Jaffe D,FitzHugh W,Ma LJ,Smirnov S,Purcell S,Rehman B,Elkins T,Engels R,Wang S,Nielsen CB,Butler J,Endrizzi M,Qui D,Ianakiev P,Bell-Pedersen D,Nelson MA,Werner-Washburne M,Selitrennikoff CP,Kinsey JA,Braun EL,Zelter A,Schulte U,Kothe GO,Jedd G,Mewes W,Staben C,Marcotte E,Greenberg D,Roy A,Foley K,Naylor J,Stange-Thomann N,Barrett R,Gnerre S,Kamal M,Kamvysselis M,Mauceli E,Bielke C,Rudd S,Frishman D,Krystofova S,Rasmussen C,Metzenberg RL,Perkins DD,Kroken S,Cogoni C,Macino G,Catcheside D,Li W,Pratt RJ,Osmani SA,DeSouza CP,Glass L,Orbach MJ,Berglund JA,Voelker R,Yarden O,Plamann M,Seiler S,Dunlap J,Radford A,Aramayo R,Natvig DO,Alex LA,Mannhaupt G,Ebbole DJ,Freitag M,Paulsen I,Sachs MS,Lander ES,Nusbaum C,Birren B