AFUA_6G13690 cDNA ORF clone, Aspergillus fumigatus Af293

The following AFUA_6G13690 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the AFUA_6G13690 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
OAm05825 XM_746152.1
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Aspergillus fumigatus Af293 DNA topoisomerase II (AFUA_6G13690), partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
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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 OAm05825
    Clone ID Related Accession (Same CDS sequence) XM_746152.1
    Accession Version XM_746152.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4983bp)
    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 1522598400000
    Organism Aspergillus fumigatus Af293
    Product DNA topoisomerase II
    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_007199). 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
    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
    ATGTCCGACG ACGACTCGGA CTCCTCTCTT TCCCAGACAC CTCCCAAGAA GGTCAAAAAG 
    GCTCCCGCTA GCAAGAAAGG AGGCTCAAAC CCTCTTGCAG ACGTGGAGAA TGAATCATTT
    GGAGGGGATA TTGGCGATCA ACCTGCAACG TCCACCAATG CGTCAGAGAA GTACCAGAAG
    CTTACACAAC TTGAACACAT TATCAAACGT CCTGATACGT ATATCGGGTC CGTCGAACGA
    ACTACTCAGT TTATGTGGGT GTACGATTCG GAAACGGAGG GAATGAAATA CAAGGAGGTC
    TCTTATGTGC CCGGTCTCTA CAAGATTTTT GATGAAATCG TCGTCAACGC TGCTGATAAC
    AAGCAAAATG ACGCGAACAT GGATGAGATT CGTGTGACCA TCGACCGCGA GTCGGGCGAG
    ATCAGTGTTT GGAACAATGG TCGCGGTATT CCCATCGAGA TTCATGCAAA AGAAGGCATT
    TACGTCCCCG AATTGATCTT CGGCCATCTC CTCACCTCAT CCAACTACGA TGACACCCAG
    AAGAAGGTGA CCGGTGGTCG TAACGGTTTC GGTGCTAAGC TTTGCAACGT CTTCTCCACC
    GAATTCACGA TCGAAACTCA AGACTCGCGT CAGAAGAAGA AGTACAAGCA GACCTGGACC
    AACAATATGT CCAAGATGGG CAAGGCCAAG ATCACCGATG CCAAGGGCGA GGATTACACA
    AAAGTTACCT TCAAGCCCGA CTACGCCAAA TTCGGAATGG AGGGTATGGA CGACGATTTT
    GAAGCTCTCG TCAAACGTCG TGTGTACGAT TTGGCAGGAA CTACCAAGGT CGCTGTCAAG
    CTGAATGGTA GTCGCATCCC AGTGCGCAAC TTCAAGAAGT ACATGGAAAT GTACACCAAG
    GCCATCCGCC GAGAACGGGG CGAAGAGGAC ACCAACGCCA AGGACGAAAT TATCACCTGC
    AGTCCAGACC CTCGCTGGGA AATTGGATTT GCAGTCTCGG ACGGCTCGTT CCATCAGGTG
    TCCTTCGTGA ACTCCATTGC TACCACCTCG GGAGGAACTC ACGTTAACTA CATTGCTGAT
    CAAATCTGCG CCAGGTTGGC CGACCAAGTC AAGAAAAAGA ACAAGAACGG AGCGACGCTG
    AAGCCTGCCC AAATTCGAAA CCATATCTTC ATTTTTGTGA ACGCTCTGAT CGTGAACCCA
    GCATTCACCT CCCAGACCAA GGAGCAGCTG ACAACAAAGT CGAGCCAGTT CGGCAGCAAA
    TGTGTTCTTG AAGAGGACTT CTACAAGAAG ATCCTCAGGA CTGAAGTCAT GAACAACATC
    CTGCACTTCG CTCAAGCCAA GGCGGATCAG TTGTTGAAAA AAACGGATGG TGGGCGCCGC
    ACCCGAATGA ACAACCCGAA GTTGGTCGAT GCCAACAAGG CTGGTACCAA GGATGGTCAT
    CACTGCACCC TCATTTTGAC CGAAGGTGAC TCGGCTAAAG GCCTTGCCAT GGCTGGGCGA
    GCCGTCGTCG GACCCGACCT TTTCGGTGTC TTCCCCTTGC GAGGAAAATT GCTCAATGTC
    CGCGATGCCT CTTTTGAGCA GATTTCGAAG AACCAGGAAA TCCAAAATAT CAAGAACTTC
    CTTGGCCTAC AGCACAAGAA GGAATACACC GATACCCGCG GGCTGCGCTA CGGTCATTTG
    ATGATCATGA CCGATCAGGA TCATGACGGC AGTCATATCA AGGGCTTGCT CATCAACTTC
    CTTCAGGCTC AATTTCCCAG TCTGCTGAAG ATCCCGGAGT TCCTGATCGA GTTCATCACT
    CCTATTGCAA AGGTTTGGAA GGGCGATCCC AAGAATCCTA CCAAGCAACA CTCGTTCTTC
    ACCATGCCCG AGTATGAGGC CTGGAAAGAA GAGCACAAGC ATGAACGTGG CTGGGAACAC
    AAATACTACA AGGGTCTGGG TACGAGCACG ACTGAAGATG CTCAGGTCTA CTTCCGTGAC
    CTCGACCGCC ATCTGAAGGA GTTCCATACC CTGCAGGATC ACGAAACGGA GCTCATTGAG
    CTTGCCTTTT CGAAGAAGAA GGCCGACGAG CGAAAGGAAT GGCTGCGCCA GTTCAAACCT
    GGAACCTTTC TGGATCATTC CGTCGATAAG ATCACCTATA CCGACTTCAT CAACAAAGAG
    CTCATCTTGT TCAGTATGGC AGACAATCAG CGGTCGATCC CTTCTGTTGT CGATGGCTTG
    AAACCCGGTC AACGTAAAGT CCTGTACACG TGTTTCCGTC GCAATCTCAG GAAGGATATG
    AAAGTTGTTG AACTCGCGGG GCATGTGTCC GGTATGACCG CGTACCAGCA TGGTGATGCC
    TCCCTGCAAC AGACTATCGT CGGTCTCGCG CAGACGTTTG TCGGATCAAA CAATATTAAT
    TGCCTCGAGC CCAGTGGGAA TTTTGGAAGT CGTCTTCAAG GTGGCCAAGA TTGTGCTAGT
    GCTCGTTATA TCTACACGCG ACTGTCGCCC TTTGCGCGTC GTGTGTTCCA CGCCGCAGAT
    GATCCTCTTC TCACTTACAA CGAGGATGAC GGCAAAAAGA TTGAGCCAGA GGTCTATGTT
    CCCGTTGTGC CTATGATTCT GATTAACGGT GCTGATGGTA TCGGCACTGG TTGGAGTTCT
    TCAATTCCTA ACTACAATCC GGAAGACATT GTGGACAACC TGAAGCGGCT GATGGATGGC
    CAGCCCGTCA AGCCCATGCA GCCGTGGTTC CGCGGATTCA CCGGCGAAGT CACTGCTCTT
    GGAGGCGATC GCTTCAAGTT CAGCGGTATT ATCAAGGAGA CTGGTGACAA GGAGGTGGAG
    ATTACTGAAC TTCCCATCCG CACCTGGACA CAGGACTTCA AGGATAAACT TGAGGAAATT
    ATCAAGGCCG AGAAAACGCC ATCCTTCATC AAGGACTACA AGGATTACAA CACGCACACC
    AAGGTGCACT TTGTCATCCA GATGGACGAG AAGAACCTCC AGTCCGCCCG GGAGGAAGGA
    TTGGAGGAAA AGTTCAAGCT ATCCAAGACC ATCGCAACCA CCAATCTGGT TGCTTTTGAC
    CCTGAAGGCC GGATCACCAA ATACGCTTCT GTCGACGACA TCTTGAAGGA ATTCTACGCA
    GTTCGTCTCA AGTTTTACGA ACGTCGCAAG CAATATCAAC TCAACGAACT TCAGAAGGAG
    CTGGACAAAC TCACCAACCA GGCTCGTTTC GTGCAGATGA TCATTGACGG TGACCTTGTC
    ATCTCAAAGA AGAAGAAACC TGCTCTTGTT GCCGAGTTGA AAAAACATGG CTTCAAGGCC
    TTCCCCAAGG TGATTGATGC TGTGAAGGCG GGCGAGGATG CGCCAGTAGT GGAGGAAGAA
    GAAGACGAGT CTGGCAACGA CGAGACCGAG GTTCTATCGA GCGCTTACGA TTATCTCCTT
    GGCATGCCTC TGTGGTCTCT GACCCACGAG CGCGTGGAAA AGCTGCGACG ACAGATCGGA
    GAGAAGGAGG TTGAGATAGA CGCCTTAATT AAGCTTTCCA AGGAAGATAT TTGGAAGCGC
    GATCTTGACG ACTTTATCAA CGAATGGCGA TTCCAGCTTG AGGATGAAGC CCGCCGCCAA
    CGCAAGGTCG CTAATATGGG CCGCCGTACC TCGGCGAAGC TCATGACTGC CGCCGGTCGG
    GGAAAAGCAA CCAAGAAGCG CAAGGCGGCG CTGGACGATG ATTCGGACGA CGAAGACTTT
    GCGGCTCCAA AGTCTAAGAA ATCAGCAGCA GCAAAGAAGA CAGAACCTAA AGGCGGTCTT
    CTCAGCTACT TGGGCAAGCC ATCGGCGAAG CCTGCTCCTT CTGGCGATGG AGGCGATTCT
    GACGATGATT TCGAGGTAGA AGTGCTACCG AAGAAAAACA GGGGGGCAGC AACCAAGGCC
    ACTACCAAGG TAAAGGATGA GGATGAAGTT ATGGACGACC TGGGCGAAGA AATACTCCCA
    AAAAAGAGCC GCGGACCTGC CAAACCAGCA CCTAAGCCAA AGGAAGAAGC CGATGACGAT
    TCTGAAGACA TCGCTCCTAA GAAGGGCAGA GCTGCCGCCA AGGCGAAACC CAAGCCCAAG
    GTCGAGGATG ACGACGACCT TGATGACGAT GAATTCATGG AGATTGCCAA AGCAGAGGCA
    GCCAAGTCGG TCAAGTCCCA GCCGAATCGG ACAAGCAGGA AGATCACAAA CTATACGGCC
    CTAGACTACT CGGACAGCGA TAACGGCGAC GATCTTCTTG GCGATGTGAG CAAGATGGTC
    AAGGGCATTG GAGGCGCTAC CGGCGACTCC ACGACCGATT CACGCCAGCT CTTCTCCGAG
    CGATCCCGGC CGAGCAGCAG CTCCTCTGGC TTAAAGGTCA GCAGCTCCAA GCCCTCGAAG
    CTATCCACCG ATTTCGATGC GGATGAGACG GACTACAGCA AATTAATCCC TCAGAACTCT
    CCCCGCCGAT CGCTGCAAGT CAAGCCCAAG GAGACCAAAG TCAATGATGA TTTCGACATG
    GACGATGACG ATGACGGTGA TCCCGTGAAG CCAGCTGCCA AGGCTAAGCC AGTTGCCAAG
    AAGGGCAAGT CGGCGGCCAC TGCTGCGTCC TCGAAGCCCG CAGCTGCCCC TAAGCCGCGT
    GGCCGCCCAA AGAAGGATGC GGCGAAGCCG GCTGCTCCTG CACCGAGTCT GAAGCAGACG
    ACTCTGTCCC CTGCCGCTAA GGCATATGCA TCCAAGCAGG CCAAGGCGAC AGCCACCAAG
    AAAAAGCAGC TTGTCGACGA TTTGTCAGAT GACGACATCG ATGCCATGGC CAACGACATC
    CTGGACTCTC CGGCAGCTAG GATGGACGTC TCGGAAGACG ATGAGCCTCC TAAGCGAAAG
    ACTACGGTCC GGCCAGCTCG TCGGACTGCG GCAGCCAAGA AGACGTACGT GATTGAGGAT
    GACAGCGAGG ACGATGATGG AGGAGATTCG GGCGATGACT TTGATGAGGA GGACAGTGAG
    TAG

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

    RefSeq XP_751245.1
    CDS1..4983
    Translation

    Target ORF information:

    RefSeq Version XM_746152.1
    Organism Aspergillus fumigatus Af293
    Definition Aspergillus fumigatus Af293 DNA topoisomerase II (AFUA_6G13690), partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_746152.1

    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
    ATGTCCGACG ACGACTCGGA CTCCTCTCTT TCCCAGACAC CTCCCAAGAA GGTCAAAAAG 
    GCTCCCGCTA GCAAGAAAGG AGGCTCAAAC CCTCTTGCAG ACGTGGAGAA TGAATCATTT
    GGAGGGGATA TTGGCGATCA ACCTGCAACG TCCACCAATG CGTCAGAGAA GTACCAGAAG
    CTTACACAAC TTGAACACAT TATCAAACGT CCTGATACGT ATATCGGGTC CGTCGAACGA
    ACTACTCAGT TTATGTGGGT GTACGATTCG GAAACGGAGG GAATGAAATA CAAGGAGGTC
    TCTTATGTGC CCGGTCTCTA CAAGATTTTT GATGAAATCG TCGTCAACGC TGCTGATAAC
    AAGCAAAATG ACGCGAACAT GGATGAGATT CGTGTGACCA TCGACCGCGA GTCGGGCGAG
    ATCAGTGTTT GGAACAATGG TCGCGGTATT CCCATCGAGA TTCATGCAAA AGAAGGCATT
    TACGTCCCCG AATTGATCTT CGGCCATCTC CTCACCTCAT CCAACTACGA TGACACCCAG
    AAGAAGGTGA CCGGTGGTCG TAACGGTTTC GGTGCTAAGC TTTGCAACGT CTTCTCCACC
    GAATTCACGA TCGAAACTCA AGACTCGCGT CAGAAGAAGA AGTACAAGCA GACCTGGACC
    AACAATATGT CCAAGATGGG CAAGGCCAAG ATCACCGATG CCAAGGGCGA GGATTACACA
    AAAGTTACCT TCAAGCCCGA CTACGCCAAA TTCGGAATGG AGGGTATGGA CGACGATTTT
    GAAGCTCTCG TCAAACGTCG TGTGTACGAT TTGGCAGGAA CTACCAAGGT CGCTGTCAAG
    CTGAATGGTA GTCGCATCCC AGTGCGCAAC TTCAAGAAGT ACATGGAAAT GTACACCAAG
    GCCATCCGCC GAGAACGGGG CGAAGAGGAC ACCAACGCCA AGGACGAAAT TATCACCTGC
    AGTCCAGACC CTCGCTGGGA AATTGGATTT GCAGTCTCGG ACGGCTCGTT CCATCAGGTG
    TCCTTCGTGA ACTCCATTGC TACCACCTCG GGAGGAACTC ACGTTAACTA CATTGCTGAT
    CAAATCTGCG CCAGGTTGGC CGACCAAGTC AAGAAAAAGA ACAAGAACGG AGCGACGCTG
    AAGCCTGCCC AAATTCGAAA CCATATCTTC ATTTTTGTGA ACGCTCTGAT CGTGAACCCA
    GCATTCACCT CCCAGACCAA GGAGCAGCTG ACAACAAAGT CGAGCCAGTT CGGCAGCAAA
    TGTGTTCTTG AAGAGGACTT CTACAAGAAG ATCCTCAGGA CTGAAGTCAT GAACAACATC
    CTGCACTTCG CTCAAGCCAA GGCGGATCAG TTGTTGAAAA AAACGGATGG TGGGCGCCGC
    ACCCGAATGA ACAACCCGAA GTTGGTCGAT GCCAACAAGG CTGGTACCAA GGATGGTCAT
    CACTGCACCC TCATTTTGAC CGAAGGTGAC TCGGCTAAAG GCCTTGCCAT GGCTGGGCGA
    GCCGTCGTCG GACCCGACCT TTTCGGTGTC TTCCCCTTGC GAGGAAAATT GCTCAATGTC
    CGCGATGCCT CTTTTGAGCA GATTTCGAAG AACCAGGAAA TCCAAAATAT CAAGAACTTC
    CTTGGCCTAC AGCACAAGAA GGAATACACC GATACCCGCG GGCTGCGCTA CGGTCATTTG
    ATGATCATGA CCGATCAGGA TCATGACGGC AGTCATATCA AGGGCTTGCT CATCAACTTC
    CTTCAGGCTC AATTTCCCAG TCTGCTGAAG ATCCCGGAGT TCCTGATCGA GTTCATCACT
    CCTATTGCAA AGGTTTGGAA GGGCGATCCC AAGAATCCTA CCAAGCAACA CTCGTTCTTC
    ACCATGCCCG AGTATGAGGC CTGGAAAGAA GAGCACAAGC ATGAACGTGG CTGGGAACAC
    AAATACTACA AGGGTCTGGG TACGAGCACG ACTGAAGATG CTCAGGTCTA CTTCCGTGAC
    CTCGACCGCC ATCTGAAGGA GTTCCATACC CTGCAGGATC ACGAAACGGA GCTCATTGAG
    CTTGCCTTTT CGAAGAAGAA GGCCGACGAG CGAAAGGAAT GGCTGCGCCA GTTCAAACCT
    GGAACCTTTC TGGATCATTC CGTCGATAAG ATCACCTATA CCGACTTCAT CAACAAAGAG
    CTCATCTTGT TCAGTATGGC AGACAATCAG CGGTCGATCC CTTCTGTTGT CGATGGCTTG
    AAACCCGGTC AACGTAAAGT CCTGTACACG TGTTTCCGTC GCAATCTCAG GAAGGATATG
    AAAGTTGTTG AACTCGCGGG GCATGTGTCC GGTATGACCG CGTACCAGCA TGGTGATGCC
    TCCCTGCAAC AGACTATCGT CGGTCTCGCG CAGACGTTTG TCGGATCAAA CAATATTAAT
    TGCCTCGAGC CCAGTGGGAA TTTTGGAAGT CGTCTTCAAG GTGGCCAAGA TTGTGCTAGT
    GCTCGTTATA TCTACACGCG ACTGTCGCCC TTTGCGCGTC GTGTGTTCCA CGCCGCAGAT
    GATCCTCTTC TCACTTACAA CGAGGATGAC GGCAAAAAGA TTGAGCCAGA GGTCTATGTT
    CCCGTTGTGC CTATGATTCT GATTAACGGT GCTGATGGTA TCGGCACTGG TTGGAGTTCT
    TCAATTCCTA ACTACAATCC GGAAGACATT GTGGACAACC TGAAGCGGCT GATGGATGGC
    CAGCCCGTCA AGCCCATGCA GCCGTGGTTC CGCGGATTCA CCGGCGAAGT CACTGCTCTT
    GGAGGCGATC GCTTCAAGTT CAGCGGTATT ATCAAGGAGA CTGGTGACAA GGAGGTGGAG
    ATTACTGAAC TTCCCATCCG CACCTGGACA CAGGACTTCA AGGATAAACT TGAGGAAATT
    ATCAAGGCCG AGAAAACGCC ATCCTTCATC AAGGACTACA AGGATTACAA CACGCACACC
    AAGGTGCACT TTGTCATCCA GATGGACGAG AAGAACCTCC AGTCCGCCCG GGAGGAAGGA
    TTGGAGGAAA AGTTCAAGCT ATCCAAGACC ATCGCAACCA CCAATCTGGT TGCTTTTGAC
    CCTGAAGGCC GGATCACCAA ATACGCTTCT GTCGACGACA TCTTGAAGGA ATTCTACGCA
    GTTCGTCTCA AGTTTTACGA ACGTCGCAAG CAATATCAAC TCAACGAACT TCAGAAGGAG
    CTGGACAAAC TCACCAACCA GGCTCGTTTC GTGCAGATGA TCATTGACGG TGACCTTGTC
    ATCTCAAAGA AGAAGAAACC TGCTCTTGTT GCCGAGTTGA AAAAACATGG CTTCAAGGCC
    TTCCCCAAGG TGATTGATGC TGTGAAGGCG GGCGAGGATG CGCCAGTAGT GGAGGAAGAA
    GAAGACGAGT CTGGCAACGA CGAGACCGAG GTTCTATCGA GCGCTTACGA TTATCTCCTT
    GGCATGCCTC TGTGGTCTCT GACCCACGAG CGCGTGGAAA AGCTGCGACG ACAGATCGGA
    GAGAAGGAGG TTGAGATAGA CGCCTTAATT AAGCTTTCCA AGGAAGATAT TTGGAAGCGC
    GATCTTGACG ACTTTATCAA CGAATGGCGA TTCCAGCTTG AGGATGAAGC CCGCCGCCAA
    CGCAAGGTCG CTAATATGGG CCGCCGTACC TCGGCGAAGC TCATGACTGC CGCCGGTCGG
    GGAAAAGCAA CCAAGAAGCG CAAGGCGGCG CTGGACGATG ATTCGGACGA CGAAGACTTT
    GCGGCTCCAA AGTCTAAGAA ATCAGCAGCA GCAAAGAAGA CAGAACCTAA AGGCGGTCTT
    CTCAGCTACT TGGGCAAGCC ATCGGCGAAG CCTGCTCCTT CTGGCGATGG AGGCGATTCT
    GACGATGATT TCGAGGTAGA AGTGCTACCG AAGAAAAACA GGGGGGCAGC AACCAAGGCC
    ACTACCAAGG TAAAGGATGA GGATGAAGTT ATGGACGACC TGGGCGAAGA AATACTCCCA
    AAAAAGAGCC GCGGACCTGC CAAACCAGCA CCTAAGCCAA AGGAAGAAGC CGATGACGAT
    TCTGAAGACA TCGCTCCTAA GAAGGGCAGA GCTGCCGCCA AGGCGAAACC CAAGCCCAAG
    GTCGAGGATG ACGACGACCT TGATGACGAT GAATTCATGG AGATTGCCAA AGCAGAGGCA
    GCCAAGTCGG TCAAGTCCCA GCCGAATCGG ACAAGCAGGA AGATCACAAA CTATACGGCC
    CTAGACTACT CGGACAGCGA TAACGGCGAC GATCTTCTTG GCGATGTGAG CAAGATGGTC
    AAGGGCATTG GAGGCGCTAC CGGCGACTCC ACGACCGATT CACGCCAGCT CTTCTCCGAG
    CGATCCCGGC CGAGCAGCAG CTCCTCTGGC TTAAAGGTCA GCAGCTCCAA GCCCTCGAAG
    CTATCCACCG ATTTCGATGC GGATGAGACG GACTACAGCA AATTAATCCC TCAGAACTCT
    CCCCGCCGAT CGCTGCAAGT CAAGCCCAAG GAGACCAAAG TCAATGATGA TTTCGACATG
    GACGATGACG ATGACGGTGA TCCCGTGAAG CCAGCTGCCA AGGCTAAGCC AGTTGCCAAG
    AAGGGCAAGT CGGCGGCCAC TGCTGCGTCC TCGAAGCCCG CAGCTGCCCC TAAGCCGCGT
    GGCCGCCCAA AGAAGGATGC GGCGAAGCCG GCTGCTCCTG CACCGAGTCT GAAGCAGACG
    ACTCTGTCCC CTGCCGCTAA GGCATATGCA TCCAAGCAGG CCAAGGCGAC AGCCACCAAG
    AAAAAGCAGC TTGTCGACGA TTTGTCAGAT GACGACATCG ATGCCATGGC CAACGACATC
    CTGGACTCTC CGGCAGCTAG GATGGACGTC TCGGAAGACG ATGAGCCTCC TAAGCGAAAG
    ACTACGGTCC GGCCAGCTCG TCGGACTGCG GCAGCCAAGA AGACGTACGT GATTGAGGAT
    GACAGCGAGG ACGATGATGG AGGAGATTCG GGCGATGACT TTGATGAGGA GGACAGTGAG
    TAG

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

  • PubMed

    Genomic sequence of the pathogenic and allergenic filamentous fungus Aspergillus fumigatus.
    Nature438(7071)1151-6(2005 Dec)
    Nierman WC,Pain A,Anderson MJ,Wortman JR,Kim HS,Arroyo J,Berriman M,Abe K,Archer DB,Bermejo C,Bennett J,Bowyer P,Chen D,Collins M,Coulsen R,Davies R,Dyer PS,Farman M,Fedorova N,Fedorova N,Feldblyum TV,Fischer R,Fosker N,Fraser A,García JL,García MJ,Goble A,Goldman GH,Gomi K,Griffith-Jones S,Gwilliam R,Haas B,Haas H,Harris D,Horiuchi H,Huang J,Humphray S,Jiménez J,Keller N,Khouri H,Kitamoto K,Kobayashi T,Konzack S,Kulkarni R,Kumagai T,Lafon A,Lafton A,Latgé JP,Li W,Lord A,Lu C,Majoros WH,May GS,Miller BL,Mohamoud Y,Molina M,Monod M,Mouyna I,Mulligan S,Murphy L,O'Neil S,Paulsen I,Peñalva MA,Pertea M,Price C,Pritchard BL,Quail MA,Rabbinowitsch E,Rawlins N,Rajandream MA,Reichard U,Renauld H,Robson GD,Rodriguez de Córdoba S,Rodríguez-Peña JM,Ronning CM,Rutter S,Salzberg SL,Sanchez M,Sánchez-Ferrero JC,Saunders D,Seeger K,Squares R,Squares S,Takeuchi M,Tekaia F,Turner G,Vazquez de Aldana CR,Weidman J,White O,Woodward J,Yu JH,Fraser C,Galagan JE,Asai K,Machida M,Hall N,Barrell B,Denning DW