You are here

ATCC10864_003337-T1, ATCC10864_003337-T1 (mRNA) Aspergillus niger ATCC 10864

Overview
NameATCC10864_003337-T1
Unique NameATCC10864_003337-T1
TypemRNA
OrganismAspergillus niger ATCC 10864
Sequences
The following sequences are available for this feature:

mRNA from alignment at MCQH01000066:846423..848395+

Legend: polypeptideexonCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>ATCC10864_003337-T1 ID=ATCC10864_003337-T1|Name=ATCC10864_003337-T1|organism=Aspergillus niger ATCC 10864|type=mRNA|length=1973bp|location=Sequence derived from alignment at MCQH01000066:846423..848395+ (Aspergillus niger ATCC 10864)
ATGCCGATCGTTATCGCCGCCGCAGGGAAGCCGCGTCGCAAAGTTCGTTT TTCATCCAACCAAACATCCAGGCCAACAGACGCTCAGGGTAGAGACACAA AATCTACTAGTTCGTCAATAGGACGCCGTCAACCCTCGGCGCCTACACCT AGGAAGCACACATCGCTAGACCAACGCAGCAACAGCAGCGGCGGCATGTA TGAGCCCCAAGCACATCCCGGAGTTCCGGCGTTGTTTCAAGAGCTGCCCT CGCTGCTAGATGCCCTGTGCACCGAGACCTCTGAGGTCCAAAGTGAGACC GTCAACAAATGTCTGCCCTTCTTGAAAGGCATTCACAACAGCCAGGCAGG TCCATTCAACCGATTCGGAGTACCATCTCTGAACCAGAATGACCACCTCA TCTACTTATACGATTCTTTGGAGGACTATCCAGAGGGCTTCGCTGGCATG GATGCAAGCCGACCTTGGATGGTCTACTGGGTGCTGGCCGGATTAAGCCT CCTGGGGGAAGATGTCACCAAATACCGTGAACGGTAAGCAATCATTGAGC TGTGCGTTTGACAGCGTGCAGATTGATCATAGCTACGCTGCTGCGATTCT GGCTCTCAATTACCACCTTTCTATCCAACGACCATGTCTAAATCCTCTCT CTAGTGTCATTTCCACGTTTACGCCAATGCAAAATCCTACAGGGGGTATG GGAGGAGGTCACGGGCAACTGTCCCACTGCGCCTCTAGCTATGCCACAGT GCTCGCTTTAGCCATGGTCGGAGGCGAAGAGGCATTCGAACTAATCGATC GGGAGGCGATGTGAGTAATTATGGTACCTGACTTGAGCATCAATGCATGC TGACCTGGGCCTAGGTGGAGATGGCTAGGCAGCTTGAAGCAGCCTGATGG CGGCTTTAGGGTCTGCGTGGGCGGGGAAGAAGACGTGCGGTATTTTCTCC CGTTGCTTGCTTCGCATCCACCTTTTGCTTTTTGCTAAAATTTGGTCAGA GGCGCCTATTGCGCCATGGTGGTCCATTCGCTACTGAATTTGCCACTGGA ATTACCCCCTGATGCCGAAGCTCGGCAGCACGGTCTCGAGACATTCACCA GTGGCCTCTCGGAGTACCTGTCGAGGTGTAAGAGCTTCGCATCCCTAACC TGCCGGACTAGACTGATCTGGACTGCAGGCCAAACATACGAAGGCGGCAT TTCCGGAAGCCCCGGTTCTGAGGCGCATGGTGCCTATACTTTCTGTGCTT TGGCATGTCTGTGCCTCATGGGCCCACCAGAAGTCATGGTGTCGAGGTAA GAGGTGCATTCTCATGTTGTTCTCCCCGCTTCCGCTGATAACATCAGGTG CATGGATGTTCCTTTACTCCTGAGCTGGCTTTCTGCTCGACAGTACGCCC CCGAAGGAGGGTTTTCGGGAAGGACCAATAAATTGGTGGATGGCTGCTAC AGCCACTGGGTTGGCACCTGCTGGCCATTAGTTCAGTCTGCCCTCAACGG GGTCCAGTCAGCTACAGGCCCGGAGCGGGTCCCTGCCAATCTCTACAGCC GTGAAGGGTTAACCAGATATATCCTTGGTTGTTGCCAGTCCAAGTTCGGG GGGCTCCGTGATAAGCCTGGGAAGTACGTAACTCCCTTCCTCTTCCGATT CCTTTCACAGTGTGGTCAGGCTAACTATGGCTACTAGGCATCCGGATTCG TACCACACCTGCTACACGCTGACAGGCTTGAGCTCAACCCAGTATTATCA TTACCACACCACTTCCAGCGTCAGCTCTGATGAGGGCTTTGGTTCGGCGT ACTCCTGGAAATGCACACCCATCCCTGCTTCGGATGATTCATCCTCCGAC CAGAATGTATTCGATGAGAAGGACCGGTTGAAAGCCTTTCACCCGATCTT CGTGGTACCCCATGCGGCCGCGGAGAGCCTGCGGGTATGGTGCGAGCACC GTCCGATCAAGCCCGAATGGTGA
back to top

Coding sequence (CDS) from alignment at MCQH01000066:846423..848395+

>ATCC10864_003337-T1 ID=ATCC10864_003337-T1|Name=ATCC10864_003337-T1|organism=Aspergillus niger ATCC 10864|type=CDS|length=11004bp|location=Sequence derived from alignment at MCQH01000066:846423..848395+ (Aspergillus niger ATCC 10864)
ATGCCGATCGTTATCGCCGCCGCAGGGAAGCCGCGTCGCAAAGTTCGTTT
TTCATCCAACCAAACATCCAGGCCAACAGACGCTCAGGGTAGAGACACAA
AATCTACTAGTTCGTCAATAGGACGCCGTCAACCCTCGGCGCCTACACCT
AGGAAGCACACATCGCTAGACCAACGCAGCAACAGCAGCGGCGGCATGTA
TGAGCCCCAAGCACATCCCGGAGTTCCGGCGTTGTTTCAAGAGCTGCCCT
CGCTGCTAGATGCCCTGTGCACCGAGACCTCTGAGGTCCAAAGTGAGACC
GTCAACAAATGTCTGCCCTTCTTGAAAGGCATTCACAACAGCCAGGCAGG
TCCATTCAACCGATTCGGAGTACCATCTCTGAACCAGAATGACCACCTCA
TCTACTTATACGATTCTTTGGAGGACTATCCAGAGGGCTTCGCTGGCATG
GATGCAAGCCGACCTTGGATGGTCTACTGGGTGCTGGCCGGATTAAGCCT
CCTGGGGGAAGATGTCACCAAATACCGTGAACGTGTCATTTCCACGTTTA
CGCCAATGCAAAATCCTACAGGGGGTATGGGAGGAGGTCACGGGCAACTG
TCCCACTGCGCCTCTAGCTATGCCACAGTGCTCGCTTTAGCCATGGTCGG
AGGCGAAGAGGCATTCGAACTAATCGATCGGGAGGCGATGTGGAGATGGC
TAGGCAGCTTGAAGCAGCCTGATGGCGGCTTTAGGGTCTGCGTGGGCGGG
GAAGAAGACGTGCGAGGCGCCTATTGCGCCATGGTGGTCCATTCGCTACT
GAATTTGCCACTGGAATTACCCCCTGATGCCGAAGCTCGGCAGCACGGTC
TCGAGACATTCACCAGTGGCCTCTCGGAGTACCTGTCGAGGTGCCAAACA
TACGAAGGCGGCATTTCCGGAAGCCCCGGTTCTGAGGCGCATGGTGCCTA
TACTTTCTGTGCTTTGGCATGTCTGTGCCTCATGGGCCCACCAGAAGTCA
TGGTGTCGAGGTGCATGGATGTTCCTTTACTCCTGAGCTGGCTTTCTGCT
CGACAGTACGCCCCCGAAGGAGGGTTTTCGGGAAGGACCAATAAATTGGT
GGATGGCTGCTACAGCCACTGGGTTGGCACCTGCTGGCCATTAGTTCAGT
CTGCCCTCAACGGGGTCCAGTCAGCTACAGGCCCGGAGCGGGTCCCTGCC
AATCTCTACAGCCGTGAAGGGTTAACCAGATATATCCTTGGTTGTTGCCA
GTCCAAGTTCGGGGGGCTCCGTGATAAGCCTGGGAAGCATCCGGATTCGT
ACCACACCTGCTACACGCTGACAGGCTTGAGCTCAACCCAGTATTATCAT
TACCACACCACTTCCAGCGTCAGCTCTGATGAGGGCTTTGGTTCGGCGTA
CTCCTGGAAATGCACACCCATCCCTGCTTCGGATGATTCATCCTCCGACC
AGAATGTATTCGATGAGAAGGACCGGTTGAAAGCCTTTCACCCGATCTTC
GTGGTACCCCATGCGGCCGCGGAGAGCCTGCGGGTATGGTGCGAGCACCG
TCCGATCAAGCCCGAATGGTGAATGCCGATCGTTATCGCCGCCGCAGGGA
AGCCGCGTCGCAAAGTTCGTTTTTCATCCAACCAAACATCCAGGCCAACA
GACGCTCAGGGTAGAGACACAAAATCTACTAGTTCGTCAATAGGACGCCG
TCAACCCTCGGCGCCTACACCTAGGAAGCACACATCGCTAGACCAACGCA
GCAACAGCAGCGGCGGCATGTATGAGCCCCAAGCACATCCCGGAGTTCCG
GCGTTGTTTCAAGAGCTGCCCTCGCTGCTAGATGCCCTGTGCACCGAGAC
CTCTGAGGTCCAAAGTGAGACCGTCAACAAATGTCTGCCCTTCTTGAAAG
GCATTCACAACAGCCAGGCAGGTCCATTCAACCGATTCGGAGTACCATCT
CTGAACCAGAATGACCACCTCATCTACTTATACGATTCTTTGGAGGACTA
TCCAGAGGGCTTCGCTGGCATGGATGCAAGCCGACCTTGGATGGTCTACT
GGGTGCTGGCCGGATTAAGCCTCCTGGGGGAAGATGTCACCAAATACCGT
GAACGTGTCATTTCCACGTTTACGCCAATGCAAAATCCTACAGGGGGTAT
GGGAGGAGGTCACGGGCAACTGTCCCACTGCGCCTCTAGCTATGCCACAG
TGCTCGCTTTAGCCATGGTCGGAGGCGAAGAGGCATTCGAACTAATCGAT
CGGGAGGCGATGTGGAGATGGCTAGGCAGCTTGAAGCAGCCTGATGGCGG
CTTTAGGGTCTGCGTGGGCGGGGAAGAAGACGTGCGAGGCGCCTATTGCG
CCATGGTGGTCCATTCGCTACTGAATTTGCCACTGGAATTACCCCCTGAT
GCCGAAGCTCGGCAGCACGGTCTCGAGACATTCACCAGTGGCCTCTCGGA
GTACCTGTCGAGGTGCCAAACATACGAAGGCGGCATTTCCGGAAGCCCCG
GTTCTGAGGCGCATGGTGCCTATACTTTCTGTGCTTTGGCATGTCTGTGC
CTCATGGGCCCACCAGAAGTCATGGTGTCGAGGTGCATGGATGTTCCTTT
ACTCCTGAGCTGGCTTTCTGCTCGACAGTACGCCCCCGAAGGAGGGTTTT
CGGGAAGGACCAATAAATTGGTGGATGGCTGCTACAGCCACTGGGTTGGC
ACCTGCTGGCCATTAGTTCAGTCTGCCCTCAACGGGGTCCAGTCAGCTAC
AGGCCCGGAGCGGGTCCCTGCCAATCTCTACAGCCGTGAAGGGTTAACCA
GATATATCCTTGGTTGTTGCCAGTCCAAGTTCGGGGGGCTCCGTGATAAG
CCTGGGAAGCATCCGGATTCGTACCACACCTGCTACACGCTGACAGGCTT
GAGCTCAACCCAGTATTATCATTACCACACCACTTCCAGCGTCAGCTCTG
ATGAGGGCTTTGGTTCGGCGTACTCCTGGAAATGCACACCCATCCCTGCT
TCGGATGATTCATCCTCCGACCAGAATGTATTCGATGAGAAGGACCGGTT
GAAAGCCTTTCACCCGATCTTCGTGGTACCCCATGCGGCCGCGGAGAGCC
TGCGGGTATGGTGCGAGCACCGTCCGATCAAGCCCGAATGGTGAATGCCG
ATCGTTATCGCCGCCGCAGGGAAGCCGCGTCGCAAAGTTCGTTTTTCATC
CAACCAAACATCCAGGCCAACAGACGCTCAGGGTAGAGACACAAAATCTA
CTAGTTCGTCAATAGGACGCCGTCAACCCTCGGCGCCTACACCTAGGAAG
CACACATCGCTAGACCAACGCAGCAACAGCAGCGGCGGCATGTATGAGCC
CCAAGCACATCCCGGAGTTCCGGCGTTGTTTCAAGAGCTGCCCTCGCTGC
TAGATGCCCTGTGCACCGAGACCTCTGAGGTCCAAAGTGAGACCGTCAAC
AAATGTCTGCCCTTCTTGAAAGGCATTCACAACAGCCAGGCAGGTCCATT
CAACCGATTCGGAGTACCATCTCTGAACCAGAATGACCACCTCATCTACT
TATACGATTCTTTGGAGGACTATCCAGAGGGCTTCGCTGGCATGGATGCA
AGCCGACCTTGGATGGTCTACTGGGTGCTGGCCGGATTAAGCCTCCTGGG
GGAAGATGTCACCAAATACCGTGAACGTGTCATTTCCACGTTTACGCCAA
TGCAAAATCCTACAGGGGGTATGGGAGGAGGTCACGGGCAACTGTCCCAC
TGCGCCTCTAGCTATGCCACAGTGCTCGCTTTAGCCATGGTCGGAGGCGA
AGAGGCATTCGAACTAATCGATCGGGAGGCGATGTGGAGATGGCTAGGCA
GCTTGAAGCAGCCTGATGGCGGCTTTAGGGTCTGCGTGGGCGGGGAAGAA
GACGTGCGAGGCGCCTATTGCGCCATGGTGGTCCATTCGCTACTGAATTT
GCCACTGGAATTACCCCCTGATGCCGAAGCTCGGCAGCACGGTCTCGAGA
CATTCACCAGTGGCCTCTCGGAGTACCTGTCGAGGTGCCAAACATACGAA
GGCGGCATTTCCGGAAGCCCCGGTTCTGAGGCGCATGGTGCCTATACTTT
CTGTGCTTTGGCATGTCTGTGCCTCATGGGCCCACCAGAAGTCATGGTGT
CGAGGTGCATGGATGTTCCTTTACTCCTGAGCTGGCTTTCTGCTCGACAG
TACGCCCCCGAAGGAGGGTTTTCGGGAAGGACCAATAAATTGGTGGATGG
CTGCTACAGCCACTGGGTTGGCACCTGCTGGCCATTAGTTCAGTCTGCCC
TCAACGGGGTCCAGTCAGCTACAGGCCCGGAGCGGGTCCCTGCCAATCTC
TACAGCCGTGAAGGGTTAACCAGATATATCCTTGGTTGTTGCCAGTCCAA
GTTCGGGGGGCTCCGTGATAAGCCTGGGAAGCATCCGGATTCGTACCACA
CCTGCTACACGCTGACAGGCTTGAGCTCAACCCAGTATTATCATTACCAC
ACCACTTCCAGCGTCAGCTCTGATGAGGGCTTTGGTTCGGCGTACTCCTG
GAAATGCACACCCATCCCTGCTTCGGATGATTCATCCTCCGACCAGAATG
TATTCGATGAGAAGGACCGGTTGAAAGCCTTTCACCCGATCTTCGTGGTA
CCCCATGCGGCCGCGGAGAGCCTGCGGGTATGGTGCGAGCACCGTCCGAT
CAAGCCCGAATGGTGAATGCCGATCGTTATCGCCGCCGCAGGGAAGCCGC
GTCGCAAAGTTCGTTTTTCATCCAACCAAACATCCAGGCCAACAGACGCT
CAGGGTAGAGACACAAAATCTACTAGTTCGTCAATAGGACGCCGTCAACC
CTCGGCGCCTACACCTAGGAAGCACACATCGCTAGACCAACGCAGCAACA
GCAGCGGCGGCATGTATGAGCCCCAAGCACATCCCGGAGTTCCGGCGTTG
TTTCAAGAGCTGCCCTCGCTGCTAGATGCCCTGTGCACCGAGACCTCTGA
GGTCCAAAGTGAGACCGTCAACAAATGTCTGCCCTTCTTGAAAGGCATTC
ACAACAGCCAGGCAGGTCCATTCAACCGATTCGGAGTACCATCTCTGAAC
CAGAATGACCACCTCATCTACTTATACGATTCTTTGGAGGACTATCCAGA
GGGCTTCGCTGGCATGGATGCAAGCCGACCTTGGATGGTCTACTGGGTGC
TGGCCGGATTAAGCCTCCTGGGGGAAGATGTCACCAAATACCGTGAACGT
GTCATTTCCACGTTTACGCCAATGCAAAATCCTACAGGGGGTATGGGAGG
AGGTCACGGGCAACTGTCCCACTGCGCCTCTAGCTATGCCACAGTGCTCG
CTTTAGCCATGGTCGGAGGCGAAGAGGCATTCGAACTAATCGATCGGGAG
GCGATGTGGAGATGGCTAGGCAGCTTGAAGCAGCCTGATGGCGGCTTTAG
GGTCTGCGTGGGCGGGGAAGAAGACGTGCGAGGCGCCTATTGCGCCATGG
TGGTCCATTCGCTACTGAATTTGCCACTGGAATTACCCCCTGATGCCGAA
GCTCGGCAGCACGGTCTCGAGACATTCACCAGTGGCCTCTCGGAGTACCT
GTCGAGGTGCCAAACATACGAAGGCGGCATTTCCGGAAGCCCCGGTTCTG
AGGCGCATGGTGCCTATACTTTCTGTGCTTTGGCATGTCTGTGCCTCATG
GGCCCACCAGAAGTCATGGTGTCGAGGTGCATGGATGTTCCTTTACTCCT
GAGCTGGCTTTCTGCTCGACAGTACGCCCCCGAAGGAGGGTTTTCGGGAA
GGACCAATAAATTGGTGGATGGCTGCTACAGCCACTGGGTTGGCACCTGC
TGGCCATTAGTTCAGTCTGCCCTCAACGGGGTCCAGTCAGCTACAGGCCC
GGAGCGGGTCCCTGCCAATCTCTACAGCCGTGAAGGGTTAACCAGATATA
TCCTTGGTTGTTGCCAGTCCAAGTTCGGGGGGCTCCGTGATAAGCCTGGG
AAGCATCCGGATTCGTACCACACCTGCTACACGCTGACAGGCTTGAGCTC
AACCCAGTATTATCATTACCACACCACTTCCAGCGTCAGCTCTGATGAGG
GCTTTGGTTCGGCGTACTCCTGGAAATGCACACCCATCCCTGCTTCGGAT
GATTCATCCTCCGACCAGAATGTATTCGATGAGAAGGACCGGTTGAAAGC
CTTTCACCCGATCTTCGTGGTACCCCATGCGGCCGCGGAGAGCCTGCGGG
TATGGTGCGAGCACCGTCCGATCAAGCCCGAATGGTGAATGCCGATCGTT
ATCGCCGCCGCAGGGAAGCCGCGTCGCAAAGTTCGTTTTTCATCCAACCA
AACATCCAGGCCAACAGACGCTCAGGGTAGAGACACAAAATCTACTAGTT
CGTCAATAGGACGCCGTCAACCCTCGGCGCCTACACCTAGGAAGCACACA
TCGCTAGACCAACGCAGCAACAGCAGCGGCGGCATGTATGAGCCCCAAGC
ACATCCCGGAGTTCCGGCGTTGTTTCAAGAGCTGCCCTCGCTGCTAGATG
CCCTGTGCACCGAGACCTCTGAGGTCCAAAGTGAGACCGTCAACAAATGT
CTGCCCTTCTTGAAAGGCATTCACAACAGCCAGGCAGGTCCATTCAACCG
ATTCGGAGTACCATCTCTGAACCAGAATGACCACCTCATCTACTTATACG
ATTCTTTGGAGGACTATCCAGAGGGCTTCGCTGGCATGGATGCAAGCCGA
CCTTGGATGGTCTACTGGGTGCTGGCCGGATTAAGCCTCCTGGGGGAAGA
TGTCACCAAATACCGTGAACGTGTCATTTCCACGTTTACGCCAATGCAAA
ATCCTACAGGGGGTATGGGAGGAGGTCACGGGCAACTGTCCCACTGCGCC
TCTAGCTATGCCACAGTGCTCGCTTTAGCCATGGTCGGAGGCGAAGAGGC
ATTCGAACTAATCGATCGGGAGGCGATGTGGAGATGGCTAGGCAGCTTGA
AGCAGCCTGATGGCGGCTTTAGGGTCTGCGTGGGCGGGGAAGAAGACGTG
CGAGGCGCCTATTGCGCCATGGTGGTCCATTCGCTACTGAATTTGCCACT
GGAATTACCCCCTGATGCCGAAGCTCGGCAGCACGGTCTCGAGACATTCA
CCAGTGGCCTCTCGGAGTACCTGTCGAGGTGCCAAACATACGAAGGCGGC
ATTTCCGGAAGCCCCGGTTCTGAGGCGCATGGTGCCTATACTTTCTGTGC
TTTGGCATGTCTGTGCCTCATGGGCCCACCAGAAGTCATGGTGTCGAGGT
GCATGGATGTTCCTTTACTCCTGAGCTGGCTTTCTGCTCGACAGTACGCC
CCCGAAGGAGGGTTTTCGGGAAGGACCAATAAATTGGTGGATGGCTGCTA
CAGCCACTGGGTTGGCACCTGCTGGCCATTAGTTCAGTCTGCCCTCAACG
GGGTCCAGTCAGCTACAGGCCCGGAGCGGGTCCCTGCCAATCTCTACAGC
CGTGAAGGGTTAACCAGATATATCCTTGGTTGTTGCCAGTCCAAGTTCGG
GGGGCTCCGTGATAAGCCTGGGAAGCATCCGGATTCGTACCACACCTGCT
ACACGCTGACAGGCTTGAGCTCAACCCAGTATTATCATTACCACACCACT
TCCAGCGTCAGCTCTGATGAGGGCTTTGGTTCGGCGTACTCCTGGAAATG
CACACCCATCCCTGCTTCGGATGATTCATCCTCCGACCAGAATGTATTCG
ATGAGAAGGACCGGTTGAAAGCCTTTCACCCGATCTTCGTGGTACCCCAT
GCGGCCGCGGAGAGCCTGCGGGTATGGTGCGAGCACCGTCCGATCAAGCC
CGAATGGTGAATGCCGATCGTTATCGCCGCCGCAGGGAAGCCGCGTCGCA
AAGTTCGTTTTTCATCCAACCAAACATCCAGGCCAACAGACGCTCAGGGT
AGAGACACAAAATCTACTAGTTCGTCAATAGGACGCCGTCAACCCTCGGC
GCCTACACCTAGGAAGCACACATCGCTAGACCAACGCAGCAACAGCAGCG
GCGGCATGTATGAGCCCCAAGCACATCCCGGAGTTCCGGCGTTGTTTCAA
GAGCTGCCCTCGCTGCTAGATGCCCTGTGCACCGAGACCTCTGAGGTCCA
AAGTGAGACCGTCAACAAATGTCTGCCCTTCTTGAAAGGCATTCACAACA
GCCAGGCAGGTCCATTCAACCGATTCGGAGTACCATCTCTGAACCAGAAT
GACCACCTCATCTACTTATACGATTCTTTGGAGGACTATCCAGAGGGCTT
CGCTGGCATGGATGCAAGCCGACCTTGGATGGTCTACTGGGTGCTGGCCG
GATTAAGCCTCCTGGGGGAAGATGTCACCAAATACCGTGAACGTGTCATT
TCCACGTTTACGCCAATGCAAAATCCTACAGGGGGTATGGGAGGAGGTCA
CGGGCAACTGTCCCACTGCGCCTCTAGCTATGCCACAGTGCTCGCTTTAG
CCATGGTCGGAGGCGAAGAGGCATTCGAACTAATCGATCGGGAGGCGATG
TGGAGATGGCTAGGCAGCTTGAAGCAGCCTGATGGCGGCTTTAGGGTCTG
CGTGGGCGGGGAAGAAGACGTGCGAGGCGCCTATTGCGCCATGGTGGTCC
ATTCGCTACTGAATTTGCCACTGGAATTACCCCCTGATGCCGAAGCTCGG
CAGCACGGTCTCGAGACATTCACCAGTGGCCTCTCGGAGTACCTGTCGAG
GTGCCAAACATACGAAGGCGGCATTTCCGGAAGCCCCGGTTCTGAGGCGC
ATGGTGCCTATACTTTCTGTGCTTTGGCATGTCTGTGCCTCATGGGCCCA
CCAGAAGTCATGGTGTCGAGGTGCATGGATGTTCCTTTACTCCTGAGCTG
GCTTTCTGCTCGACAGTACGCCCCCGAAGGAGGGTTTTCGGGAAGGACCA
ATAAATTGGTGGATGGCTGCTACAGCCACTGGGTTGGCACCTGCTGGCCA
TTAGTTCAGTCTGCCCTCAACGGGGTCCAGTCAGCTACAGGCCCGGAGCG
GGTCCCTGCCAATCTCTACAGCCGTGAAGGGTTAACCAGATATATCCTTG
GTTGTTGCCAGTCCAAGTTCGGGGGGCTCCGTGATAAGCCTGGGAAGCAT
CCGGATTCGTACCACACCTGCTACACGCTGACAGGCTTGAGCTCAACCCA
GTATTATCATTACCACACCACTTCCAGCGTCAGCTCTGATGAGGGCTTTG
GTTCGGCGTACTCCTGGAAATGCACACCCATCCCTGCTTCGGATGATTCA
TCCTCCGACCAGAATGTATTCGATGAGAAGGACCGGTTGAAAGCCTTTCA
CCCGATCTTCGTGGTACCCCATGCGGCCGCGGAGAGCCTGCGGGTATGGT
GCGAGCACCGTCCGATCAAGCCCGAATGGTGAATGCCGATCGTTATCGCC
GCCGCAGGGAAGCCGCGTCGCAAAGTTCGTTTTTCATCCAACCAAACATC
CAGGCCAACAGACGCTCAGGGTAGAGACACAAAATCTACTAGTTCGTCAA
TAGGACGCCGTCAACCCTCGGCGCCTACACCTAGGAAGCACACATCGCTA
GACCAACGCAGCAACAGCAGCGGCGGCATGTATGAGCCCCAAGCACATCC
CGGAGTTCCGGCGTTGTTTCAAGAGCTGCCCTCGCTGCTAGATGCCCTGT
GCACCGAGACCTCTGAGGTCCAAAGTGAGACCGTCAACAAATGTCTGCCC
TTCTTGAAAGGCATTCACAACAGCCAGGCAGGTCCATTCAACCGATTCGG
AGTACCATCTCTGAACCAGAATGACCACCTCATCTACTTATACGATTCTT
TGGAGGACTATCCAGAGGGCTTCGCTGGCATGGATGCAAGCCGACCTTGG
ATGGTCTACTGGGTGCTGGCCGGATTAAGCCTCCTGGGGGAAGATGTCAC
CAAATACCGTGAACGTGTCATTTCCACGTTTACGCCAATGCAAAATCCTA
CAGGGGGTATGGGAGGAGGTCACGGGCAACTGTCCCACTGCGCCTCTAGC
TATGCCACAGTGCTCGCTTTAGCCATGGTCGGAGGCGAAGAGGCATTCGA
ACTAATCGATCGGGAGGCGATGTGGAGATGGCTAGGCAGCTTGAAGCAGC
CTGATGGCGGCTTTAGGGTCTGCGTGGGCGGGGAAGAAGACGTGCGAGGC
GCCTATTGCGCCATGGTGGTCCATTCGCTACTGAATTTGCCACTGGAATT
ACCCCCTGATGCCGAAGCTCGGCAGCACGGTCTCGAGACATTCACCAGTG
GCCTCTCGGAGTACCTGTCGAGGTGCCAAACATACGAAGGCGGCATTTCC
GGAAGCCCCGGTTCTGAGGCGCATGGTGCCTATACTTTCTGTGCTTTGGC
ATGTCTGTGCCTCATGGGCCCACCAGAAGTCATGGTGTCGAGGTGCATGG
ATGTTCCTTTACTCCTGAGCTGGCTTTCTGCTCGACAGTACGCCCCCGAA
GGAGGGTTTTCGGGAAGGACCAATAAATTGGTGGATGGCTGCTACAGCCA
CTGGGTTGGCACCTGCTGGCCATTAGTTCAGTCTGCCCTCAACGGGGTCC
AGTCAGCTACAGGCCCGGAGCGGGTCCCTGCCAATCTCTACAGCCGTGAA
GGGTTAACCAGATATATCCTTGGTTGTTGCCAGTCCAAGTTCGGGGGGCT
CCGTGATAAGCCTGGGAAGCATCCGGATTCGTACCACACCTGCTACACGC
TGACAGGCTTGAGCTCAACCCAGTATTATCATTACCACACCACTTCCAGC
GTCAGCTCTGATGAGGGCTTTGGTTCGGCGTACTCCTGGAAATGCACACC
CATCCCTGCTTCGGATGATTCATCCTCCGACCAGAATGTATTCGATGAGA
AGGACCGGTTGAAAGCCTTTCACCCGATCTTCGTGGTACCCCATGCGGCC
GCGGAGAGCCTGCGGGTATGGTGCGAGCACCGTCCGATCAAGCCCGAATG
GTGA
back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0018343protein farnesylation
Vocabulary: Cellular Component
TermDefinition
GO:0005965protein farnesyltransferase complex
Vocabulary: Molecular Function
TermDefinition
GO:0003824catalytic activity
Relationships

This mRNA is a part of the following gene feature(s):

Feature NameUnique NameSpeciesType
ATCC10864_003337ATCC10864_003337Aspergillus niger ATCC 10864gene


The following polypeptide feature(s) derives from this mRNA:

Feature NameUnique NameSpeciesType
ATCC10864_003337-T1ATCC10864_003337-T1-proteinAspergillus niger ATCC 10864polypeptide


The following exon feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesType
ATCC10864_003337-T1.exon1ATCC10864_003337-T1.exon1Aspergillus niger ATCC 10864exon
ATCC10864_003337-T1.exon2ATCC10864_003337-T1.exon2Aspergillus niger ATCC 10864exon
ATCC10864_003337-T1.exon3ATCC10864_003337-T1.exon3Aspergillus niger ATCC 10864exon
ATCC10864_003337-T1.exon4ATCC10864_003337-T1.exon4Aspergillus niger ATCC 10864exon
ATCC10864_003337-T1.exon5ATCC10864_003337-T1.exon5Aspergillus niger ATCC 10864exon
ATCC10864_003337-T1.exon6ATCC10864_003337-T1.exon6Aspergillus niger ATCC 10864exon
ATCC10864_003337-T1.exon7ATCC10864_003337-T1.exon7Aspergillus niger ATCC 10864exon


The following CDS feature(s) are a part of this mRNA:

Feature NameUnique NameSpeciesType
ATCC10864_003337-T1.cdsATCC10864_003337-T1.cdsAspergillus niger ATCC 10864CDS


Cross References
External references for this mRNA
DatabaseAccession
InterProIPR001330
PFAMPF00432
InterProIPR026872
InterProIPR008930
Properties
Property NameValue
Producthypothetical protein
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Aspergillus niger ATCC 10864 whole genome analysis2021-11-01
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
MCQH01000066supercontigMCQH01000066:846423..848395 +