You are here

ATCC64974_57450-T1, ATCC64974_57450-T1 (mRNA) Aspergillus niger N402

Overview
NameATCC64974_57450-T1
Unique NameATCC64974_57450-T1
TypemRNA
OrganismAspergillus niger N402
Sequences
The following sequences are available for this feature:

mRNA from alignment at OGUI01000007.1:4655665..4659629-

Legend: polypeptideCDSexon
Hold the cursor over a type above to highlight its positions in the sequence below.
>ATCC64974_57450-T1 ID=ATCC64974_57450-T1|Name=ATCC64974_57450-T1|organism=Aspergillus niger N402|type=mRNA|length=3965bp|location=Sequence derived from alignment at OGUI01000007.1:4655665..4659629- (Aspergillus niger N402)
ATGGCCCAGACCAATGGCGAACTGGAGCACTCGAAAGGTTCGCCTGCTTT TCCCAGCCGTCAATCACCGATCCCGGCTTGGTTGTATGTCCAGTAAAACT AACTATGCCCACAGAGACTCCCGAACAGCTCACCAATGGTAACCACCCTG AGGAAACTCAGGAAGAGGATAACACCGGTGGTACGTCTCCTGTCGCTTAT GACTCGATCTTGCGTACATGTTACTGACCGTGAGTCATCGTTTACAGGTC TTTTCCAGATCACCGTCAAGCTCCCTCATGAGCCCTACAAGATCCAGGTG ATGGTGGGTATTATGTCTACAGGTGTCATGCGACTAGAGGAATGATTCAA AGACCTTCTAACCCGAATACTTAGGTGTCGAGCCAAGAACAAGTTCAAGA TGTGCGCCAATCGATTGTCGAGCTGCCCAGCACCTTCCAGTACACCTGCT TCCACCTCGAATTCAACGGCCAGCGCATCAATGACTTCGTCGAGCTGTCC GAGGTGCCTGACCTGAAGGCTGACTCTGAGATCACCCTGGTGGAGGATCC CTACAACGAGAAGGAAGCTCGTATGCACGTTGTTCGCATGAGAGAGCTGG TTGGCGCTGCGGGTGACCGGGTTGACAACCTCCATGGTATCAGCGCTGGT CTGTCTCTGCACGATGCCATCTCCGCTGAGGTGGCTGATGCGTCGGAGAA GGAGCACTCCCTGTCCAAGTACGACATTACTAGCTCCCCCTCTCTCAAGA CCATCCTCCCCCGCGCCGAAGCTCCCCTTCCCAAGACCGTCAAGGCCATC TCTCTCTCCCCGTGGAACCCCGTTCCTTACCACCTCCGCCAGAAGGGTCA CTTGCTTTACCTCCAGGTCACCACCAACGAGGGTGAGCAGTTCCAGATCA CCTCTCACATCTCCGGCTTCTACGTGAACAAGAACTCGAACATGAAGTTC GATCCTTCCCCGAAGACCATCCCCAAGAGTGGCCGCGCGCACTCGCTGCT CACCTTGATCGCTCACCTGTCGCCCTCCTTCAACGCCTCTTTCGAAGCCC TCCAGGAGTCGAACAACAAGAAGGATCTCCTGACCACCTTCCCCTTCCAG AACGCCATCCCCAACAACCCGTGGCTTGTTCCCCCTCCCACCTCGACTGC GAACGCTCACCAGCCAGACATCACCCGTTCCCAGGAGAACTACCTCATCT CCGGCGTTGACAACGCGGAGACCCTCCGTGACTGGAACGAGGAGTTCCAG ACTACCCGGGAGCTGCCTCGCGAGACTGTTCAGGACCGTGTTTTCCGTGA ACGCTTGACCTCCAAGCTGTTCGCTGATTACAACGAGGCCGCCGCTCGCG GTGCCGTCCTGGTGGCTCGTGGTGAGGTCGCTCCTCTGAACCCCACTGAG AGCCGCGATGCTCAGATCTTCGTTTACAACAACATCTTCTACTCTTTCGG TGCTGACGGTGTTGGCACCTTCGCCTCCGAGGGTGGTGACGAGGCTGCCC GTGTCGCTGTCGGAAAGGATGTTGTGGGCATCAAGGCCGTCAACCAGCTC GACATCAACGGTCTCTTCACCCCGGGAACTGTTGTCGTCGACTACCTCGG CAAGCGTATCGTTGGTCAGAGTATTGTCCCCGGTATTTTCAAGCAGCGTG AGCCCGGTGAGCACCAGATCGACTATGGTGGTGTTGAAGGAAAGGATGTC GTGGCCACTCACCCCGACTTTGTGTCTGTTTTCGAGAAGATGTCCAAGGC TCTTCGCGTCAAGAAGCACGCCGTGTGGGACAAGGAGGGCCAGCGCCACG AGCTTGAGGGTAGCGTGGAGACAAAGGGTCTTCTGGGTACTGATGGCCGC AAGTACGTGCTTGACCTCTACCGCGTGACTCCCCTGGATGTCATGTGGCA GGAGGAGGAAGGTAGCGATGCCTACCCGCACCGCATGTCCGTCCTGAGAC TGGAGCTTGTTGAATCTTACTGGAGGCACAAGATGAGCCAGTACGTCAAG GCCGAAGTCGAGCGCCGCCGTAGCGCCAAGGCTGAGGCCGATGCTGCCAA GGCTGAATCCTCCGAGGCTACCGAATCCAAGGAGCAGGCCTCCGAAGAGA AGAGCGAGGAGGACCAGGAGCGCGTTGACATCTCCGGATTCTCGCTTGCG TTGAACCCCGACGTCTGCAGCGGCCAGGTTCCCCAGACCGATGAGGAGAA GGAACAGTGGGCCCAGGACGAGAAGGAGGTTCGTGAGACCTGCGACTACT TGCGCTCCAAGATCATGCCCGAATTGATCCAGGATCTGCACGACGGTGAT GTCGGCTTCCCCATGGATGGACAGTCCCTCAGCCAGCTTTTGCACAAGCG TGGTATCAACATCCGCTACCTTGGTAAGCTGGCTCAGCTGTCCAAGGAGA AGGGTTCTCGTCTCGATGCCCTGTCTACTCTCCTTGTCCAGGAGATGATT GCCCGTGCCTTCAAGCACATTGCCAACGAATACCTTCGTAACGTGCCGGC GCCATTTGTCGCCTCTTGCATTTCTCACTTGCTCAACTGCCTTCTGGGTG CTGATGTCAACCCCAACCCTGTTGCCGAGATCGACGCCTCTCTGCGCTCC ATCTACCCCGAAGGCGACTTCTCCTTCGAGAAGGCCACCCCTGCCACTCT CCGGGCTGCGATTGAGAAGCAGGTGACCATTCGGTACCGCTTCACCCTGG AAGCCGAGTGGTTCAACTCTCTTAGACACTTGCAGCTTCTCCGTGATCTG TCGATCAAGCTCGGTCTGCAGCTTGGTGCCCGGGAATTCATCTTCGACAA GTCGCAGATCCCTGCCAAGGCCCCCGCCACTAACGGTGCCAACGGTGTTG CCCAGGAGGAGGGCAAGAACAAGAAGAAGAAGAAGGGTGGCGATTCGAGC TCTCCCGCCCGTGCCGCCAAGGAGGAGAAGCCTATCCTTGCCATTGTCCC TGATGACATCCTCAACATTGTGCCCTTGGTCAAGGACGCCTCCCCCAGGA GCTCCCTTGCTGAGGAGGCTCTGGAGGCCGGTCGTATCTCTCTTATGCAG AACCAGAAGCAGTTGGGCCAGGAGCTCATCTTGGAGTCTCTGTCTCTGCA CGAGCAGATCTACGGCATCCTCCACCCTGAGGTCGCCAAGCTCTACCACC AGCTGTCCATGCTGTACTACCAGACCGACGAGAAGGAAGCGGCCGTCGAG TTGGCTCGCAAGGCTGTCATCGTCACTGAGCGTACTCTGGGTGTGGACTC CGCTGACACCATTCTGAGCTACCTCAACCTCAGTCTCTTCGAGCACGCTT CTGGAAACACCAAGACTGCGTTGGCTTACATCAAGCACGCCATGGACCTC TGGAAGATCATCTATGGCGCCAACCACCCCGATTCCATCACCACCATGAA CAACGCCGCGGTGATGTTGCAGCACCTTAAGCAGTACTCGGACTCTCGCA AGTGGTTCGAGGCCTCGCTGGAAGTCTGCGAGTCTCTCTTTGGCCGCCAG TCGATCAACACCGCGACCATCCTGTTCCAGCTGGCCCAGGCGCTGGCTCT TGACCAGGACTCGAAGGGTGCCGTTGGCAAGATGCGTGATGCCTACAACA TCTTCCTTAGCCAACTGGGTCCCAACGACCGCAACACCAAGGAAGCCGAG ACCTGGTTGGAGCAGCTCACTCAGAACGCGGTTTCGATCGCCAAGCATGC CAAGGACATCCAGGCTCGCCGTCTGCGCCGGGTCAACATGAACCCTCGCT CTCTCGGCACCAAGATCCAGCCTCAGGTTGGCCAGACTGCTCCCGAGGTC GCTGGAGCCAGGGCTCCCGGCAGTGCCTCCCTGGACTCCCGTAGCGTCGA TGAGCTGCTGAAGTTCATCGAGGGCGGTGATGCCGGTTCTTCCAAGGCCA AGCAGAAGAAGCGCGCTGCTGCCAGCAACCCCAAGCTCCGTGGCTCGAAG AAGTCTTCGGCTTAA
back to top

Coding sequence (CDS) from alignment at OGUI01000007.1:4655665..4659629-

>ATCC64974_57450-T1 ID=ATCC64974_57450-T1|Name=ATCC64974_57450-T1|organism=Aspergillus niger N402|type=CDS|length=15000bp|location=Sequence derived from alignment at OGUI01000007.1:4655665..4659629- (Aspergillus niger N402)
GTGTCGAGCCAAGAACAAGTTCAAGATGTGCGCCAATCGATTGTCGAGCT
GCCCAGCACCTTCCAGTACACCTGCTTCCACCTCGAATTCAACGGCCAGC
GCATCAATGACTTCGTCGAGCTGTCCGAGGTGCCTGACCTGAAGGCTGAC
TCTGAGATCACCCTGGTGGAGGATCCCTACAACGAGAAGGAAGCTCGTAT
GCACGTTGTTCGCATGAGAGAGCTGGTTGGCGCTGCGGGTGACCGGGTTG
ACAACCTCCATGGTATCAGCGCTGGTCTGTCTCTGCACGATGCCATCTCC
GCTGAGGTGGCTGATGCGTCGGAGAAGGAGCACTCCCTGTCCAAGTACGA
CATTACTAGCTCCCCCTCTCTCAAGACCATCCTCCCCCGCGCCGAAGCTC
CCCTTCCCAAGACCGTCAAGGCCATCTCTCTCTCCCCGTGGAACCCCGTT
CCTTACCACCTCCGCCAGAAGGGTCACTTGCTTTACCTCCAGGTCACCAC
CAACGAGGGTGAGCAGTTCCAGATCACCTCTCACATCTCCGGCTTCTACG
TGAACAAGAACTCGAACATGAAGTTCGATCCTTCCCCGAAGACCATCCCC
AAGAGTGGCCGCGCGCACTCGCTGCTCACCTTGATCGCTCACCTGTCGCC
CTCCTTCAACGCCTCTTTCGAAGCCCTCCAGGAGTCGAACAACAAGAAGG
ATCTCCTGACCACCTTCCCCTTCCAGAACGCCATCCCCAACAACCCGTGG
CTTGTTCCCCCTCCCACCTCGACTGCGAACGCTCACCAGCCAGACATCAC
CCGTTCCCAGGAGAACTACCTCATCTCCGGCGTTGACAACGCGGAGACCC
TCCGTGACTGGAACGAGGAGTTCCAGACTACCCGGGAGCTGCCTCGCGAG
ACTGTTCAGGACCGTGTTTTCCGTGAACGCTTGACCTCCAAGCTGTTCGC
TGATTACAACGAGGCCGCCGCTCGCGGTGCCGTCCTGGTGGCTCGTGGTG
AGGTCGCTCCTCTGAACCCCACTGAGAGCCGCGATGCTCAGATCTTCGTT
TACAACAACATCTTCTACTCTTTCGGTGCTGACGGTGTTGGCACCTTCGC
CTCCGAGGGTGGTGACGAGGCTGCCCGTGTCGCTGTCGGAAAGGATGTTG
TGGGCATCAAGGCCGTCAACCAGCTCGACATCAACGGTCTCTTCACCCCG
GGAACTGTTGTCGTCGACTACCTCGGCAAGCGTATCGTTGGTCAGAGTAT
TGTCCCCGGTATTTTCAAGCAGCGTGAGCCCGGTGAGCACCAGATCGACT
ATGGTGGTGTTGAAGGAAAGGATGTCGTGGCCACTCACCCCGACTTTGTG
TCTGTTTTCGAGAAGATGTCCAAGGCTCTTCGCGTCAAGAAGCACGCCGT
GTGGGACAAGGAGGGCCAGCGCCACGAGCTTGAGGGTAGCGTGGAGACAA
AGGGTCTTCTGGGTACTGATGGCCGCAAGTACGTGCTTGACCTCTACCGC
GTGACTCCCCTGGATGTCATGTGGCAGGAGGAGGAAGGTAGCGATGCCTA
CCCGCACCGCATGTCCGTCCTGAGACTGGAGCTTGTTGAATCTTACTGGA
GGCACAAGATGAGCCAGTACGTCAAGGCCGAAGTCGAGCGCCGCCGTAGC
GCCAAGGCTGAGGCCGATGCTGCCAAGGCTGAATCCTCCGAGGCTACCGA
ATCCAAGGAGCAGGCCTCCGAAGAGAAGAGCGAGGAGGACCAGGAGCGCG
TTGACATCTCCGGATTCTCGCTTGCGTTGAACCCCGACGTCTGCAGCGGC
CAGGTTCCCCAGACCGATGAGGAGAAGGAACAGTGGGCCCAGGACGAGAA
GGAGGTTCGTGAGACCTGCGACTACTTGCGCTCCAAGATCATGCCCGAAT
TGATCCAGGATCTGCACGACGGTGATGTCGGCTTCCCCATGGATGGACAG
TCCCTCAGCCAGCTTTTGCACAAGCGTGGTATCAACATCCGCTACCTTGG
TAAGCTGGCTCAGCTGTCCAAGGAGAAGGGTTCTCGTCTCGATGCCCTGT
CTACTCTCCTTGTCCAGGAGATGATTGCCCGTGCCTTCAAGCACATTGCC
AACGAATACCTTCGTAACGTGCCGGCGCCATTTGTCGCCTCTTGCATTTC
TCACTTGCTCAACTGCCTTCTGGGTGCTGATGTCAACCCCAACCCTGTTG
CCGAGATCGACGCCTCTCTGCGCTCCATCTACCCCGAAGGCGACTTCTCC
TTCGAGAAGGCCACCCCTGCCACTCTCCGGGCTGCGATTGAGAAGCAGGT
GACCATTCGGTACCGCTTCACCCTGGAAGCCGAGTGGTTCAACTCTCTTA
GACACTTGCAGCTTCTCCGTGATCTGTCGATCAAGCTCGGTCTGCAGCTT
GGTGCCCGGGAATTCATCTTCGACAAGTCGCAGATCCCTGCCAAGGCCCC
CGCCACTAACGGTGCCAACGGTGTTGCCCAGGAGGAGGGCAAGAACAAGA
AGAAGAAGAAGGGTGGCGATTCGAGCTCTCCCGCCCGTGCCGCCAAGGAG
GAGAAGCCTATCCTTGCCATTGTCCCTGATGACATCCTCAACATTGTGCC
CTTGGTCAAGGACGCCTCCCCCAGGAGCTCCCTTGCTGAGGAGGCTCTGG
AGGCCGGTCGTATCTCTCTTATGCAGAACCAGAAGCAGTTGGGCCAGGAG
CTCATCTTGGAGTCTCTGTCTCTGCACGAGCAGATCTACGGCATCCTCCA
CCCTGAGGTCGCCAAGCTCTACCACCAGCTGTCCATGCTGTACTACCAGA
CCGACGAGAAGGAAGCGGCCGTCGAGTTGGCTCGCAAGGCTGTCATCGTC
ACTGAGCGTACTCTGGGTGTGGACTCCGCTGACACCATTCTGAGCTACCT
CAACCTCAGTCTCTTCGAGCACGCTTCTGGAAACACCAAGACTGCGTTGG
CTTACATCAAGCACGCCATGGACCTCTGGAAGATCATCTATGGCGCCAAC
CACCCCGATTCCATCACCACCATGAACAACGCCGCGGTGATGTTGCAGCA
CCTTAAGCAGTACTCGGACTCTCGCAAGTGGTTCGAGGCCTCGCTGGAAG
TCTGCGAGTCTCTCTTTGGCCGCCAGTCGATCAACACCGCGACCATCCTG
TTCCAGCTGGCCCAGGCGCTGGCTCTTGACCAGGACTCGAAGGGTGCCGT
TGGCAAGATGCGTGATGCCTACAACATCTTCCTTAGCCAACTGGGTCCCA
ACGACCGCAACACCAAGGAAGCCGAGACCTGGTTGGAGCAGCTCACTCAG
AACGCGGTTTCGATCGCCAAGCATGCCAAGGACATCCAGGCTCGCCGTCT
GCGCCGGGTCAACATGAACCCTCGCTCTCTCGGCACCAAGATCCAGCCTC
AGGTTGGCCAGACTGCTCCCGAGGTCGCTGGAGCCAGGGCTCCCGGCAGT
GCCTCCCTGGACTCCCGTAGCGTCGATGAGCTGCTGAAGTTCATCGAGGG
CGGTGATGCCGGTTCTTCCAAGGCCAAGCAGAAGAAGCGCGCTGCTGCCA
GCAACCCCAAGCTCCGTGGCTCGAAGAAGTCTTCGGCTTAAGTCTTTTCC
AGATCACCGTCAAGCTCCCTCATGAGCCCTACAAGATCCAGGTGATGAGA
CTCCCGAACAGCTCACCAATGGTAACCACCCTGAGGAAACTCAGGAAGAG
GATAACACCGGTGATGGCCCAGACCAATGGCGAACTGGAGCACTCGAAAG
GTGTCGAGCCAAGAACAAGTTCAAGATGTGCGCCAATCGATTGTCGAGCT
GCCCAGCACCTTCCAGTACACCTGCTTCCACCTCGAATTCAACGGCCAGC
GCATCAATGACTTCGTCGAGCTGTCCGAGGTGCCTGACCTGAAGGCTGAC
TCTGAGATCACCCTGGTGGAGGATCCCTACAACGAGAAGGAAGCTCGTAT
GCACGTTGTTCGCATGAGAGAGCTGGTTGGCGCTGCGGGTGACCGGGTTG
ACAACCTCCATGGTATCAGCGCTGGTCTGTCTCTGCACGATGCCATCTCC
GCTGAGGTGGCTGATGCGTCGGAGAAGGAGCACTCCCTGTCCAAGTACGA
CATTACTAGCTCCCCCTCTCTCAAGACCATCCTCCCCCGCGCCGAAGCTC
CCCTTCCCAAGACCGTCAAGGCCATCTCTCTCTCCCCGTGGAACCCCGTT
CCTTACCACCTCCGCCAGAAGGGTCACTTGCTTTACCTCCAGGTCACCAC
CAACGAGGGTGAGCAGTTCCAGATCACCTCTCACATCTCCGGCTTCTACG
TGAACAAGAACTCGAACATGAAGTTCGATCCTTCCCCGAAGACCATCCCC
AAGAGTGGCCGCGCGCACTCGCTGCTCACCTTGATCGCTCACCTGTCGCC
CTCCTTCAACGCCTCTTTCGAAGCCCTCCAGGAGTCGAACAACAAGAAGG
ATCTCCTGACCACCTTCCCCTTCCAGAACGCCATCCCCAACAACCCGTGG
CTTGTTCCCCCTCCCACCTCGACTGCGAACGCTCACCAGCCAGACATCAC
CCGTTCCCAGGAGAACTACCTCATCTCCGGCGTTGACAACGCGGAGACCC
TCCGTGACTGGAACGAGGAGTTCCAGACTACCCGGGAGCTGCCTCGCGAG
ACTGTTCAGGACCGTGTTTTCCGTGAACGCTTGACCTCCAAGCTGTTCGC
TGATTACAACGAGGCCGCCGCTCGCGGTGCCGTCCTGGTGGCTCGTGGTG
AGGTCGCTCCTCTGAACCCCACTGAGAGCCGCGATGCTCAGATCTTCGTT
TACAACAACATCTTCTACTCTTTCGGTGCTGACGGTGTTGGCACCTTCGC
CTCCGAGGGTGGTGACGAGGCTGCCCGTGTCGCTGTCGGAAAGGATGTTG
TGGGCATCAAGGCCGTCAACCAGCTCGACATCAACGGTCTCTTCACCCCG
GGAACTGTTGTCGTCGACTACCTCGGCAAGCGTATCGTTGGTCAGAGTAT
TGTCCCCGGTATTTTCAAGCAGCGTGAGCCCGGTGAGCACCAGATCGACT
ATGGTGGTGTTGAAGGAAAGGATGTCGTGGCCACTCACCCCGACTTTGTG
TCTGTTTTCGAGAAGATGTCCAAGGCTCTTCGCGTCAAGAAGCACGCCGT
GTGGGACAAGGAGGGCCAGCGCCACGAGCTTGAGGGTAGCGTGGAGACAA
AGGGTCTTCTGGGTACTGATGGCCGCAAGTACGTGCTTGACCTCTACCGC
GTGACTCCCCTGGATGTCATGTGGCAGGAGGAGGAAGGTAGCGATGCCTA
CCCGCACCGCATGTCCGTCCTGAGACTGGAGCTTGTTGAATCTTACTGGA
GGCACAAGATGAGCCAGTACGTCAAGGCCGAAGTCGAGCGCCGCCGTAGC
GCCAAGGCTGAGGCCGATGCTGCCAAGGCTGAATCCTCCGAGGCTACCGA
ATCCAAGGAGCAGGCCTCCGAAGAGAAGAGCGAGGAGGACCAGGAGCGCG
TTGACATCTCCGGATTCTCGCTTGCGTTGAACCCCGACGTCTGCAGCGGC
CAGGTTCCCCAGACCGATGAGGAGAAGGAACAGTGGGCCCAGGACGAGAA
GGAGGTTCGTGAGACCTGCGACTACTTGCGCTCCAAGATCATGCCCGAAT
TGATCCAGGATCTGCACGACGGTGATGTCGGCTTCCCCATGGATGGACAG
TCCCTCAGCCAGCTTTTGCACAAGCGTGGTATCAACATCCGCTACCTTGG
TAAGCTGGCTCAGCTGTCCAAGGAGAAGGGTTCTCGTCTCGATGCCCTGT
CTACTCTCCTTGTCCAGGAGATGATTGCCCGTGCCTTCAAGCACATTGCC
AACGAATACCTTCGTAACGTGCCGGCGCCATTTGTCGCCTCTTGCATTTC
TCACTTGCTCAACTGCCTTCTGGGTGCTGATGTCAACCCCAACCCTGTTG
CCGAGATCGACGCCTCTCTGCGCTCCATCTACCCCGAAGGCGACTTCTCC
TTCGAGAAGGCCACCCCTGCCACTCTCCGGGCTGCGATTGAGAAGCAGGT
GACCATTCGGTACCGCTTCACCCTGGAAGCCGAGTGGTTCAACTCTCTTA
GACACTTGCAGCTTCTCCGTGATCTGTCGATCAAGCTCGGTCTGCAGCTT
GGTGCCCGGGAATTCATCTTCGACAAGTCGCAGATCCCTGCCAAGGCCCC
CGCCACTAACGGTGCCAACGGTGTTGCCCAGGAGGAGGGCAAGAACAAGA
AGAAGAAGAAGGGTGGCGATTCGAGCTCTCCCGCCCGTGCCGCCAAGGAG
GAGAAGCCTATCCTTGCCATTGTCCCTGATGACATCCTCAACATTGTGCC
CTTGGTCAAGGACGCCTCCCCCAGGAGCTCCCTTGCTGAGGAGGCTCTGG
AGGCCGGTCGTATCTCTCTTATGCAGAACCAGAAGCAGTTGGGCCAGGAG
CTCATCTTGGAGTCTCTGTCTCTGCACGAGCAGATCTACGGCATCCTCCA
CCCTGAGGTCGCCAAGCTCTACCACCAGCTGTCCATGCTGTACTACCAGA
CCGACGAGAAGGAAGCGGCCGTCGAGTTGGCTCGCAAGGCTGTCATCGTC
ACTGAGCGTACTCTGGGTGTGGACTCCGCTGACACCATTCTGAGCTACCT
CAACCTCAGTCTCTTCGAGCACGCTTCTGGAAACACCAAGACTGCGTTGG
CTTACATCAAGCACGCCATGGACCTCTGGAAGATCATCTATGGCGCCAAC
CACCCCGATTCCATCACCACCATGAACAACGCCGCGGTGATGTTGCAGCA
CCTTAAGCAGTACTCGGACTCTCGCAAGTGGTTCGAGGCCTCGCTGGAAG
TCTGCGAGTCTCTCTTTGGCCGCCAGTCGATCAACACCGCGACCATCCTG
TTCCAGCTGGCCCAGGCGCTGGCTCTTGACCAGGACTCGAAGGGTGCCGT
TGGCAAGATGCGTGATGCCTACAACATCTTCCTTAGCCAACTGGGTCCCA
ACGACCGCAACACCAAGGAAGCCGAGACCTGGTTGGAGCAGCTCACTCAG
AACGCGGTTTCGATCGCCAAGCATGCCAAGGACATCCAGGCTCGCCGTCT
GCGCCGGGTCAACATGAACCCTCGCTCTCTCGGCACCAAGATCCAGCCTC
AGGTTGGCCAGACTGCTCCCGAGGTCGCTGGAGCCAGGGCTCCCGGCAGT
GCCTCCCTGGACTCCCGTAGCGTCGATGAGCTGCTGAAGTTCATCGAGGG
CGGTGATGCCGGTTCTTCCAAGGCCAAGCAGAAGAAGCGCGCTGCTGCCA
GCAACCCCAAGCTCCGTGGCTCGAAGAAGTCTTCGGCTTAAGTCTTTTCC
AGATCACCGTCAAGCTCCCTCATGAGCCCTACAAGATCCAGGTGATGAGA
CTCCCGAACAGCTCACCAATGGTAACCACCCTGAGGAAACTCAGGAAGAG
GATAACACCGGTGATGGCCCAGACCAATGGCGAACTGGAGCACTCGAAAG
GTGTCGAGCCAAGAACAAGTTCAAGATGTGCGCCAATCGATTGTCGAGCT
GCCCAGCACCTTCCAGTACACCTGCTTCCACCTCGAATTCAACGGCCAGC
GCATCAATGACTTCGTCGAGCTGTCCGAGGTGCCTGACCTGAAGGCTGAC
TCTGAGATCACCCTGGTGGAGGATCCCTACAACGAGAAGGAAGCTCGTAT
GCACGTTGTTCGCATGAGAGAGCTGGTTGGCGCTGCGGGTGACCGGGTTG
ACAACCTCCATGGTATCAGCGCTGGTCTGTCTCTGCACGATGCCATCTCC
GCTGAGGTGGCTGATGCGTCGGAGAAGGAGCACTCCCTGTCCAAGTACGA
CATTACTAGCTCCCCCTCTCTCAAGACCATCCTCCCCCGCGCCGAAGCTC
CCCTTCCCAAGACCGTCAAGGCCATCTCTCTCTCCCCGTGGAACCCCGTT
CCTTACCACCTCCGCCAGAAGGGTCACTTGCTTTACCTCCAGGTCACCAC
CAACGAGGGTGAGCAGTTCCAGATCACCTCTCACATCTCCGGCTTCTACG
TGAACAAGAACTCGAACATGAAGTTCGATCCTTCCCCGAAGACCATCCCC
AAGAGTGGCCGCGCGCACTCGCTGCTCACCTTGATCGCTCACCTGTCGCC
CTCCTTCAACGCCTCTTTCGAAGCCCTCCAGGAGTCGAACAACAAGAAGG
ATCTCCTGACCACCTTCCCCTTCCAGAACGCCATCCCCAACAACCCGTGG
CTTGTTCCCCCTCCCACCTCGACTGCGAACGCTCACCAGCCAGACATCAC
CCGTTCCCAGGAGAACTACCTCATCTCCGGCGTTGACAACGCGGAGACCC
TCCGTGACTGGAACGAGGAGTTCCAGACTACCCGGGAGCTGCCTCGCGAG
ACTGTTCAGGACCGTGTTTTCCGTGAACGCTTGACCTCCAAGCTGTTCGC
TGATTACAACGAGGCCGCCGCTCGCGGTGCCGTCCTGGTGGCTCGTGGTG
AGGTCGCTCCTCTGAACCCCACTGAGAGCCGCGATGCTCAGATCTTCGTT
TACAACAACATCTTCTACTCTTTCGGTGCTGACGGTGTTGGCACCTTCGC
CTCCGAGGGTGGTGACGAGGCTGCCCGTGTCGCTGTCGGAAAGGATGTTG
TGGGCATCAAGGCCGTCAACCAGCTCGACATCAACGGTCTCTTCACCCCG
GGAACTGTTGTCGTCGACTACCTCGGCAAGCGTATCGTTGGTCAGAGTAT
TGTCCCCGGTATTTTCAAGCAGCGTGAGCCCGGTGAGCACCAGATCGACT
ATGGTGGTGTTGAAGGAAAGGATGTCGTGGCCACTCACCCCGACTTTGTG
TCTGTTTTCGAGAAGATGTCCAAGGCTCTTCGCGTCAAGAAGCACGCCGT
GTGGGACAAGGAGGGCCAGCGCCACGAGCTTGAGGGTAGCGTGGAGACAA
AGGGTCTTCTGGGTACTGATGGCCGCAAGTACGTGCTTGACCTCTACCGC
GTGACTCCCCTGGATGTCATGTGGCAGGAGGAGGAAGGTAGCGATGCCTA
CCCGCACCGCATGTCCGTCCTGAGACTGGAGCTTGTTGAATCTTACTGGA
GGCACAAGATGAGCCAGTACGTCAAGGCCGAAGTCGAGCGCCGCCGTAGC
GCCAAGGCTGAGGCCGATGCTGCCAAGGCTGAATCCTCCGAGGCTACCGA
ATCCAAGGAGCAGGCCTCCGAAGAGAAGAGCGAGGAGGACCAGGAGCGCG
TTGACATCTCCGGATTCTCGCTTGCGTTGAACCCCGACGTCTGCAGCGGC
CAGGTTCCCCAGACCGATGAGGAGAAGGAACAGTGGGCCCAGGACGAGAA
GGAGGTTCGTGAGACCTGCGACTACTTGCGCTCCAAGATCATGCCCGAAT
TGATCCAGGATCTGCACGACGGTGATGTCGGCTTCCCCATGGATGGACAG
TCCCTCAGCCAGCTTTTGCACAAGCGTGGTATCAACATCCGCTACCTTGG
TAAGCTGGCTCAGCTGTCCAAGGAGAAGGGTTCTCGTCTCGATGCCCTGT
CTACTCTCCTTGTCCAGGAGATGATTGCCCGTGCCTTCAAGCACATTGCC
AACGAATACCTTCGTAACGTGCCGGCGCCATTTGTCGCCTCTTGCATTTC
TCACTTGCTCAACTGCCTTCTGGGTGCTGATGTCAACCCCAACCCTGTTG
CCGAGATCGACGCCTCTCTGCGCTCCATCTACCCCGAAGGCGACTTCTCC
TTCGAGAAGGCCACCCCTGCCACTCTCCGGGCTGCGATTGAGAAGCAGGT
GACCATTCGGTACCGCTTCACCCTGGAAGCCGAGTGGTTCAACTCTCTTA
GACACTTGCAGCTTCTCCGTGATCTGTCGATCAAGCTCGGTCTGCAGCTT
GGTGCCCGGGAATTCATCTTCGACAAGTCGCAGATCCCTGCCAAGGCCCC
CGCCACTAACGGTGCCAACGGTGTTGCCCAGGAGGAGGGCAAGAACAAGA
AGAAGAAGAAGGGTGGCGATTCGAGCTCTCCCGCCCGTGCCGCCAAGGAG
GAGAAGCCTATCCTTGCCATTGTCCCTGATGACATCCTCAACATTGTGCC
CTTGGTCAAGGACGCCTCCCCCAGGAGCTCCCTTGCTGAGGAGGCTCTGG
AGGCCGGTCGTATCTCTCTTATGCAGAACCAGAAGCAGTTGGGCCAGGAG
CTCATCTTGGAGTCTCTGTCTCTGCACGAGCAGATCTACGGCATCCTCCA
CCCTGAGGTCGCCAAGCTCTACCACCAGCTGTCCATGCTGTACTACCAGA
CCGACGAGAAGGAAGCGGCCGTCGAGTTGGCTCGCAAGGCTGTCATCGTC
ACTGAGCGTACTCTGGGTGTGGACTCCGCTGACACCATTCTGAGCTACCT
CAACCTCAGTCTCTTCGAGCACGCTTCTGGAAACACCAAGACTGCGTTGG
CTTACATCAAGCACGCCATGGACCTCTGGAAGATCATCTATGGCGCCAAC
CACCCCGATTCCATCACCACCATGAACAACGCCGCGGTGATGTTGCAGCA
CCTTAAGCAGTACTCGGACTCTCGCAAGTGGTTCGAGGCCTCGCTGGAAG
TCTGCGAGTCTCTCTTTGGCCGCCAGTCGATCAACACCGCGACCATCCTG
TTCCAGCTGGCCCAGGCGCTGGCTCTTGACCAGGACTCGAAGGGTGCCGT
TGGCAAGATGCGTGATGCCTACAACATCTTCCTTAGCCAACTGGGTCCCA
ACGACCGCAACACCAAGGAAGCCGAGACCTGGTTGGAGCAGCTCACTCAG
AACGCGGTTTCGATCGCCAAGCATGCCAAGGACATCCAGGCTCGCCGTCT
GCGCCGGGTCAACATGAACCCTCGCTCTCTCGGCACCAAGATCCAGCCTC
AGGTTGGCCAGACTGCTCCCGAGGTCGCTGGAGCCAGGGCTCCCGGCAGT
GCCTCCCTGGACTCCCGTAGCGTCGATGAGCTGCTGAAGTTCATCGAGGG
CGGTGATGCCGGTTCTTCCAAGGCCAAGCAGAAGAAGCGCGCTGCTGCCA
GCAACCCCAAGCTCCGTGGCTCGAAGAAGTCTTCGGCTTAAGTCTTTTCC
AGATCACCGTCAAGCTCCCTCATGAGCCCTACAAGATCCAGGTGATGAGA
CTCCCGAACAGCTCACCAATGGTAACCACCCTGAGGAAACTCAGGAAGAG
GATAACACCGGTGATGGCCCAGACCAATGGCGAACTGGAGCACTCGAAAG
GTGTCGAGCCAAGAACAAGTTCAAGATGTGCGCCAATCGATTGTCGAGCT
GCCCAGCACCTTCCAGTACACCTGCTTCCACCTCGAATTCAACGGCCAGC
GCATCAATGACTTCGTCGAGCTGTCCGAGGTGCCTGACCTGAAGGCTGAC
TCTGAGATCACCCTGGTGGAGGATCCCTACAACGAGAAGGAAGCTCGTAT
GCACGTTGTTCGCATGAGAGAGCTGGTTGGCGCTGCGGGTGACCGGGTTG
ACAACCTCCATGGTATCAGCGCTGGTCTGTCTCTGCACGATGCCATCTCC
GCTGAGGTGGCTGATGCGTCGGAGAAGGAGCACTCCCTGTCCAAGTACGA
CATTACTAGCTCCCCCTCTCTCAAGACCATCCTCCCCCGCGCCGAAGCTC
CCCTTCCCAAGACCGTCAAGGCCATCTCTCTCTCCCCGTGGAACCCCGTT
CCTTACCACCTCCGCCAGAAGGGTCACTTGCTTTACCTCCAGGTCACCAC
CAACGAGGGTGAGCAGTTCCAGATCACCTCTCACATCTCCGGCTTCTACG
TGAACAAGAACTCGAACATGAAGTTCGATCCTTCCCCGAAGACCATCCCC
AAGAGTGGCCGCGCGCACTCGCTGCTCACCTTGATCGCTCACCTGTCGCC
CTCCTTCAACGCCTCTTTCGAAGCCCTCCAGGAGTCGAACAACAAGAAGG
ATCTCCTGACCACCTTCCCCTTCCAGAACGCCATCCCCAACAACCCGTGG
CTTGTTCCCCCTCCCACCTCGACTGCGAACGCTCACCAGCCAGACATCAC
CCGTTCCCAGGAGAACTACCTCATCTCCGGCGTTGACAACGCGGAGACCC
TCCGTGACTGGAACGAGGAGTTCCAGACTACCCGGGAGCTGCCTCGCGAG
ACTGTTCAGGACCGTGTTTTCCGTGAACGCTTGACCTCCAAGCTGTTCGC
TGATTACAACGAGGCCGCCGCTCGCGGTGCCGTCCTGGTGGCTCGTGGTG
AGGTCGCTCCTCTGAACCCCACTGAGAGCCGCGATGCTCAGATCTTCGTT
TACAACAACATCTTCTACTCTTTCGGTGCTGACGGTGTTGGCACCTTCGC
CTCCGAGGGTGGTGACGAGGCTGCCCGTGTCGCTGTCGGAAAGGATGTTG
TGGGCATCAAGGCCGTCAACCAGCTCGACATCAACGGTCTCTTCACCCCG
GGAACTGTTGTCGTCGACTACCTCGGCAAGCGTATCGTTGGTCAGAGTAT
TGTCCCCGGTATTTTCAAGCAGCGTGAGCCCGGTGAGCACCAGATCGACT
ATGGTGGTGTTGAAGGAAAGGATGTCGTGGCCACTCACCCCGACTTTGTG
TCTGTTTTCGAGAAGATGTCCAAGGCTCTTCGCGTCAAGAAGCACGCCGT
GTGGGACAAGGAGGGCCAGCGCCACGAGCTTGAGGGTAGCGTGGAGACAA
AGGGTCTTCTGGGTACTGATGGCCGCAAGTACGTGCTTGACCTCTACCGC
GTGACTCCCCTGGATGTCATGTGGCAGGAGGAGGAAGGTAGCGATGCCTA
CCCGCACCGCATGTCCGTCCTGAGACTGGAGCTTGTTGAATCTTACTGGA
GGCACAAGATGAGCCAGTACGTCAAGGCCGAAGTCGAGCGCCGCCGTAGC
GCCAAGGCTGAGGCCGATGCTGCCAAGGCTGAATCCTCCGAGGCTACCGA
ATCCAAGGAGCAGGCCTCCGAAGAGAAGAGCGAGGAGGACCAGGAGCGCG
TTGACATCTCCGGATTCTCGCTTGCGTTGAACCCCGACGTCTGCAGCGGC
CAGGTTCCCCAGACCGATGAGGAGAAGGAACAGTGGGCCCAGGACGAGAA
GGAGGTTCGTGAGACCTGCGACTACTTGCGCTCCAAGATCATGCCCGAAT
TGATCCAGGATCTGCACGACGGTGATGTCGGCTTCCCCATGGATGGACAG
TCCCTCAGCCAGCTTTTGCACAAGCGTGGTATCAACATCCGCTACCTTGG
TAAGCTGGCTCAGCTGTCCAAGGAGAAGGGTTCTCGTCTCGATGCCCTGT
CTACTCTCCTTGTCCAGGAGATGATTGCCCGTGCCTTCAAGCACATTGCC
AACGAATACCTTCGTAACGTGCCGGCGCCATTTGTCGCCTCTTGCATTTC
TCACTTGCTCAACTGCCTTCTGGGTGCTGATGTCAACCCCAACCCTGTTG
CCGAGATCGACGCCTCTCTGCGCTCCATCTACCCCGAAGGCGACTTCTCC
TTCGAGAAGGCCACCCCTGCCACTCTCCGGGCTGCGATTGAGAAGCAGGT
GACCATTCGGTACCGCTTCACCCTGGAAGCCGAGTGGTTCAACTCTCTTA
GACACTTGCAGCTTCTCCGTGATCTGTCGATCAAGCTCGGTCTGCAGCTT
GGTGCCCGGGAATTCATCTTCGACAAGTCGCAGATCCCTGCCAAGGCCCC
CGCCACTAACGGTGCCAACGGTGTTGCCCAGGAGGAGGGCAAGAACAAGA
AGAAGAAGAAGGGTGGCGATTCGAGCTCTCCCGCCCGTGCCGCCAAGGAG
GAGAAGCCTATCCTTGCCATTGTCCCTGATGACATCCTCAACATTGTGCC
CTTGGTCAAGGACGCCTCCCCCAGGAGCTCCCTTGCTGAGGAGGCTCTGG
AGGCCGGTCGTATCTCTCTTATGCAGAACCAGAAGCAGTTGGGCCAGGAG
CTCATCTTGGAGTCTCTGTCTCTGCACGAGCAGATCTACGGCATCCTCCA
CCCTGAGGTCGCCAAGCTCTACCACCAGCTGTCCATGCTGTACTACCAGA
CCGACGAGAAGGAAGCGGCCGTCGAGTTGGCTCGCAAGGCTGTCATCGTC
ACTGAGCGTACTCTGGGTGTGGACTCCGCTGACACCATTCTGAGCTACCT
CAACCTCAGTCTCTTCGAGCACGCTTCTGGAAACACCAAGACTGCGTTGG
CTTACATCAAGCACGCCATGGACCTCTGGAAGATCATCTATGGCGCCAAC
CACCCCGATTCCATCACCACCATGAACAACGCCGCGGTGATGTTGCAGCA
CCTTAAGCAGTACTCGGACTCTCGCAAGTGGTTCGAGGCCTCGCTGGAAG
TCTGCGAGTCTCTCTTTGGCCGCCAGTCGATCAACACCGCGACCATCCTG
TTCCAGCTGGCCCAGGCGCTGGCTCTTGACCAGGACTCGAAGGGTGCCGT
TGGCAAGATGCGTGATGCCTACAACATCTTCCTTAGCCAACTGGGTCCCA
ACGACCGCAACACCAAGGAAGCCGAGACCTGGTTGGAGCAGCTCACTCAG
AACGCGGTTTCGATCGCCAAGCATGCCAAGGACATCCAGGCTCGCCGTCT
GCGCCGGGTCAACATGAACCCTCGCTCTCTCGGCACCAAGATCCAGCCTC
AGGTTGGCCAGACTGCTCCCGAGGTCGCTGGAGCCAGGGCTCCCGGCAGT
GCCTCCCTGGACTCCCGTAGCGTCGATGAGCTGCTGAAGTTCATCGAGGG
CGGTGATGCCGGTTCTTCCAAGGCCAAGCAGAAGAAGCGCGCTGCTGCCA
GCAACCCCAAGCTCCGTGGCTCGAAGAAGTCTTCGGCTTAAGTCTTTTCC
AGATCACCGTCAAGCTCCCTCATGAGCCCTACAAGATCCAGGTGATGAGA
CTCCCGAACAGCTCACCAATGGTAACCACCCTGAGGAAACTCAGGAAGAG
GATAACACCGGTGATGGCCCAGACCAATGGCGAACTGGAGCACTCGAAAG
back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0048312intracellular distribution of mitochondria
Vocabulary: Molecular Function
TermDefinition
GO:0005515protein binding
Relationships

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

Feature NameUnique NameSpeciesType
CLU1ATCC64974_57450Aspergillus niger N402gene


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

Feature NameUnique NameSpeciesType
ATCC64974_57450-T1ATCC64974_57450-T1-proteinAspergillus niger N402polypeptide


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

Feature NameUnique NameSpeciesType
ATCC64974_57450-T1.cdsATCC64974_57450-T1.cdsAspergillus niger N402CDS


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

Feature NameUnique NameSpeciesType
ATCC64974_57450-T1.exon4ATCC64974_57450-T1.exon4Aspergillus niger N402exon
ATCC64974_57450-T1.exon3ATCC64974_57450-T1.exon3Aspergillus niger N402exon
ATCC64974_57450-T1.exon2ATCC64974_57450-T1.exon2Aspergillus niger N402exon
ATCC64974_57450-T1.exon1ATCC64974_57450-T1.exon1Aspergillus niger N402exon


Properties
Property NameValue
NoteBUSCO:EOG09261OXV
DBxrefInterPro:IPR019734
DBxrefInterPro:IPR027523
DBxrefInterPro:IPR011990
DBxrefInterPro:IPR028275
DBxrefInterPro:IPR025697
DBxrefInterPro:IPR033646
DBxrefPFAM:PF13424
DBxrefPFAM:PF13374
DBxrefPFAM:PF12807
DBxrefPFAM:PF15044
DBxrefPFAM:PF13236
ProductIntracellular distribution of mitochondria
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Aspergillus niger N402 whole genome analysis2021-11-01
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
OGUI01000007.1supercontigOGUI01000007.1:4655665..4659629 -