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ATCC10864_000665-T1, ATCC10864_000665-T1 (mRNA) Aspergillus niger ATCC 10864

Overview
NameATCC10864_000665-T1
Unique NameATCC10864_000665-T1
TypemRNA
OrganismAspergillus niger ATCC 10864
Sequences
The following sequences are available for this feature:

mRNA from alignment at MCQH01000015:352386..356387-

Legend: polypeptideCDSexon
Hold the cursor over a type above to highlight its positions in the sequence below.
>ATCC10864_000665-T1 ID=ATCC10864_000665-T1|Name=ATCC10864_000665-T1|organism=Aspergillus niger ATCC 10864|type=mRNA|length=4002bp|location=Sequence derived from alignment at MCQH01000015:352386..356387- (Aspergillus niger ATCC 10864)
ATGGCATTCTTCACCAAGCTGGCGGGCTATCCCCGCCTGCTGCTGGCCGG TAACCCCTCCAAGTACGATTTGGGTACCTTGCTCTCTGCCATCGTGTTTG CTATCGGTTCGGGTGTCCCCTTTCCCATCATCGCCATCGTCTTCGGTCAG CTCCTCGACAACTTCAACGACGTGACCTGCACCGAAGAAAACGGCGGAGG CGACACCTCCTCCGACTCCAACAGCATCAACCACGAGATCCTCCTGATCG TCTACCTGGCAATCGCCCAGTTCGTCCTCATCTATGGCCACCTCACGTGC TGGACCCTGTACGGTGCTCGTCTAGCCCAGCGCCTGCGTGAACGCTACCT GAAGAACCTCCTCCGCCAGGAACCTTCCTTCTTCGATAACCTGCCTCCTG GTGAGGTAGCCTCGCGACTGAGCAGCGATATTCAGACCATTCGTTCGGGC ACCTCAGAGAAAGTCGGCATCACCCTGGCAAGTTTCTCGTTCTTCGTCAC AGCGTACATTGTGTCTTTCATCAAGGATTGGGAGCTGGCTGCCATTCTGC TTTCTTTGATTCCGGCCTACCTTCTGATGTCCTTCGTGGGCAGTCATTAT ATCGAAAAGTACTCTGGGCTCATGTCGGACTATGCCGCCAGTGCAGCATC CATTGCTTCTGAGGCCCTGTCGAACATCGTCGTAGTGCAGGCCTTCGGCG CCAATGCCCGCCTGGAGAAAAAGTTCGCTGGTGCGCTCAAGTCATCTGAA ACCCAGGGTCTGAAAAAGGCTACCGCTGTGGGTATCCAGTCTGGAGTTTT GTACTTCATCGCCTATTCGGCCAACGGTCTGGCTTTCTGGAAAGGAAGTC ACCGTATCGCCGATTCAGTCAGAGATGGCACGGCAGGTGTCACTGTCGGT GCTACTTTCACTGTCATCTTTGTCTTAATTGAGGGTAAGTTGATGTATCC TGTGCTGTTTCCTTAGCAGCCAATGCTAATCATATGTATAGCTACTCTGC TACTTAGTCAGGTCGCGCCTTTTCTCCACTTGTTCGTCGCTGCTACCGCT TCGTACGAGAAACTGCGCGAAGACCTCGATCGCGAACCCCAAATCGATAG CACCGGCGAGTCAGGCATCCGTGTCTCACAAGCGGAGGGCGGCTTTGAGT TCCAGAACGTCACCTTTCAGTATCCGTCACGCCCCGAGGTCACCGTTCTC GACAACATCAGTCTCTCTATTCCCGCAAACAAACACACGGCTCTCGTCGG GTTGTCAGGAAGCGGCAAATCTACCATCGCTGGCCTTGTTACTCGGTTGT ATGATCCGGTAGACGGAAAAATTCTCTTTGATGGTCACGACCTGCGTGAA GTCAATGTCCGCGACCTGCGCAGCTACCTCAGTCTGGTGCAGCAAGAACC CTCCCTGCTCGATCGTTCCCTGCTGGAGAACATTGCCCACGGCCTGATGA ATTCAAGTAACCCGGATCATGAACGCCTGAAGATGGCCCTGATGAGCTCC GACCTGACTGAAGTTGCCCGCGAGGTCCGGGAGGGCCAGGATCTTATGGC TGCCGCCGAGAAACGCGGCGCGGAAATTGTCGAGGTTGTCAAGATGGCCT GTCACGCTGCGAAATTGGCTGATGCGGATACCTTCATTTCAGCATTGCAA CATGGATACGGTACCATGGTTGGATCTAGCGGACGTCTCATCAGCGGTGG TCAGAAGCAACGTGTATCACTAGCTCGAGCCCTGGTCAAAGACCCTGCTG TCCTCATTCTAGACGAAGCCACGGCGTCGTTGGACTCCCGGAGTGAACAG CGCATCCAGCGGGCCATCGCCGGCATTGCCAGTGGCAGAACCATGATCAC GATTGCTCACCGACTGTCAACCATCACCAGCGCGGACAACATCATCGTCA TGTCTAAGGGCAGAATCTTGGAGCAAGGGACCCACGCTGAGCTAATGGCC AAGGAGGGCGCATATTTCGACCTAGTCAAATTACAGACGCTGGGAACCGC GTCCGCCAAGACTGATGCCTCCGCAAGCGTGGACAGTATCAGCAAATCTG ATGACACCTCGCTGACGGAACCTGAGAATGAAAAGGCCAGTCTCACCCTG GACACCCTCGAGAAGACGGAGGAGACCAAGGTCTCGGAAACCGAAACCCC AGCCGGCGATGAGGCTGCCGAAGAGGAAGAGCCGGAGACTCCCAAAAAGT CACTGTGGGCACTGGCTAAGGGATATGCCCCTGCATTGCGGCCACACCTC CTATATGTTTTCCTCGCCTTGATTGGATCCAGTATCGTCGGTGGAGCCTT TTCTGGTGAGGCTGTTATTTTTGGTAACACCGTCGGCAGCCTGAATCCCT GCAAGAGTGCCTCCAGTATCAGCAACCGCGGTGACTTCTACGGACTGATG TTCTTTATCCTCGCTATCATTGAGTTCTTCGCCAACGTGGTCAGCTGGTC CGGCTTCGGTTGGGTGTCCGAGAAGATCGTTTACACTGTTCGTGTCCTTT CATTCCGCTCGCTGTTCGAGCAAGACCTGCATTGGCACCAGTCAAATGGA CGCAGCCCTGCCCTTCTACTGTCGTACATTACACGCGATGGCAACGCCCT GGCTGGACTGAGCGGCTCGGTCATCGGCACACTCTTCTCCATCACCGTCA ACCTCATCGCTGCCATTATTCTCACGCACATCATTGCCTGGAAGATTGCG CTTGTCTGTCTGGCCCTGGTGCCGCTGCTCCTTGGTGCTGGTCTCATGGA GCTGCTTGTGCTCGGCAAATTTGAGGAGAAGCACGAGAATGCCTACACCA AGTCGGTGGACATTGGTGTGGAGGCAATCACCTCCATCAAGACCGTCTCC TCCCTGTCTATCCAGCAGGATATCCTGCAAACCTACCGCGCCTCCCTGAA GGGGCCCCGCATGGAGACCCTCGTAGTAACTCTGCAAGCCAGTCTCTGGC AGGCTATGACTTACTTCCTGGGCAACCTCGTCAATGCGCTCGCCTACTGG TGGGGTGCGAAGCAGATTATCGAAGGCACATACACGCAGACACAGTTCCT GATCGTGGTGTTCTCCCTGCTGGTCAGCGCCCTACTCTGGAGTCAGATGT TTGCACTGGCTCCAGAACTGTCCAGCGCGCGTGCCGCTATGGCTCGCATC CTAGGACTGATTGAGATCGGTTCCGACAAGATGCAAGGCCGGGTGCCAGA CCATAGCAATTCTTCCTCCGATCCTGAAGCTTCCACCACTATTGAACCCA AGCCCACCACCCCCGCCAGCATCCAGCTCCGTGACGTGCACTTCGCCTAC CCCGCCCGACCAGACATCCAAGTCCTCAAAGGCCTCACTCTCGACATCCA GCCTGGTAAATTCTTCGCCCTAGTTGGCCCCTCCGGAGCCGGAAAGTCTA CCATCATCTCCCTCATCGAACGCCTCTACACCCCGCAATCCGGCAGCATC GCCATCGACCACACAGACCTGAAGAACCGACCCCCTAGCTTCCGCGACAC CATCTCCCTCGTTCCTCAAGAAAGTGTTCTCTTTGAAGGCACTATCGCCT TCAACATCGGGCTCGGTGCACCCCCGAACCACAATGCGACGCAGGAGGAG ATTGAAGCTGCCTGCAAGCTAGCTAACATCCACGATACTATCATGGCACT GCCAGATGGATATGAAACAATGTGTGGACCGAATGGGAACCAATTCTCGG GTGGACAGAAGCAGCGGTTGTCGATTGCGCGGGCCTTGGTGCGCAAGCCT CGGTTGTTAATTCTGGATGAGTCTACGAGTGCGTTGGATGCAGAGAGTGA GCGGTTGTTGGAGGAGGGCCTGGAGAGAGCAGCAAAGGGTATCACAGTCG TGGCAATCGCGCATCGACTGAGGACCATTCGCAAGGCGGATGTCATCTGT TTGATTGAAGCAGGCGTTTGTGTTGATCGCGGAACACATGAGGAGCTTAT GGAGCGATCGGCGAGTTATAGGGAGAATGTGTTGCATCAAACCGTGGAGT AA
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Coding sequence (CDS) from alignment at MCQH01000015:352386..356387-

>ATCC10864_000665-T1 ID=ATCC10864_000665-T1|Name=ATCC10864_000665-T1|organism=Aspergillus niger ATCC 10864|type=CDS|length=7890bp|location=Sequence derived from alignment at MCQH01000015:352386..356387- (Aspergillus niger ATCC 10864)
CTACTCTGCTACTTAGTCAGGTCGCGCCTTTTCTCCACTTGTTCGTCGCT
GCTACCGCTTCGTACGAGAAACTGCGCGAAGACCTCGATCGCGAACCCCA
AATCGATAGCACCGGCGAGTCAGGCATCCGTGTCTCACAAGCGGAGGGCG
GCTTTGAGTTCCAGAACGTCACCTTTCAGTATCCGTCACGCCCCGAGGTC
ACCGTTCTCGACAACATCAGTCTCTCTATTCCCGCAAACAAACACACGGC
TCTCGTCGGGTTGTCAGGAAGCGGCAAATCTACCATCGCTGGCCTTGTTA
CTCGGTTGTATGATCCGGTAGACGGAAAAATTCTCTTTGATGGTCACGAC
CTGCGTGAAGTCAATGTCCGCGACCTGCGCAGCTACCTCAGTCTGGTGCA
GCAAGAACCCTCCCTGCTCGATCGTTCCCTGCTGGAGAACATTGCCCACG
GCCTGATGAATTCAAGTAACCCGGATCATGAACGCCTGAAGATGGCCCTG
ATGAGCTCCGACCTGACTGAAGTTGCCCGCGAGGTCCGGGAGGGCCAGGA
TCTTATGGCTGCCGCCGAGAAACGCGGCGCGGAAATTGTCGAGGTTGTCA
AGATGGCCTGTCACGCTGCGAAATTGGCTGATGCGGATACCTTCATTTCA
GCATTGCAACATGGATACGGTACCATGGTTGGATCTAGCGGACGTCTCAT
CAGCGGTGGTCAGAAGCAACGTGTATCACTAGCTCGAGCCCTGGTCAAAG
ACCCTGCTGTCCTCATTCTAGACGAAGCCACGGCGTCGTTGGACTCCCGG
AGTGAACAGCGCATCCAGCGGGCCATCGCCGGCATTGCCAGTGGCAGAAC
CATGATCACGATTGCTCACCGACTGTCAACCATCACCAGCGCGGACAACA
TCATCGTCATGTCTAAGGGCAGAATCTTGGAGCAAGGGACCCACGCTGAG
CTAATGGCCAAGGAGGGCGCATATTTCGACCTAGTCAAATTACAGACGCT
GGGAACCGCGTCCGCCAAGACTGATGCCTCCGCAAGCGTGGACAGTATCA
GCAAATCTGATGACACCTCGCTGACGGAACCTGAGAATGAAAAGGCCAGT
CTCACCCTGGACACCCTCGAGAAGACGGAGGAGACCAAGGTCTCGGAAAC
CGAAACCCCAGCCGGCGATGAGGCTGCCGAAGAGGAAGAGCCGGAGACTC
CCAAAAAGTCACTGTGGGCACTGGCTAAGGGATATGCCCCTGCATTGCGG
CCACACCTCCTATATGTTTTCCTCGCCTTGATTGGATCCAGTATCGTCGG
TGGAGCCTTTTCTGGTGAGGCTGTTATTTTTGGTAACACCGTCGGCAGCC
TGAATCCCTGCAAGAGTGCCTCCAGTATCAGCAACCGCGGTGACTTCTAC
GGACTGATGTTCTTTATCCTCGCTATCATTGAGTTCTTCGCCAACGTGGT
CAGCTGGTCCGGCTTCGGTTGGGTGTCCGAGAAGATCGTTTACACTGTTC
GTGTCCTTTCATTCCGCTCGCTGTTCGAGCAAGACCTGCATTGGCACCAG
TCAAATGGACGCAGCCCTGCCCTTCTACTGTCGTACATTACACGCGATGG
CAACGCCCTGGCTGGACTGAGCGGCTCGGTCATCGGCACACTCTTCTCCA
TCACCGTCAACCTCATCGCTGCCATTATTCTCACGCACATCATTGCCTGG
AAGATTGCGCTTGTCTGTCTGGCCCTGGTGCCGCTGCTCCTTGGTGCTGG
TCTCATGGAGCTGCTTGTGCTCGGCAAATTTGAGGAGAAGCACGAGAATG
CCTACACCAAGTCGGTGGACATTGGTGTGGAGGCAATCACCTCCATCAAG
ACCGTCTCCTCCCTGTCTATCCAGCAGGATATCCTGCAAACCTACCGCGC
CTCCCTGAAGGGGCCCCGCATGGAGACCCTCGTAGTAACTCTGCAAGCCA
GTCTCTGGCAGGCTATGACTTACTTCCTGGGCAACCTCGTCAATGCGCTC
GCCTACTGGTGGGGTGCGAAGCAGATTATCGAAGGCACATACACGCAGAC
ACAGTTCCTGATCGTGGTGTTCTCCCTGCTGGTCAGCGCCCTACTCTGGA
GTCAGATGTTTGCACTGGCTCCAGAACTGTCCAGCGCGCGTGCCGCTATG
GCTCGCATCCTAGGACTGATTGAGATCGGTTCCGACAAGATGCAAGGCCG
GGTGCCAGACCATAGCAATTCTTCCTCCGATCCTGAAGCTTCCACCACTA
TTGAACCCAAGCCCACCACCCCCGCCAGCATCCAGCTCCGTGACGTGCAC
TTCGCCTACCCCGCCCGACCAGACATCCAAGTCCTCAAAGGCCTCACTCT
CGACATCCAGCCTGGTAAATTCTTCGCCCTAGTTGGCCCCTCCGGAGCCG
GAAAGTCTACCATCATCTCCCTCATCGAACGCCTCTACACCCCGCAATCC
GGCAGCATCGCCATCGACCACACAGACCTGAAGAACCGACCCCCTAGCTT
CCGCGACACCATCTCCCTCGTTCCTCAAGAAAGTGTTCTCTTTGAAGGCA
CTATCGCCTTCAACATCGGGCTCGGTGCACCCCCGAACCACAATGCGACG
CAGGAGGAGATTGAAGCTGCCTGCAAGCTAGCTAACATCCACGATACTAT
CATGGCACTGCCAGATGGATATGAAACAATGTGTGGACCGAATGGGAACC
AATTCTCGGGTGGACAGAAGCAGCGGTTGTCGATTGCGCGGGCCTTGGTG
CGCAAGCCTCGGTTGTTAATTCTGGATGAGTCTACGAGTGCGTTGGATGC
AGAGAGTGAGCGGTTGTTGGAGGAGGGCCTGGAGAGAGCAGCAAAGGGTA
TCACAGTCGTGGCAATCGCGCATCGACTGAGGACCATTCGCAAGGCGGAT
GTCATCTGTTTGATTGAAGCAGGCGTTTGTGTTGATCGCGGAACACATGA
GGAGCTTATGGAGCGATCGGCGAGTTATAGGGAGAATGTGTTGCATCAAA
CCGTGGAGTAAATGGCATTCTTCACCAAGCTGGCGGGCTATCCCCGCCTG
CTGCTGGCCGGTAACCCCTCCAAGTACGATTTGGGTACCTTGCTCTCTGC
CATCGTGTTTGCTATCGGTTCGGGTGTCCCCTTTCCCATCATCGCCATCG
TCTTCGGTCAGCTCCTCGACAACTTCAACGACGTGACCTGCACCGAAGAA
AACGGCGGAGGCGACACCTCCTCCGACTCCAACAGCATCAACCACGAGAT
CCTCCTGATCGTCTACCTGGCAATCGCCCAGTTCGTCCTCATCTATGGCC
ACCTCACGTGCTGGACCCTGTACGGTGCTCGTCTAGCCCAGCGCCTGCGT
GAACGCTACCTGAAGAACCTCCTCCGCCAGGAACCTTCCTTCTTCGATAA
CCTGCCTCCTGGTGAGGTAGCCTCGCGACTGAGCAGCGATATTCAGACCA
TTCGTTCGGGCACCTCAGAGAAAGTCGGCATCACCCTGGCAAGTTTCTCG
TTCTTCGTCACAGCGTACATTGTGTCTTTCATCAAGGATTGGGAGCTGGC
TGCCATTCTGCTTTCTTTGATTCCGGCCTACCTTCTGATGTCCTTCGTGG
GCAGTCATTATATCGAAAAGTACTCTGGGCTCATGTCGGACTATGCCGCC
AGTGCAGCATCCATTGCTTCTGAGGCCCTGTCGAACATCGTCGTAGTGCA
GGCCTTCGGCGCCAATGCCCGCCTGGAGAAAAAGTTCGCTGGTGCGCTCA
AGTCATCTGAAACCCAGGGTCTGAAAAAGGCTACCGCTGTGGGTATCCAG
TCTGGAGTTTTGTACTTCATCGCCTATTCGGCCAACGGTCTGGCTTTCTG
GAAAGGAAGTCACCGTATCGCCGATTCAGTCAGAGATGGCACGGCAGGTG
TCACTGTCGGTGCTACTTTCACTGTCATCTTTGTCTTAATTGAGGCTACT
CTGCTACTTAGTCAGGTCGCGCCTTTTCTCCACTTGTTCGTCGCTGCTAC
CGCTTCGTACGAGAAACTGCGCGAAGACCTCGATCGCGAACCCCAAATCG
ATAGCACCGGCGAGTCAGGCATCCGTGTCTCACAAGCGGAGGGCGGCTTT
GAGTTCCAGAACGTCACCTTTCAGTATCCGTCACGCCCCGAGGTCACCGT
TCTCGACAACATCAGTCTCTCTATTCCCGCAAACAAACACACGGCTCTCG
TCGGGTTGTCAGGAAGCGGCAAATCTACCATCGCTGGCCTTGTTACTCGG
TTGTATGATCCGGTAGACGGAAAAATTCTCTTTGATGGTCACGACCTGCG
TGAAGTCAATGTCCGCGACCTGCGCAGCTACCTCAGTCTGGTGCAGCAAG
AACCCTCCCTGCTCGATCGTTCCCTGCTGGAGAACATTGCCCACGGCCTG
ATGAATTCAAGTAACCCGGATCATGAACGCCTGAAGATGGCCCTGATGAG
CTCCGACCTGACTGAAGTTGCCCGCGAGGTCCGGGAGGGCCAGGATCTTA
TGGCTGCCGCCGAGAAACGCGGCGCGGAAATTGTCGAGGTTGTCAAGATG
GCCTGTCACGCTGCGAAATTGGCTGATGCGGATACCTTCATTTCAGCATT
GCAACATGGATACGGTACCATGGTTGGATCTAGCGGACGTCTCATCAGCG
GTGGTCAGAAGCAACGTGTATCACTAGCTCGAGCCCTGGTCAAAGACCCT
GCTGTCCTCATTCTAGACGAAGCCACGGCGTCGTTGGACTCCCGGAGTGA
ACAGCGCATCCAGCGGGCCATCGCCGGCATTGCCAGTGGCAGAACCATGA
TCACGATTGCTCACCGACTGTCAACCATCACCAGCGCGGACAACATCATC
GTCATGTCTAAGGGCAGAATCTTGGAGCAAGGGACCCACGCTGAGCTAAT
GGCCAAGGAGGGCGCATATTTCGACCTAGTCAAATTACAGACGCTGGGAA
CCGCGTCCGCCAAGACTGATGCCTCCGCAAGCGTGGACAGTATCAGCAAA
TCTGATGACACCTCGCTGACGGAACCTGAGAATGAAAAGGCCAGTCTCAC
CCTGGACACCCTCGAGAAGACGGAGGAGACCAAGGTCTCGGAAACCGAAA
CCCCAGCCGGCGATGAGGCTGCCGAAGAGGAAGAGCCGGAGACTCCCAAA
AAGTCACTGTGGGCACTGGCTAAGGGATATGCCCCTGCATTGCGGCCACA
CCTCCTATATGTTTTCCTCGCCTTGATTGGATCCAGTATCGTCGGTGGAG
CCTTTTCTGGTGAGGCTGTTATTTTTGGTAACACCGTCGGCAGCCTGAAT
CCCTGCAAGAGTGCCTCCAGTATCAGCAACCGCGGTGACTTCTACGGACT
GATGTTCTTTATCCTCGCTATCATTGAGTTCTTCGCCAACGTGGTCAGCT
GGTCCGGCTTCGGTTGGGTGTCCGAGAAGATCGTTTACACTGTTCGTGTC
CTTTCATTCCGCTCGCTGTTCGAGCAAGACCTGCATTGGCACCAGTCAAA
TGGACGCAGCCCTGCCCTTCTACTGTCGTACATTACACGCGATGGCAACG
CCCTGGCTGGACTGAGCGGCTCGGTCATCGGCACACTCTTCTCCATCACC
GTCAACCTCATCGCTGCCATTATTCTCACGCACATCATTGCCTGGAAGAT
TGCGCTTGTCTGTCTGGCCCTGGTGCCGCTGCTCCTTGGTGCTGGTCTCA
TGGAGCTGCTTGTGCTCGGCAAATTTGAGGAGAAGCACGAGAATGCCTAC
ACCAAGTCGGTGGACATTGGTGTGGAGGCAATCACCTCCATCAAGACCGT
CTCCTCCCTGTCTATCCAGCAGGATATCCTGCAAACCTACCGCGCCTCCC
TGAAGGGGCCCCGCATGGAGACCCTCGTAGTAACTCTGCAAGCCAGTCTC
TGGCAGGCTATGACTTACTTCCTGGGCAACCTCGTCAATGCGCTCGCCTA
CTGGTGGGGTGCGAAGCAGATTATCGAAGGCACATACACGCAGACACAGT
TCCTGATCGTGGTGTTCTCCCTGCTGGTCAGCGCCCTACTCTGGAGTCAG
ATGTTTGCACTGGCTCCAGAACTGTCCAGCGCGCGTGCCGCTATGGCTCG
CATCCTAGGACTGATTGAGATCGGTTCCGACAAGATGCAAGGCCGGGTGC
CAGACCATAGCAATTCTTCCTCCGATCCTGAAGCTTCCACCACTATTGAA
CCCAAGCCCACCACCCCCGCCAGCATCCAGCTCCGTGACGTGCACTTCGC
CTACCCCGCCCGACCAGACATCCAAGTCCTCAAAGGCCTCACTCTCGACA
TCCAGCCTGGTAAATTCTTCGCCCTAGTTGGCCCCTCCGGAGCCGGAAAG
TCTACCATCATCTCCCTCATCGAACGCCTCTACACCCCGCAATCCGGCAG
CATCGCCATCGACCACACAGACCTGAAGAACCGACCCCCTAGCTTCCGCG
ACACCATCTCCCTCGTTCCTCAAGAAAGTGTTCTCTTTGAAGGCACTATC
GCCTTCAACATCGGGCTCGGTGCACCCCCGAACCACAATGCGACGCAGGA
GGAGATTGAAGCTGCCTGCAAGCTAGCTAACATCCACGATACTATCATGG
CACTGCCAGATGGATATGAAACAATGTGTGGACCGAATGGGAACCAATTC
TCGGGTGGACAGAAGCAGCGGTTGTCGATTGCGCGGGCCTTGGTGCGCAA
GCCTCGGTTGTTAATTCTGGATGAGTCTACGAGTGCGTTGGATGCAGAGA
GTGAGCGGTTGTTGGAGGAGGGCCTGGAGAGAGCAGCAAAGGGTATCACA
GTCGTGGCAATCGCGCATCGACTGAGGACCATTCGCAAGGCGGATGTCAT
CTGTTTGATTGAAGCAGGCGTTTGTGTTGATCGCGGAACACATGAGGAGC
TTATGGAGCGATCGGCGAGTTATAGGGAGAATGTGTTGCATCAAACCGTG
GAGTAAATGGCATTCTTCACCAAGCTGGCGGGCTATCCCCGCCTGCTGCT
GGCCGGTAACCCCTCCAAGTACGATTTGGGTACCTTGCTCTCTGCCATCG
TGTTTGCTATCGGTTCGGGTGTCCCCTTTCCCATCATCGCCATCGTCTTC
GGTCAGCTCCTCGACAACTTCAACGACGTGACCTGCACCGAAGAAAACGG
CGGAGGCGACACCTCCTCCGACTCCAACAGCATCAACCACGAGATCCTCC
TGATCGTCTACCTGGCAATCGCCCAGTTCGTCCTCATCTATGGCCACCTC
ACGTGCTGGACCCTGTACGGTGCTCGTCTAGCCCAGCGCCTGCGTGAACG
CTACCTGAAGAACCTCCTCCGCCAGGAACCTTCCTTCTTCGATAACCTGC
CTCCTGGTGAGGTAGCCTCGCGACTGAGCAGCGATATTCAGACCATTCGT
TCGGGCACCTCAGAGAAAGTCGGCATCACCCTGGCAAGTTTCTCGTTCTT
CGTCACAGCGTACATTGTGTCTTTCATCAAGGATTGGGAGCTGGCTGCCA
TTCTGCTTTCTTTGATTCCGGCCTACCTTCTGATGTCCTTCGTGGGCAGT
CATTATATCGAAAAGTACTCTGGGCTCATGTCGGACTATGCCGCCAGTGC
AGCATCCATTGCTTCTGAGGCCCTGTCGAACATCGTCGTAGTGCAGGCCT
TCGGCGCCAATGCCCGCCTGGAGAAAAAGTTCGCTGGTGCGCTCAAGTCA
TCTGAAACCCAGGGTCTGAAAAAGGCTACCGCTGTGGGTATCCAGTCTGG
AGTTTTGTACTTCATCGCCTATTCGGCCAACGGTCTGGCTTTCTGGAAAG
GAAGTCACCGTATCGCCGATTCAGTCAGAGATGGCACGGCAGGTGTCACT
GTCGGTGCTACTTTCACTGTCATCTTTGTCTTAATTGAGG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0055085transmembrane transport
Vocabulary: Cellular Component
TermDefinition
GO:0016021integral component of membrane
Vocabulary: Molecular Function
TermDefinition
GO:0042626ATPase-coupled transmembrane transporter activity
GO:0005524ATP binding
Relationships

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

Feature NameUnique NameSpeciesType
ATCC10864_000665ATCC10864_000665Aspergillus niger ATCC 10864gene


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

Feature NameUnique NameSpeciesType
ATCC10864_000665-T1ATCC10864_000665-T1-proteinAspergillus niger ATCC 10864polypeptide


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

Feature NameUnique NameSpeciesType
ATCC10864_000665-T1.cdsATCC10864_000665-T1.cdsAspergillus niger ATCC 10864CDS


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

Feature NameUnique NameSpeciesType
ATCC10864_000665-T1.exon2ATCC10864_000665-T1.exon2Aspergillus niger ATCC 10864exon
ATCC10864_000665-T1.exon1ATCC10864_000665-T1.exon1Aspergillus niger ATCC 10864exon


Cross References
External references for this mRNA
DatabaseAccession
InterProIPR017871
InterProIPR003439
InterProIPR027417
InterProIPR039421
PFAMPF00005
InterProIPR011527
InterProIPR003593
InterProIPR036640
PFAMPF00664
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
MCQH01000015supercontigMCQH01000015:352386..356387 -