You are here

ASPNIDRAFT_213185-T1, ASPNIDRAFT_213185-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_213185-T1
Unique NameASPNIDRAFT_213185-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000016.1:573694..577574+

Legend: exonpolypeptideCDSthree_prime_UTR
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_213185-T1 ID=ASPNIDRAFT_213185-T1|Name=ASPNIDRAFT_213185-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=3881bp|location=Sequence derived from alignment at ACJE01000016.1:573694..577574+ (Aspergillus niger ATCC 1015)
ATGGCTGCTCCCCGCCAGCCCGAGGAGGCGGTCGATGACACCGAGTTCAT CGATGACCACCATGACCAGCACCGGGACTCTGTCCACACCCGTCTGCGTG CCAATTCGGCTATCATGCAGTTCCAAAAGATCCTTGTTGCCAACCGTGGT GAAATCCCCATTCGTATCTTCCGGACGGCTCACGAGCTGTCCCTGCAGAC CGTCGCCGTCTACTCCCATGAGGACCGTCTCTCCATGCACCGTCAGAAGG CCGACGAGGCCTACATGATTGGCAAGCGCGGTCAATATACACCGGTTGGG GCCTACTTGGCCATTGACGAGATCGTCAAGATTGCTCTGGAGCATGGTGT ACACCTGATCCACCCGGGTTACGGTTTCCTGTCCGAGAACGCCGAGTTTG CCCGCAAGGTGGAGCAGTCCGGCATGGTTTTCGTCGGCCCTACCCCCCAG ACCATCGAGAGCCTCGGTGACAAGGTCTCCGCCCGTCAGCTGGCTATCCG CTGCGACGTGCCCGTCGTGCCCGGTACCCCGGGCCCTGTCGAGCGCTACG AGGAGGTCAAGGCCTTCACCGACACCTACGGCTTCCCCATCATCATCAAG GCCGCCTTTGGTGGTGGTGGTCGTGGTATGCGTGTCGTTCGCGACCAGGC CGAACTGCGTGACTCCTTCGAGCGTGCCACCTCCGAGGCCCGCTCTGCCT TTGGCAACGGCACCGTCTTCGTCGAGCGCTTCCTCGACCGCCCCAAGCAC ATCGAAGTCCAGCTGCTGGGTGACAACCACGGCAACGTCGTCCACCTGTT CGAGCGTGACTGCTCCGTCCAGCGTCGCCACCAGAAGGTCGTTGAAATTG CCCCGGCCAAGGACCTGCCTGCCGATGTCCGTGACCGCATCCTGGCTGAT GCTGTCAAGCTGGCCAAGTCGGTCAACTACCGCAACGCCGGTACTGCAGA GTTCCTGGTTGACCAGCAGAACCGTTACTACTTCATTGAGATCAACCCCC GTATCCAGGTCGAGCACACTATCACCGAAGAGATCACGGGTATCGATATC GTTGCTGCTCAGATCCAGATTGCGGCCGGTGCTACCCTGGAACAGCTGGG TCTGACCCAGGACCGCATCTCCACTCGTGGATTCGCCATTCAGTGCCGTA TCACCACCGAGGACCCCTCCAAGGGCTTCTCCCCCGACACCGGTAAGATC GAGGTCTACCGCTCCGCCGGTGGTAACGGTGTCCGTCTGGATGGTGGAAA CGGTTTCGCCGGTGCCATCATCACCCCTCACTACGACTCCATGTTGGTCA AGTGTACCTGCCGTGGTTCCACCTATGAGATCGCTCGCCGCAAGGTCGTT CGTGCTTTGGTCGAGTTCCGTATCCGTGGTGTCAAGACCAACATTCCTTT CCTCACCTCTCTTCTGAGTCACCCTGTGTTCGTGGATGGTACCTGCTGGA CCACGTTCATTGATGACACTCCCGAGCTGTTCGCCCTTGTCGGCAGTCAG AACCGTGCCCAGAAGCTGCTGGCTTACCTGGGTGATGTGGCTGTCAACGG CAGCAGCATCAAGGGCCAGATCGGCGAGCCCAAGCTCAAGGGCGATATCA TCAAGCCCGTTCTGCATGACGCTGCCGGCAAGCCCCTCGACGTCTCTGTC CCCGCCACCAAGGGATGGAAGCAGATCCTGGACAGTGAGGGTCCCGAGGC TTTTGCCCGCGCTGTGCGTGCCAACAAGGGCTGCTTGATCATGGATACTA CCTGGCGTGATGCCCACCAGTCGCTGCTGGCCACTCGTGTGCGTACCATT GACCTCCTGAACATCGCCCACGAGACGAGCCACGCCCTCGCCAACGCCTA CAGTTTGGAATGCTGGGGTGGTGCCACCTTCGATGTCGCCATGCGCTTCC TGTACGAGGACCCCTGGGACCGTCTTCGCAAGCTGCGCAAGGCCGTTCCC AACATCCCCTTCCAGATGTTGCTCCGTGGTGCCAACGGTGTTGCTTACTC CTCCCTCCCTGACAACGCCATCTACCACTTCTGTAAGCAGGCCAAGAAGT GCGGTGTCGACATCTTCCGTGTCTTCGATGCTCTCAACGACGTTGACCAG CTCGAGGTCGGTATCAAGGCTGTCCACGCTGCCGAGGGTGTTGTTGAGGC TACTATTTGCTACAGTGGTGATATGCTCAACCCCAGCAAGAAGTACAACC TGCCTTACTACCTCGACCTTGTTGATAAGGTGGTCCAATTCAAGCCCCAC GTCTTGGGTATCAAGGACATGGCTGGTGTGCTGAAGCCCCAGGCTGCTCG TCTGCTGATCGGTTCCATCCGCGAGCGCTACCCCGACCTCCCCATCCACG TGCACACCCACGATTCTGCTGGTACCGGTGTGGCTTCCATGATTGCTTGC GCTCAGGCCGGTGCTGATGCCGTTGATGCTGCCACGGACAGCCTTTCCGG TATGACCTCCCAGCCCAGCATTGGTGCTATCCTCGCTTCCCTCGAGGGAA CTGAGCACGACCCCGGCCTCAACTCGGCCCAGGTTCGCGCCCTTGACACC TACTGGGCGCAGCTGCGTCTCCTCTACTCGCCCTTCGAGGCAGGTCTGAC TGGTCCCGACCCCGAGGTTTACGAGCATGAGATCCCTGGTGGTCAATTGA CCAACCTGATCTTCCAGGCCAGCCAGCTTGGTCTGGGCCAGCAGTGGGCG GAGACGAAGAAGGCTTACGAGTCTGCCAACGATCTTTTGGGCGATGTCGT CAAGGTCACCCCCACTTCCAAGGTGGTCGGTGATTTGGCTCAGTTCATGG TCTCCAACAAGTTGACTGCTGAAGATGTGATTGCTCGCGCCGGCGAGCTT GACTTCCCCGGTTCCGTTCTGGAGTTCCTCGAGGGTCTCATGGGCCAGCC CTACGGTGGATTCCCCGAGCCTCTGCGCTCTCGCGCTCTGCGTGACCGTC GCAAGCTCGACAAGCGCCCTGGTCTGTACCTGGAGCCCCTTGACCTGGCC AAGATCAAGAGCCAGATCCGGGAGAACTATGGCGCAGCTACCGAGTACGA TGTGGCCAGCTATGCCATGTACCCCAAGGTCTTCGAGGATTACAAGAAGT TTGTCGCCAAGTTCGGTGATTTGTCCGTCCTGCCCACGCGTTACTTCTTG GCCAAGCCCGAGATCGGCGAGGAATTCCACGTCGAGCTGGAGAAGGGTAA GGTGCTGATCCTGAAGTTGTTGGCCATTGGTCCCCTCTCCGAGCAGACCG GCCAGCGTGAGGTCTTCTACGAAGTCAACGGTGAGGTTCGCCAGGTTAGT GTGGACGACAAGAAGGCGTCCGTCGAGAACACCGCCCGCCCCAAGGCCGA GCTGGGTGACAGCAGCCAGGTTGGTGCTCCTATGAGCGGTGTGGTTGTCG AGATCCGCGTCCACGACGGCCTGGAAGTCAAGAAGGGTGACCCCATTGCC GTCCTGAGCGCCATGAAGATGGTATGTATAACCCCAAAAACTATCAATCA AAACTCCTGACCGGCTGCTAACATCTATTAGGAAATGGTTATCTCTGCTC CCCACAGTGGCAAGGTCTCCAGCTTGCTGGTCAAGGAAGGTGACTCGGTG GATGGCCAGGATCTTGTCTGCAAGATCGTCAAGGCCTAGAAGAGTAACAC CGTTATGACGGCAATGTTTGAAAAGCTAATGTCGATGTTGATGTCCTTGC AACCGGCTTATTTGTCAACAAGGACACTATGCCAATATTCTTTTTCTAGA TTAGAGCGTCTGTTATGTTTATGAATATTTTGGGTTGGGTTTGGGTTATT TCCATATTTATGCCACAGCTTATTTACGATCAATGGTTGCCACGGACATA CAATGTCAACCATATGAATGACAAGTGATTT
back to top

Coding sequence (CDS) from alignment at ACJE01000016.1:573694..577574+

>ASPNIDRAFT_213185-T1 ID=ASPNIDRAFT_213185-T1|Name=ASPNIDRAFT_213185-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=7158bp|location=Sequence derived from alignment at ACJE01000016.1:573694..577574+ (Aspergillus niger ATCC 1015)
ATGGCTGCTCCCCGCCAGCCCGAGGAGGCGGTCGATGACACCGAGTTCAT
CGATGACCACCATGACCAGCACCGGGACTCTGTCCACACCCGTCTGCGTG
CCAATTCGGCTATCATGCAGTTCCAAAAGATCCTTGTTGCCAACCGTGGT
GAAATCCCCATTCGTATCTTCCGGACGGCTCACGAGCTGTCCCTGCAGAC
CGTCGCCGTCTACTCCCATGAGGACCGTCTCTCCATGCACCGTCAGAAGG
CCGACGAGGCCTACATGATTGGCAAGCGCGGTCAATATACACCGGTTGGG
GCCTACTTGGCCATTGACGAGATCGTCAAGATTGCTCTGGAGCATGGTGT
ACACCTGATCCACCCGGGTTACGGTTTCCTGTCCGAGAACGCCGAGTTTG
CCCGCAAGGTGGAGCAGTCCGGCATGGTTTTCGTCGGCCCTACCCCCCAG
ACCATCGAGAGCCTCGGTGACAAGGTCTCCGCCCGTCAGCTGGCTATCCG
CTGCGACGTGCCCGTCGTGCCCGGTACCCCGGGCCCTGTCGAGCGCTACG
AGGAGGTCAAGGCCTTCACCGACACCTACGGCTTCCCCATCATCATCAAG
GCCGCCTTTGGTGGTGGTGGTCGTGGTATGCGTGTCGTTCGCGACCAGGC
CGAACTGCGTGACTCCTTCGAGCGTGCCACCTCCGAGGCCCGCTCTGCCT
TTGGCAACGGCACCGTCTTCGTCGAGCGCTTCCTCGACCGCCCCAAGCAC
ATCGAAGTCCAGCTGCTGGGTGACAACCACGGCAACGTCGTCCACCTGTT
CGAGCGTGACTGCTCCGTCCAGCGTCGCCACCAGAAGGTCGTTGAAATTG
CCCCGGCCAAGGACCTGCCTGCCGATGTCCGTGACCGCATCCTGGCTGAT
GCTGTCAAGCTGGCCAAGTCGGTCAACTACCGCAACGCCGGTACTGCAGA
GTTCCTGGTTGACCAGCAGAACCGTTACTACTTCATTGAGATCAACCCCC
GTATCCAGGTCGAGCACACTATCACCGAAGAGATCACGGGTATCGATATC
GTTGCTGCTCAGATCCAGATTGCGGCCGGTGCTACCCTGGAACAGCTGGG
TCTGACCCAGGACCGCATCTCCACTCGTGGATTCGCCATTCAGTGCCGTA
TCACCACCGAGGACCCCTCCAAGGGCTTCTCCCCCGACACCGGTAAGATC
GAGGTCTACCGCTCCGCCGGTGGTAACGGTGTCCGTCTGGATGGTGGAAA
CGGTTTCGCCGGTGCCATCATCACCCCTCACTACGACTCCATGTTGGTCA
AGTGTACCTGCCGTGGTTCCACCTATGAGATCGCTCGCCGCAAGGTCGTT
CGTGCTTTGGTCGAGTTCCGTATCCGTGGTGTCAAGACCAACATTCCTTT
CCTCACCTCTCTTCTGAGTCACCCTGTGTTCGTGGATGGTACCTGCTGGA
CCACGTTCATTGATGACACTCCCGAGCTGTTCGCCCTTGTCGGCAGTCAG
AACCGTGCCCAGAAGCTGCTGGCTTACCTGGGTGATGTGGCTGTCAACGG
CAGCAGCATCAAGGGCCAGATCGGCGAGCCCAAGCTCAAGGGCGATATCA
TCAAGCCCGTTCTGCATGACGCTGCCGGCAAGCCCCTCGACGTCTCTGTC
CCCGCCACCAAGGGATGGAAGCAGATCCTGGACAGTGAGGGTCCCGAGGC
TTTTGCCCGCGCTGTGCGTGCCAACAAGGGCTGCTTGATCATGGATACTA
CCTGGCGTGATGCCCACCAGTCGCTGCTGGCCACTCGTGTGCGTACCATT
GACCTCCTGAACATCGCCCACGAGACGAGCCACGCCCTCGCCAACGCCTA
CAGTTTGGAATGCTGGGGTGGTGCCACCTTCGATGTCGCCATGCGCTTCC
TGTACGAGGACCCCTGGGACCGTCTTCGCAAGCTGCGCAAGGCCGTTCCC
AACATCCCCTTCCAGATGTTGCTCCGTGGTGCCAACGGTGTTGCTTACTC
CTCCCTCCCTGACAACGCCATCTACCACTTCTGTAAGCAGGCCAAGAAGT
GCGGTGTCGACATCTTCCGTGTCTTCGATGCTCTCAACGACGTTGACCAG
CTCGAGGTCGGTATCAAGGCTGTCCACGCTGCCGAGGGTGTTGTTGAGGC
TACTATTTGCTACAGTGGTGATATGCTCAACCCCAGCAAGAAGTACAACC
TGCCTTACTACCTCGACCTTGTTGATAAGGTGGTCCAATTCAAGCCCCAC
GTCTTGGGTATCAAGGACATGGCTGGTGTGCTGAAGCCCCAGGCTGCTCG
TCTGCTGATCGGTTCCATCCGCGAGCGCTACCCCGACCTCCCCATCCACG
TGCACACCCACGATTCTGCTGGTACCGGTGTGGCTTCCATGATTGCTTGC
GCTCAGGCCGGTGCTGATGCCGTTGATGCTGCCACGGACAGCCTTTCCGG
TATGACCTCCCAGCCCAGCATTGGTGCTATCCTCGCTTCCCTCGAGGGAA
CTGAGCACGACCCCGGCCTCAACTCGGCCCAGGTTCGCGCCCTTGACACC
TACTGGGCGCAGCTGCGTCTCCTCTACTCGCCCTTCGAGGCAGGTCTGAC
TGGTCCCGACCCCGAGGTTTACGAGCATGAGATCCCTGGTGGTCAATTGA
CCAACCTGATCTTCCAGGCCAGCCAGCTTGGTCTGGGCCAGCAGTGGGCG
GAGACGAAGAAGGCTTACGAGTCTGCCAACGATCTTTTGGGCGATGTCGT
CAAGGTCACCCCCACTTCCAAGGTGGTCGGTGATTTGGCTCAGTTCATGG
TCTCCAACAAGTTGACTGCTGAAGATGTGATTGCTCGCGCCGGCGAGCTT
GACTTCCCCGGTTCCGTTCTGGAGTTCCTCGAGGGTCTCATGGGCCAGCC
CTACGGTGGATTCCCCGAGCCTCTGCGCTCTCGCGCTCTGCGTGACCGTC
GCAAGCTCGACAAGCGCCCTGGTCTGTACCTGGAGCCCCTTGACCTGGCC
AAGATCAAGAGCCAGATCCGGGAGAACTATGGCGCAGCTACCGAGTACGA
TGTGGCCAGCTATGCCATGTACCCCAAGGTCTTCGAGGATTACAAGAAGT
TTGTCGCCAAGTTCGGTGATTTGTCCGTCCTGCCCACGCGTTACTTCTTG
GCCAAGCCCGAGATCGGCGAGGAATTCCACGTCGAGCTGGAGAAGGGTAA
GGTGCTGATCCTGAAGTTGTTGGCCATTGGTCCCCTCTCCGAGCAGACCG
GCCAGCGTGAGGTCTTCTACGAAGTCAACGGTGAGGTTCGCCAGGTTAGT
GTGGACGACAAGAAGGCGTCCGTCGAGAACACCGCCCGCCCCAAGGCCGA
GCTGGGTGACAGCAGCCAGGTTGGTGCTCCTATGAGCGGTGTGGTTGTCG
AGATCCGCGTCCACGACGGCCTGGAAGTCAAGAAGGGTGACCCCATTGCC
GTCCTGAGCGCCATGAAGATGGAAATGGTTATCTCTGCTCCCCACAGTGG
CAAGGTCTCCAGCTTGCTGGTCAAGGAAGGTGACTCGGTGGATGGCCAGG
ATCTTGTCTGCAAGATCGTCAAGGCCTAGATGGCTGCTCCCCGCCAGCCC
GAGGAGGCGGTCGATGACACCGAGTTCATCGATGACCACCATGACCAGCA
CCGGGACTCTGTCCACACCCGTCTGCGTGCCAATTCGGCTATCATGCAGT
TCCAAAAGATCCTTGTTGCCAACCGTGGTGAAATCCCCATTCGTATCTTC
CGGACGGCTCACGAGCTGTCCCTGCAGACCGTCGCCGTCTACTCCCATGA
GGACCGTCTCTCCATGCACCGTCAGAAGGCCGACGAGGCCTACATGATTG
GCAAGCGCGGTCAATATACACCGGTTGGGGCCTACTTGGCCATTGACGAG
ATCGTCAAGATTGCTCTGGAGCATGGTGTACACCTGATCCACCCGGGTTA
CGGTTTCCTGTCCGAGAACGCCGAGTTTGCCCGCAAGGTGGAGCAGTCCG
GCATGGTTTTCGTCGGCCCTACCCCCCAGACCATCGAGAGCCTCGGTGAC
AAGGTCTCCGCCCGTCAGCTGGCTATCCGCTGCGACGTGCCCGTCGTGCC
CGGTACCCCGGGCCCTGTCGAGCGCTACGAGGAGGTCAAGGCCTTCACCG
ACACCTACGGCTTCCCCATCATCATCAAGGCCGCCTTTGGTGGTGGTGGT
CGTGGTATGCGTGTCGTTCGCGACCAGGCCGAACTGCGTGACTCCTTCGA
GCGTGCCACCTCCGAGGCCCGCTCTGCCTTTGGCAACGGCACCGTCTTCG
TCGAGCGCTTCCTCGACCGCCCCAAGCACATCGAAGTCCAGCTGCTGGGT
GACAACCACGGCAACGTCGTCCACCTGTTCGAGCGTGACTGCTCCGTCCA
GCGTCGCCACCAGAAGGTCGTTGAAATTGCCCCGGCCAAGGACCTGCCTG
CCGATGTCCGTGACCGCATCCTGGCTGATGCTGTCAAGCTGGCCAAGTCG
GTCAACTACCGCAACGCCGGTACTGCAGAGTTCCTGGTTGACCAGCAGAA
CCGTTACTACTTCATTGAGATCAACCCCCGTATCCAGGTCGAGCACACTA
TCACCGAAGAGATCACGGGTATCGATATCGTTGCTGCTCAGATCCAGATT
GCGGCCGGTGCTACCCTGGAACAGCTGGGTCTGACCCAGGACCGCATCTC
CACTCGTGGATTCGCCATTCAGTGCCGTATCACCACCGAGGACCCCTCCA
AGGGCTTCTCCCCCGACACCGGTAAGATCGAGGTCTACCGCTCCGCCGGT
GGTAACGGTGTCCGTCTGGATGGTGGAAACGGTTTCGCCGGTGCCATCAT
CACCCCTCACTACGACTCCATGTTGGTCAAGTGTACCTGCCGTGGTTCCA
CCTATGAGATCGCTCGCCGCAAGGTCGTTCGTGCTTTGGTCGAGTTCCGT
ATCCGTGGTGTCAAGACCAACATTCCTTTCCTCACCTCTCTTCTGAGTCA
CCCTGTGTTCGTGGATGGTACCTGCTGGACCACGTTCATTGATGACACTC
CCGAGCTGTTCGCCCTTGTCGGCAGTCAGAACCGTGCCCAGAAGCTGCTG
GCTTACCTGGGTGATGTGGCTGTCAACGGCAGCAGCATCAAGGGCCAGAT
CGGCGAGCCCAAGCTCAAGGGCGATATCATCAAGCCCGTTCTGCATGACG
CTGCCGGCAAGCCCCTCGACGTCTCTGTCCCCGCCACCAAGGGATGGAAG
CAGATCCTGGACAGTGAGGGTCCCGAGGCTTTTGCCCGCGCTGTGCGTGC
CAACAAGGGCTGCTTGATCATGGATACTACCTGGCGTGATGCCCACCAGT
CGCTGCTGGCCACTCGTGTGCGTACCATTGACCTCCTGAACATCGCCCAC
GAGACGAGCCACGCCCTCGCCAACGCCTACAGTTTGGAATGCTGGGGTGG
TGCCACCTTCGATGTCGCCATGCGCTTCCTGTACGAGGACCCCTGGGACC
GTCTTCGCAAGCTGCGCAAGGCCGTTCCCAACATCCCCTTCCAGATGTTG
CTCCGTGGTGCCAACGGTGTTGCTTACTCCTCCCTCCCTGACAACGCCAT
CTACCACTTCTGTAAGCAGGCCAAGAAGTGCGGTGTCGACATCTTCCGTG
TCTTCGATGCTCTCAACGACGTTGACCAGCTCGAGGTCGGTATCAAGGCT
GTCCACGCTGCCGAGGGTGTTGTTGAGGCTACTATTTGCTACAGTGGTGA
TATGCTCAACCCCAGCAAGAAGTACAACCTGCCTTACTACCTCGACCTTG
TTGATAAGGTGGTCCAATTCAAGCCCCACGTCTTGGGTATCAAGGACATG
GCTGGTGTGCTGAAGCCCCAGGCTGCTCGTCTGCTGATCGGTTCCATCCG
CGAGCGCTACCCCGACCTCCCCATCCACGTGCACACCCACGATTCTGCTG
GTACCGGTGTGGCTTCCATGATTGCTTGCGCTCAGGCCGGTGCTGATGCC
GTTGATGCTGCCACGGACAGCCTTTCCGGTATGACCTCCCAGCCCAGCAT
TGGTGCTATCCTCGCTTCCCTCGAGGGAACTGAGCACGACCCCGGCCTCA
ACTCGGCCCAGGTTCGCGCCCTTGACACCTACTGGGCGCAGCTGCGTCTC
CTCTACTCGCCCTTCGAGGCAGGTCTGACTGGTCCCGACCCCGAGGTTTA
CGAGCATGAGATCCCTGGTGGTCAATTGACCAACCTGATCTTCCAGGCCA
GCCAGCTTGGTCTGGGCCAGCAGTGGGCGGAGACGAAGAAGGCTTACGAG
TCTGCCAACGATCTTTTGGGCGATGTCGTCAAGGTCACCCCCACTTCCAA
GGTGGTCGGTGATTTGGCTCAGTTCATGGTCTCCAACAAGTTGACTGCTG
AAGATGTGATTGCTCGCGCCGGCGAGCTTGACTTCCCCGGTTCCGTTCTG
GAGTTCCTCGAGGGTCTCATGGGCCAGCCCTACGGTGGATTCCCCGAGCC
TCTGCGCTCTCGCGCTCTGCGTGACCGTCGCAAGCTCGACAAGCGCCCTG
GTCTGTACCTGGAGCCCCTTGACCTGGCCAAGATCAAGAGCCAGATCCGG
GAGAACTATGGCGCAGCTACCGAGTACGATGTGGCCAGCTATGCCATGTA
CCCCAAGGTCTTCGAGGATTACAAGAAGTTTGTCGCCAAGTTCGGTGATT
TGTCCGTCCTGCCCACGCGTTACTTCTTGGCCAAGCCCGAGATCGGCGAG
GAATTCCACGTCGAGCTGGAGAAGGGTAAGGTGCTGATCCTGAAGTTGTT
GGCCATTGGTCCCCTCTCCGAGCAGACCGGCCAGCGTGAGGTCTTCTACG
AAGTCAACGGTGAGGTTCGCCAGGTTAGTGTGGACGACAAGAAGGCGTCC
GTCGAGAACACCGCCCGCCCCAAGGCCGAGCTGGGTGACAGCAGCCAGGT
TGGTGCTCCTATGAGCGGTGTGGTTGTCGAGATCCGCGTCCACGACGGCC
TGGAAGTCAAGAAGGGTGACCCCATTGCCGTCCTGAGCGCCATGAAGATG
GAAATGGTTATCTCTGCTCCCCACAGTGGCAAGGTCTCCAGCTTGCTGGT
CAAGGAAGGTGACTCGGTGGATGGCCAGGATCTTGTCTGCAAGATCGTCA
AGGCCTAG
back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0006094gluconeogenesis
GO:0006090pyruvate metabolic process
Vocabulary: Molecular Function
TermDefinition
GO:0046872metal ion binding
GO:0004736pyruvate carboxylase activity
GO:0009374biotin binding
GO:0005524ATP binding
GO:0003824catalytic activity
Relationships

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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_213185ASPNIDRAFT_213185Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_213185-T1.exon1ASPNIDRAFT_213185-T1.exon1Aspergillus niger ATCC 1015exon
ASPNIDRAFT_213185-T1.exon2ASPNIDRAFT_213185-T1.exon2Aspergillus niger ATCC 1015exon


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_213185-T1.cdsASPNIDRAFT_213185-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_213185-T1.utr3p1ASPNIDRAFT_213185-T1.utr3p1Aspergillus niger ATCC 1015three_prime_UTR


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_213185-T1ASPNIDRAFT_213185-T1-proteinAspergillus niger ATCC 1015polypeptide


Properties
Property NameValue
DBxrefInterPro:IPR011053
DBxrefInterPro:IPR011054
DBxrefInterPro:IPR016185
DBxrefInterPro:IPR011761
DBxrefInterPro:IPR011764
DBxrefInterPro:IPR001882
DBxrefInterPro:IPR005481
DBxrefInterPro:IPR003379
DBxrefInterPro:IPR005930
DBxrefInterPro:IPR000089
DBxrefInterPro:IPR005479
DBxrefInterPro:IPR000891
DBxrefInterPro:IPR013785
DBxrefInterPro:IPR005482
DBxrefPFAM:PF02436
DBxrefPFAM:PF00682
DBxrefPFAM:PF07478
DBxrefPFAM:PF02786
DBxrefPFAM:PF13533
DBxrefPFAM:PF00364
DBxrefPFAM:PF00289
DBxrefPFAM:PF02785
DBxrefPFAM:PF02222
Producthypothetical protein
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Aspergillus niger ATCC 1015 whole genome analysis2021-11-01
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
ACJE01000016.1supercontigACJE01000016.1:573694..577574 +