You are here

ASPNIDRAFT_55665-T1, ASPNIDRAFT_55665-T1 (mRNA) Aspergillus niger ATCC 1015

Overview
NameASPNIDRAFT_55665-T1
Unique NameASPNIDRAFT_55665-T1
TypemRNA
OrganismAspergillus niger ATCC 1015
Sequences
The following sequences are available for this feature:

mRNA from alignment at ACJE01000021.1:3029596..3031595-

Legend: polypeptideCDSexon
Hold the cursor over a type above to highlight its positions in the sequence below.
>ASPNIDRAFT_55665-T1 ID=ASPNIDRAFT_55665-T1|Name=ASPNIDRAFT_55665-T1|organism=Aspergillus niger ATCC 1015|type=mRNA|length=2000bp|location=Sequence derived from alignment at ACJE01000021.1:3029596..3031595- (Aspergillus niger ATCC 1015)
ATGCGTTCTTCCGGTCTCTACACAGCACTCCTGTGCTCCCTGGCCGCCTC GACCAACGCGATTGTCCATGAAAAGCTCGCCGCGGTCCCCTCCGGCTGGC ATCACGTCGAAGATGCTGGCTCCGACCACCAGATCAGCCTGTCGATCGCG CTGGCACGCAAGAACCTCGATCAGCTTGAATCCAAGCTGAAAGACTTGTC AACACCTGGCGAATCGCAATACGGCCAGTGGCTGGACCAGGAGGATGTCG ACACGCTGTTCCCAGTGGCCAGCGACAAGGCTGTGATTAACTGGCTGCGC AGCGCCAATATCACCCATATTTCCCGCCAGGGCAGCTTGGTGAACTTTGC GACCACGGTCGATAAGGTGAACAAGCTTCTCAACGCCACCTTTGCCTACT ACCAAAGCGGCTCTTCCCAGAGATTGCGCACAACAGAGTACTCCATCCCG GATGATTTGGTCGACTCAATCGACCTCATCTCCCCAACGACGTTCTTCGG CAAGGAAAAGACTACTGCTGGTTTGAACCAGCGGGCGCAAAAGATTGACA ACCATGTGGCCAAACGTTCCAACAGCTCGTCCTGTGCCGATCTCATTACG CTGTCCTGCCTGAAGGAGATGTACAACTTTGGCAACTACACTCCCAGCGC TTCGTCGGGCAGCAAGCTGGGCTTCGGCAGCTTCCTGAACGAATCCGCCT CGTATTCTGACCTTGCCAAGTTCGAGAAGCTGTTTAACCTGCCCTCTCAG AGCTTTTCCGTGGAGTTGGTCAACGGCGGCGTCAATGATCAGAATCAATC GACGGCTTCCTTGACCGAGGCGGACCTCGATGTGGAATTGCTCGTCGGAG TTGCTCATCCCCTCCCTGTGACTGAGTTCATCACTTCTGGCGAACCGTGA GTATTGAATTCCTAGACAGAACTTGAATCGAAGCTAATTGTGTAGTCCTT TCATTCCCGACCCCGATGAGCCGAGTGCCGCCGACAACGAGAACGAGCCT TACCTCCAGTACTATGAGTACCTCCTCTCCAAGCCCAACTCGGCTCTGCC CCAAGTGATTTCCAACTCCTATGGTGACGACGAACAGGTACGACCCCACA TTCCCCCTTCCCTGTATGTAGGTACTAACCGGACCAGACCGTTCCCGAGT ACTACGCCAAGCGAGTCTGCAACCTGATCGGACTTGTTGGCCTGCGCGGC ATCAGTGTCCTCGAGTCGTCCGGTGACGAAGGTACACTCATTTCCCTGCC CCATTCCTTGTATCGAAAGCACTCTAACAGCAGCACAGGTATTGGATCCG GCTGCCGAACCACCGACGGCACCAACCGAACCCAATTCAACCCCATCTTC CCGGCCACCTGTCCCTACGTGACCGCCGTGGGAGGGACAATGTCCTATGC CCCCGAGATCGCCTGGGAAGCCAGTTCCGGCGGATTCAGCAACTACTTCG AGCGGGCGTGGTTCCAGAAGGAAGCTGTGCAGAACTACCTGGCGCACCAC ATCACCAACGAGACGAAGCAGTACTACTCGCAATTCGCCAACTTTAGCGG TCGCGGATTCCCTGACGTTGCTGCCCATAGCTTCGAGCCTTCGTGAGTCC ATTCCCCACATCATGACAATGCGAAATAGGGTCTAATGAGATCTGCAGAT ATGAGGTGATCTTCTACGGCGCCCGCTACGGCTCCGGCGGTACCTCAGCC GCGTGTCCCCTTTTCTCTGCGCTAGTGGGCATGTTGAACGATGCTCGTCT GCGGGCGGGCAAGTCCACGCTGGGTTTCTTGAACCCCCTGCTCTACAGCA AGGGGTACAGAGCGTTGACTGATGTGACGGGGGGCCAGTCGATCGGATGC AATGGCATTGATCCGCAGAATGATGAGACTGTTGCCGGCGCGGGCATTAT CCCGTGGGCGCACTGGAACGCCACGGTCGGATGGGATCCGGTGACTGGAT TGGGACTTCCTGACTTTGAGAAGTTGAGGCAGTTGGTGCTGTCGTTGTAG
back to top

Coding sequence (CDS) from alignment at ACJE01000021.1:3029596..3031595-

>ASPNIDRAFT_55665-T1 ID=ASPNIDRAFT_55665-T1|Name=ASPNIDRAFT_55665-T1|organism=Aspergillus niger ATCC 1015|type=CDS|length=8940bp|location=Sequence derived from alignment at ACJE01000021.1:3029596..3031595- (Aspergillus niger ATCC 1015)
ATATGAGGTGATCTTCTACGGCGCCCGCTACGGCTCCGGCGGTACCTCAG
CCGCGTGTCCCCTTTTCTCTGCGCTAGTGGGCATGTTGAACGATGCTCGT
CTGCGGGCGGGCAAGTCCACGCTGGGTTTCTTGAACCCCCTGCTCTACAG
CAAGGGGTACAGAGCGTTGACTGATGTGACGGGGGGCCAGTCGATCGGAT
GCAATGGCATTGATCCGCAGAATGATGAGACTGTTGCCGGCGCGGGCATT
ATCCCGTGGGCGCACTGGAACGCCACGGTCGGATGGGATCCGGTGACTGG
ATTGGGACTTCCTGACTTTGAGAAGTTGAGGCAGTTGGTGCTGTCGTTGT
AGGTATTGGATCCGGCTGCCGAACCACCGACGGCACCAACCGAACCCAAT
TCAACCCCATCTTCCCGGCCACCTGTCCCTACGTGACCGCCGTGGGAGGG
ACAATGTCCTATGCCCCCGAGATCGCCTGGGAAGCCAGTTCCGGCGGATT
CAGCAACTACTTCGAGCGGGCGTGGTTCCAGAAGGAAGCTGTGCAGAACT
ACCTGGCGCACCACATCACCAACGAGACGAAGCAGTACTACTCGCAATTC
GCCAACTTTAGCGGTCGCGGATTCCCTGACGTTGCTGCCCATAGCTTCGA
GCCTTCACCGTTCCCGAGTACTACGCCAAGCGAGTCTGCAACCTGATCGG
ACTTGTTGGCCTGCGCGGCATCAGTGTCCTCGAGTCGTCCGGTGACGAAG
TCCTTTCATTCCCGACCCCGATGAGCCGAGTGCCGCCGACAACGAGAACG
AGCCTTACCTCCAGTACTATGAGTACCTCCTCTCCAAGCCCAACTCGGCT
CTGCCCCAAGTGATTTCCAACTCCTATGGTGACGACGAACAGATGCGTTC
TTCCGGTCTCTACACAGCACTCCTGTGCTCCCTGGCCGCCTCGACCAACG
CGATTGTCCATGAAAAGCTCGCCGCGGTCCCCTCCGGCTGGCATCACGTC
GAAGATGCTGGCTCCGACCACCAGATCAGCCTGTCGATCGCGCTGGCACG
CAAGAACCTCGATCAGCTTGAATCCAAGCTGAAAGACTTGTCAACACCTG
GCGAATCGCAATACGGCCAGTGGCTGGACCAGGAGGATGTCGACACGCTG
TTCCCAGTGGCCAGCGACAAGGCTGTGATTAACTGGCTGCGCAGCGCCAA
TATCACCCATATTTCCCGCCAGGGCAGCTTGGTGAACTTTGCGACCACGG
TCGATAAGGTGAACAAGCTTCTCAACGCCACCTTTGCCTACTACCAAAGC
GGCTCTTCCCAGAGATTGCGCACAACAGAGTACTCCATCCCGGATGATTT
GGTCGACTCAATCGACCTCATCTCCCCAACGACGTTCTTCGGCAAGGAAA
AGACTACTGCTGGTTTGAACCAGCGGGCGCAAAAGATTGACAACCATGTG
GCCAAACGTTCCAACAGCTCGTCCTGTGCCGATCTCATTACGCTGTCCTG
CCTGAAGGAGATGTACAACTTTGGCAACTACACTCCCAGCGCTTCGTCGG
GCAGCAAGCTGGGCTTCGGCAGCTTCCTGAACGAATCCGCCTCGTATTCT
GACCTTGCCAAGTTCGAGAAGCTGTTTAACCTGCCCTCTCAGAGCTTTTC
CGTGGAGTTGGTCAACGGCGGCGTCAATGATCAGAATCAATCGACGGCTT
CCTTGACCGAGGCGGACCTCGATGTGGAATTGCTCGTCGGAGTTGCTCAT
CCCCTCCCTGTGACTGAGTTCATCACTTCTGGCGAACCATATGAGGTGAT
CTTCTACGGCGCCCGCTACGGCTCCGGCGGTACCTCAGCCGCGTGTCCCC
TTTTCTCTGCGCTAGTGGGCATGTTGAACGATGCTCGTCTGCGGGCGGGC
AAGTCCACGCTGGGTTTCTTGAACCCCCTGCTCTACAGCAAGGGGTACAG
AGCGTTGACTGATGTGACGGGGGGCCAGTCGATCGGATGCAATGGCATTG
ATCCGCAGAATGATGAGACTGTTGCCGGCGCGGGCATTATCCCGTGGGCG
CACTGGAACGCCACGGTCGGATGGGATCCGGTGACTGGATTGGGACTTCC
TGACTTTGAGAAGTTGAGGCAGTTGGTGCTGTCGTTGTAGGTATTGGATC
CGGCTGCCGAACCACCGACGGCACCAACCGAACCCAATTCAACCCCATCT
TCCCGGCCACCTGTCCCTACGTGACCGCCGTGGGAGGGACAATGTCCTAT
GCCCCCGAGATCGCCTGGGAAGCCAGTTCCGGCGGATTCAGCAACTACTT
CGAGCGGGCGTGGTTCCAGAAGGAAGCTGTGCAGAACTACCTGGCGCACC
ACATCACCAACGAGACGAAGCAGTACTACTCGCAATTCGCCAACTTTAGC
GGTCGCGGATTCCCTGACGTTGCTGCCCATAGCTTCGAGCCTTCACCGTT
CCCGAGTACTACGCCAAGCGAGTCTGCAACCTGATCGGACTTGTTGGCCT
GCGCGGCATCAGTGTCCTCGAGTCGTCCGGTGACGAAGTCCTTTCATTCC
CGACCCCGATGAGCCGAGTGCCGCCGACAACGAGAACGAGCCTTACCTCC
AGTACTATGAGTACCTCCTCTCCAAGCCCAACTCGGCTCTGCCCCAAGTG
ATTTCCAACTCCTATGGTGACGACGAACAGATGCGTTCTTCCGGTCTCTA
CACAGCACTCCTGTGCTCCCTGGCCGCCTCGACCAACGCGATTGTCCATG
AAAAGCTCGCCGCGGTCCCCTCCGGCTGGCATCACGTCGAAGATGCTGGC
TCCGACCACCAGATCAGCCTGTCGATCGCGCTGGCACGCAAGAACCTCGA
TCAGCTTGAATCCAAGCTGAAAGACTTGTCAACACCTGGCGAATCGCAAT
ACGGCCAGTGGCTGGACCAGGAGGATGTCGACACGCTGTTCCCAGTGGCC
AGCGACAAGGCTGTGATTAACTGGCTGCGCAGCGCCAATATCACCCATAT
TTCCCGCCAGGGCAGCTTGGTGAACTTTGCGACCACGGTCGATAAGGTGA
ACAAGCTTCTCAACGCCACCTTTGCCTACTACCAAAGCGGCTCTTCCCAG
AGATTGCGCACAACAGAGTACTCCATCCCGGATGATTTGGTCGACTCAAT
CGACCTCATCTCCCCAACGACGTTCTTCGGCAAGGAAAAGACTACTGCTG
GTTTGAACCAGCGGGCGCAAAAGATTGACAACCATGTGGCCAAACGTTCC
AACAGCTCGTCCTGTGCCGATCTCATTACGCTGTCCTGCCTGAAGGAGAT
GTACAACTTTGGCAACTACACTCCCAGCGCTTCGTCGGGCAGCAAGCTGG
GCTTCGGCAGCTTCCTGAACGAATCCGCCTCGTATTCTGACCTTGCCAAG
TTCGAGAAGCTGTTTAACCTGCCCTCTCAGAGCTTTTCCGTGGAGTTGGT
CAACGGCGGCGTCAATGATCAGAATCAATCGACGGCTTCCTTGACCGAGG
CGGACCTCGATGTGGAATTGCTCGTCGGAGTTGCTCATCCCCTCCCTGTG
ACTGAGTTCATCACTTCTGGCGAACCATATGAGGTGATCTTCTACGGCGC
CCGCTACGGCTCCGGCGGTACCTCAGCCGCGTGTCCCCTTTTCTCTGCGC
TAGTGGGCATGTTGAACGATGCTCGTCTGCGGGCGGGCAAGTCCACGCTG
GGTTTCTTGAACCCCCTGCTCTACAGCAAGGGGTACAGAGCGTTGACTGA
TGTGACGGGGGGCCAGTCGATCGGATGCAATGGCATTGATCCGCAGAATG
ATGAGACTGTTGCCGGCGCGGGCATTATCCCGTGGGCGCACTGGAACGCC
ACGGTCGGATGGGATCCGGTGACTGGATTGGGACTTCCTGACTTTGAGAA
GTTGAGGCAGTTGGTGCTGTCGTTGTAGGTATTGGATCCGGCTGCCGAAC
CACCGACGGCACCAACCGAACCCAATTCAACCCCATCTTCCCGGCCACCT
GTCCCTACGTGACCGCCGTGGGAGGGACAATGTCCTATGCCCCCGAGATC
GCCTGGGAAGCCAGTTCCGGCGGATTCAGCAACTACTTCGAGCGGGCGTG
GTTCCAGAAGGAAGCTGTGCAGAACTACCTGGCGCACCACATCACCAACG
AGACGAAGCAGTACTACTCGCAATTCGCCAACTTTAGCGGTCGCGGATTC
CCTGACGTTGCTGCCCATAGCTTCGAGCCTTCACCGTTCCCGAGTACTAC
GCCAAGCGAGTCTGCAACCTGATCGGACTTGTTGGCCTGCGCGGCATCAG
TGTCCTCGAGTCGTCCGGTGACGAAGTCCTTTCATTCCCGACCCCGATGA
GCCGAGTGCCGCCGACAACGAGAACGAGCCTTACCTCCAGTACTATGAGT
ACCTCCTCTCCAAGCCCAACTCGGCTCTGCCCCAAGTGATTTCCAACTCC
TATGGTGACGACGAACAGATGCGTTCTTCCGGTCTCTACACAGCACTCCT
GTGCTCCCTGGCCGCCTCGACCAACGCGATTGTCCATGAAAAGCTCGCCG
CGGTCCCCTCCGGCTGGCATCACGTCGAAGATGCTGGCTCCGACCACCAG
ATCAGCCTGTCGATCGCGCTGGCACGCAAGAACCTCGATCAGCTTGAATC
CAAGCTGAAAGACTTGTCAACACCTGGCGAATCGCAATACGGCCAGTGGC
TGGACCAGGAGGATGTCGACACGCTGTTCCCAGTGGCCAGCGACAAGGCT
GTGATTAACTGGCTGCGCAGCGCCAATATCACCCATATTTCCCGCCAGGG
CAGCTTGGTGAACTTTGCGACCACGGTCGATAAGGTGAACAAGCTTCTCA
ACGCCACCTTTGCCTACTACCAAAGCGGCTCTTCCCAGAGATTGCGCACA
ACAGAGTACTCCATCCCGGATGATTTGGTCGACTCAATCGACCTCATCTC
CCCAACGACGTTCTTCGGCAAGGAAAAGACTACTGCTGGTTTGAACCAGC
GGGCGCAAAAGATTGACAACCATGTGGCCAAACGTTCCAACAGCTCGTCC
TGTGCCGATCTCATTACGCTGTCCTGCCTGAAGGAGATGTACAACTTTGG
CAACTACACTCCCAGCGCTTCGTCGGGCAGCAAGCTGGGCTTCGGCAGCT
TCCTGAACGAATCCGCCTCGTATTCTGACCTTGCCAAGTTCGAGAAGCTG
TTTAACCTGCCCTCTCAGAGCTTTTCCGTGGAGTTGGTCAACGGCGGCGT
CAATGATCAGAATCAATCGACGGCTTCCTTGACCGAGGCGGACCTCGATG
TGGAATTGCTCGTCGGAGTTGCTCATCCCCTCCCTGTGACTGAGTTCATC
ACTTCTGGCGAACCATATGAGGTGATCTTCTACGGCGCCCGCTACGGCTC
CGGCGGTACCTCAGCCGCGTGTCCCCTTTTCTCTGCGCTAGTGGGCATGT
TGAACGATGCTCGTCTGCGGGCGGGCAAGTCCACGCTGGGTTTCTTGAAC
CCCCTGCTCTACAGCAAGGGGTACAGAGCGTTGACTGATGTGACGGGGGG
CCAGTCGATCGGATGCAATGGCATTGATCCGCAGAATGATGAGACTGTTG
CCGGCGCGGGCATTATCCCGTGGGCGCACTGGAACGCCACGGTCGGATGG
GATCCGGTGACTGGATTGGGACTTCCTGACTTTGAGAAGTTGAGGCAGTT
GGTGCTGTCGTTGTAGGTATTGGATCCGGCTGCCGAACCACCGACGGCAC
CAACCGAACCCAATTCAACCCCATCTTCCCGGCCACCTGTCCCTACGTGA
CCGCCGTGGGAGGGACAATGTCCTATGCCCCCGAGATCGCCTGGGAAGCC
AGTTCCGGCGGATTCAGCAACTACTTCGAGCGGGCGTGGTTCCAGAAGGA
AGCTGTGCAGAACTACCTGGCGCACCACATCACCAACGAGACGAAGCAGT
ACTACTCGCAATTCGCCAACTTTAGCGGTCGCGGATTCCCTGACGTTGCT
GCCCATAGCTTCGAGCCTTCACCGTTCCCGAGTACTACGCCAAGCGAGTC
TGCAACCTGATCGGACTTGTTGGCCTGCGCGGCATCAGTGTCCTCGAGTC
GTCCGGTGACGAAGTCCTTTCATTCCCGACCCCGATGAGCCGAGTGCCGC
CGACAACGAGAACGAGCCTTACCTCCAGTACTATGAGTACCTCCTCTCCA
AGCCCAACTCGGCTCTGCCCCAAGTGATTTCCAACTCCTATGGTGACGAC
GAACAGATGCGTTCTTCCGGTCTCTACACAGCACTCCTGTGCTCCCTGGC
CGCCTCGACCAACGCGATTGTCCATGAAAAGCTCGCCGCGGTCCCCTCCG
GCTGGCATCACGTCGAAGATGCTGGCTCCGACCACCAGATCAGCCTGTCG
ATCGCGCTGGCACGCAAGAACCTCGATCAGCTTGAATCCAAGCTGAAAGA
CTTGTCAACACCTGGCGAATCGCAATACGGCCAGTGGCTGGACCAGGAGG
ATGTCGACACGCTGTTCCCAGTGGCCAGCGACAAGGCTGTGATTAACTGG
CTGCGCAGCGCCAATATCACCCATATTTCCCGCCAGGGCAGCTTGGTGAA
CTTTGCGACCACGGTCGATAAGGTGAACAAGCTTCTCAACGCCACCTTTG
CCTACTACCAAAGCGGCTCTTCCCAGAGATTGCGCACAACAGAGTACTCC
ATCCCGGATGATTTGGTCGACTCAATCGACCTCATCTCCCCAACGACGTT
CTTCGGCAAGGAAAAGACTACTGCTGGTTTGAACCAGCGGGCGCAAAAGA
TTGACAACCATGTGGCCAAACGTTCCAACAGCTCGTCCTGTGCCGATCTC
ATTACGCTGTCCTGCCTGAAGGAGATGTACAACTTTGGCAACTACACTCC
CAGCGCTTCGTCGGGCAGCAAGCTGGGCTTCGGCAGCTTCCTGAACGAAT
CCGCCTCGTATTCTGACCTTGCCAAGTTCGAGAAGCTGTTTAACCTGCCC
TCTCAGAGCTTTTCCGTGGAGTTGGTCAACGGCGGCGTCAATGATCAGAA
TCAATCGACGGCTTCCTTGACCGAGGCGGACCTCGATGTGGAATTGCTCG
TCGGAGTTGCTCATCCCCTCCCTGTGACTGAGTTCATCACTTCTGGCGAA
CCATATGAGGTGATCTTCTACGGCGCCCGCTACGGCTCCGGCGGTACCTC
AGCCGCGTGTCCCCTTTTCTCTGCGCTAGTGGGCATGTTGAACGATGCTC
GTCTGCGGGCGGGCAAGTCCACGCTGGGTTTCTTGAACCCCCTGCTCTAC
AGCAAGGGGTACAGAGCGTTGACTGATGTGACGGGGGGCCAGTCGATCGG
ATGCAATGGCATTGATCCGCAGAATGATGAGACTGTTGCCGGCGCGGGCA
TTATCCCGTGGGCGCACTGGAACGCCACGGTCGGATGGGATCCGGTGACT
GGATTGGGACTTCCTGACTTTGAGAAGTTGAGGCAGTTGGTGCTGTCGTT
GTAGGTATTGGATCCGGCTGCCGAACCACCGACGGCACCAACCGAACCCA
ATTCAACCCCATCTTCCCGGCCACCTGTCCCTACGTGACCGCCGTGGGAG
GGACAATGTCCTATGCCCCCGAGATCGCCTGGGAAGCCAGTTCCGGCGGA
TTCAGCAACTACTTCGAGCGGGCGTGGTTCCAGAAGGAAGCTGTGCAGAA
CTACCTGGCGCACCACATCACCAACGAGACGAAGCAGTACTACTCGCAAT
TCGCCAACTTTAGCGGTCGCGGATTCCCTGACGTTGCTGCCCATAGCTTC
GAGCCTTCACCGTTCCCGAGTACTACGCCAAGCGAGTCTGCAACCTGATC
GGACTTGTTGGCCTGCGCGGCATCAGTGTCCTCGAGTCGTCCGGTGACGA
AGTCCTTTCATTCCCGACCCCGATGAGCCGAGTGCCGCCGACAACGAGAA
CGAGCCTTACCTCCAGTACTATGAGTACCTCCTCTCCAAGCCCAACTCGG
CTCTGCCCCAAGTGATTTCCAACTCCTATGGTGACGACGAACAGATGCGT
TCTTCCGGTCTCTACACAGCACTCCTGTGCTCCCTGGCCGCCTCGACCAA
CGCGATTGTCCATGAAAAGCTCGCCGCGGTCCCCTCCGGCTGGCATCACG
TCGAAGATGCTGGCTCCGACCACCAGATCAGCCTGTCGATCGCGCTGGCA
CGCAAGAACCTCGATCAGCTTGAATCCAAGCTGAAAGACTTGTCAACACC
TGGCGAATCGCAATACGGCCAGTGGCTGGACCAGGAGGATGTCGACACGC
TGTTCCCAGTGGCCAGCGACAAGGCTGTGATTAACTGGCTGCGCAGCGCC
AATATCACCCATATTTCCCGCCAGGGCAGCTTGGTGAACTTTGCGACCAC
GGTCGATAAGGTGAACAAGCTTCTCAACGCCACCTTTGCCTACTACCAAA
GCGGCTCTTCCCAGAGATTGCGCACAACAGAGTACTCCATCCCGGATGAT
TTGGTCGACTCAATCGACCTCATCTCCCCAACGACGTTCTTCGGCAAGGA
AAAGACTACTGCTGGTTTGAACCAGCGGGCGCAAAAGATTGACAACCATG
TGGCCAAACGTTCCAACAGCTCGTCCTGTGCCGATCTCATTACGCTGTCC
TGCCTGAAGGAGATGTACAACTTTGGCAACTACACTCCCAGCGCTTCGTC
GGGCAGCAAGCTGGGCTTCGGCAGCTTCCTGAACGAATCCGCCTCGTATT
CTGACCTTGCCAAGTTCGAGAAGCTGTTTAACCTGCCCTCTCAGAGCTTT
TCCGTGGAGTTGGTCAACGGCGGCGTCAATGATCAGAATCAATCGACGGC
TTCCTTGACCGAGGCGGACCTCGATGTGGAATTGCTCGTCGGAGTTGCTC
ATCCCCTCCCTGTGACTGAGTTCATCACTTCTGGCGAACC
back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0006508proteolysis
Vocabulary: Molecular Function
TermDefinition
GO:0004252serine-type endopeptidase activity
GO:0008236serine-type peptidase activity
Relationships

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

Feature NameUnique NameSpeciesType
SED4_2ASPNIDRAFT_55665Aspergillus niger ATCC 1015gene


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_55665-T1ASPNIDRAFT_55665-T1-proteinAspergillus niger ATCC 1015polypeptide


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_55665-T1.cdsASPNIDRAFT_55665-T1.cdsAspergillus niger ATCC 1015CDS


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

Feature NameUnique NameSpeciesType
ASPNIDRAFT_55665-T1.exon5ASPNIDRAFT_55665-T1.exon5Aspergillus niger ATCC 1015exon
ASPNIDRAFT_55665-T1.exon4ASPNIDRAFT_55665-T1.exon4Aspergillus niger ATCC 1015exon
ASPNIDRAFT_55665-T1.exon3ASPNIDRAFT_55665-T1.exon3Aspergillus niger ATCC 1015exon
ASPNIDRAFT_55665-T1.exon2ASPNIDRAFT_55665-T1.exon2Aspergillus niger ATCC 1015exon
ASPNIDRAFT_55665-T1.exon1ASPNIDRAFT_55665-T1.exon1Aspergillus niger ATCC 1015exon


Properties
Property NameValue
NoteSECRETED:SignalP(1-20)
NoteMEROPS:MER0078639
DBxrefInterPro:IPR030400
DBxrefInterPro:IPR036852
DBxrefInterPro:IPR015366
DBxrefPFAM:PF09286
Productvesicle formation at the endoplasmic reticulum
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
ACJE01000021.1supercontigACJE01000021.1:3029596..3031595 -