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ATCC64974_20150-T1, ATCC64974_20150-T1 (mRNA) Aspergillus niger N402

Overview
NameATCC64974_20150-T1
Unique NameATCC64974_20150-T1
TypemRNA
OrganismAspergillus niger N402
Sequences
The following sequences are available for this feature:

mRNA from alignment at OGUI01000003.1:2755291..2757443-

Legend: polypeptideCDSexon
Hold the cursor over a type above to highlight its positions in the sequence below.
>ATCC64974_20150-T1 ID=ATCC64974_20150-T1|Name=ATCC64974_20150-T1|organism=Aspergillus niger N402|type=mRNA|length=2153bp|location=Sequence derived from alignment at OGUI01000003.1:2755291..2757443- (Aspergillus niger N402)
ATGCAACCAATTCGCCCGTTCAGGGCGTCGTCGTTGCGGGTTGGAGGTCT TTTGTCTAGGTAAGCAGTTTTATGTTTTGCTGTGTTTTTCACAATACCTC TTTTTATCCTGCACTTGCATGATGAGACATACCCTTCCAAATTACAGAAC CGCTGCATTGAAGCTTGGGGGTTTATCTTCCAAGTTATGAGTAACAAGGA AGCTTTATGTCTTCTGATTTTATCTTGTCTCTGCTATCATTTTGTATGGT ATTTGTCTGTTAGACATCTTGCTAACGGCATGTTCAGGGCAGGACTTCCG ATTTCCCGTACATCGCAGGCCTTTCAGACTTCTGGCAGGCTTGCTCGAGT AATACAGCACACTCTTGCACCTCTGGTACAAACAAGGCATAACAGCGTCG ATGCGTATCCTGAGAAGGCGTTCAAGAGGCGTGTGCAATTGATCGAAGAG GCTGTTGCTGAGTCGTATCCCCGGCTCGCGTCAAACAAGAACACGGTGAG CTGTGCGGAATTTCGTGGCCGCTACAGCCATCTAGCAGATAATGAAATAG TAGAGGATGATACAGTTGTTATTAATGGTAGGTCCTAGTTCTAGCCTAGC TGGCCCTACCATGTCGTCTCGTACTTAAATCAGTAGGTAGGGTACGTACC TTAAGACTTGTTGGAGGCAATTTGATATTCTTCGACTTAGTTCATGATGG CCATAAAATTCAAGTTATGTGCAATCGTCGTCGACTGAAGGATATCCCTC CGGCGACCTTCAAGCAGTTCTACCGGATGCTTCGGCGTGGCGATGCCTTC TGTATGTTTCACCAGCCGCTCCTTAGTATTCTGCTCTAGACTGAACGATA TCCTATAGCCGTAACGGGTAATCCTCACCGGACTGAACGAGGTGAACTCA CTGTTCTGGCGACCGAATTACCGCAGCTTCTGTCGCCCTGTCTGCATGAT ATTCCCGTTGATGCCCAAGGGCAGGAGAATTCGCCGTACCCTCGACATGT TCAATTCCTTGCGGACCCGGAGACAGTAAATGTCATCAGAGCTAGATCGG CAGTTGTCCAATATCTTCGCCAATTCTTTGTCGACCGCGCTTTTATGGAG GTTAATACGCCGATTATCGAAGCTGTTGCTGGCGGTGCAATTGCTCGTCC ATTTCATACTACAGCCACCGAGTTTCCAGATCGCCAATTGTCGTTACGGA TTGCGCCGGAACTCTGGCTAAAGAGGTTGGTGGTAGGAGGGTTTGACCGG GTTTTTGAGATTGGACCTTCGTTCCGCAATGAAGGTATTAGTCTTCAGTC GAAGTGTTTGAACGAAAACTGACGATTTGTGACAGGCCTTGACAAAACCC ACAACCCCGAGTTCACCACTTGCGAGTTCTACCACGCCTACGCCAACCTG GAGGATCTCATGACCACAACCGAGCAGCTGCTTTCGGGCCTGGCTGAGCA CCTTACAGCATTCCATCAATCGTCACCCTTCAAGAGGCCTAATCAGGAAG ACACACCTCTGCCGTTCTCCCATCTCAATTTCTCTGCACCCTTCCGCCGA CTCGACTTCATCACCTCCATTGAGCAGAGCATCGGGCAGAAACTGCCAGA CCTCGCATCTCCCGATGCTCTCGAGCAGGTGAAGGCAATCTTCCGTGACC GCAATCATGCACTTCCAGATAAAGTGACCCTCCCCCGGCTGCTGGACGAG CTCTGCAGCATCTACGTCGAACCTCAGTGCATCGACCCAACCTTCATCGT TAACCCGCCGGAGTGCTTATCACCGTTGTCTAAGTCCTTCATCCACCCCA CCACCAACCAGCGCGTCGCCGCCCGCGGAGAGCTTTTCATCGAGGGCCGC GAAGTCGTGAACACATACGAAGAGGAGAATTCGCCGTTCGAACAGCGTCG CAAGTTTGAAGACCAGGTTCGGTACAGCAAGCAGGCTGACGAGGCGGAAG AGATCGACGAGAGCTACTTGAAGGCGCTGGAATGGGGTCTCCCTCCGACT GGCGGCTGGGGATGCGGTATCGACCGTCTCTGCATGCTATTCACGGGCAT GACGAGAATCGGGGACATTCTGCCTTTTGGCAACTTGCGCAAAGTGACCA CGCGTGCTGATGCAGCGGCCGAGAGTCAGGCTACCGAAGGGAAAGAAAAC TAG
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Coding sequence (CDS) from alignment at OGUI01000003.1:2755291..2757443-

>ATCC64974_20150-T1 ID=ATCC64974_20150-T1|Name=ATCC64974_20150-T1|organism=Aspergillus niger N402|type=CDS|length=8790bp|location=Sequence derived from alignment at OGUI01000003.1:2755291..2757443- (Aspergillus niger N402)
GCCTTGACAAAACCCACAACCCCGAGTTCACCACTTGCGAGTTCTACCAC
GCCTACGCCAACCTGGAGGATCTCATGACCACAACCGAGCAGCTGCTTTC
GGGCCTGGCTGAGCACCTTACAGCATTCCATCAATCGTCACCCTTCAAGA
GGCCTAATCAGGAAGACACACCTCTGCCGTTCTCCCATCTCAATTTCTCT
GCACCCTTCCGCCGACTCGACTTCATCACCTCCATTGAGCAGAGCATCGG
GCAGAAACTGCCAGACCTCGCATCTCCCGATGCTCTCGAGCAGGTGAAGG
CAATCTTCCGTGACCGCAATCATGCACTTCCAGATAAAGTGACCCTCCCC
CGGCTGCTGGACGAGCTCTGCAGCATCTACGTCGAACCTCAGTGCATCGA
CCCAACCTTCATCGTTAACCCGCCGGAGTGCTTATCACCGTTGTCTAAGT
CCTTCATCCACCCCACCACCAACCAGCGCGTCGCCGCCCGCGGAGAGCTT
TTCATCGAGGGCCGCGAAGTCGTGAACACATACGAAGAGGAGAATTCGCC
GTTCGAACAGCGTCGCAAGTTTGAAGACCAGGTTCGGTACAGCAAGCAGG
CTGACGAGGCGGAAGAGATCGACGAGAGCTACTTGAAGGCGCTGGAATGG
GGTCTCCCTCCGACTGGCGGCTGGGGATGCGGTATCGACCGTCTCTGCAT
GCTATTCACGGGCATGACGAGAATCGGGGACATTCTGCCTTTTGGCAACT
TGCGCAAAGTGACCACGCGTGCTGATGCAGCGGCCGAGAGTCAGGCTACC
GAAGGGAAAGAAAACTAGCCGTAACGGGTAATCCTCACCGGACTGAACGA
GGTGAACTCACTGTTCTGGCGACCGAATTACCGCAGCTTCTGTCGCCCTG
TCTGCATGATATTCCCGTTGATGCCCAAGGGCAGGAGAATTCGCCGTACC
CTCGACATGTTCAATTCCTTGCGGACCCGGAGACAGTAAATGTCATCAGA
GCTAGATCGGCAGTTGTCCAATATCTTCGCCAATTCTTTGTCGACCGCGC
TTTTATGGAGGTTAATACGCCGATTATCGAAGCTGTTGCTGGCGGTGCAA
TTGCTCGTCCATTTCATACTACAGCCACCGAGTTTCCAGATCGCCAATTG
TCGTTACGGATTGCGCCGGAACTCTGGCTAAAGAGGTTGGTGGTAGGAGG
GTTTGACCGGGTTTTTGAGATTGGACCTTCGTTCCGCAATGAAGGTAGGG
TACGTACCTTAAGACTTGTTGGAGGCAATTTGATATTCTTCGACTTAGTT
CATGATGGCCATAAAATTCAAGTTATGTGCAATCGTCGTCGACTGAAGGA
TATCCCTCCGGCGACCTTCAAGCAGTTCTACCGGATGCTTCGGCGTGGCG
ATGCCTTCTGGCAGGACTTCCGATTTCCCGTACATCGCAGGCCTTTCAGA
CTTCTGGCAGGCTTGCTCGAGTAATACAGCACACTCTTGCACCTCTGGTA
CAAACAAGGCATAACAGCGTCGATGCGTATCCTGAGAAGGCGTTCAAGAG
GCGTGTGCAATTGATCGAAGAGGCTGTTGCTGAGTCGTATCCCCGGCTCG
CGTCAAACAAGAACACGGTGAGCTGTGCGGAATTTCGTGGCCGCTACAGC
CATCTAGCAGATAATGAAATAGTAGAGGATGATACAGTTGTTATTAATGA
TGCAACCAATTCGCCCGTTCAGGGCGTCGTCGTTGCGGGTTGGAGGTCTT
TTGTCTAGGCCTTGACAAAACCCACAACCCCGAGTTCACCACTTGCGAGT
TCTACCACGCCTACGCCAACCTGGAGGATCTCATGACCACAACCGAGCAG
CTGCTTTCGGGCCTGGCTGAGCACCTTACAGCATTCCATCAATCGTCACC
CTTCAAGAGGCCTAATCAGGAAGACACACCTCTGCCGTTCTCCCATCTCA
ATTTCTCTGCACCCTTCCGCCGACTCGACTTCATCACCTCCATTGAGCAG
AGCATCGGGCAGAAACTGCCAGACCTCGCATCTCCCGATGCTCTCGAGCA
GGTGAAGGCAATCTTCCGTGACCGCAATCATGCACTTCCAGATAAAGTGA
CCCTCCCCCGGCTGCTGGACGAGCTCTGCAGCATCTACGTCGAACCTCAG
TGCATCGACCCAACCTTCATCGTTAACCCGCCGGAGTGCTTATCACCGTT
GTCTAAGTCCTTCATCCACCCCACCACCAACCAGCGCGTCGCCGCCCGCG
GAGAGCTTTTCATCGAGGGCCGCGAAGTCGTGAACACATACGAAGAGGAG
AATTCGCCGTTCGAACAGCGTCGCAAGTTTGAAGACCAGGTTCGGTACAG
CAAGCAGGCTGACGAGGCGGAAGAGATCGACGAGAGCTACTTGAAGGCGC
TGGAATGGGGTCTCCCTCCGACTGGCGGCTGGGGATGCGGTATCGACCGT
CTCTGCATGCTATTCACGGGCATGACGAGAATCGGGGACATTCTGCCTTT
TGGCAACTTGCGCAAAGTGACCACGCGTGCTGATGCAGCGGCCGAGAGTC
AGGCTACCGAAGGGAAAGAAAACTAGCCGTAACGGGTAATCCTCACCGGA
CTGAACGAGGTGAACTCACTGTTCTGGCGACCGAATTACCGCAGCTTCTG
TCGCCCTGTCTGCATGATATTCCCGTTGATGCCCAAGGGCAGGAGAATTC
GCCGTACCCTCGACATGTTCAATTCCTTGCGGACCCGGAGACAGTAAATG
TCATCAGAGCTAGATCGGCAGTTGTCCAATATCTTCGCCAATTCTTTGTC
GACCGCGCTTTTATGGAGGTTAATACGCCGATTATCGAAGCTGTTGCTGG
CGGTGCAATTGCTCGTCCATTTCATACTACAGCCACCGAGTTTCCAGATC
GCCAATTGTCGTTACGGATTGCGCCGGAACTCTGGCTAAAGAGGTTGGTG
GTAGGAGGGTTTGACCGGGTTTTTGAGATTGGACCTTCGTTCCGCAATGA
AGGTAGGGTACGTACCTTAAGACTTGTTGGAGGCAATTTGATATTCTTCG
ACTTAGTTCATGATGGCCATAAAATTCAAGTTATGTGCAATCGTCGTCGA
CTGAAGGATATCCCTCCGGCGACCTTCAAGCAGTTCTACCGGATGCTTCG
GCGTGGCGATGCCTTCTGGCAGGACTTCCGATTTCCCGTACATCGCAGGC
CTTTCAGACTTCTGGCAGGCTTGCTCGAGTAATACAGCACACTCTTGCAC
CTCTGGTACAAACAAGGCATAACAGCGTCGATGCGTATCCTGAGAAGGCG
TTCAAGAGGCGTGTGCAATTGATCGAAGAGGCTGTTGCTGAGTCGTATCC
CCGGCTCGCGTCAAACAAGAACACGGTGAGCTGTGCGGAATTTCGTGGCC
GCTACAGCCATCTAGCAGATAATGAAATAGTAGAGGATGATACAGTTGTT
ATTAATGATGCAACCAATTCGCCCGTTCAGGGCGTCGTCGTTGCGGGTTG
GAGGTCTTTTGTCTAGGCCTTGACAAAACCCACAACCCCGAGTTCACCAC
TTGCGAGTTCTACCACGCCTACGCCAACCTGGAGGATCTCATGACCACAA
CCGAGCAGCTGCTTTCGGGCCTGGCTGAGCACCTTACAGCATTCCATCAA
TCGTCACCCTTCAAGAGGCCTAATCAGGAAGACACACCTCTGCCGTTCTC
CCATCTCAATTTCTCTGCACCCTTCCGCCGACTCGACTTCATCACCTCCA
TTGAGCAGAGCATCGGGCAGAAACTGCCAGACCTCGCATCTCCCGATGCT
CTCGAGCAGGTGAAGGCAATCTTCCGTGACCGCAATCATGCACTTCCAGA
TAAAGTGACCCTCCCCCGGCTGCTGGACGAGCTCTGCAGCATCTACGTCG
AACCTCAGTGCATCGACCCAACCTTCATCGTTAACCCGCCGGAGTGCTTA
TCACCGTTGTCTAAGTCCTTCATCCACCCCACCACCAACCAGCGCGTCGC
CGCCCGCGGAGAGCTTTTCATCGAGGGCCGCGAAGTCGTGAACACATACG
AAGAGGAGAATTCGCCGTTCGAACAGCGTCGCAAGTTTGAAGACCAGGTT
CGGTACAGCAAGCAGGCTGACGAGGCGGAAGAGATCGACGAGAGCTACTT
GAAGGCGCTGGAATGGGGTCTCCCTCCGACTGGCGGCTGGGGATGCGGTA
TCGACCGTCTCTGCATGCTATTCACGGGCATGACGAGAATCGGGGACATT
CTGCCTTTTGGCAACTTGCGCAAAGTGACCACGCGTGCTGATGCAGCGGC
CGAGAGTCAGGCTACCGAAGGGAAAGAAAACTAGCCGTAACGGGTAATCC
TCACCGGACTGAACGAGGTGAACTCACTGTTCTGGCGACCGAATTACCGC
AGCTTCTGTCGCCCTGTCTGCATGATATTCCCGTTGATGCCCAAGGGCAG
GAGAATTCGCCGTACCCTCGACATGTTCAATTCCTTGCGGACCCGGAGAC
AGTAAATGTCATCAGAGCTAGATCGGCAGTTGTCCAATATCTTCGCCAAT
TCTTTGTCGACCGCGCTTTTATGGAGGTTAATACGCCGATTATCGAAGCT
GTTGCTGGCGGTGCAATTGCTCGTCCATTTCATACTACAGCCACCGAGTT
TCCAGATCGCCAATTGTCGTTACGGATTGCGCCGGAACTCTGGCTAAAGA
GGTTGGTGGTAGGAGGGTTTGACCGGGTTTTTGAGATTGGACCTTCGTTC
CGCAATGAAGGTAGGGTACGTACCTTAAGACTTGTTGGAGGCAATTTGAT
ATTCTTCGACTTAGTTCATGATGGCCATAAAATTCAAGTTATGTGCAATC
GTCGTCGACTGAAGGATATCCCTCCGGCGACCTTCAAGCAGTTCTACCGG
ATGCTTCGGCGTGGCGATGCCTTCTGGCAGGACTTCCGATTTCCCGTACA
TCGCAGGCCTTTCAGACTTCTGGCAGGCTTGCTCGAGTAATACAGCACAC
TCTTGCACCTCTGGTACAAACAAGGCATAACAGCGTCGATGCGTATCCTG
AGAAGGCGTTCAAGAGGCGTGTGCAATTGATCGAAGAGGCTGTTGCTGAG
TCGTATCCCCGGCTCGCGTCAAACAAGAACACGGTGAGCTGTGCGGAATT
TCGTGGCCGCTACAGCCATCTAGCAGATAATGAAATAGTAGAGGATGATA
CAGTTGTTATTAATGATGCAACCAATTCGCCCGTTCAGGGCGTCGTCGTT
GCGGGTTGGAGGTCTTTTGTCTAGGCCTTGACAAAACCCACAACCCCGAG
TTCACCACTTGCGAGTTCTACCACGCCTACGCCAACCTGGAGGATCTCAT
GACCACAACCGAGCAGCTGCTTTCGGGCCTGGCTGAGCACCTTACAGCAT
TCCATCAATCGTCACCCTTCAAGAGGCCTAATCAGGAAGACACACCTCTG
CCGTTCTCCCATCTCAATTTCTCTGCACCCTTCCGCCGACTCGACTTCAT
CACCTCCATTGAGCAGAGCATCGGGCAGAAACTGCCAGACCTCGCATCTC
CCGATGCTCTCGAGCAGGTGAAGGCAATCTTCCGTGACCGCAATCATGCA
CTTCCAGATAAAGTGACCCTCCCCCGGCTGCTGGACGAGCTCTGCAGCAT
CTACGTCGAACCTCAGTGCATCGACCCAACCTTCATCGTTAACCCGCCGG
AGTGCTTATCACCGTTGTCTAAGTCCTTCATCCACCCCACCACCAACCAG
CGCGTCGCCGCCCGCGGAGAGCTTTTCATCGAGGGCCGCGAAGTCGTGAA
CACATACGAAGAGGAGAATTCGCCGTTCGAACAGCGTCGCAAGTTTGAAG
ACCAGGTTCGGTACAGCAAGCAGGCTGACGAGGCGGAAGAGATCGACGAG
AGCTACTTGAAGGCGCTGGAATGGGGTCTCCCTCCGACTGGCGGCTGGGG
ATGCGGTATCGACCGTCTCTGCATGCTATTCACGGGCATGACGAGAATCG
GGGACATTCTGCCTTTTGGCAACTTGCGCAAAGTGACCACGCGTGCTGAT
GCAGCGGCCGAGAGTCAGGCTACCGAAGGGAAAGAAAACTAGCCGTAACG
GGTAATCCTCACCGGACTGAACGAGGTGAACTCACTGTTCTGGCGACCGA
ATTACCGCAGCTTCTGTCGCCCTGTCTGCATGATATTCCCGTTGATGCCC
AAGGGCAGGAGAATTCGCCGTACCCTCGACATGTTCAATTCCTTGCGGAC
CCGGAGACAGTAAATGTCATCAGAGCTAGATCGGCAGTTGTCCAATATCT
TCGCCAATTCTTTGTCGACCGCGCTTTTATGGAGGTTAATACGCCGATTA
TCGAAGCTGTTGCTGGCGGTGCAATTGCTCGTCCATTTCATACTACAGCC
ACCGAGTTTCCAGATCGCCAATTGTCGTTACGGATTGCGCCGGAACTCTG
GCTAAAGAGGTTGGTGGTAGGAGGGTTTGACCGGGTTTTTGAGATTGGAC
CTTCGTTCCGCAATGAAGGTAGGGTACGTACCTTAAGACTTGTTGGAGGC
AATTTGATATTCTTCGACTTAGTTCATGATGGCCATAAAATTCAAGTTAT
GTGCAATCGTCGTCGACTGAAGGATATCCCTCCGGCGACCTTCAAGCAGT
TCTACCGGATGCTTCGGCGTGGCGATGCCTTCTGGCAGGACTTCCGATTT
CCCGTACATCGCAGGCCTTTCAGACTTCTGGCAGGCTTGCTCGAGTAATA
CAGCACACTCTTGCACCTCTGGTACAAACAAGGCATAACAGCGTCGATGC
GTATCCTGAGAAGGCGTTCAAGAGGCGTGTGCAATTGATCGAAGAGGCTG
TTGCTGAGTCGTATCCCCGGCTCGCGTCAAACAAGAACACGGTGAGCTGT
GCGGAATTTCGTGGCCGCTACAGCCATCTAGCAGATAATGAAATAGTAGA
GGATGATACAGTTGTTATTAATGATGCAACCAATTCGCCCGTTCAGGGCG
TCGTCGTTGCGGGTTGGAGGTCTTTTGTCTAGGCCTTGACAAAACCCACA
ACCCCGAGTTCACCACTTGCGAGTTCTACCACGCCTACGCCAACCTGGAG
GATCTCATGACCACAACCGAGCAGCTGCTTTCGGGCCTGGCTGAGCACCT
TACAGCATTCCATCAATCGTCACCCTTCAAGAGGCCTAATCAGGAAGACA
CACCTCTGCCGTTCTCCCATCTCAATTTCTCTGCACCCTTCCGCCGACTC
GACTTCATCACCTCCATTGAGCAGAGCATCGGGCAGAAACTGCCAGACCT
CGCATCTCCCGATGCTCTCGAGCAGGTGAAGGCAATCTTCCGTGACCGCA
ATCATGCACTTCCAGATAAAGTGACCCTCCCCCGGCTGCTGGACGAGCTC
TGCAGCATCTACGTCGAACCTCAGTGCATCGACCCAACCTTCATCGTTAA
CCCGCCGGAGTGCTTATCACCGTTGTCTAAGTCCTTCATCCACCCCACCA
CCAACCAGCGCGTCGCCGCCCGCGGAGAGCTTTTCATCGAGGGCCGCGAA
GTCGTGAACACATACGAAGAGGAGAATTCGCCGTTCGAACAGCGTCGCAA
GTTTGAAGACCAGGTTCGGTACAGCAAGCAGGCTGACGAGGCGGAAGAGA
TCGACGAGAGCTACTTGAAGGCGCTGGAATGGGGTCTCCCTCCGACTGGC
GGCTGGGGATGCGGTATCGACCGTCTCTGCATGCTATTCACGGGCATGAC
GAGAATCGGGGACATTCTGCCTTTTGGCAACTTGCGCAAAGTGACCACGC
GTGCTGATGCAGCGGCCGAGAGTCAGGCTACCGAAGGGAAAGAAAACTAG
CCGTAACGGGTAATCCTCACCGGACTGAACGAGGTGAACTCACTGTTCTG
GCGACCGAATTACCGCAGCTTCTGTCGCCCTGTCTGCATGATATTCCCGT
TGATGCCCAAGGGCAGGAGAATTCGCCGTACCCTCGACATGTTCAATTCC
TTGCGGACCCGGAGACAGTAAATGTCATCAGAGCTAGATCGGCAGTTGTC
CAATATCTTCGCCAATTCTTTGTCGACCGCGCTTTTATGGAGGTTAATAC
GCCGATTATCGAAGCTGTTGCTGGCGGTGCAATTGCTCGTCCATTTCATA
CTACAGCCACCGAGTTTCCAGATCGCCAATTGTCGTTACGGATTGCGCCG
GAACTCTGGCTAAAGAGGTTGGTGGTAGGAGGGTTTGACCGGGTTTTTGA
GATTGGACCTTCGTTCCGCAATGAAGGTAGGGTACGTACCTTAAGACTTG
TTGGAGGCAATTTGATATTCTTCGACTTAGTTCATGATGGCCATAAAATT
CAAGTTATGTGCAATCGTCGTCGACTGAAGGATATCCCTCCGGCGACCTT
CAAGCAGTTCTACCGGATGCTTCGGCGTGGCGATGCCTTCTGGCAGGACT
TCCGATTTCCCGTACATCGCAGGCCTTTCAGACTTCTGGCAGGCTTGCTC
GAGTAATACAGCACACTCTTGCACCTCTGGTACAAACAAGGCATAACAGC
GTCGATGCGTATCCTGAGAAGGCGTTCAAGAGGCGTGTGCAATTGATCGA
AGAGGCTGTTGCTGAGTCGTATCCCCGGCTCGCGTCAAACAAGAACACGG
TGAGCTGTGCGGAATTTCGTGGCCGCTACAGCCATCTAGCAGATAATGAA
ATAGTAGAGGATGATACAGTTGTTATTAATGATGCAACCAATTCGCCCGT
TCAGGGCGTCGTCGTTGCGGGTTGGAGGTCTTTTGTCTAG
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Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Cellular Component
TermDefinition
GO:0005737cytoplasm
Vocabulary: Molecular Function
TermDefinition
GO:0003676nucleic acid binding
GO:0004812aminoacyl-tRNA ligase activity
GO:0000166nucleotide binding
GO:0004824lysine-tRNA ligase activity
GO:0005524ATP binding
Vocabulary: Biological Process
TermDefinition
GO:0006418tRNA aminoacylation for protein translation
GO:0006430lysyl-tRNA aminoacylation
Relationships

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

Feature NameUnique NameSpeciesType
ATCC64974_20150ATCC64974_20150Aspergillus niger N402gene


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

Feature NameUnique NameSpeciesType
ATCC64974_20150-T1ATCC64974_20150-T1-proteinAspergillus niger N402polypeptide


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

Feature NameUnique NameSpeciesType
ATCC64974_20150-T1.cdsATCC64974_20150-T1.cdsAspergillus niger N402CDS


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

Feature NameUnique NameSpeciesType
ATCC64974_20150-T1.exon5ATCC64974_20150-T1.exon5Aspergillus niger N402exon
ATCC64974_20150-T1.exon4ATCC64974_20150-T1.exon4Aspergillus niger N402exon
ATCC64974_20150-T1.exon3ATCC64974_20150-T1.exon3Aspergillus niger N402exon
ATCC64974_20150-T1.exon2ATCC64974_20150-T1.exon2Aspergillus niger N402exon
ATCC64974_20150-T1.exon1ATCC64974_20150-T1.exon1Aspergillus niger N402exon


Properties
Property NameValue
DBxrefInterPro:IPR012340
DBxrefInterPro:IPR006195
DBxrefInterPro:IPR004365
DBxrefInterPro:IPR004364
DBxrefInterPro:IPR002313
DBxrefInterPro:IPR018149
DBxrefPFAM:PF01336
DBxrefPFAM:PF00152
Producthypothetical protein
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
OGUI01000003.1supercontigOGUI01000003.1:2755291..2757443 -