You are here

CBS51388_004039-T1, CBS51388_004039-T1 (mRNA) Aspergillus niger CBS 513.88

Overview
NameCBS51388_004039-T1
Unique NameCBS51388_004039-T1
TypemRNA
OrganismAspergillus niger CBS 513.88
Sequences
The following sequences are available for this feature:

mRNA from alignment at An06:265050..268120+

Legend: polypeptideexonCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>CBS51388_004039-T1 ID=CBS51388_004039-T1|Name=CBS51388_004039-T1|organism=Aspergillus niger CBS 513.88|type=mRNA|length=3071bp|location=Sequence derived from alignment at An06:265050..268120+ (Aspergillus niger CBS 513.88)
ATGGCGTGAGTTTCTGGTTGCTTCACCGCTTGACCGTGGGAGCGGTTAGG ACTGATTTGTTTCGCTTGACAGGTCATCTGGCCCCAACGGCTCGAACAAC ACCATTAAGGGTGCGCATCAACTCCCCGCCGCGTCGTATACTTTTTTGAG TTTGGAGGTGATCTTAAAACTGACGGTTCACACACAGTGGTTGCGAGGTT CCGACCGCAAAACAAGGTTGAGTTGTCCTCTGGAGGAGAGCCGATTGTTG AATTCGAAAATGAGCAATCATGTTACGTTAATGTGAGCTTTTCTCTCGAC TTGTGAGGGTGTGGCATAGGAGGCAAGTTCGCCTAGTGGGCTAACTCAGT TCAGGCCCGTGATGGCTCTGGAGCCTTCACCTTCGACCGCGTGTTCCCTA TGGACTCGAAACAAACGGATATCTTCGACTTCTCGATTCGGCCCACCGTA GACGATATTCTGAACGGTTATAATGGAACGGTCTTCGCTTACGGTCAGAC GGGTGCAGGAAAGTCTTACACCATGATGGGTTCGGACATCGACGATGATA TTGGCAAGGGTATCATTCCCCGCATTGTCGAGCAGATCTTCGCCAGCATC CTCACCAGCCCAAGCAACATCGAGTACACCGTCCGCGTGAGTTACATGGA AATCTACATGGAACGAATTCGAGATTTGCTGGTGCCGCATAACGACAACC TTCCCGTTCACGAGGAGAAATCGAGAGGTGTCTATGTGAAGGGTCTCCTG GAGGTGTACGTGTCAAGCGTCCAGGAGGTGTACGAAGTCATGCGACGTGG TGGTACAGCAAGAGCGGTTGCGGCGACAAATATGAACCAGGAATCCTCTC GGTCCCACTCCATCTTCGTCATCACTGTTACACAGAAGAACCTGGAAACC GGCTCTGCGAAGAGCGGACAGCTGTTCTTGGTGGATCTGGCAGGTAGTGA GAAGGTTGGAAAGACGGGCGCCAGTGGTCAGACGCTCGAAGAAGCAAAGA AGATCAACAAGAGTTTAAGTGCTCTTGGTATGGTCATCAACGCGCTAACG GATGGCAAATCCACGCATATCCCGTACCGTGACTCCAAGCTCACGCGTAT TCTGCAAGAGAGTTTGGGAGGTAACTCGAGAACGACATTGATCATCAACT GCTCCCCCAGCAGCTACAACGACGCGGAAACCATCTCCACCCTGCGTTTC GGTGTGCGCGCCAAGGCAATCAAGAACAAGGCGAAGGTCAACGCCGAATT GAGCCCTTCGGAACTGAAGGCACTTTTGCGCAAGGCCCAGAGCCAGGTGA CGAATTTCGAAACATATATCTCACAACTTGAGACTGAAGTACACGTGTGG CGCAGTGGCGAGGCCGTTCCCAAGGATCGCTGGACTCCCGCCAGAGGGGA TGCTGTGAGCGCCGCGAAGGCCGAGGCTCGTGCACCACGGCCCGGTACGC CCTCCCGTTTCCAGGACACGCCTCGATCTGAGACTCCTCGTCCTGAGTCC AGGCTTGGCGATCGCTCTAGCACACCTAGCCTTGTTCTCGAGAAGGACGA GAGAGAGGAGTTCCTTAGACGCGAGAATGAGCTTCAGGACCAGATCGCGG AGAAGGAGTCGCACATCGCCAACGTCGAAAGAGGTCTCCGTGAGGCGCGG GAGGAGTTGAGGAGCATGAAAGAAAACTCCGCCCGCTCAGGCAAGGACAA CGATAAGTTGACCACCGAGGTCAATGAGCTTCGCATGCAGTTGGAGAAGG TGTCGTATGAAAGCAAGGAGGCCGCTATCACTATGGACAGCCTCCGCGAG GCGAACTCCGAGTTGACTACCGAGCTGGACGATGTTAAGCAGCAGCTCCT CGACGTCCGGATGAAGGCCAAGGAGACCAGTGCTGCACTGGACGAGAAGG AGAAGAAGAAGGCCGAGAAGATGGCGAAGATGATGGCCGGATTCGACTTG GGCGGTGACGTGTTCTCCGATAATGAACGCAAGCTTCAGGACTTGATCCA GCGGGTCGATTCCTTGCACAAGGTCAGCGAAGCCGGCGAGACGATCGCGC CTGACGACCTTATGGAGCTGCGGGCGAGTCTCCTGGAGACCCAAGGGTTC ATCCGTCAAGCCGAGCTCACGATGAACGACCGGGGAGATTTCAATGAGCT GCAGGACAGCCGTAGAGCGGAAGTTGAGCAGAAGCTGGCGAATCTCGAGC GGGACTATGAGAACCTTCTGGAGCGGAACCTGGGCGAAGGCGACGTGGAG GAAATCCGGGAGCGGTTGGAGAAGGTGTACGTGACCCGGAAGGAGGCCGA AATGCAGGCAGTCACGGACCTTAGGAACGAGATTGCACGCAAGGATGATG AGCTGGACAAGCTGCGCCAGTCCCTTGCAGACTCCCAATCCCGGGTCTCG ACCAACGGCGCAGCCGGCAAGAACCTGCAGCAGCAGATTGCCGACTTTGA TGCCATGAAGAAGTCGCTCATGCGCGACCTCCAGAACCGCTGCGAGCGCG TTGTGGAGCTTGAGATCTCGCTGGACGATGCTCGGGAGCAGTATAACAAC GTTCTCCGTTCGTCGAACAACCGGGCCCAGCAGAAGAAGATGGCGTTCCT GGAACGCAACCTGGAGCAGCTGACTCATGTGCAGCGGCAGCTGGTAGAAC AGAACAGCAGCCTGAAGAAGGAGGTTGCTATTGCGGAGAGAAAGCTCATT GCCCGGAACGAGCGGATTGCGAGCTTGGAGAGCCTGCTCCAGGAGAGCCA GGAGAAACTCACCCAAGCGAATCACCGGTACGACCCTCTCCACTCTTTTG ACAAAGGAACGAAAGCAGGTTGCTGACTAGATGATGATACAGATTTGAAG CCCAACTCACTGCGGTCAAAGAGCGACTCGAAGCTGCGAAGCAGGGCTCT ACGAGGGGTCTTCCAAGTATGGATGGCAGCGGCGGTTTCAGTTTTGGCGG CTCGAGAATCGCAAAGCCGCTCCGAGGCGGCGGCGGAGGAAACGAGAGCA GTGCTCCAGTTGCAGGAGTCCAGTCGCAGGAGACTGGGAAGCGTACCAGC TGGTTTTTTGATCGACGATGA
back to top

Coding sequence (CDS) from alignment at An06:265050..268120+

>CBS51388_004039-T1 ID=CBS51388_004039-T1|Name=CBS51388_004039-T1|organism=Aspergillus niger CBS 513.88|type=CDS|length=13950bp|location=Sequence derived from alignment at An06:265050..268120+ (Aspergillus niger CBS 513.88)
ATGGCGTCATCTGGCCCCAACGGCTCGAACAACACCATTAAGGTGGTTGC
GAGGTTCCGACCGCAAAACAAGGTTGAGTTGTCCTCTGGAGGAGAGCCGA
TTGTTGAATTCGAAAATGAGCAATCATGTTACGTTAATGCCCGTGATGGC
TCTGGAGCCTTCACCTTCGACCGCGTGTTCCCTATGGACTCGAAACAAAC
GGATATCTTCGACTTCTCGATTCGGCCCACCGTAGACGATATTCTGAACG
GTTATAATGGAACGGTCTTCGCTTACGGTCAGACGGGTGCAGGAAAGTCT
TACACCATGATGGGTTCGGACATCGACGATGATATTGGCAAGGGTATCAT
TCCCCGCATTGTCGAGCAGATCTTCGCCAGCATCCTCACCAGCCCAAGCA
ACATCGAGTACACCGTCCGCGTGAGTTACATGGAAATCTACATGGAACGA
ATTCGAGATTTGCTGGTGCCGCATAACGACAACCTTCCCGTTCACGAGGA
GAAATCGAGAGGTGTCTATGTGAAGGGTCTCCTGGAGGTGTACGTGTCAA
GCGTCCAGGAGGTGTACGAAGTCATGCGACGTGGTGGTACAGCAAGAGCG
GTTGCGGCGACAAATATGAACCAGGAATCCTCTCGGTCCCACTCCATCTT
CGTCATCACTGTTACACAGAAGAACCTGGAAACCGGCTCTGCGAAGAGCG
GACAGCTGTTCTTGGTGGATCTGGCAGGTAGTGAGAAGGTTGGAAAGACG
GGCGCCAGTGGTCAGACGCTCGAAGAAGCAAAGAAGATCAACAAGAGTTT
AAGTGCTCTTGGTATGGTCATCAACGCGCTAACGGATGGCAAATCCACGC
ATATCCCGTACCGTGACTCCAAGCTCACGCGTATTCTGCAAGAGAGTTTG
GGAGGTAACTCGAGAACGACATTGATCATCAACTGCTCCCCCAGCAGCTA
CAACGACGCGGAAACCATCTCCACCCTGCGTTTCGGTGTGCGCGCCAAGG
CAATCAAGAACAAGGCGAAGGTCAACGCCGAATTGAGCCCTTCGGAACTG
AAGGCACTTTTGCGCAAGGCCCAGAGCCAGGTGACGAATTTCGAAACATA
TATCTCACAACTTGAGACTGAAGTACACGTGTGGCGCAGTGGCGAGGCCG
TTCCCAAGGATCGCTGGACTCCCGCCAGAGGGGATGCTGTGAGCGCCGCG
AAGGCCGAGGCTCGTGCACCACGGCCCGGTACGCCCTCCCGTTTCCAGGA
CACGCCTCGATCTGAGACTCCTCGTCCTGAGTCCAGGCTTGGCGATCGCT
CTAGCACACCTAGCCTTGTTCTCGAGAAGGACGAGAGAGAGGAGTTCCTT
AGACGCGAGAATGAGCTTCAGGACCAGATCGCGGAGAAGGAGTCGCACAT
CGCCAACGTCGAAAGAGGTCTCCGTGAGGCGCGGGAGGAGTTGAGGAGCA
TGAAAGAAAACTCCGCCCGCTCAGGCAAGGACAACGATAAGTTGACCACC
GAGGTCAATGAGCTTCGCATGCAGTTGGAGAAGGTGTCGTATGAAAGCAA
GGAGGCCGCTATCACTATGGACAGCCTCCGCGAGGCGAACTCCGAGTTGA
CTACCGAGCTGGACGATGTTAAGCAGCAGCTCCTCGACGTCCGGATGAAG
GCCAAGGAGACCAGTGCTGCACTGGACGAGAAGGAGAAGAAGAAGGCCGA
GAAGATGGCGAAGATGATGGCCGGATTCGACTTGGGCGGTGACGTGTTCT
CCGATAATGAACGCAAGCTTCAGGACTTGATCCAGCGGGTCGATTCCTTG
CACAAGGTCAGCGAAGCCGGCGAGACGATCGCGCCTGACGACCTTATGGA
GCTGCGGGCGAGTCTCCTGGAGACCCAAGGGTTCATCCGTCAAGCCGAGC
TCACGATGAACGACCGGGGAGATTTCAATGAGCTGCAGGACAGCCGTAGA
GCGGAAGTTGAGCAGAAGCTGGCGAATCTCGAGCGGGACTATGAGAACCT
TCTGGAGCGGAACCTGGGCGAAGGCGACGTGGAGGAAATCCGGGAGCGGT
TGGAGAAGGTGTACGTGACCCGGAAGGAGGCCGAAATGCAGGCAGTCACG
GACCTTAGGAACGAGATTGCACGCAAGGATGATGAGCTGGACAAGCTGCG
CCAGTCCCTTGCAGACTCCCAATCCCGGGTCTCGACCAACGGCGCAGCCG
GCAAGAACCTGCAGCAGCAGATTGCCGACTTTGATGCCATGAAGAAGTCG
CTCATGCGCGACCTCCAGAACCGCTGCGAGCGCGTTGTGGAGCTTGAGAT
CTCGCTGGACGATGCTCGGGAGCAGTATAACAACGTTCTCCGTTCGTCGA
ACAACCGGGCCCAGCAGAAGAAGATGGCGTTCCTGGAACGCAACCTGGAG
CAGCTGACTCATGTGCAGCGGCAGCTGGTAGAACAGAACAGCAGCCTGAA
GAAGGAGGTTGCTATTGCGGAGAGAAAGCTCATTGCCCGGAACGAGCGGA
TTGCGAGCTTGGAGAGCCTGCTCCAGGAGAGCCAGGAGAAACTCACCCAA
GCGAATCACCGATTTGAAGCCCAACTCACTGCGGTCAAAGAGCGACTCGA
AGCTGCGAAGCAGGGCTCTACGAGGGGTCTTCCAAGTATGGATGGCAGCG
GCGGTTTCAGTTTTGGCGGCTCGAGAATCGCAAAGCCGCTCCGAGGCGGC
GGCGGAGGAAACGAGAGCAGTGCTCCAGTTGCAGGAGTCCAGTCGCAGGA
GACTGGGAAGCGTACCAGCTGGTTTTTTGATCGACGATGAATGGCGTCAT
CTGGCCCCAACGGCTCGAACAACACCATTAAGGTGGTTGCGAGGTTCCGA
CCGCAAAACAAGGTTGAGTTGTCCTCTGGAGGAGAGCCGATTGTTGAATT
CGAAAATGAGCAATCATGTTACGTTAATGCCCGTGATGGCTCTGGAGCCT
TCACCTTCGACCGCGTGTTCCCTATGGACTCGAAACAAACGGATATCTTC
GACTTCTCGATTCGGCCCACCGTAGACGATATTCTGAACGGTTATAATGG
AACGGTCTTCGCTTACGGTCAGACGGGTGCAGGAAAGTCTTACACCATGA
TGGGTTCGGACATCGACGATGATATTGGCAAGGGTATCATTCCCCGCATT
GTCGAGCAGATCTTCGCCAGCATCCTCACCAGCCCAAGCAACATCGAGTA
CACCGTCCGCGTGAGTTACATGGAAATCTACATGGAACGAATTCGAGATT
TGCTGGTGCCGCATAACGACAACCTTCCCGTTCACGAGGAGAAATCGAGA
GGTGTCTATGTGAAGGGTCTCCTGGAGGTGTACGTGTCAAGCGTCCAGGA
GGTGTACGAAGTCATGCGACGTGGTGGTACAGCAAGAGCGGTTGCGGCGA
CAAATATGAACCAGGAATCCTCTCGGTCCCACTCCATCTTCGTCATCACT
GTTACACAGAAGAACCTGGAAACCGGCTCTGCGAAGAGCGGACAGCTGTT
CTTGGTGGATCTGGCAGGTAGTGAGAAGGTTGGAAAGACGGGCGCCAGTG
GTCAGACGCTCGAAGAAGCAAAGAAGATCAACAAGAGTTTAAGTGCTCTT
GGTATGGTCATCAACGCGCTAACGGATGGCAAATCCACGCATATCCCGTA
CCGTGACTCCAAGCTCACGCGTATTCTGCAAGAGAGTTTGGGAGGTAACT
CGAGAACGACATTGATCATCAACTGCTCCCCCAGCAGCTACAACGACGCG
GAAACCATCTCCACCCTGCGTTTCGGTGTGCGCGCCAAGGCAATCAAGAA
CAAGGCGAAGGTCAACGCCGAATTGAGCCCTTCGGAACTGAAGGCACTTT
TGCGCAAGGCCCAGAGCCAGGTGACGAATTTCGAAACATATATCTCACAA
CTTGAGACTGAAGTACACGTGTGGCGCAGTGGCGAGGCCGTTCCCAAGGA
TCGCTGGACTCCCGCCAGAGGGGATGCTGTGAGCGCCGCGAAGGCCGAGG
CTCGTGCACCACGGCCCGGTACGCCCTCCCGTTTCCAGGACACGCCTCGA
TCTGAGACTCCTCGTCCTGAGTCCAGGCTTGGCGATCGCTCTAGCACACC
TAGCCTTGTTCTCGAGAAGGACGAGAGAGAGGAGTTCCTTAGACGCGAGA
ATGAGCTTCAGGACCAGATCGCGGAGAAGGAGTCGCACATCGCCAACGTC
GAAAGAGGTCTCCGTGAGGCGCGGGAGGAGTTGAGGAGCATGAAAGAAAA
CTCCGCCCGCTCAGGCAAGGACAACGATAAGTTGACCACCGAGGTCAATG
AGCTTCGCATGCAGTTGGAGAAGGTGTCGTATGAAAGCAAGGAGGCCGCT
ATCACTATGGACAGCCTCCGCGAGGCGAACTCCGAGTTGACTACCGAGCT
GGACGATGTTAAGCAGCAGCTCCTCGACGTCCGGATGAAGGCCAAGGAGA
CCAGTGCTGCACTGGACGAGAAGGAGAAGAAGAAGGCCGAGAAGATGGCG
AAGATGATGGCCGGATTCGACTTGGGCGGTGACGTGTTCTCCGATAATGA
ACGCAAGCTTCAGGACTTGATCCAGCGGGTCGATTCCTTGCACAAGGTCA
GCGAAGCCGGCGAGACGATCGCGCCTGACGACCTTATGGAGCTGCGGGCG
AGTCTCCTGGAGACCCAAGGGTTCATCCGTCAAGCCGAGCTCACGATGAA
CGACCGGGGAGATTTCAATGAGCTGCAGGACAGCCGTAGAGCGGAAGTTG
AGCAGAAGCTGGCGAATCTCGAGCGGGACTATGAGAACCTTCTGGAGCGG
AACCTGGGCGAAGGCGACGTGGAGGAAATCCGGGAGCGGTTGGAGAAGGT
GTACGTGACCCGGAAGGAGGCCGAAATGCAGGCAGTCACGGACCTTAGGA
ACGAGATTGCACGCAAGGATGATGAGCTGGACAAGCTGCGCCAGTCCCTT
GCAGACTCCCAATCCCGGGTCTCGACCAACGGCGCAGCCGGCAAGAACCT
GCAGCAGCAGATTGCCGACTTTGATGCCATGAAGAAGTCGCTCATGCGCG
ACCTCCAGAACCGCTGCGAGCGCGTTGTGGAGCTTGAGATCTCGCTGGAC
GATGCTCGGGAGCAGTATAACAACGTTCTCCGTTCGTCGAACAACCGGGC
CCAGCAGAAGAAGATGGCGTTCCTGGAACGCAACCTGGAGCAGCTGACTC
ATGTGCAGCGGCAGCTGGTAGAACAGAACAGCAGCCTGAAGAAGGAGGTT
GCTATTGCGGAGAGAAAGCTCATTGCCCGGAACGAGCGGATTGCGAGCTT
GGAGAGCCTGCTCCAGGAGAGCCAGGAGAAACTCACCCAAGCGAATCACC
GATTTGAAGCCCAACTCACTGCGGTCAAAGAGCGACTCGAAGCTGCGAAG
CAGGGCTCTACGAGGGGTCTTCCAAGTATGGATGGCAGCGGCGGTTTCAG
TTTTGGCGGCTCGAGAATCGCAAAGCCGCTCCGAGGCGGCGGCGGAGGAA
ACGAGAGCAGTGCTCCAGTTGCAGGAGTCCAGTCGCAGGAGACTGGGAAG
CGTACCAGCTGGTTTTTTGATCGACGATGAATGGCGTCATCTGGCCCCAA
CGGCTCGAACAACACCATTAAGGTGGTTGCGAGGTTCCGACCGCAAAACA
AGGTTGAGTTGTCCTCTGGAGGAGAGCCGATTGTTGAATTCGAAAATGAG
CAATCATGTTACGTTAATGCCCGTGATGGCTCTGGAGCCTTCACCTTCGA
CCGCGTGTTCCCTATGGACTCGAAACAAACGGATATCTTCGACTTCTCGA
TTCGGCCCACCGTAGACGATATTCTGAACGGTTATAATGGAACGGTCTTC
GCTTACGGTCAGACGGGTGCAGGAAAGTCTTACACCATGATGGGTTCGGA
CATCGACGATGATATTGGCAAGGGTATCATTCCCCGCATTGTCGAGCAGA
TCTTCGCCAGCATCCTCACCAGCCCAAGCAACATCGAGTACACCGTCCGC
GTGAGTTACATGGAAATCTACATGGAACGAATTCGAGATTTGCTGGTGCC
GCATAACGACAACCTTCCCGTTCACGAGGAGAAATCGAGAGGTGTCTATG
TGAAGGGTCTCCTGGAGGTGTACGTGTCAAGCGTCCAGGAGGTGTACGAA
GTCATGCGACGTGGTGGTACAGCAAGAGCGGTTGCGGCGACAAATATGAA
CCAGGAATCCTCTCGGTCCCACTCCATCTTCGTCATCACTGTTACACAGA
AGAACCTGGAAACCGGCTCTGCGAAGAGCGGACAGCTGTTCTTGGTGGAT
CTGGCAGGTAGTGAGAAGGTTGGAAAGACGGGCGCCAGTGGTCAGACGCT
CGAAGAAGCAAAGAAGATCAACAAGAGTTTAAGTGCTCTTGGTATGGTCA
TCAACGCGCTAACGGATGGCAAATCCACGCATATCCCGTACCGTGACTCC
AAGCTCACGCGTATTCTGCAAGAGAGTTTGGGAGGTAACTCGAGAACGAC
ATTGATCATCAACTGCTCCCCCAGCAGCTACAACGACGCGGAAACCATCT
CCACCCTGCGTTTCGGTGTGCGCGCCAAGGCAATCAAGAACAAGGCGAAG
GTCAACGCCGAATTGAGCCCTTCGGAACTGAAGGCACTTTTGCGCAAGGC
CCAGAGCCAGGTGACGAATTTCGAAACATATATCTCACAACTTGAGACTG
AAGTACACGTGTGGCGCAGTGGCGAGGCCGTTCCCAAGGATCGCTGGACT
CCCGCCAGAGGGGATGCTGTGAGCGCCGCGAAGGCCGAGGCTCGTGCACC
ACGGCCCGGTACGCCCTCCCGTTTCCAGGACACGCCTCGATCTGAGACTC
CTCGTCCTGAGTCCAGGCTTGGCGATCGCTCTAGCACACCTAGCCTTGTT
CTCGAGAAGGACGAGAGAGAGGAGTTCCTTAGACGCGAGAATGAGCTTCA
GGACCAGATCGCGGAGAAGGAGTCGCACATCGCCAACGTCGAAAGAGGTC
TCCGTGAGGCGCGGGAGGAGTTGAGGAGCATGAAAGAAAACTCCGCCCGC
TCAGGCAAGGACAACGATAAGTTGACCACCGAGGTCAATGAGCTTCGCAT
GCAGTTGGAGAAGGTGTCGTATGAAAGCAAGGAGGCCGCTATCACTATGG
ACAGCCTCCGCGAGGCGAACTCCGAGTTGACTACCGAGCTGGACGATGTT
AAGCAGCAGCTCCTCGACGTCCGGATGAAGGCCAAGGAGACCAGTGCTGC
ACTGGACGAGAAGGAGAAGAAGAAGGCCGAGAAGATGGCGAAGATGATGG
CCGGATTCGACTTGGGCGGTGACGTGTTCTCCGATAATGAACGCAAGCTT
CAGGACTTGATCCAGCGGGTCGATTCCTTGCACAAGGTCAGCGAAGCCGG
CGAGACGATCGCGCCTGACGACCTTATGGAGCTGCGGGCGAGTCTCCTGG
AGACCCAAGGGTTCATCCGTCAAGCCGAGCTCACGATGAACGACCGGGGA
GATTTCAATGAGCTGCAGGACAGCCGTAGAGCGGAAGTTGAGCAGAAGCT
GGCGAATCTCGAGCGGGACTATGAGAACCTTCTGGAGCGGAACCTGGGCG
AAGGCGACGTGGAGGAAATCCGGGAGCGGTTGGAGAAGGTGTACGTGACC
CGGAAGGAGGCCGAAATGCAGGCAGTCACGGACCTTAGGAACGAGATTGC
ACGCAAGGATGATGAGCTGGACAAGCTGCGCCAGTCCCTTGCAGACTCCC
AATCCCGGGTCTCGACCAACGGCGCAGCCGGCAAGAACCTGCAGCAGCAG
ATTGCCGACTTTGATGCCATGAAGAAGTCGCTCATGCGCGACCTCCAGAA
CCGCTGCGAGCGCGTTGTGGAGCTTGAGATCTCGCTGGACGATGCTCGGG
AGCAGTATAACAACGTTCTCCGTTCGTCGAACAACCGGGCCCAGCAGAAG
AAGATGGCGTTCCTGGAACGCAACCTGGAGCAGCTGACTCATGTGCAGCG
GCAGCTGGTAGAACAGAACAGCAGCCTGAAGAAGGAGGTTGCTATTGCGG
AGAGAAAGCTCATTGCCCGGAACGAGCGGATTGCGAGCTTGGAGAGCCTG
CTCCAGGAGAGCCAGGAGAAACTCACCCAAGCGAATCACCGATTTGAAGC
CCAACTCACTGCGGTCAAAGAGCGACTCGAAGCTGCGAAGCAGGGCTCTA
CGAGGGGTCTTCCAAGTATGGATGGCAGCGGCGGTTTCAGTTTTGGCGGC
TCGAGAATCGCAAAGCCGCTCCGAGGCGGCGGCGGAGGAAACGAGAGCAG
TGCTCCAGTTGCAGGAGTCCAGTCGCAGGAGACTGGGAAGCGTACCAGCT
GGTTTTTTGATCGACGATGAATGGCGTCATCTGGCCCCAACGGCTCGAAC
AACACCATTAAGGTGGTTGCGAGGTTCCGACCGCAAAACAAGGTTGAGTT
GTCCTCTGGAGGAGAGCCGATTGTTGAATTCGAAAATGAGCAATCATGTT
ACGTTAATGCCCGTGATGGCTCTGGAGCCTTCACCTTCGACCGCGTGTTC
CCTATGGACTCGAAACAAACGGATATCTTCGACTTCTCGATTCGGCCCAC
CGTAGACGATATTCTGAACGGTTATAATGGAACGGTCTTCGCTTACGGTC
AGACGGGTGCAGGAAAGTCTTACACCATGATGGGTTCGGACATCGACGAT
GATATTGGCAAGGGTATCATTCCCCGCATTGTCGAGCAGATCTTCGCCAG
CATCCTCACCAGCCCAAGCAACATCGAGTACACCGTCCGCGTGAGTTACA
TGGAAATCTACATGGAACGAATTCGAGATTTGCTGGTGCCGCATAACGAC
AACCTTCCCGTTCACGAGGAGAAATCGAGAGGTGTCTATGTGAAGGGTCT
CCTGGAGGTGTACGTGTCAAGCGTCCAGGAGGTGTACGAAGTCATGCGAC
GTGGTGGTACAGCAAGAGCGGTTGCGGCGACAAATATGAACCAGGAATCC
TCTCGGTCCCACTCCATCTTCGTCATCACTGTTACACAGAAGAACCTGGA
AACCGGCTCTGCGAAGAGCGGACAGCTGTTCTTGGTGGATCTGGCAGGTA
GTGAGAAGGTTGGAAAGACGGGCGCCAGTGGTCAGACGCTCGAAGAAGCA
AAGAAGATCAACAAGAGTTTAAGTGCTCTTGGTATGGTCATCAACGCGCT
AACGGATGGCAAATCCACGCATATCCCGTACCGTGACTCCAAGCTCACGC
GTATTCTGCAAGAGAGTTTGGGAGGTAACTCGAGAACGACATTGATCATC
AACTGCTCCCCCAGCAGCTACAACGACGCGGAAACCATCTCCACCCTGCG
TTTCGGTGTGCGCGCCAAGGCAATCAAGAACAAGGCGAAGGTCAACGCCG
AATTGAGCCCTTCGGAACTGAAGGCACTTTTGCGCAAGGCCCAGAGCCAG
GTGACGAATTTCGAAACATATATCTCACAACTTGAGACTGAAGTACACGT
GTGGCGCAGTGGCGAGGCCGTTCCCAAGGATCGCTGGACTCCCGCCAGAG
GGGATGCTGTGAGCGCCGCGAAGGCCGAGGCTCGTGCACCACGGCCCGGT
ACGCCCTCCCGTTTCCAGGACACGCCTCGATCTGAGACTCCTCGTCCTGA
GTCCAGGCTTGGCGATCGCTCTAGCACACCTAGCCTTGTTCTCGAGAAGG
ACGAGAGAGAGGAGTTCCTTAGACGCGAGAATGAGCTTCAGGACCAGATC
GCGGAGAAGGAGTCGCACATCGCCAACGTCGAAAGAGGTCTCCGTGAGGC
GCGGGAGGAGTTGAGGAGCATGAAAGAAAACTCCGCCCGCTCAGGCAAGG
ACAACGATAAGTTGACCACCGAGGTCAATGAGCTTCGCATGCAGTTGGAG
AAGGTGTCGTATGAAAGCAAGGAGGCCGCTATCACTATGGACAGCCTCCG
CGAGGCGAACTCCGAGTTGACTACCGAGCTGGACGATGTTAAGCAGCAGC
TCCTCGACGTCCGGATGAAGGCCAAGGAGACCAGTGCTGCACTGGACGAG
AAGGAGAAGAAGAAGGCCGAGAAGATGGCGAAGATGATGGCCGGATTCGA
CTTGGGCGGTGACGTGTTCTCCGATAATGAACGCAAGCTTCAGGACTTGA
TCCAGCGGGTCGATTCCTTGCACAAGGTCAGCGAAGCCGGCGAGACGATC
GCGCCTGACGACCTTATGGAGCTGCGGGCGAGTCTCCTGGAGACCCAAGG
GTTCATCCGTCAAGCCGAGCTCACGATGAACGACCGGGGAGATTTCAATG
AGCTGCAGGACAGCCGTAGAGCGGAAGTTGAGCAGAAGCTGGCGAATCTC
GAGCGGGACTATGAGAACCTTCTGGAGCGGAACCTGGGCGAAGGCGACGT
GGAGGAAATCCGGGAGCGGTTGGAGAAGGTGTACGTGACCCGGAAGGAGG
CCGAAATGCAGGCAGTCACGGACCTTAGGAACGAGATTGCACGCAAGGAT
GATGAGCTGGACAAGCTGCGCCAGTCCCTTGCAGACTCCCAATCCCGGGT
CTCGACCAACGGCGCAGCCGGCAAGAACCTGCAGCAGCAGATTGCCGACT
TTGATGCCATGAAGAAGTCGCTCATGCGCGACCTCCAGAACCGCTGCGAG
CGCGTTGTGGAGCTTGAGATCTCGCTGGACGATGCTCGGGAGCAGTATAA
CAACGTTCTCCGTTCGTCGAACAACCGGGCCCAGCAGAAGAAGATGGCGT
TCCTGGAACGCAACCTGGAGCAGCTGACTCATGTGCAGCGGCAGCTGGTA
GAACAGAACAGCAGCCTGAAGAAGGAGGTTGCTATTGCGGAGAGAAAGCT
CATTGCCCGGAACGAGCGGATTGCGAGCTTGGAGAGCCTGCTCCAGGAGA
GCCAGGAGAAACTCACCCAAGCGAATCACCGATTTGAAGCCCAACTCACT
GCGGTCAAAGAGCGACTCGAAGCTGCGAAGCAGGGCTCTACGAGGGGTCT
TCCAAGTATGGATGGCAGCGGCGGTTTCAGTTTTGGCGGCTCGAGAATCG
CAAAGCCGCTCCGAGGCGGCGGCGGAGGAAACGAGAGCAGTGCTCCAGTT
GCAGGAGTCCAGTCGCAGGAGACTGGGAAGCGTACCAGCTGGTTTTTTGA
TCGACGATGAATGGCGTCATCTGGCCCCAACGGCTCGAACAACACCATTA
AGGTGGTTGCGAGGTTCCGACCGCAAAACAAGGTTGAGTTGTCCTCTGGA
GGAGAGCCGATTGTTGAATTCGAAAATGAGCAATCATGTTACGTTAATGC
CCGTGATGGCTCTGGAGCCTTCACCTTCGACCGCGTGTTCCCTATGGACT
CGAAACAAACGGATATCTTCGACTTCTCGATTCGGCCCACCGTAGACGAT
ATTCTGAACGGTTATAATGGAACGGTCTTCGCTTACGGTCAGACGGGTGC
AGGAAAGTCTTACACCATGATGGGTTCGGACATCGACGATGATATTGGCA
AGGGTATCATTCCCCGCATTGTCGAGCAGATCTTCGCCAGCATCCTCACC
AGCCCAAGCAACATCGAGTACACCGTCCGCGTGAGTTACATGGAAATCTA
CATGGAACGAATTCGAGATTTGCTGGTGCCGCATAACGACAACCTTCCCG
TTCACGAGGAGAAATCGAGAGGTGTCTATGTGAAGGGTCTCCTGGAGGTG
TACGTGTCAAGCGTCCAGGAGGTGTACGAAGTCATGCGACGTGGTGGTAC
AGCAAGAGCGGTTGCGGCGACAAATATGAACCAGGAATCCTCTCGGTCCC
ACTCCATCTTCGTCATCACTGTTACACAGAAGAACCTGGAAACCGGCTCT
GCGAAGAGCGGACAGCTGTTCTTGGTGGATCTGGCAGGTAGTGAGAAGGT
TGGAAAGACGGGCGCCAGTGGTCAGACGCTCGAAGAAGCAAAGAAGATCA
ACAAGAGTTTAAGTGCTCTTGGTATGGTCATCAACGCGCTAACGGATGGC
AAATCCACGCATATCCCGTACCGTGACTCCAAGCTCACGCGTATTCTGCA
AGAGAGTTTGGGAGGTAACTCGAGAACGACATTGATCATCAACTGCTCCC
CCAGCAGCTACAACGACGCGGAAACCATCTCCACCCTGCGTTTCGGTGTG
CGCGCCAAGGCAATCAAGAACAAGGCGAAGGTCAACGCCGAATTGAGCCC
TTCGGAACTGAAGGCACTTTTGCGCAAGGCCCAGAGCCAGGTGACGAATT
TCGAAACATATATCTCACAACTTGAGACTGAAGTACACGTGTGGCGCAGT
GGCGAGGCCGTTCCCAAGGATCGCTGGACTCCCGCCAGAGGGGATGCTGT
GAGCGCCGCGAAGGCCGAGGCTCGTGCACCACGGCCCGGTACGCCCTCCC
GTTTCCAGGACACGCCTCGATCTGAGACTCCTCGTCCTGAGTCCAGGCTT
GGCGATCGCTCTAGCACACCTAGCCTTGTTCTCGAGAAGGACGAGAGAGA
GGAGTTCCTTAGACGCGAGAATGAGCTTCAGGACCAGATCGCGGAGAAGG
AGTCGCACATCGCCAACGTCGAAAGAGGTCTCCGTGAGGCGCGGGAGGAG
TTGAGGAGCATGAAAGAAAACTCCGCCCGCTCAGGCAAGGACAACGATAA
GTTGACCACCGAGGTCAATGAGCTTCGCATGCAGTTGGAGAAGGTGTCGT
ATGAAAGCAAGGAGGCCGCTATCACTATGGACAGCCTCCGCGAGGCGAAC
TCCGAGTTGACTACCGAGCTGGACGATGTTAAGCAGCAGCTCCTCGACGT
CCGGATGAAGGCCAAGGAGACCAGTGCTGCACTGGACGAGAAGGAGAAGA
AGAAGGCCGAGAAGATGGCGAAGATGATGGCCGGATTCGACTTGGGCGGT
GACGTGTTCTCCGATAATGAACGCAAGCTTCAGGACTTGATCCAGCGGGT
CGATTCCTTGCACAAGGTCAGCGAAGCCGGCGAGACGATCGCGCCTGACG
ACCTTATGGAGCTGCGGGCGAGTCTCCTGGAGACCCAAGGGTTCATCCGT
CAAGCCGAGCTCACGATGAACGACCGGGGAGATTTCAATGAGCTGCAGGA
CAGCCGTAGAGCGGAAGTTGAGCAGAAGCTGGCGAATCTCGAGCGGGACT
ATGAGAACCTTCTGGAGCGGAACCTGGGCGAAGGCGACGTGGAGGAAATC
CGGGAGCGGTTGGAGAAGGTGTACGTGACCCGGAAGGAGGCCGAAATGCA
GGCAGTCACGGACCTTAGGAACGAGATTGCACGCAAGGATGATGAGCTGG
ACAAGCTGCGCCAGTCCCTTGCAGACTCCCAATCCCGGGTCTCGACCAAC
GGCGCAGCCGGCAAGAACCTGCAGCAGCAGATTGCCGACTTTGATGCCAT
GAAGAAGTCGCTCATGCGCGACCTCCAGAACCGCTGCGAGCGCGTTGTGG
AGCTTGAGATCTCGCTGGACGATGCTCGGGAGCAGTATAACAACGTTCTC
CGTTCGTCGAACAACCGGGCCCAGCAGAAGAAGATGGCGTTCCTGGAACG
CAACCTGGAGCAGCTGACTCATGTGCAGCGGCAGCTGGTAGAACAGAACA
GCAGCCTGAAGAAGGAGGTTGCTATTGCGGAGAGAAAGCTCATTGCCCGG
AACGAGCGGATTGCGAGCTTGGAGAGCCTGCTCCAGGAGAGCCAGGAGAA
ACTCACCCAAGCGAATCACCGATTTGAAGCCCAACTCACTGCGGTCAAAG
AGCGACTCGAAGCTGCGAAGCAGGGCTCTACGAGGGGTCTTCCAAGTATG
GATGGCAGCGGCGGTTTCAGTTTTGGCGGCTCGAGAATCGCAAAGCCGCT
CCGAGGCGGCGGCGGAGGAAACGAGAGCAGTGCTCCAGTTGCAGGAGTCC
AGTCGCAGGAGACTGGGAAGCGTACCAGCTGGTTTTTTGATCGACGATGA
back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
TermDefinition
GO:0007018microtubule-based movement
Vocabulary: Molecular Function
TermDefinition
GO:0008017microtubule binding
GO:0003777microtubule motor activity
GO:0005524ATP binding
Relationships

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

Feature NameUnique NameSpeciesType
KLP1CBS51388_004039Aspergillus niger CBS 513.88gene


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

Feature NameUnique NameSpeciesType
CBS51388_004039-T1CBS51388_004039-T1-proteinAspergillus niger CBS 513.88polypeptide


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

Feature NameUnique NameSpeciesType
CBS51388_004039-T1.exon1CBS51388_004039-T1.exon1Aspergillus niger CBS 513.88exon
CBS51388_004039-T1.exon2CBS51388_004039-T1.exon2Aspergillus niger CBS 513.88exon
CBS51388_004039-T1.exon3CBS51388_004039-T1.exon3Aspergillus niger CBS 513.88exon
CBS51388_004039-T1.exon4CBS51388_004039-T1.exon4Aspergillus niger CBS 513.88exon
CBS51388_004039-T1.exon5CBS51388_004039-T1.exon5Aspergillus niger CBS 513.88exon


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

Feature NameUnique NameSpeciesType
CBS51388_004039-T1.cdsCBS51388_004039-T1.cdsAspergillus niger CBS 513.88CDS


Properties
Property NameValue
DBxrefInterPro:IPR027417
DBxrefInterPro:IPR019821
DBxrefInterPro:IPR036961
DBxrefInterPro:IPR001752
DBxrefPFAM:PF16796
DBxrefPFAM:PF00225
ProductKinesin heavy chain
Analyses
This mRNA is derived from or has results from the following analyses
Analysis NameDate Performed
Aspergillus niger CBS 513.88 whole genome analysis2021-11-01
Alignments
The following features are aligned
Aligned FeatureFeature TypeAlignment Location
An06supercontigAn06:265050..268120 +