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Sequences
The following sequences are available for this feature:
mRNA from alignment at KZ851965.1:62328..64489- Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below. >M747DRAFT_300076-T1 ID=M747DRAFT_300076-T1|Name=M747DRAFT_300076-T1|organism=Aspergillus niger ATCC 13496|type=mRNA|length=2162bp|location=Sequence derived from alignment at KZ851965.1:62328..64489- (Aspergillus niger ATCC 13496) TCTCATTCAAACGCTGGTTGCTCAATACTGACATTCAACCTCGCTATAGC
CATTTGCCGTCTAAAGTATATACTACCGATCTATCTGCGTGCTACCCCAC
CATCAATTCATTCACAATGTGCCCCGGTGCAGACCACGAGCCCAATGGGC
AGGCCAACGTCGCCAATGGCAATGGCAACAACGGTATGATTTCAACTCGC
AAACACATGAACTGCAAATGCCTATGCTAACCAATACCTTTTCAGGTGAA
CACCCCGGCTTCACTGCCGTTGAGACTCGCCAGAACCCCCACCCCTCCGT
CTCTCGGAACCCCTACGGCCACAACGTCGGTGTCACCGACTTCCTGAGCA
ACGTCTCTCGCTTCCAGATCATCGAGAGTACCCTGCGTGAGGGTGAGCAG
TTCGCCAACGCTTTCTTCGACACTGAGAAGAAGATCGAAATCGCCAAGGC
CCTCGATGAGTTCGGTGTTGACTACGTGAGTCATACCCCGGTGGATCACA
TCACAATGCCGGAGAGCGTGCACTGACCACCACCTTAGATTGAGCTTACC
AGCCCCTGCGCTTCCGAGCAGTCGAGAAAGGACTGTGAGGCCATCTGCAA
GCTTGGCCTGAAGGCTAAGGTATGTTACACCTGTTCACTGCGAGTTATGC
GTCATCCGGCTAATTTTCGATTCAGATCCTTACTCACATCCGTTGCCACA
TGGACGATGCTCGCATTGCTGTCGAGACCGGTGTCGATGGAGTGTAAGTG
CTGTTTTTTTGTCTTGTATATGCCATGTTCGACTGCTAACAGCTCCGGAC
AGCGATGTTGTCATTGGAACCTCCTCTTACCTCCGTGAGCACTCCCACGG
CAAGGACATGACCTACATCAAGAACACCGCCATCGAAGTCATCGAATTCG
TCAAGTCCAAGGGCATTGAGATCCGTTTCTCCAGTGAGGACTCTTTCCGC
TCTGACCTCGTCGATCTCCTGTCCATCTACTCGGCCGTCGACAAGGTCGG
TGTTAACCGTGTTGGTATCGCCGATACCGTCGGCTGCGCTTCTCCCCGTC
AGGTCTACGAGCTTGTCCGTGTCCTGAGGGGTGTTGTTAGCTGTGACATC
GAAACCCACTTCCACAACGACACTGGTTGCGCTATTGCCAACGCTTACTG
TGCCCTGGAGGCTGGTGCCACCCACATTGACACCTCCGTCCTCGGTATCG
GTGAGCGTAACGGTATCACTCCCCTCGGTGGTCTCATGGCCCGCATGATG
GTTGCCGACCCCGAGTACGTCAAGAGCAAGTACAGGTTGGAGAAGCTCAA
GGATATCGAGGACCTCGTTGCCGAGGCCGTTGAGGTCAACATCCCCTTCA
ACAACTACATCACCGGTTTCTGCGCTTTCACCCACAAGGCCGGTATCCAC
GCCAAGGCCATCCTCAACAACCCCAGCACCTACGAGATCATCAACCCCGC
CGACTTCGGCATGTCTCGTTATGTCCACTTCGCTTCTCGTCTGACCGGCT
GGAACGCCATCAAGTCGCGTGCCCAGCAGCTCAAGATCGAGATGACCGAT
GACCAGTACAAGGAGTGCACGGCCAAGATCAAGGCTCTGGCCGATATCCG
CCCCATTGCTGTCGATGATGCCGACAGTATCATCCGTGCCTACTACCGCA
ACCTCAAGCTGGGCGAGAACAAGCCCCTCCTGGACCTCACGGCCGACGAG
CAGGCTCAGTTCGCTGCCAAGGAGAAGGAGCTCGCTGCTCAGGCTTCTGC
CTAAGCCAGGCGATCGAAATCGATCTCTGGCCTAGGGTCTCCTTTCTAAT
CATGCATTTATTCCAACCGGGATAGACGTTTCTTGTCCTTATTATTAGAG
CTTTGATGTTTCCTATTCCCTTACTCTTTTAGCGGCTCCCTTGGCGGAGG
ACGTTCTTGTTTGCGCCTGCTGGTTTCATGATTGGATGTTTATGTGTTCT
CAGGATGGTTTCTTTGATTTCCACGGGGTTTTCAAAAGTTGTTCCTTGTC
TCTGATGGAAAAAAGGGAGGGGAGGCCGGTGTTAGGAGAGCCCTTGGTCC
TTGCGTAGGACCGTGTACATACGCAGAATTTCGATGCCATATGCATCTAT
CCTACAATATACGGGATACATACCAAAGATAAAATGTGTGGCTGTTATAG
ATCTAGTGAGAG back to topCoding sequence (CDS) from alignment at KZ851965.1:62328..64489- >M747DRAFT_300076-T1 ID=M747DRAFT_300076-T1|Name=M747DRAFT_300076-T1|organism=Aspergillus niger ATCC 13496|type=CDS|length=6990bp|location=Sequence derived from alignment at KZ851965.1:62328..64489- (Aspergillus niger ATCC 13496) CGATGTTGTCATTGGAACCTCCTCTTACCTCCGTGAGCACTCCCACGGCA AGGACATGACCTACATCAAGAACACCGCCATCGAAGTCATCGAATTCGTC AAGTCCAAGGGCATTGAGATCCGTTTCTCCAGTGAGGACTCTTTCCGCTC TGACCTCGTCGATCTCCTGTCCATCTACTCGGCCGTCGACAAGGTCGGTG TTAACCGTGTTGGTATCGCCGATACCGTCGGCTGCGCTTCTCCCCGTCAG GTCTACGAGCTTGTCCGTGTCCTGAGGGGTGTTGTTAGCTGTGACATCGA AACCCACTTCCACAACGACACTGGTTGCGCTATTGCCAACGCTTACTGTG CCCTGGAGGCTGGTGCCACCCACATTGACACCTCCGTCCTCGGTATCGGT GAGCGTAACGGTATCACTCCCCTCGGTGGTCTCATGGCCCGCATGATGGT TGCCGACCCCGAGTACGTCAAGAGCAAGTACAGGTTGGAGAAGCTCAAGG ATATCGAGGACCTCGTTGCCGAGGCCGTTGAGGTCAACATCCCCTTCAAC AACTACATCACCGGTTTCTGCGCTTTCACCCACAAGGCCGGTATCCACGC CAAGGCCATCCTCAACAACCCCAGCACCTACGAGATCATCAACCCCGCCG ACTTCGGCATGTCTCGTTATGTCCACTTCGCTTCTCGTCTGACCGGCTGG AACGCCATCAAGTCGCGTGCCCAGCAGCTCAAGATCGAGATGACCGATGA CCAGTACAAGGAGTGCACGGCCAAGATCAAGGCTCTGGCCGATATCCGCC CCATTGCTGTCGATGATGCCGACAGTATCATCCGTGCCTACTACCGCAAC CTCAAGCTGGGCGAGAACAAGCCCCTCCTGGACCTCACGGCCGACGAGCA GGCTCAGTTCGCTGCCAAGGAGAAGGAGCTCGCTGCTCAGGCTTCTGCCT AAATCCTTACTCACATCCGTTGCCACATGGACGATGCTCGCATTGCTGTC GAGACCGGTGTCGATGGAGTATTGAGCTTACCAGCCCCTGCGCTTCCGAG CAGTCGAGAAAGGACTGTGAGGCCATCTGCAAGCTTGGCCTGAAGGCTAA GGTGAACACCCCGGCTTCACTGCCGTTGAGACTCGCCAGAACCCCCACCC CTCCGTCTCTCGGAACCCCTACGGCCACAACGTCGGTGTCACCGACTTCC TGAGCAACGTCTCTCGCTTCCAGATCATCGAGAGTACCCTGCGTGAGGGT GAGCAGTTCGCCAACGCTTTCTTCGACACTGAGAAGAAGATCGAAATCGC CAAGGCCCTCGATGAGTTCGGTGTTGACTACATGTGCCCCGGTGCAGACC ACGAGCCCAATGGGCAGGCCAACGTCGCCAATGGCAATGGCAACAACGCG ATGTTGTCATTGGAACCTCCTCTTACCTCCGTGAGCACTCCCACGGCAAG GACATGACCTACATCAAGAACACCGCCATCGAAGTCATCGAATTCGTCAA GTCCAAGGGCATTGAGATCCGTTTCTCCAGTGAGGACTCTTTCCGCTCTG ACCTCGTCGATCTCCTGTCCATCTACTCGGCCGTCGACAAGGTCGGTGTT AACCGTGTTGGTATCGCCGATACCGTCGGCTGCGCTTCTCCCCGTCAGGT CTACGAGCTTGTCCGTGTCCTGAGGGGTGTTGTTAGCTGTGACATCGAAA CCCACTTCCACAACGACACTGGTTGCGCTATTGCCAACGCTTACTGTGCC CTGGAGGCTGGTGCCACCCACATTGACACCTCCGTCCTCGGTATCGGTGA GCGTAACGGTATCACTCCCCTCGGTGGTCTCATGGCCCGCATGATGGTTG CCGACCCCGAGTACGTCAAGAGCAAGTACAGGTTGGAGAAGCTCAAGGAT ATCGAGGACCTCGTTGCCGAGGCCGTTGAGGTCAACATCCCCTTCAACAA CTACATCACCGGTTTCTGCGCTTTCACCCACAAGGCCGGTATCCACGCCA AGGCCATCCTCAACAACCCCAGCACCTACGAGATCATCAACCCCGCCGAC TTCGGCATGTCTCGTTATGTCCACTTCGCTTCTCGTCTGACCGGCTGGAA CGCCATCAAGTCGCGTGCCCAGCAGCTCAAGATCGAGATGACCGATGACC AGTACAAGGAGTGCACGGCCAAGATCAAGGCTCTGGCCGATATCCGCCCC ATTGCTGTCGATGATGCCGACAGTATCATCCGTGCCTACTACCGCAACCT CAAGCTGGGCGAGAACAAGCCCCTCCTGGACCTCACGGCCGACGAGCAGG CTCAGTTCGCTGCCAAGGAGAAGGAGCTCGCTGCTCAGGCTTCTGCCTAA ATCCTTACTCACATCCGTTGCCACATGGACGATGCTCGCATTGCTGTCGA GACCGGTGTCGATGGAGTATTGAGCTTACCAGCCCCTGCGCTTCCGAGCA GTCGAGAAAGGACTGTGAGGCCATCTGCAAGCTTGGCCTGAAGGCTAAGG TGAACACCCCGGCTTCACTGCCGTTGAGACTCGCCAGAACCCCCACCCCT CCGTCTCTCGGAACCCCTACGGCCACAACGTCGGTGTCACCGACTTCCTG AGCAACGTCTCTCGCTTCCAGATCATCGAGAGTACCCTGCGTGAGGGTGA GCAGTTCGCCAACGCTTTCTTCGACACTGAGAAGAAGATCGAAATCGCCA AGGCCCTCGATGAGTTCGGTGTTGACTACATGTGCCCCGGTGCAGACCAC GAGCCCAATGGGCAGGCCAACGTCGCCAATGGCAATGGCAACAACGCGAT GTTGTCATTGGAACCTCCTCTTACCTCCGTGAGCACTCCCACGGCAAGGA CATGACCTACATCAAGAACACCGCCATCGAAGTCATCGAATTCGTCAAGT CCAAGGGCATTGAGATCCGTTTCTCCAGTGAGGACTCTTTCCGCTCTGAC CTCGTCGATCTCCTGTCCATCTACTCGGCCGTCGACAAGGTCGGTGTTAA CCGTGTTGGTATCGCCGATACCGTCGGCTGCGCTTCTCCCCGTCAGGTCT ACGAGCTTGTCCGTGTCCTGAGGGGTGTTGTTAGCTGTGACATCGAAACC CACTTCCACAACGACACTGGTTGCGCTATTGCCAACGCTTACTGTGCCCT GGAGGCTGGTGCCACCCACATTGACACCTCCGTCCTCGGTATCGGTGAGC GTAACGGTATCACTCCCCTCGGTGGTCTCATGGCCCGCATGATGGTTGCC GACCCCGAGTACGTCAAGAGCAAGTACAGGTTGGAGAAGCTCAAGGATAT CGAGGACCTCGTTGCCGAGGCCGTTGAGGTCAACATCCCCTTCAACAACT ACATCACCGGTTTCTGCGCTTTCACCCACAAGGCCGGTATCCACGCCAAG GCCATCCTCAACAACCCCAGCACCTACGAGATCATCAACCCCGCCGACTT CGGCATGTCTCGTTATGTCCACTTCGCTTCTCGTCTGACCGGCTGGAACG CCATCAAGTCGCGTGCCCAGCAGCTCAAGATCGAGATGACCGATGACCAG TACAAGGAGTGCACGGCCAAGATCAAGGCTCTGGCCGATATCCGCCCCAT TGCTGTCGATGATGCCGACAGTATCATCCGTGCCTACTACCGCAACCTCA AGCTGGGCGAGAACAAGCCCCTCCTGGACCTCACGGCCGACGAGCAGGCT CAGTTCGCTGCCAAGGAGAAGGAGCTCGCTGCTCAGGCTTCTGCCTAAAT CCTTACTCACATCCGTTGCCACATGGACGATGCTCGCATTGCTGTCGAGA CCGGTGTCGATGGAGTATTGAGCTTACCAGCCCCTGCGCTTCCGAGCAGT CGAGAAAGGACTGTGAGGCCATCTGCAAGCTTGGCCTGAAGGCTAAGGTG AACACCCCGGCTTCACTGCCGTTGAGACTCGCCAGAACCCCCACCCCTCC GTCTCTCGGAACCCCTACGGCCACAACGTCGGTGTCACCGACTTCCTGAG CAACGTCTCTCGCTTCCAGATCATCGAGAGTACCCTGCGTGAGGGTGAGC AGTTCGCCAACGCTTTCTTCGACACTGAGAAGAAGATCGAAATCGCCAAG GCCCTCGATGAGTTCGGTGTTGACTACATGTGCCCCGGTGCAGACCACGA GCCCAATGGGCAGGCCAACGTCGCCAATGGCAATGGCAACAACGCGATGT TGTCATTGGAACCTCCTCTTACCTCCGTGAGCACTCCCACGGCAAGGACA TGACCTACATCAAGAACACCGCCATCGAAGTCATCGAATTCGTCAAGTCC AAGGGCATTGAGATCCGTTTCTCCAGTGAGGACTCTTTCCGCTCTGACCT CGTCGATCTCCTGTCCATCTACTCGGCCGTCGACAAGGTCGGTGTTAACC GTGTTGGTATCGCCGATACCGTCGGCTGCGCTTCTCCCCGTCAGGTCTAC GAGCTTGTCCGTGTCCTGAGGGGTGTTGTTAGCTGTGACATCGAAACCCA CTTCCACAACGACACTGGTTGCGCTATTGCCAACGCTTACTGTGCCCTGG AGGCTGGTGCCACCCACATTGACACCTCCGTCCTCGGTATCGGTGAGCGT AACGGTATCACTCCCCTCGGTGGTCTCATGGCCCGCATGATGGTTGCCGA CCCCGAGTACGTCAAGAGCAAGTACAGGTTGGAGAAGCTCAAGGATATCG AGGACCTCGTTGCCGAGGCCGTTGAGGTCAACATCCCCTTCAACAACTAC ATCACCGGTTTCTGCGCTTTCACCCACAAGGCCGGTATCCACGCCAAGGC CATCCTCAACAACCCCAGCACCTACGAGATCATCAACCCCGCCGACTTCG GCATGTCTCGTTATGTCCACTTCGCTTCTCGTCTGACCGGCTGGAACGCC ATCAAGTCGCGTGCCCAGCAGCTCAAGATCGAGATGACCGATGACCAGTA CAAGGAGTGCACGGCCAAGATCAAGGCTCTGGCCGATATCCGCCCCATTG CTGTCGATGATGCCGACAGTATCATCCGTGCCTACTACCGCAACCTCAAG CTGGGCGAGAACAAGCCCCTCCTGGACCTCACGGCCGACGAGCAGGCTCA GTTCGCTGCCAAGGAGAAGGAGCTCGCTGCTCAGGCTTCTGCCTAAATCC TTACTCACATCCGTTGCCACATGGACGATGCTCGCATTGCTGTCGAGACC GGTGTCGATGGAGTATTGAGCTTACCAGCCCCTGCGCTTCCGAGCAGTCG AGAAAGGACTGTGAGGCCATCTGCAAGCTTGGCCTGAAGGCTAAGGTGAA CACCCCGGCTTCACTGCCGTTGAGACTCGCCAGAACCCCCACCCCTCCGT CTCTCGGAACCCCTACGGCCACAACGTCGGTGTCACCGACTTCCTGAGCA ACGTCTCTCGCTTCCAGATCATCGAGAGTACCCTGCGTGAGGGTGAGCAG TTCGCCAACGCTTTCTTCGACACTGAGAAGAAGATCGAAATCGCCAAGGC CCTCGATGAGTTCGGTGTTGACTACATGTGCCCCGGTGCAGACCACGAGC CCAATGGGCAGGCCAACGTCGCCAATGGCAATGGCAACAACGCGATGTTG TCATTGGAACCTCCTCTTACCTCCGTGAGCACTCCCACGGCAAGGACATG ACCTACATCAAGAACACCGCCATCGAAGTCATCGAATTCGTCAAGTCCAA GGGCATTGAGATCCGTTTCTCCAGTGAGGACTCTTTCCGCTCTGACCTCG TCGATCTCCTGTCCATCTACTCGGCCGTCGACAAGGTCGGTGTTAACCGT GTTGGTATCGCCGATACCGTCGGCTGCGCTTCTCCCCGTCAGGTCTACGA GCTTGTCCGTGTCCTGAGGGGTGTTGTTAGCTGTGACATCGAAACCCACT TCCACAACGACACTGGTTGCGCTATTGCCAACGCTTACTGTGCCCTGGAG GCTGGTGCCACCCACATTGACACCTCCGTCCTCGGTATCGGTGAGCGTAA CGGTATCACTCCCCTCGGTGGTCTCATGGCCCGCATGATGGTTGCCGACC CCGAGTACGTCAAGAGCAAGTACAGGTTGGAGAAGCTCAAGGATATCGAG GACCTCGTTGCCGAGGCCGTTGAGGTCAACATCCCCTTCAACAACTACAT CACCGGTTTCTGCGCTTTCACCCACAAGGCCGGTATCCACGCCAAGGCCA TCCTCAACAACCCCAGCACCTACGAGATCATCAACCCCGCCGACTTCGGC ATGTCTCGTTATGTCCACTTCGCTTCTCGTCTGACCGGCTGGAACGCCAT CAAGTCGCGTGCCCAGCAGCTCAAGATCGAGATGACCGATGACCAGTACA AGGAGTGCACGGCCAAGATCAAGGCTCTGGCCGATATCCGCCCCATTGCT GTCGATGATGCCGACAGTATCATCCGTGCCTACTACCGCAACCTCAAGCT GGGCGAGAACAAGCCCCTCCTGGACCTCACGGCCGACGAGCAGGCTCAGT TCGCTGCCAAGGAGAAGGAGCTCGCTGCTCAGGCTTCTGCCTAAATCCTT ACTCACATCCGTTGCCACATGGACGATGCTCGCATTGCTGTCGAGACCGG TGTCGATGGAGTATTGAGCTTACCAGCCCCTGCGCTTCCGAGCAGTCGAG AAAGGACTGTGAGGCCATCTGCAAGCTTGGCCTGAAGGCTAAGGTGAACA CCCCGGCTTCACTGCCGTTGAGACTCGCCAGAACCCCCACCCCTCCGTCT CTCGGAACCCCTACGGCCACAACGTCGGTGTCACCGACTTCCTGAGCAAC GTCTCTCGCTTCCAGATCATCGAGAGTACCCTGCGTGAGGGTGAGCAGTT CGCCAACGCTTTCTTCGACACTGAGAAGAAGATCGAAATCGCCAAGGCCC TCGATGAGTTCGGTGTTGACTACATGTGCCCCGGTGCAGACCACGAGCCC AATGGGCAGGCCAACGTCGCCAATGGCAATGGCAACAACG back to top
Annotated Terms
The following terms have been associated with this mRNA:
Vocabulary: Biological Process
Term | Definition |
GO:0019752 | carboxylic acid metabolic process |
GO:0019878 | lysine biosynthetic process via aminoadipic acid |
Vocabulary: Molecular Function
Term | Definition |
GO:0046912 | transferase activity, transferring acyl groups, acyl groups converted into alkyl on transfer |
GO:0004410 | homocitrate synthase activity |
GO:0003824 | catalytic activity |
Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
Properties
Property Name | Value |
Note | antiSMASH:Cluster_8519651.1 |
Note | SMCOG1271:2-isopropylmalate synthase |
DBxref | InterPro:IPR002034 |
DBxref | InterPro:IPR011872 |
DBxref | InterPro:IPR000891 |
DBxref | InterPro:IPR013785 |
DBxref | PFAM:PF00682 |
Product | Saccharopine dehydrogenase |
Analyses
This mRNA is derived from or has results from the following analyses
Alignments
The following features are aligned
Aligned Feature | Feature Type | Alignment Location |
KZ851965.1 | supercontig | KZ851965.1:62328..64489 - |
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