YALI0E30965g
similar to uniprot|P32316 Saccharomyces cerevisiae YBL015W ACH1 Acetyl-coA hydrolase, primarily localized to mitochondria
Element type: CDS
Element length: 1575 nucleotides,
on sense strand of
Yali0E: 3649543..3651117.
Other names:
YALI-CDS2157.1
YALI-IPF3532
Coding sequence: 525 codons.
Element length: 1575 nucleotides,
on sense strand of
Yali0E: 3649543..3651117.
Other names:
YALI-CDS2157.1
YALI-IPF3532
Coding sequence: 525 codons.
Database cross references:
EMBL: CR382131
GeneID: 2911920
HOGENOM: Q6C3Z9
Orthologs: strict determination not possible; homologs must be refined manually
EMBL: CR382131
GeneID: 2911920
HOGENOM: Q6C3Z9
Homologs and Orthologs
Homologs in protein families: GL3R1841 GL3R1841.N1Orthologs: strict determination not possible; homologs must be refined manually
Protein YALI0E30965p 
similar to uniprot|P32316 Saccharomyces cerevisiae YBL015W ACH1 Acetyl-CoA hydrolase (EC 3.1.2.1) (Acetyl-CoA deacylase) (Acetyl-CoA acylase)
Protein domain map
Database cross references:
InterPro: IPR003702
KEGG: yli:YALI0E30965g
PANTHER: PTHR21432
Pfam: PF02550
RefSeq: XP_504613.1
UniProtKB/Swiss-Prot: Q6C3Z9
UniprotKB: ACH1_YARLI
InterPro: IPR003702
KEGG: yli:YALI0E30965g
PANTHER: PTHR21432
Pfam: PF02550
RefSeq: XP_504613.1
UniProtKB/Swiss-Prot: Q6C3Z9
UniprotKB: ACH1_YARLI
Sequence data 
>YALI0E30965g.nt GCTATTCTTACGGTGTACAGTTACGAGCACTTGTACTATAGTTTAGTTGTGGTTAAAACA ACGTTGTGGCACAATTGTAGTCCTCGCAGATCCCTACAAAGGCCGGCCATTGCACGCAAA TTGCACGAATTTTTCGCAGGCTTGCGCGACAAATGCACCCAAATACCGCACAAATGACTC TGTTTTTCACTTTCTCGTTTTCTCCATATTCTCCATATTCTCCATTTTTTTGCCGTCCGC AAAAACCCAATTCAACCCGGGGTACAGGTTTGGTGCATGCTGTGCTAGATGAAAGTAGCC CTATTCCACTTCGGAAGGATGGGATCCGAGATTCAAAGTTACCCTGTCTCATGATTATCC GAACTTCCGGGTGTCCATGTGGTGCCAGGGACAGCGGCGCTATGAGTAGAGAGATGGAAC GAGAATTACAGGAAGGGGGGGAGACACAGATCATGGCTGATACAGATGTACCTGCGTCTT TTACGTCTCCTGGGTCCTTCTCCATGTGTATTTCGCACCCGCCAGGGCAATTATATCCGC CTCTCCATGTGTCCATTTTTGTGTATCAGCTGTTGGGCGCTTGTCAAGCACACCAATGAC AAACTTCATAATGACTCTGGGGAAGGAAGCGCAGTTTGGTGGAAGTGTATGTATGTAGTC TAAGGGAGTCATGTTCCAGCATGAGCAGGAGAGGTGGGCGGAAGGGAGAAAAAACAATCC GATACCACTCCAATGGTCATGTCACCCCTCTCCTTCTATCTACACTCTGCCCTTCTCAAC ATACGACCCTATGGACACGCCTCTACTAACCCCAACTCAGGGACTGCGGCTCAACATTCT GCAAGGCTTGGAAGAATTTGACTTTTGGCTTCCGTCAACTTTTTTATTTTGGAAGAAGTC AAAAAGCTAATAGCACACGCATCGCAAACAATATCGAGAGACGCCTATATAAAGGCAGCG TGTCCTGATCCCTCCCTTCCGTACTACCCCATCTCACACAATGTCTGCCGTTCTCAAACA GCGAATTCGATACAAGCCCTACTTGGACAAGATCCGAACTGCCGCCCAGTGCGTCGATCT GTTTGGCGCAAAGCCCAACCAGTACATTGGATGGTCCGGTTTCACCGGAGTCGGAGCCCC CAAGGTTGTCCCCGATGCTGTCTCCAAGCACGTTGAGGAGAACAACCTGCAGGGACACGA GAACTGGCGATACAACCTGTTCGTCGGCGCCTCTGCCGGTATGGAGATCGAATCTCGATG GGCCAACAACAACATGATTGCCCGAAGATCTCCCCATCAGGTCGGAAAACCAATCGCTGC TGCCATCAACGAGGGTCGAACCGACTTCTTCGACAAGCATCTGTCCATGTGGGCCCAGGA TCTCACCTACGGCTTCTACACCCGAGATAAGAAGGAGAACTCTCTAGACATCGCTGTCAT TGAGGCCACCGCCATCACTGAGGACGGTCATCTGATCCCTGGTCCCGCCGTTGGTGCCTC CCCTGAGATTGTCCACATGGCTGACAAGATCATCATTGAGCTCAACACCAAGACTCCTTC CTTCGAGGGTCTTCACGACATCAACATGCCTGTCCTGCCTCCCTTCCGACAGCCTTACCA GATCACCGACGTTTCCCAGAAGATGGGAACTCCTTACATCCCTCTTGACCCCTCCAAGGT CGTTGCCATCGTCGAGTCTGAGTTTGCTGATGTTGTTGGTGCCAACTCTCCTGCCGATGA GGGCTCTAAGGCCATTGCTGCCAACCTCATTGAGCTCTTCCAGCAGGAGGTCAAGGCCGG CCGACTGCCCGAAAACCTGCTGCCTCTCCAGTCCGGTATCGGTAACATTGCCAACGCCGT CGTCGAGGGTCTGGCTGATGCCTCCTTCAAGGACCTTAACGTCTGGACCGAGGTGCTGCA GGATTCCTTCCTGGACTTCTTCGAGTCCGGCAACCTCAACTTCGCCACTGCCACCTCCAT CCGTCTGACCGAGGACGGCTTCAAGCGATTCTTCGACAACTGGGACGAGTTCTCCAAGAA GCTGCTGCTGCGATCCCAGGTTGTGTCCAACAACCCCGAGATCATCCGACGACTCGGTGT CATCGCCATGAACACCCCCGTCGAGGTTGACATCTACGCCCACGCCAACTCCACTTGTGT CAACGGCTCCAAGATGCTGCATGGTCTGGGAGGCTCCGGTGATTTCCTCCGAAACGCTAA GCTCTCCATCATGCACACTCCCTCCGCTCGACCCTCCAAGACCGATCCCCTCGGTATCTC TTGCATTGTCCCCTTCGCCACCCACATCGACCAGACCGAGCACGATCTGGACATTGTCGT TACTGAGCAGGGTCTGGCCGATCTCAGAGGCCTCTCTCCCAAGGAGCGATCTCGAGAGAT GATCAACAAGTGTGCCCACCCCTCCTACCGAGACCAGCTGCTTGCTTATGTCGAGCAGGC CGAGTTTGAGTGCGCCAAGAGCCGATCTCTCCACGAGCCCCACGTTCTCAAGAACGCCTT CAAGATGCATACTAACCTTGCCGAGAACGGAACCATGCGTCTCGACAAGTGGTAAACACT ATATAAGAATGTATTTATTTTCTCTCTTAACCTATTGATGTTCCTGATCTTGAGCTACTT GGACTGGTACAGTAGCTATAGATGAGCCTTATGCATGTCTCACACTAACTACATAATATC TAAAAAAGCCGCTAACGGCGTCTACCCTTGTATAGTGCGGCTACAACCAAAGATACCACT TTGTGTCCAATCTCCATTGTGGGGTGTCAATGGCGTGACGTGAAGACGCGTGCGGACAGG CTTTGTAGATAAGGGTTGTAGATAAGACGTTATTGGAATGACATATGTATTGTAC
>YALI0E30965g.cds ATGTCTGCCGTTCTCAAACAGCGAATTCGATACAAGCCCTACTTGGACAAGATCCGAACT GCCGCCCAGTGCGTCGATCTGTTTGGCGCAAAGCCCAACCAGTACATTGGATGGTCCGGT TTCACCGGAGTCGGAGCCCCCAAGGTTGTCCCCGATGCTGTCTCCAAGCACGTTGAGGAG AACAACCTGCAGGGACACGAGAACTGGCGATACAACCTGTTCGTCGGCGCCTCTGCCGGT ATGGAGATCGAATCTCGATGGGCCAACAACAACATGATTGCCCGAAGATCTCCCCATCAG GTCGGAAAACCAATCGCTGCTGCCATCAACGAGGGTCGAACCGACTTCTTCGACAAGCAT CTGTCCATGTGGGCCCAGGATCTCACCTACGGCTTCTACACCCGAGATAAGAAGGAGAAC TCTCTAGACATCGCTGTCATTGAGGCCACCGCCATCACTGAGGACGGTCATCTGATCCCT GGTCCCGCCGTTGGTGCCTCCCCTGAGATTGTCCACATGGCTGACAAGATCATCATTGAG CTCAACACCAAGACTCCTTCCTTCGAGGGTCTTCACGACATCAACATGCCTGTCCTGCCT CCCTTCCGACAGCCTTACCAGATCACCGACGTTTCCCAGAAGATGGGAACTCCTTACATC CCTCTTGACCCCTCCAAGGTCGTTGCCATCGTCGAGTCTGAGTTTGCTGATGTTGTTGGT GCCAACTCTCCTGCCGATGAGGGCTCTAAGGCCATTGCTGCCAACCTCATTGAGCTCTTC CAGCAGGAGGTCAAGGCCGGCCGACTGCCCGAAAACCTGCTGCCTCTCCAGTCCGGTATC GGTAACATTGCCAACGCCGTCGTCGAGGGTCTGGCTGATGCCTCCTTCAAGGACCTTAAC GTCTGGACCGAGGTGCTGCAGGATTCCTTCCTGGACTTCTTCGAGTCCGGCAACCTCAAC TTCGCCACTGCCACCTCCATCCGTCTGACCGAGGACGGCTTCAAGCGATTCTTCGACAAC TGGGACGAGTTCTCCAAGAAGCTGCTGCTGCGATCCCAGGTTGTGTCCAACAACCCCGAG ATCATCCGACGACTCGGTGTCATCGCCATGAACACCCCCGTCGAGGTTGACATCTACGCC CACGCCAACTCCACTTGTGTCAACGGCTCCAAGATGCTGCATGGTCTGGGAGGCTCCGGT GATTTCCTCCGAAACGCTAAGCTCTCCATCATGCACACTCCCTCCGCTCGACCCTCCAAG ACCGATCCCCTCGGTATCTCTTGCATTGTCCCCTTCGCCACCCACATCGACCAGACCGAG CACGATCTGGACATTGTCGTTACTGAGCAGGGTCTGGCCGATCTCAGAGGCCTCTCTCCC AAGGAGCGATCTCGAGAGATGATCAACAAGTGTGCCCACCCCTCCTACCGAGACCAGCTG CTTGCTTATGTCGAGCAGGCCGAGTTTGAGTGCGCCAAGAGCCGATCTCTCCACGAGCCC CACGTTCTCAAGAACGCCTTCAAGATGCATACTAACCTTGCCGAGAACGGAACCATGCGT CTCGACAAGTGGTAA
>YALI0E30965g.aa MSAVLKQRIRYKPYLDKIRTAAQCVDLFGAKPNQYIGWSGFTGVGAPKVVPDAVSKHVEE NNLQGHENWRYNLFVGASAGMEIESRWANNNMIARRSPHQVGKPIAAAINEGRTDFFDKH LSMWAQDLTYGFYTRDKKENSLDIAVIEATAITEDGHLIPGPAVGASPEIVHMADKIIIE LNTKTPSFEGLHDINMPVLPPFRQPYQITDVSQKMGTPYIPLDPSKVVAIVESEFADVVG ANSPADEGSKAIAANLIELFQQEVKAGRLPENLLPLQSGIGNIANAVVEGLADASFKDLN VWTEVLQDSFLDFFESGNLNFATATSIRLTEDGFKRFFDNWDEFSKKLLLRSQVVSNNPE IIRRLGVIAMNTPVEVDIYAHANSTCVNGSKMLHGLGGSGDFLRNAKLSIMHTPSARPSK TDPLGISCIVPFATHIDQTEHDLDIVVTEQGLADLRGLSPKERSREMINKCAHPSYRDQL LAYVEQAEFECAKSRSLHEPHVLKNAFKMHTNLAENGTMRLDKW*
Legend and notes 
Lengths
The length, in codons, of coding sequences includes the stop codon, hence it is one unit longer than the protein length.
Genomic environment map
Click on the symbol of an element or a family to go to its corresponding page. Colors in the lane "protein encoding genes" indicate strandedness: shades of blue for direct orientation, shades of red for reverse orientation. Colors in the lane "protein family" are arbitrarly chosen in such a way that different protein families have different colors in the map.
Protein domain map
Domains are extracted from SwissProt files. Click on the symbol of a domain to extract the domain sequence.
Genemark image and list
Genemark computation of protein-coding potential of DNA was made from 1000 nucleotides upstream the open reading frame to 300 nucleotides downstream. Thus the open reading frame protein-coding potential appears on frame #3.
Sequences
| Color | Nucleotide sequence and Coding sequence | Predicted translation product |
| RED | start and stop codons | Initial methionine and sequence end |
| BLUE | coding sequence | protein sequence |
| grey | non-coding sequence (upstream, downstream or intron) | |
| grey | donor and acceptor splicing sites |
Home
URL: http://www.genolevures.org/elt/YALI/YALI0E30965g