KLLA0F24838g
similar to uniprot|Q08773 Saccharomyces cerevisiae YOR304W ISW2 Member of the imitation-switch (ISWI) class of ATP-dependent chromatin remodeling complexes ATPase component that with Itc1p forms a complex required for repression of a-specific genes INO1 and early meiotic genes during mitotic growth
Element type: CDS
Element length: 3189 nucleotides,
on anti-sense strand of
Klla0F: complement(2309842..2313030).
Other names:
KLLA-ORF297
Coding sequence: 1063 codons.
Element length: 3189 nucleotides,
on anti-sense strand of
Klla0F: complement(2309842..2313030).
Other names:
KLLA-ORF297
Coding sequence: 1063 codons.
Database cross references:
EMBL: CR382126
GeneID: 2895186
GenomeReviews: CR382126_GR
HOGENOM: HBG717285
Orthologs: strict determination not possible; homologs must be refined manually
EMBL: CR382126
GeneID: 2895186
GenomeReviews: CR382126_GR
HOGENOM: HBG717285
Homologs and Orthologs
Homologs in protein family: GL3M4588Orthologs: strict determination not possible; homologs must be refined manually
Protein KLLA0F24838p 
similar to uniprot|Q08773 Saccharomyces cerevisiae YOR304W ISW2 Member of the imitation-switch (ISWI) class of ATP-dependent chromatin remodeling complexes ATPase component that with Itc1p forms a complex required for repression of a-specific genes INO1 and early meiotic genes during mitotic growth; SubName: Full=KLLA0F24838p;
Protein domain map
Database cross references:
InterPro: IPR000330
InterPro: IPR001005
InterPro: IPR001650
InterPro: IPR009057
InterPro: IPR014001
InterPro: IPR014021
InterPro: IPR015194
InterPro: IPR015195
InterPro: IPR017884
KEGG: kla:KLLA0F24838g
PROSITE: PS51192
PROSITE: PS51194
PROSITE: PS51293
Pfam: PF00176
Pfam: PF00271
Pfam: PF09110
Pfam: PF09111
RefSeq: XP_456186.1
SMART: SM00487
SMART: SM00490
SMART: SM00717
UniProtKB/TrEMBL: Q6CIQ3
UniProtKB: Q6CIQ3_KLULA
Phylogeny
PhylomeDB:KLLA0F24838g
InterPro: IPR000330
InterPro: IPR001005
InterPro: IPR001650
InterPro: IPR009057
InterPro: IPR014001
InterPro: IPR014021
InterPro: IPR015194
InterPro: IPR015195
InterPro: IPR017884
KEGG: kla:KLLA0F24838g
PROSITE: PS51192
PROSITE: PS51194
PROSITE: PS51293
Pfam: PF00176
Pfam: PF00271
Pfam: PF09110
Pfam: PF09111
RefSeq: XP_456186.1
SMART: SM00487
SMART: SM00490
SMART: SM00717
UniProtKB/TrEMBL: Q6CIQ3
UniProtKB: Q6CIQ3_KLULA
Phylogeny 
PhylomeDB:KLLA0F24838gSequence data 
>KLLA0F24838g.nt ATGGAGAATCCTGTTAGCAATAATCAACATGATGAGAAGTACTGGTCCGAAAGAAGATCT AAGTTCTTACTTGATGTTGATCCGAAAATAGCTAAACAAAGGAATAAAGAAGACACTTAT ATTCGCTTCAAGCACCTTTTGCAAATTACTGATCTTTTCAGACACTTTATTGGGATCAGA GCCAAATATGATAAAAACATGCAAAAATTACTGAAGACCATAGATGCTGAAAACAAAGTT GCTGGAACGTTGAAAGAGCCAGCCGGTCATCTCGCTAGGGCTCCAAGGCACTATAGAAAG ACAGAACAAGAAGAAGATGCTGAATTGATGGAGGATGAGGAAGTTGAGTTAGAAGAGGAT ACAACAATTTTGACACAATCACCGAGTTTCATAAAGGAAGGGAAATTAAGAGATTATCAA GTTTACGGTCTGAATTGGTTGATTTCTCTACATGAAAGCAAGCTTTCTGGGATTTTGGCT GATGAAATGGGACTTGGTAAAACGTTGCAATCAATATCGTTCCTAGGTTATCTTCGGTAT ATTAAAGGTATCGAGGGGCCATATATTGTGATTGTACCTAAATCCACACTAGATAACTGG CAAAGAGAGTTTGCCAAATGGACTCCTGAAGTCAAAACAGTCATTCTTCAAGGTGACAAG GATTTCAGAAAAGAACTCATTGAAACTAAGATTTTAACATGTAACTTTGACGTGCTAATT ACCTCTTATGAGATGGTATTGAAAGAGAAGTTAACACTTAAAAGATTTGCATGGGAATAT ATTCTAATCGACGAAGCTCATCGAATTAAGAATGAACAGAGCGCCTTGTCACAGGTGATA AGACTGTTTTACTCCAAAAATCGTCTCTTAATCACTGGTACACCTCTACAGAACAATTTG CATGAACTTTGGGCTCTTTTGAATTTCTTACTACCTGATGTCTTTGGTGACTCAGAAGTA TTTGATGAATGGTTCCAACAAAACGGAAAGGAAGAAGATCAAGAGGTTGTTGTTCAGCAA CTTCATTCGGTTTTACAACCTTTTTTACTTAGAAGAGTGAAATCTGAGGTCGAAAAATCA TTACTTCCGAAGAAAGAGATTAATCTATACGTAGGGATGACGGACATGCAAATAGAATGG TACAAATCACTATTGGAGAAAGACATCGATGCCGTAAATGGAGCCGTCGGTAAGCGAGAA GGTAAAACAAGATTATTAAATATTGTTATGCAGTTGAGAAAGTGTTGCAATCATCCATAC CTTTTCGAAGGAGCAGAACCTGGCCCTCCTTATACTACAGATGAACATTTAGTCTTCAAT TCGGGAAAAATGATTGTACTTGATAAATTGCTAAAAAAGAAAAAGGAACAAGGCTCGAGA GTCCTTATATTTTCACAAATGTCACGGTTGCTAGATATTTTAGAAGATTACTGTTATTTC AGGGGATATGAATACTGCAGAATTGATGGCTCAACTTCGCATGATGAAAGAGTTGAAGCT ATTGATGAGTATAATAAACCAAATTCGGAAAAATTTATTTTTTTACTTACTACTCGTGCT GGAGGATTGGGTATTAACTTAGTGACAGCCGATACTGTTGTACTCTATGATTCCGATTGG AATCCACAGGCCGATTTACAAGCCATGGATCGTGCTCATAGGATTGGTCAAAAAAAACAG GTGTTTGTGTATAGATTCGTCACCGAAAATGCAATTGAAGAGAAAGTGATAGAGAGGGCT GCTCAAAAACTTAGATTAGACCAGTTGGTAATTCAGCAGGGTACAGGAAAGAAGACTTCG GCGCTGACGAACAACAAAGATGACCTAATTGATATGATACAATTTGGAGCAAGAGATATG CTTCAGCATGGCTCTGGTAATATAACTGTTGATGAAGACATTGATGAAATTTTGAAAAAG GGTGAGAGAAAGACATTGGAACTTAATGCAAAATATGAATCTCTTGGTCTCGATGACCTA CAAAAGTTCAATGGTATGGCTGATCAATCCGCTTACGAATGGAATGGAACAAATTTTGAG AAGAAGAAGCCAGATGATCATACTGTTGATTGGATCAATCCGCCTAAAAGAGAGCGTAGA CGAGAACAGCCTCTGTATTCAGTGGATGATTATTATAGAGAAGTTATAGGTAATGGAAAG AGCAAACCTTCAGGAAGCAACACCCCAGCTCTGAAATTACCAAAACAACCTAAAGTTATT CGTATGACTTATTATCAGTTTGCACATCCAGAATTTGTCCGGCTACAGGAGCTAGAACAA CTTTGGTATAAGAAAAGTGTCGGATACAAAATCACCGCATATGATGTTAAAGAACACGCA GATGAAAGTGAGGGTGACGATGATGACGAAGAGGATTCCAGATCGGACGGAGAATCAGAT GATACTAACAATGCACAAAAACAAGAAGATGATATTGACGCTAAGATTGCTGAAGAGCAA GCAAAAATTGACGCTGCTGAAGAATTCACTGATGAAAATTTGGAACAAAAGCAAAGATTC CTGGAAGAATCTTTCTATAATTGGAATAAACGTGAATTTTTAGCCTTCATCAGTGCATGC ATAAAATTTGGTAGAGACAATTATGTTTCAATATCCAAAGCAATTCATACGAAAACGCCA GAGGAAGTTCAGAGGTACTCTGAAACGTTTTGGAAACGCTACAAGGAAGTCCAAGGATGG GAGAAGTATGTCGCAAACATCGAAGCTGGTGAAAAGAAGACTGAAAAGCTAAAGATACAG GAAACAATTTTGAAGCAGAAGCTTCAGCAATATCAGTATCCCTTAGTAGAATTGAAAATA TTATATCCTCCCAACAATACCAGAAGAACTTACAATTCATTAGAAGATATATTTTTACTC GTTACTGTCGGTAACTTGGGTTTGTTTGCCAGTAATCTATATGAAAGAGTCAAGCAGGAA ATACTGAAAAGTCCATTGTTCATATTTTCTTGGTTTATTAAAACAAGGACACCTTTGGAT ATTTCTAAGAGAATAGCCACTCTATTAACACTTGTGCAACGTGAACATGAAGGGGTAGAA CACAAAAGAAAACGTAAAACCGTTACTTCTGCTGACGACCAACCAAATGATAGTCACAAC CTTAACGCTAACGTGGTGTCTTCACCACCCTCAAAAAGAATACATACTGATAAGCAGTTT ATAGATTAG
>KLLA0F24838g.cds ATGGAGAATCCTGTTAGCAATAATCAACATGATGAGAAGTACTGGTCCGAAAGAAGATCT AAGTTCTTACTTGATGTTGATCCGAAAATAGCTAAACAAAGGAATAAAGAAGACACTTAT ATTCGCTTCAAGCACCTTTTGCAAATTACTGATCTTTTCAGACACTTTATTGGGATCAGA GCCAAATATGATAAAAACATGCAAAAATTACTGAAGACCATAGATGCTGAAAACAAAGTT GCTGGAACGTTGAAAGAGCCAGCCGGTCATCTCGCTAGGGCTCCAAGGCACTATAGAAAG ACAGAACAAGAAGAAGATGCTGAATTGATGGAGGATGAGGAAGTTGAGTTAGAAGAGGAT ACAACAATTTTGACACAATCACCGAGTTTCATAAAGGAAGGGAAATTAAGAGATTATCAA GTTTACGGTCTGAATTGGTTGATTTCTCTACATGAAAGCAAGCTTTCTGGGATTTTGGCT GATGAAATGGGACTTGGTAAAACGTTGCAATCAATATCGTTCCTAGGTTATCTTCGGTAT ATTAAAGGTATCGAGGGGCCATATATTGTGATTGTACCTAAATCCACACTAGATAACTGG CAAAGAGAGTTTGCCAAATGGACTCCTGAAGTCAAAACAGTCATTCTTCAAGGTGACAAG GATTTCAGAAAAGAACTCATTGAAACTAAGATTTTAACATGTAACTTTGACGTGCTAATT ACCTCTTATGAGATGGTATTGAAAGAGAAGTTAACACTTAAAAGATTTGCATGGGAATAT ATTCTAATCGACGAAGCTCATCGAATTAAGAATGAACAGAGCGCCTTGTCACAGGTGATA AGACTGTTTTACTCCAAAAATCGTCTCTTAATCACTGGTACACCTCTACAGAACAATTTG CATGAACTTTGGGCTCTTTTGAATTTCTTACTACCTGATGTCTTTGGTGACTCAGAAGTA TTTGATGAATGGTTCCAACAAAACGGAAAGGAAGAAGATCAAGAGGTTGTTGTTCAGCAA CTTCATTCGGTTTTACAACCTTTTTTACTTAGAAGAGTGAAATCTGAGGTCGAAAAATCA TTACTTCCGAAGAAAGAGATTAATCTATACGTAGGGATGACGGACATGCAAATAGAATGG TACAAATCACTATTGGAGAAAGACATCGATGCCGTAAATGGAGCCGTCGGTAAGCGAGAA GGTAAAACAAGATTATTAAATATTGTTATGCAGTTGAGAAAGTGTTGCAATCATCCATAC CTTTTCGAAGGAGCAGAACCTGGCCCTCCTTATACTACAGATGAACATTTAGTCTTCAAT TCGGGAAAAATGATTGTACTTGATAAATTGCTAAAAAAGAAAAAGGAACAAGGCTCGAGA GTCCTTATATTTTCACAAATGTCACGGTTGCTAGATATTTTAGAAGATTACTGTTATTTC AGGGGATATGAATACTGCAGAATTGATGGCTCAACTTCGCATGATGAAAGAGTTGAAGCT ATTGATGAGTATAATAAACCAAATTCGGAAAAATTTATTTTTTTACTTACTACTCGTGCT GGAGGATTGGGTATTAACTTAGTGACAGCCGATACTGTTGTACTCTATGATTCCGATTGG AATCCACAGGCCGATTTACAAGCCATGGATCGTGCTCATAGGATTGGTCAAAAAAAACAG GTGTTTGTGTATAGATTCGTCACCGAAAATGCAATTGAAGAGAAAGTGATAGAGAGGGCT GCTCAAAAACTTAGATTAGACCAGTTGGTAATTCAGCAGGGTACAGGAAAGAAGACTTCG GCGCTGACGAACAACAAAGATGACCTAATTGATATGATACAATTTGGAGCAAGAGATATG CTTCAGCATGGCTCTGGTAATATAACTGTTGATGAAGACATTGATGAAATTTTGAAAAAG GGTGAGAGAAAGACATTGGAACTTAATGCAAAATATGAATCTCTTGGTCTCGATGACCTA CAAAAGTTCAATGGTATGGCTGATCAATCCGCTTACGAATGGAATGGAACAAATTTTGAG AAGAAGAAGCCAGATGATCATACTGTTGATTGGATCAATCCGCCTAAAAGAGAGCGTAGA CGAGAACAGCCTCTGTATTCAGTGGATGATTATTATAGAGAAGTTATAGGTAATGGAAAG AGCAAACCTTCAGGAAGCAACACCCCAGCTCTGAAATTACCAAAACAACCTAAAGTTATT CGTATGACTTATTATCAGTTTGCACATCCAGAATTTGTCCGGCTACAGGAGCTAGAACAA CTTTGGTATAAGAAAAGTGTCGGATACAAAATCACCGCATATGATGTTAAAGAACACGCA GATGAAAGTGAGGGTGACGATGATGACGAAGAGGATTCCAGATCGGACGGAGAATCAGAT GATACTAACAATGCACAAAAACAAGAAGATGATATTGACGCTAAGATTGCTGAAGAGCAA GCAAAAATTGACGCTGCTGAAGAATTCACTGATGAAAATTTGGAACAAAAGCAAAGATTC CTGGAAGAATCTTTCTATAATTGGAATAAACGTGAATTTTTAGCCTTCATCAGTGCATGC ATAAAATTTGGTAGAGACAATTATGTTTCAATATCCAAAGCAATTCATACGAAAACGCCA GAGGAAGTTCAGAGGTACTCTGAAACGTTTTGGAAACGCTACAAGGAAGTCCAAGGATGG GAGAAGTATGTCGCAAACATCGAAGCTGGTGAAAAGAAGACTGAAAAGCTAAAGATACAG GAAACAATTTTGAAGCAGAAGCTTCAGCAATATCAGTATCCCTTAGTAGAATTGAAAATA TTATATCCTCCCAACAATACCAGAAGAACTTACAATTCATTAGAAGATATATTTTTACTC GTTACTGTCGGTAACTTGGGTTTGTTTGCCAGTAATCTATATGAAAGAGTCAAGCAGGAA ATACTGAAAAGTCCATTGTTCATATTTTCTTGGTTTATTAAAACAAGGACACCTTTGGAT ATTTCTAAGAGAATAGCCACTCTATTAACACTTGTGCAACGTGAACATGAAGGGGTAGAA CACAAAAGAAAACGTAAAACCGTTACTTCTGCTGACGACCAACCAAATGATAGTCACAAC CTTAACGCTAACGTGGTGTCTTCACCACCCTCAAAAAGAATACATACTGATAAGCAGTTT ATAGATTAG
>KLLA0F24838g.aa MENPVSNNQHDEKYWSERRSKFLLDVDPKIAKQRNKEDTYIRFKHLLQITDLFRHFIGIR AKYDKNMQKLLKTIDAENKVAGTLKEPAGHLARAPRHYRKTEQEEDAELMEDEEVELEED TTILTQSPSFIKEGKLRDYQVYGLNWLISLHESKLSGILADEMGLGKTLQSISFLGYLRY IKGIEGPYIVIVPKSTLDNWQREFAKWTPEVKTVILQGDKDFRKELIETKILTCNFDVLI TSYEMVLKEKLTLKRFAWEYILIDEAHRIKNEQSALSQVIRLFYSKNRLLITGTPLQNNL HELWALLNFLLPDVFGDSEVFDEWFQQNGKEEDQEVVVQQLHSVLQPFLLRRVKSEVEKS LLPKKEINLYVGMTDMQIEWYKSLLEKDIDAVNGAVGKREGKTRLLNIVMQLRKCCNHPY LFEGAEPGPPYTTDEHLVFNSGKMIVLDKLLKKKKEQGSRVLIFSQMSRLLDILEDYCYF RGYEYCRIDGSTSHDERVEAIDEYNKPNSEKFIFLLTTRAGGLGINLVTADTVVLYDSDW NPQADLQAMDRAHRIGQKKQVFVYRFVTENAIEEKVIERAAQKLRLDQLVIQQGTGKKTS ALTNNKDDLIDMIQFGARDMLQHGSGNITVDEDIDEILKKGERKTLELNAKYESLGLDDL QKFNGMADQSAYEWNGTNFEKKKPDDHTVDWINPPKRERRREQPLYSVDDYYREVIGNGK SKPSGSNTPALKLPKQPKVIRMTYYQFAHPEFVRLQELEQLWYKKSVGYKITAYDVKEHA DESEGDDDDEEDSRSDGESDDTNNAQKQEDDIDAKIAEEQAKIDAAEEFTDENLEQKQRF LEESFYNWNKREFLAFISACIKFGRDNYVSISKAIHTKTPEEVQRYSETFWKRYKEVQGW EKYVANIEAGEKKTEKLKIQETILKQKLQQYQYPLVELKILYPPNNTRRTYNSLEDIFLL VTVGNLGLFASNLYERVKQEILKSPLFIFSWFIKTRTPLDISKRIATLLTLVQREHEGVE HKRKRKTVTSADDQPNDSHNLNANVVSSPPSKRIHTDKQFID*
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/KLLA/KLLA0F24838p