Reviewed,
UniProtKB/Swiss-Prot P43554 (SWP82_YEAST)
Last modified
July 22, 2008.
Version 53.
History...
Clusters with 100%,
90%,
50% identity |
Documents (2) |
Third-party data |
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Names and origin
| Protein names | Recommended name: SWI/SNF global transcription activator complex component SWP82 | ||||
| Gene names |
| ||||
| Organism | Saccharomyces cerevisiae (Baker's yeast) [Complete proteome] | ||||
| Taxonomic identifier | 4932 [NCBI] | ||||
| Taxonomic lineage | Eukaryota › Fungi › Dikarya › Ascomycota › Saccharomycotina › Saccharomycetes › Saccharomycetales › Saccharomycetaceae › Saccharomyces |
Protein attributes
| Sequence length | 623 AA. |
| Sequence status | Complete. |
| Sequence processing | The displayed sequence is not processed. |
| Protein existence | Evidence at protein level. |
General annotation (Comments)
| Function | Involved in transcriptional activation. Component of the SWI/SNF complex, an ATP-dependent chromatin remodeling complex, which is required for the positive and negative regulation of gene expression of a large number of genes. It changes chromatin structure by altering DNA-histone contacts within a nucleosome, leading eventually to a change in nucleosome position, thus facilitating or repressing binding of gene-specific transcription factors. |
| Subunit structure | Interacts with SWI3 and SNF12. Component of the SWI/SNF global transcription activator complex. The 1.14 MDa SWI/SNF complex is composed of 11 different subunits: one copy each of SWI1, SNF2/SWI2, SNF5, SNF12/SWP73, ARP7/SWP61, ARP9/SWP59; two copies each of SWI3, SNF6, SNF11, SWP82; and three copies of TAF14/SWP29. |
| Subcellular location | |
| Miscellaneous | Present with 3180 molecules/cell in log phase SD medium. |
| Sequence similarities | To yeast NPL6. |
Ontologies
Keywords | |
|---|---|
| Biological process | Transcription Transcription regulation |
| Cellular component | Nucleus |
| Molecular function | Activator |
| Technical term | Complete proteome |
Gene Ontology (GO) | |
| Biological process | ER-associated protein catabolic process Inferred from mutant phenotype. Source: SGD chromatin remodeling Ref.4Inferred by curator. Source: SGD regulation of transcription Ref.5Inferred by curator. Source: SGD |
| Cellular component | SWI/SNF complex Ref.5 Inferred from direct assay. Source: UniProtKB |
| Molecular function | protein binding Ref.5 Inferred from physical interaction. Source: UniProtKB transcription activator activityInferred from physical interaction. Source: SGD |
| Complete GO annotation... | |
Sequence annotation (Features)
| Feature key | Position(s) | Length | Description | Graphical view | ||
Molecule processing | ||||||
|---|---|---|---|---|---|---|
| Chain | 1 – 623 | 623 | SWI/SNF global transcription activator complex component SWP82 | |||
Sequences
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References
| « Hide 'large scale' references | |
| [1] | "Analysis of the nucleotide sequence of chromosome VI from Saccharomyces cerevisiae." Murakami Y., Naitou M., Hagiwara H., Shibata T., Ozawa M., Sasanuma S., Sasanuma M., Tsuchiya Y., Soeda E., Yokoyama K., Yamazaki M., Tashiro H., Eki T. Nat. Genet. 10:261-268(1995) [PubMed: 7670463] [Abstract] Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA]. Strain: ATCC 204511 / S288c / AB972. |
| [2] | "Global analysis of protein localization in budding yeast." Huh W.-K., Falvo J.V., Gerke L.C., Carroll A.S., Howson R.W., Weissman J.S., O'Shea E.K. Nature 425:686-691(2003) [PubMed: 14562095] [Abstract] Cited for: SUBCELLULAR LOCATION [LARGE SCALE ANALYSIS]. |
| [3] | "Global analysis of protein expression in yeast." Ghaemmaghami S., Huh W.-K., Bower K., Howson R.W., Belle A., Dephoure N., O'Shea E.K., Weissman J.S. Nature 425:737-741(2003) [PubMed: 14562106] [Abstract] Cited for: LEVEL OF PROTEIN EXPRESSION [LARGE SCALE ANALYSIS]. |
| [4] | "Structural analysis of the yeast SWI/SNF chromatin remodeling complex." Smith C.L., Horowitz-Scherer R., Flanagan J.F., Woodcock C.L., Peterson C.L. Nat. Struct. Biol. 10:141-145(2003) [PubMed: 12524530] [Abstract] Cited for: 3D-STRUCTURE MODELING OF THE SWI/SNF COMPLEX, ELECTRON MICROSCOPY OF THE SWI/SNF COMPLEX. |
| [5] | "The RSC chromatin remodeling complex bears an essential fungal-specific protein module with broad functional roles." Wilson B., Erdjument-Bromage H., Tempst P., Cairns B.R. Genetics 172:795-809(2006) [PubMed: 16204215] [Abstract] Cited for: IDENTIFICATION IN THE SWI/SNF COMPLEX, INTERACTION WITH SWI3 AND SNF12. |
| + | Additional computationally mapped references. |
Cross-references
Sequence databases | |
|---|---|
| D50617 Genomic DNA. Translation: BAA09192.1. | |
| PIR | S56206. |
| RefSeq | NP_116605.1. |
3D structure databases | |
| ModBase | Search... |
Protein-protein interaction databases | |
| DIP | DIP:4202N. |
| IntAct | P43554. |
Proteomic databases | |
| PeptideAtlas | P43554. |
Genome annotation databases | |
| Ensembl | YFL049W. Saccharomyces cerevisiae. [Contig view] |
| GeneID | 850495. |
| GenomeReviews | Gene locus YFL049W in contig D50617_GR. |
| KEGG | sce:YFL049W. |
| NMPDR | fig|4932.3.peg.2229. |
Organism-specific databases | |
| CYGD | YFL049w. |
| SGD | S000001845. SWP82. |
| Yeast-GFP | Search... |
Phylogenomic databases | |
| HOGENOM | P43554. |
Gene expression databases | |
| ArrayExpress | P43554. |
| GermOnline | YFL049W. Saccharomyces cerevisiae. |
Family and domain databases | |
| InterPro | IPR013933. CRC_Rsc7/Swp82. [Graphical view] |
| Pfam | PF08624. CRC_subunit. 1 hit. [Graphical view] |
| ProDom | P43554. [Graphical view] [Entries sharing at least one domain] |
| BLOCKS | Search... |
Other Resources | |
| LinkHub | P43554. |
| ProtoNet | Search... |
Entry information
| Entry name | SWP82_YEAST | ||||||||
| Accession | Primary (citable) accession number: P43554 | ||||||||
| Entry history |
| ||||||||
| Entry status | Reviewed (UniProtKB/Swiss-Prot) | ||||||||
| Annotation project | FPAP (Fungal Proteome Annotation Project) | ||||||||
Relevant documents
| Yeast Yeast (Saccharomyces cerevisiae): entries, gene names and cross-references to SGD |
| Yeast chromosome VI Yeast (Saccharomyces cerevisiae) chromosome VI: entries and gene names |

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