HSC82
Gene Ontology Biological Process
Gene Ontology Molecular Function
Gene Ontology Cellular Component
SWI1
Gene Ontology Biological Process
- ATP-dependent chromatin remodeling [IDA]
- DNA-dependent DNA replication [IMP]
- carbon catabolite activation of transcription from RNA polymerase II promoter [IGI]
- cellular alcohol catabolic process [IMP]
- positive regulation of mating type switching [IMP]
- positive regulation of transcription from RNA polymerase II promoter [IMP]
- positive regulation of transcription from RNA polymerase II promoter in response to amino acid starvation [IMP]
- sucrose catabolic process [IMP]
Gene Ontology Molecular Function
Gene Ontology Cellular Component
- SWI/SNF complex [IDA, IMP]
- nucleus [IDA]
Synthetic Growth Defect
A genetic interaction is inferred when mutations in separate genes, each of which alone causes a minimal phenotype, result in a significant growth defect under a given condition when combined in the same cell.
Publication
Diverse cellular functions of the Hsp90 molecular chaperone uncovered using systems approaches.
A comprehensive understanding of the cellular functions of the Hsp90 molecular chaperone has remained elusive. Although Hsp90 is essential, highly abundant under normal conditions, and further induced by environmental stress, only a limited number of Hsp90 "clients" have been identified. To define Hsp90 function, a panel of genome-wide chemical-genetic screens in Saccharomyces cerevisiae were combined with bioinformatic analyses. This approach ... [more]
Throughput
- High Throughput
Ontology Terms
- vegetative growth (APO:0000106)
Additional Notes
- A genome-wide chemical-genetic screen was used to identify deletion strains whose growth was negatively affected when Hsp90 function was compromised using the HSP90-inhibiting drug, macbecin II.
Related interactions
Interaction | Experimental Evidence Code | Dataset | Throughput | Score | Curated By | Notes |
---|---|---|---|---|---|---|
SWI1 HSC82 | Negative Genetic Negative Genetic Mutations/deletions in separate genes, each of which alone causes a minimal phenotype, but when combined in the same cell results in a more severe fitness defect or lethality under a given condition. This term is reserved for high or low throughput studies with scores. | High | -0.361 | BioGRID | 2020397 |
Curated By
- BioGRID