BAIT
ESA1
TAS1, NuA4 histone acetyltransferase complex catalytic subunit ESA1, KAT5, L000003952, YOR244W
Catalytic subunit of the histone acetyltransferase complex (NuA4); acetylates four conserved internal lysines of histone H4 N-terminal tail and can acetylate histone H2A; master regulator of cellular acetylation balance; required for cell cycle progression and transcriptional silencing at the rDNA locus and regulation of autophagy; human ortholog TIP60/KAT5 is implicated in cancer and other diseases
GO Process (10)
GO Function (3)
GO Component (4)
Gene Ontology Biological Process
- DNA repair [IDA, IMP]
- DNA-templated transcription, elongation [IDA, IMP]
- chromatin organization involved in regulation of transcription [IMP]
- chromatin silencing at rDNA [IGI, IMP]
- histone acetylation [IDA]
- peptidyl-lysine acetylation [IMP]
- positive regulation of macroautophagy [IMP]
- positive regulation of transcription elongation from RNA polymerase II promoter [IGI, IMP]
- regulation of cell cycle [IMP]
- regulation of transcription from RNA polymerase II promoter [IMP]
Gene Ontology Molecular Function
Gene Ontology Cellular Component
Saccharomyces cerevisiae (S288c)
PREY
CSR1
SFH2, S000007449, YLR380W
Phosphatidylinositol transfer protein; has a potential role in regulating lipid and fatty acid metabolism under heme-depleted conditions; interacts specifically with thioredoxin peroxidase; may have a role in oxidative stress resistance; protein abundance increases in response to DNA replication stress
GO Process (7)
GO Function (2)
GO Component (5)
Gene Ontology Biological Process
- Golgi to plasma membrane protein transport [IGI]
- Golgi to plasma membrane transport [IGI]
- negative regulation of fatty acid biosynthetic process [IDA, IGI, IMP]
- negative regulation of phosphatidylglycerol biosynthetic process [IGI]
- phosphatidylinositol metabolic process [IGI]
- phospholipid transport [IDA]
- positive regulation of phosphatidylcholine biosynthetic process [IGI]
Gene Ontology Molecular Function
Gene Ontology Cellular Component
Saccharomyces cerevisiae (S288c)
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.
Publication
The genetic landscape of a cell.
A genome-scale genetic interaction map was constructed by examining 5.4 million gene-gene pairs for synthetic genetic interactions, generating quantitative genetic interaction profiles for approximately 75% of all genes in the budding yeast, Saccharomyces cerevisiae. A network based on genetic interaction profiles reveals a functional map of the cell in which genes of similar biological processes cluster together in coherent subsets, ... [more]
Science Jan. 22, 2010; 327(5964);425-31 [Pubmed: 20093466]
Quantitative Score
- -0.3349 [SGA Score]
Throughput
- High Throughput
Ontology Terms
- phenotype: colony size (APO:0000063)
Additional Notes
- A Synthetic Genetic Array (SGA) analysis was carried out to quantitatively score genetic interactions based on fitness defects that were estimated from the colony size of double versus single mutants. Genetic interactions were considered significant if they had an SGA score of epsilon > 0.08 for positive interactions and epsilon < -0.08 for negative interactions, and a p-value < 0.05.
- YOR244W is an essential gene and therefore the temperature sensitive allele YOR244W_tsq560 was used in the experiment
Curated By
- BioGRID