BAIT
POP2
CAF1, CCR4-NOT core DEDD family RNase subunit POP2, L000001465, YNR052C
RNase of the DEDD superfamily; subunit of the Ccr4-Not complex that mediates 3' to 5' mRNA deadenylation
GO Process (4)
GO Function (1)
GO Component (4)
Gene Ontology Biological Process
Gene Ontology Molecular Function
Gene Ontology Cellular Component
Saccharomyces cerevisiae (S288c)
PREY
SRB2
HRS2, MED20, L000002050, L000003586, YHR041C
Subunit of the RNA polymerase II mediator complex; associates with core polymerase subunits to form the RNA polymerase II holoenzyme; general transcription factor involved in telomere maintenance
GO Process (4)
GO Function (5)
GO Component (1)
Gene Ontology Biological Process
- RNA polymerase II transcriptional preinitiation complex assembly [IDA]
- negative regulation of ribosomal protein gene transcription from RNA polymerase II promoter in response to chemical stimulus [IMP]
- negative regulation of ribosomal protein gene transcription from RNA polymerase II promoter in response to nutrient levels [IMP]
- positive regulation of transcription from RNA polymerase II promoter [IDA]
Gene Ontology Molecular Function- RNA polymerase II transcription coactivator activity involved in preinitiation complex assembly [IDA]
- RNA polymerase II transcription factor recruiting transcription factor activity [IMP]
- TBP-class protein binding RNA polymerase II transcription factor activity involved in preinitiation complex assembly [IDA]
- core RNA polymerase II binding transcription factor activity [IDA, IGI]
- protein domain specific binding [IGI]
- RNA polymerase II transcription coactivator activity involved in preinitiation complex assembly [IDA]
- RNA polymerase II transcription factor recruiting transcription factor activity [IMP]
- TBP-class protein binding RNA polymerase II transcription factor activity involved in preinitiation complex assembly [IDA]
- core RNA polymerase II binding transcription factor activity [IDA, IGI]
- protein domain specific binding [IGI]
Gene Ontology Cellular Component
Saccharomyces cerevisiae (S288c)
Synthetic Lethality
A genetic interaction is inferred when mutations or deletions in separate genes, each of which alone causes a minimal phenotype, result in lethality when combined in the same cell under a given condition.
Publication
A DNA integrity network in the yeast Saccharomyces cerevisiae.
A network governing DNA integrity was identified in yeast by a global genetic analysis of synthetic fitness or lethality defect (SFL) interactions. Within this network, 16 functional modules or minipathways were defined based on patterns of global SFL interactions. Modules or genes involved in DNA replication, DNA-replication checkpoint (DRC) signaling, and oxidative stress response were identified as the major guardians ... [more]
Cell Mar. 10, 2006; 124(5);1069-81 [Pubmed: 16487579]
Throughput
- High Throughput
Ontology Terms
- inviable (APO:0000112)
Additional Notes
- confirmed by RSA
Curated By
- BioGRID