BAIT
NUP120
RAT2, L000003138, YKL057C
Subunit of the Nup84p subcomplex of the nuclear pore complex (NPC); contributes to nucleocytoplasmic transport and NPC biogenesis and is involved in establishment of a normal nucleocytoplasmic concentration gradient of the GTPase Gsp1p; also plays roles in several processes that may require localization of genes or chromosomes at the nuclear periphery, including double-strand break repair, transcription and chromatin silencing; homologous to human NUP160
GO Process (13)
GO Function (1)
GO Component (3)
Gene Ontology Biological Process
- double-strand break repair [IGI, IMP]
- mRNA export from nucleus [IMP]
- mRNA export from nucleus in response to heat stress [IMP]
- maintenance of chromatin silencing at telomere [IMP]
- negative regulation of transcription from RNA polymerase II promoter [IMP]
- nuclear pore distribution [IMP]
- positive regulation of transcription from RNA polymerase II promoter [IMP]
- positive regulation of transcription, DNA-templated [IDA, IGI]
- posttranscriptional tethering of RNA polymerase II gene DNA at nuclear periphery [IMP]
- protein export from nucleus [IMP]
- protein import into nucleus [IMP]
- ribosomal large subunit export from nucleus [IMP]
- telomere tethering at nuclear periphery [IMP]
Gene Ontology Molecular Function
Gene Ontology Cellular Component
Saccharomyces cerevisiae (S288c)
PREY
GLC7
CID1, DIS2, type 1 serine/threonine-protein phosphatase catalytic subunit GLC7, DIS2S1, PP1, L000000706, YER133W
Type 1 serine/threonine protein phosphatase catalytic subunit; cleavage and polyadenylation factor (CPF) component; involved in various processes including glycogen metabolism, sporulation, mitosis; accumulates at mating projections by interaction with Afr1p; interacts with many regulatory subunits; involved in regulation of the nucleocytoplasmic shuttling of Hxk2p; import into nucleus is inhibited during spindle assembly checkpoint arrest
GO Process (24)
GO Function (1)
GO Component (8)
Gene Ontology Biological Process
- DNA damage checkpoint [IMP]
- DNA replication checkpoint [IGI, IMP]
- ascospore formation [IMP]
- cell budding [IMP]
- cellular ion homeostasis [IMP]
- chromosome segregation [IMP]
- dephosphorylation of RNA polymerase II C-terminal domain [IDA]
- glycogen metabolic process [IMP]
- histone dephosphorylation [IDA, IMP]
- meiotic nuclear division [IPI]
- mitotic spindle assembly checkpoint [IMP]
- positive regulation of protein dephosphorylation [IMP]
- protein dephosphorylation [IDA]
- protein localization to kinetochore [IMP]
- rRNA processing [IMP]
- regulation of carbohydrate metabolic process [IGI, IPI]
- regulation of cell cycle [IMP]
- regulation of cell shape during vegetative growth phase [IGI]
- regulation of mitotic cell cycle [IMP]
- replication fork processing [IMP]
- response to heat [IMP, IPI]
- termination of RNA polymerase II transcription, exosome-dependent [IPI]
- termination of RNA polymerase II transcription, poly(A)-coupled [IPI]
- transfer RNA gene-mediated silencing [IMP]
Gene Ontology Molecular Function
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
A genetic interaction map of RNA-processing factors reveals links between Sem1/Dss1-containing complexes and mRNA export and splicing.
We used a quantitative, high-density genetic interaction map, or E-MAP (Epistatic MiniArray Profile), to interrogate the relationships within and between RNA-processing pathways. Due to their complexity and the essential roles of many of the components, these pathways have been difficult to functionally dissect. Here, we report the results for 107,155 individual interactions involving 552 mutations, 166 of which are hypomorphic ... [more]
Mol. Cell Dec. 05, 2008; 32(5);735-46 [Pubmed: 19061648]
Quantitative Score
- -5.105022 [SGA Score]
Throughput
- High Throughput
Ontology Terms
- phenotype: colony size (APO:0000063)
Additional Notes
- An Epistatic MiniArray Profile (E-MAP) analysis was used to quantitatively score genetic interactions based on fitness defects estimated from the colony size of double versus single mutants. Genetic interactions were considered significant if they had an S score > 2.5 for positive interactions (suppression) and S score < -2.5 for negative interactions (synthetic sick/lethality).
Curated By
- BioGRID