BAIT
RPA2
REPA2, RP-A p32, RP-A p34, RPA32, RP4-547C9.3
replication protein A2, 32kDa
GO Process (20)
GO Function (6)
GO Component (6)
Gene Ontology Biological Process
- DNA recombinase assembly [TAS]
- DNA repair [TAS]
- DNA replication [IDA, IMP, TAS]
- DNA strand elongation involved in DNA replication [TAS]
- G1/S transition of mitotic cell cycle [TAS]
- base-excision repair [IDA]
- double-strand break repair [TAS]
- double-strand break repair via homologous recombination [IMP, TAS]
- mismatch repair [IMP]
- mitotic G1 DNA damage checkpoint [IMP]
- mitotic cell cycle [TAS]
- nucleotide-excision repair [IMP, TAS]
- nucleotide-excision repair, DNA damage removal [TAS]
- nucleotide-excision repair, DNA gap filling [TAS]
- regulation of DNA damage checkpoint [IMP]
- regulation of double-strand break repair via homologous recombination [IMP]
- telomere maintenance [IMP, TAS]
- telomere maintenance via recombination [TAS]
- telomere maintenance via semi-conservative replication [TAS]
- transcription-coupled nucleotide-excision repair [TAS]
Gene Ontology Molecular Function
Gene Ontology Cellular Component
Homo sapiens
PREY
NF1
NFNS, VRNF, WSS
neurofibromin 1
GO Process (49)
GO Function (4)
GO Component (6)
Gene Ontology Biological Process
- MAPK cascade [ISS]
- Ras protein signal transduction [ISS]
- Schwann cell development [ISS]
- actin cytoskeleton organization [ISS]
- adrenal gland development [ISS]
- artery morphogenesis [ISS]
- brain development [ISS]
- camera-type eye morphogenesis [ISS]
- cell communication [ISS]
- cerebral cortex development [ISS]
- cognition [IMP]
- collagen fibril organization [ISS]
- extracellular matrix organization [ISS]
- forebrain astrocyte development [ISS]
- forebrain morphogenesis [ISS]
- heart development [ISS]
- liver development [ISS]
- metanephros development [ISS]
- myelination in peripheral nervous system [ISS]
- negative regulation of MAP kinase activity [ISS]
- negative regulation of MAPK cascade [IMP, ISS]
- negative regulation of Ras protein signal transduction [IBA]
- negative regulation of cell migration [IMP]
- negative regulation of endothelial cell proliferation [IMP]
- negative regulation of fibroblast proliferation [ISS]
- negative regulation of neuroblast proliferation [ISS]
- negative regulation of oligodendrocyte differentiation [ISS]
- negative regulation of protein kinase activity [ISS]
- negative regulation of transcription factor import into nucleus [ISS]
- osteoblast differentiation [ISS]
- peripheral nervous system development [ISS]
- phosphatidylinositol 3-kinase signaling [ISS]
- pigmentation [ISS]
- positive regulation of Ras GTPase activity [IDA, IMP, ISS]
- positive regulation of adenylate cyclase activity [ISS]
- positive regulation of apoptotic process [ISS]
- positive regulation of neuron apoptotic process [ISS]
- regulation of Ras GTPase activity [IMP]
- regulation of angiogenesis [IMP]
- regulation of blood vessel endothelial cell migration [IMP]
- regulation of bone resorption [ISS]
- regulation of cell-matrix adhesion [ISS]
- regulation of glial cell differentiation [ISS]
- response to hypoxia [ISS]
- smooth muscle tissue development [ISS]
- spinal cord development [ISS]
- sympathetic nervous system development [ISS]
- visual learning [ISS]
- wound healing [ISS]
Gene Ontology Molecular Function
Homo sapiens
Proximity Label-MS
An interaction is inferred when a bait-enzyme fusion protein selectively modifies a vicinal protein with a diffusible reactive product, followed by affinity capture of the modified protein and identification by mass spectrometric methods.
Publication
Antagonistic roles of canonical and Alternative-RPA in disease-associated tandem CAG repeat instability.
Expansions of repeat DNA tracts cause >70 diseases, and ongoing expansions in brains exacerbate disease. During expansion mutations, single-stranded DNAs (ssDNAs) form slipped-DNAs. We find the ssDNA-binding complexes canonical replication protein A (RPA1, RPA2, and RPA3) and Alternative-RPA (RPA1, RPA3, and primate-specific RPA4) are upregulated in Huntington disease and spinocerebellar ataxia type 1 (SCA1) patient brains. Protein interactomes of RPA ... [more]
Cell Oct. 26, 2023; 186(22);4898-4919.e25 [Pubmed: 37827155]
Throughput
- High Throughput
Additional Notes
- >5 log2-fold enrichment and p value < 0.01 versus untransfected controls
- BioID
- HU treated HEK293T cells (7.7485 log2-fold enrichment)
- Untreated HEK293T cells (7.8504 log2-fold enrichment)
Curated By
- BioGRID