BAIT
NUP43
bA350J20.1, p42
nucleoporin 43kDa
GO Process (10)
GO Function (1)
GO Component (4)
Gene Ontology Biological Process
- carbohydrate metabolic process [TAS]
- cytokine-mediated signaling pathway [TAS]
- glucose transport [TAS]
- hexose transport [TAS]
- mitotic cell cycle [TAS]
- mitotic nuclear envelope disassembly [TAS]
- regulation of glucose transport [TAS]
- small molecule metabolic process [TAS]
- transmembrane transport [TAS]
- viral process [TAS]
Gene Ontology Molecular Function
Gene Ontology Cellular Component
Homo sapiens
PREY
HSPD1
CPN60, GROEL, HLD4, HSP-60, HSP60, HSP65, HuCHA60, SPG13
heat shock 60kDa protein 1 (chaperonin)
GO Process (24)
GO Function (11)
GO Component (16)
Gene Ontology Biological Process
- 'de novo' protein folding [ISS]
- ATP catabolic process [ISS]
- B cell activation [IDA]
- B cell cytokine production [IDA]
- B cell proliferation [IDA]
- MyD88-dependent toll-like receptor signaling pathway [IDA]
- T cell activation [IDA]
- activation of cysteine-type endopeptidase activity involved in apoptotic process [IDA]
- chaperone-mediated protein complex assembly [ISS]
- isotype switching to IgG isotypes [IDA]
- negative regulation of apoptotic process [IMP]
- positive regulation of T cell activation [IDA, ISS]
- positive regulation of T cell mediated immune response to tumor cell [IDA]
- positive regulation of apoptotic process [IMP]
- positive regulation of interferon-alpha production [IDA]
- positive regulation of interferon-gamma production [IDA, ISS]
- positive regulation of interleukin-10 production [IDA]
- positive regulation of interleukin-12 production [IDA]
- positive regulation of interleukin-6 production [IDA]
- positive regulation of macrophage activation [IDA]
- protein maturation [ISS]
- protein refolding [IDA]
- protein stabilization [IMP, ISS]
- response to unfolded protein [IDA]
Gene Ontology Molecular Function- ATPase activity [ISS]
- DNA replication origin binding [ISS]
- chaperone binding [IPI]
- double-stranded RNA binding [IDA]
- lipopolysaccharide binding [IDA]
- p53 binding [IPI]
- poly(A) RNA binding [IDA]
- protein binding [IPI]
- single-stranded DNA binding [ISS]
- ubiquitin protein ligase binding [IPI]
- unfolded protein binding [IC, ISS]
- ATPase activity [ISS]
- DNA replication origin binding [ISS]
- chaperone binding [IPI]
- double-stranded RNA binding [IDA]
- lipopolysaccharide binding [IDA]
- p53 binding [IPI]
- poly(A) RNA binding [IDA]
- protein binding [IPI]
- single-stranded DNA binding [ISS]
- ubiquitin protein ligase binding [IPI]
- unfolded protein binding [IC, ISS]
Gene Ontology Cellular Component
- cell surface [IDA]
- coated pit [IDA]
- coated vesicle [IDA]
- cyclin-dependent protein kinase activating kinase holoenzyme complex [IDA]
- cytoplasm [IDA]
- cytosol [IDA]
- early endosome [IDA]
- extracellular space [IDA]
- extracellular vesicular exosome [IDA]
- lipopolysaccharide receptor complex [IDA]
- membrane [IDA]
- mitochondrial inner membrane [ISS]
- mitochondrial matrix [TAS]
- mitochondrion [IDA]
- protein complex [IDA]
- secretory granule [ISS]
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
An improved smaller biotin ligase for BioID proximity labeling.
The BioID method uses a promiscuous biotin ligase to detect protein-protein associations as well as proximate proteins in living cells. Here we report improvements to the BioID method centered on BioID2, a substantially smaller promiscuous biotin ligase. BioID2 enables more-selective targeting of fusion proteins, requires less biotin supplementation, and exhibits enhanced labeling of proximate proteins. Thus BioID2 improves the efficiency ... [more]
Mol Biol Cell Apr. 15, 2016; 27(8);1188-96 [Pubmed: 26912792]
Throughput
- High Throughput
Additional Notes
- Proteins identified using BioID2
Curated By
- BioGRID