MYO1E
Gene Ontology Biological Process
Gene Ontology Molecular Function
Gene Ontology Cellular Component
MYH9
Gene Ontology Biological Process
- ATP catabolic process [IDA]
- actin cytoskeleton reorganization [IMP]
- actin filament-based movement [IDA]
- actomyosin structure organization [IDA]
- angiogenesis [IDA]
- axon guidance [TAS]
- blood vessel endothelial cell migration [IMP]
- cytokinesis [IMP]
- integrin-mediated signaling pathway [NAS]
- leukocyte migration [NAS]
- membrane protein ectodomain proteolysis [IDA]
- monocyte differentiation [IEP]
- platelet aggregation [IMP]
- platelet formation [IMP]
- protein transport [IMP]
- regulation of cell shape [IMP]
Gene Ontology Molecular Function- ADP binding [IDA]
- ATP binding [IDA]
- ATPase activity [IDA]
- actin binding [IDA]
- actin filament binding [IDA, NAS]
- actin-dependent ATPase activity [IDA]
- microfilament motor activity [IDA]
- motor activity [NAS]
- poly(A) RNA binding [IDA]
- protein anchor [IMP]
- protein binding [IPI]
- protein homodimerization activity [IDA]
- ADP binding [IDA]
- ATP binding [IDA]
- ATPase activity [IDA]
- actin binding [IDA]
- actin filament binding [IDA, NAS]
- actin-dependent ATPase activity [IDA]
- microfilament motor activity [IDA]
- motor activity [NAS]
- poly(A) RNA binding [IDA]
- protein anchor [IMP]
- protein binding [IPI]
- protein homodimerization activity [IDA]
Gene Ontology Cellular Component
- COP9 signalosome [IDA]
- actin cytoskeleton [IDA]
- actomyosin [IDA]
- actomyosin contractile ring [IDA]
- cell leading edge [IDA]
- cleavage furrow [IDA]
- cytoplasm [IDA]
- cytosol [IDA]
- extracellular vesicular exosome [IDA]
- immunological synapse [IDA]
- integrin complex [IDA]
- membrane [IDA]
- myosin II complex [IDA]
- myosin II filament [IDA]
- nucleus [IDA]
- plasma membrane [IDA]
- protein complex [IDA]
- ruffle [IDA]
- stress fiber [IDA]
- uropod [IDA]
Co-fractionation
Interaction inferred from the presence of two or more protein subunits in a partially purified protein preparation. If co-fractionation is demonstrated between 3 or more proteins, then add them as a complex.
Publication
Panorama of ancient metazoan macromolecular complexes
Macromolecular complexes are essential to conserved biological processes, but their prevalence across animals is unclear. By combining extensive biochemical fractionation with quantitative mass spectrometry, here we directly examined the composition of soluble multiprotein complexes among diverse metazoan models. Using an integrative approach, we generated a draft conservation map consisting of more than one million putative high-confidence co-complex interactions for species ... [more]
Quantitative Score
- 0.232085858 [Confidence Score]
Throughput
- High Throughput
Additional Notes
- Fractionation was combined with mass spectrometry from five diverse animal species to predict co-complex protein interactions conserved across metazoa using an integrative computational scoring procedure along with an SVM approach. The significant data set of 16655 PPI, was derived from a set of more than 1M interactions by examining a ROC curve of predicted interactions against reference annotated complexes at a 67.5% cumulative precision.
Related interactions
Interaction | Experimental Evidence Code | Dataset | Throughput | Score | Curated By | Notes |
---|---|---|---|---|---|---|
MYH9 MYO1E | Affinity Capture-MS Affinity Capture-MS An interaction is inferred when a bait protein is affinity captured from cell extracts by either polyclonal antibody or epitope tag and the associated interaction partner is identified by mass spectrometric methods. | High | - | BioGRID | 1445585 | |
MYH9 MYO1E | Co-fractionation Co-fractionation Interaction inferred from the presence of two or more protein subunits in a partially purified protein preparation. If co-fractionation is demonstrated between 3 or more proteins, then add them as a complex. | High | - | BioGRID | 3442700 |
Curated By
- BioGRID