BAIT
RPS6KA1
HU-1, MAPKAPK1A, RSK, RSK1, p90Rsk, RP11-492M19.2
ribosomal protein S6 kinase, 90kDa, polypeptide 1
GO Process (26)
GO Function (4)
GO Component (4)
Gene Ontology Biological Process
- MyD88-dependent toll-like receptor signaling pathway [TAS]
- MyD88-independent toll-like receptor signaling pathway [TAS]
- TRIF-dependent toll-like receptor signaling pathway [TAS]
- axon guidance [TAS]
- innate immune response [TAS]
- negative regulation of apoptotic process [IMP]
- negative regulation of cysteine-type endopeptidase activity involved in apoptotic process [IDA]
- neurotrophin TRK receptor signaling pathway [TAS]
- positive regulation of cell differentiation [TAS]
- positive regulation of cell growth [TAS]
- positive regulation of hepatic stellate cell activation [IMP]
- positive regulation of transcription from RNA polymerase II promoter [IMP]
- regulation of DNA-templated transcription in response to stress [TAS]
- regulation of translation in response to stress [TAS]
- signal transduction [TAS]
- stress-activated MAPK cascade [TAS]
- synaptic transmission [TAS]
- toll-like receptor 10 signaling pathway [TAS]
- toll-like receptor 2 signaling pathway [TAS]
- toll-like receptor 3 signaling pathway [TAS]
- toll-like receptor 4 signaling pathway [TAS]
- toll-like receptor 5 signaling pathway [TAS]
- toll-like receptor 9 signaling pathway [TAS]
- toll-like receptor TLR1:TLR2 signaling pathway [TAS]
- toll-like receptor TLR6:TLR2 signaling pathway [TAS]
- toll-like receptor signaling pathway [TAS]
Gene Ontology Molecular Function
Homo sapiens
PREY
HMGB2
HMG2
high mobility group box 2
GO Process (22)
GO Function (12)
GO Component (7)
Gene Ontology Biological Process
- DNA ligation involved in DNA repair [ISS]
- DNA topological change [ISS]
- V(D)J recombination [ISS]
- apoptotic DNA fragmentation [TAS]
- apoptotic process [TAS]
- base-excision repair, DNA ligation [IDA]
- cell chemotaxis [IDA]
- cellular component disassembly involved in execution phase of apoptosis [TAS]
- cellular response to lipopolysaccharide [IEP]
- chromatin organization [NAS]
- chromatin remodeling [IBA]
- negative regulation of transcription, DNA-templated [IDA]
- nucleosome assembly [NAS]
- positive chemotaxis [IDA]
- positive regulation of DNA binding [IDA]
- positive regulation of endothelial cell proliferation [IDA]
- positive regulation of erythrocyte differentiation [IMP]
- positive regulation of megakaryocyte differentiation [IMP]
- positive regulation of nuclease activity [IDA]
- positive regulation of transcription from RNA polymerase II promoter [IDA]
- positive regulation of transcription, DNA-templated [IDA]
- regulation of transcription from RNA polymerase II promoter [IDA]
Gene Ontology Molecular Function- DNA binding [IMP]
- DNA binding, bending [IDA]
- RAGE receptor binding [IGI]
- chemoattractant activity [IDA]
- chromatin binding [IBA]
- damaged DNA binding [IDA]
- double-stranded DNA binding [ISS]
- poly(A) RNA binding [IDA]
- protein binding [IPI]
- sequence-specific DNA binding transcription factor activity [IDA]
- single-stranded DNA binding [ISS]
- transcription regulatory region DNA binding [IDA]
- DNA binding [IMP]
- DNA binding, bending [IDA]
- RAGE receptor binding [IGI]
- chemoattractant activity [IDA]
- chromatin binding [IBA]
- damaged DNA binding [IDA]
- double-stranded DNA binding [ISS]
- poly(A) RNA binding [IDA]
- protein binding [IPI]
- sequence-specific DNA binding transcription factor activity [IDA]
- single-stranded DNA binding [ISS]
- transcription regulatory region DNA binding [IDA]
Gene Ontology Cellular Component
Homo sapiens
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.
Publication
Multiplexed kinase interactome profiling quantifies cellular network activity and plasticity.
Dynamic changes in protein-protein interaction (PPI) networks underlie all physiological cellular functions and drive devastating human diseases. Profiling PPI networks can, therefore, provide critical insight into disease mechanisms and identify new drug targets. Kinases are regulatory nodes in many PPI networks; yet, facile methods to systematically study kinase interactome dynamics are lacking. We describe kinobead competition and correlation analysis (kiCCA), ... [more]
Mol Cell Mar. 02, 2023; 83(5);803-818.e8 [Pubmed: 36736316]
Quantitative Score
- 0.692090596 [kiCCA Pearson R Value]
Throughput
- High Throughput
Additional Notes
- A kinobead competition and correlation analysis (kiCCA) involving a quantitative mass spectrometry-based chemoproteomic method was carried out to identify endogenous kinase interactors.
- High confidence interactions had a kiCCA Pearson R Value >=0.6.
Curated By
- BioGRID