PRKCB
Gene Ontology Biological Process
- B cell activation [ISS]
- B cell receptor signaling pathway [ISS]
- blood coagulation [TAS]
- histone H3-T6 phosphorylation [IDA]
- lipoprotein transport [TAS]
- negative regulation of glucose transport [ISS]
- negative regulation of insulin receptor signaling pathway [ISS]
- platelet activation [TAS]
- positive regulation of B cell receptor signaling pathway [ISS]
- positive regulation of I-kappaB kinase/NF-kappaB signaling [ISS]
- positive regulation of NF-kappaB transcription factor activity [ISS]
- positive regulation of angiogenesis [ISS]
- positive regulation of vascular endothelial growth factor receptor signaling pathway [ISS]
- protein phosphorylation [TAS]
- regulation of transcription from RNA polymerase II promoter [IMP]
- signal transduction [NAS]
- synaptic transmission [TAS]
Gene Ontology Molecular Function
LIG1
Gene Ontology Biological Process
- DNA metabolic process [TAS]
- DNA repair [TAS]
- DNA strand elongation involved in DNA replication [TAS]
- V(D)J recombination [IDA]
- anatomical structure morphogenesis [TAS]
- base-excision repair [TAS]
- double-strand break repair [TAS]
- double-strand break repair via homologous recombination [TAS]
- lagging strand elongation [IBA]
- mitotic cell cycle [TAS]
- nucleotide-excision repair [IBA, TAS]
- nucleotide-excision repair, DNA gap filling [TAS]
- telomere maintenance [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
Biochemical Activity (Phosphorylation)
An interaction is inferred from the biochemical effect of one protein upon another, for example, GTP-GDP exchange activity or phosphorylation of a substrate by a kinase. The bait protein executes the activity on the substrate hit protein. A Modification value is recorded for interactions of this type with the possible values Phosphorylation, Ubiquitination, Sumoylation, Dephosphorylation, Methylation, Prenylation, Acetylation, Deubiquitination, Proteolytic Processing, Glucosylation, Nedd(Rub1)ylation, Deacetylation, No Modification, Demethylation.
Publication
Structure of the UHRF1 Tandem Tudor Domain Bound to a Methylated Non-histone Protein, LIG1, Reveals Rules for Binding and Regulation.
The protein UHRF1 is crucial for DNA methylation maintenance. The tandem Tudor domain (TTD) of UHRF1 binds histone H3K9me2/3 with micromolar affinity, as well as unmethylated linker regions within UHRF1 itself, causing auto-inhibition. Recently, we showed that a methylated histone-like region of DNA ligase 1 (LIG1K126me2/me3) binds the UHRF1 TTD with nanomolar affinity, permitting UHRF1 recruitment to chromatin. Here we ... [more]
Throughput
- Low Throughput
Curated By
- BioGRID