Gene Ontology annotation through association of InterPro records with GO terms
Manual transfer of experimentally-verified manual GO annotation data to orthologs by curator judgment of sequence similarity
Annotation inferences using phylogenetic trees
Automatic transfer of experimentally verified manual GO annotation data to orthologs using Ensembl Compara
Electronic Gene Ontology annotations created by ARBA machine learning models
Combined Automated Annotation using Multiple IEA Methods
Regulation of the phospholipase C-gamma2 pathway in B cells.
Real time fluorescence imaging of PLC gamma translocation and its interaction with the epidermal growth factor receptor.
Tyrosine residues in phospholipase Cgamma 2 essential for the enzyme function in B-cell signaling.
Activation of phospholipase Cgamma2 by tyrosine phosphorylation.
Glycoproteins VI and Ib-IX-V stimulate tyrosine phosphorylation of tyrosine kinase Syk and phospholipase Cgamma2 at distinct sites.
Mechanism of B-cell receptor-induced phosphorylation and activation of phospholipase C-gamma2.
A systematic scan of interactions with tyrosine motifs in the erythropoietin receptor using a mammalian 2-hybrid approach.
A quantitative protein interaction network for the ErbB receptors using protein microarrays.
Molecular profiling of isolated histological components of wilms tumor implicates a common role for the Wnt signaling pathway in kidney and tumor development.
MHC class II-associated proteins in B-cell exosomes and potential functional implications for exosome biogenesis.
Tarp regulates early Chlamydia-induced host cell survival through interactions with the human adaptor protein SHC1.
A hypermorphic missense mutation in PLCG2, encoding phospholipase Cγ2, causes a dominantly inherited autoinflammatory disease with immunodeficiency.
BANK1 and BLK act through phospholipase C gamma 2 in B-cell signaling.
Fine specificity and molecular competition in SLAM family receptor signalling.
The mammalian-membrane two-hybrid assay (MaMTH) for probing membrane-protein interactions in human cells.
Enhanced prediction of Src homology 2 (SH2) domain binding potentials using a fluorescence polarization-derived c-Met, c-Kit, ErbB, and androgen receptor interactome.
Using an in situ proximity ligation assay to systematically profile endogenous protein-protein interactions in a pathway network.
Phospho-tyrosine dependent protein-protein interaction network.
CD21 and FCRL5 form a receptor complex with robust B-cell activating capacity.
Extensive rewiring of the EGFR network in colorectal cancer cells expressing transforming levels of KRAS(G13D).
Alzheimer's-associated PLCγ2 is a signaling node required for both TREM2 function and the inflammatory response in human microglia.
Dual proteome-scale networks reveal cell-specific remodeling of the human interactome.
Systematic discovery of mutation-directed neo-protein-protein interactions in cancer.
BLNK (SLP-65) Signalosome hydrolyzes phosphatidyinositol bisphosphate forming diacylglycerol and inositol-1,4,5-trisphosphate
PLC gamma 2-mediated PIP2 hydrolysis
PI(4,5)P2 is hydrolysed to I(1,4,5)P3 and DAG by tethered PLC[1] at the plasma membrane
PLC-gamma1 hydrolyses PIP2
Phosphorylation and activation of PLCG
Recruitment of PLCgamma to membrane
Release of PLCG from FCGR
Phosphorylation of SLP-76 by p-SYK
Recruitment of PLC-gamma to SLP-76 and p-5Y-LAT
Activation of RAC1 by VAV2/3
Recruitment of VAV and BTK to p-SLP-76
Phosphorylation of BTK by p-SYK
Phosphorylation and activation of VAV2/VAV3 by SYK
Phosphorylation of PLC-gamma by p-BTK/p-SYK
Fc epsilon receptor (FCERI) signaling
Phosphorylation of TEC kinases by p-SYK
Activation of RAC1 by VAV
Phosphorylation and activation of VAV
Hydrolysis of PIP2 by PLCG
Phosphorylation of SLP-76 by p-SYK
Autophosphorylation of PAK
Autophosphorylation of BTK/ITK
Recruitment of PAK to the membrane by binding active RAC1
Recruitment of VAV to p-SLP-76
SLP-76 stimulates PLC gamma 2
p-Y753,Y759-PLCG2 hydrolyses PIP2
p-Y753,Y759-PLCG2 translocates from cytosol to plasma membrane
PLCG2 translocates from cytosol to plasma membrane
SYK phosphorylates PLCG2 in p-6Y-SYK:p-Y65,Y76-FCER1G:PLCG2
C-type lectin receptors (CLRs)
Platelet activation, signaling and aggregation
Phosphorylated BLNK (SLP65, in Antigen:p-BCR:p-SYK:p-BLNK:CIN85:GRB2:SOS1) binds BTK, PLCG2, VAV1, NCK1
p-DAPP1 (p-BAM32) binds PLCG2
Recruitment of PLCgamma to membrane due to FCGR3A effect
Release of PLCG from FCGR3A
Phosphorylation and activation of PLCG due to FCGR3A effect
Structural insights into formation of an active signaling complex between Rac and phospholipase C gamma 2.
Cold urticaria, immunodeficiency, and autoimmunity related to PLCG2 deletions.