Gene interactions and pathways from curated databases and text-mining

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CD79B — PLCG2

Pathways - manually collected, often from reviews:

Text-mined interactions from Literome

Watanabe et al., J Biol Chem 2001 : Substitution of all four tyrosine residues almost completely eliminated the BCR induced PLCgamma2 phosphorylation, indicating that these residues include the major phosphorylation sites upon BCR engagement
Benschop et al., J Immunol 2001 : BCR induced tyrosine phosphorylation of CD79a, Lyn, B cell linker protein, and phospholipase Cgamma2 is enhanced in immature B cells and they exhibit greater capacitative calcium entry in response to Ag
Wen et al., J Biol Chem 2003 : PLCgamma2 plays a critical role in B cell receptor (BCR) signaling and its targeted deletion results in defective B cell development and function
Bai et al., Mol Cell Biol 2007 : Phospholipase Cgamma2 ( PLCgamma2 ) is critical for pre-B-cell receptor ( pre-BCR ) and BCR signaling
Chen et al., Blood 2008 (Calcium Signaling...) : CLL cells made to express ZAP-70, a kinase-defective ZAP-70 ( ZAP-70-KA ( 369 ) ), or a ZAP-70 unable to bind c-Cbl ( ZAP-YF ( 292 ) ) experienced greater intracellular calcium flux and had greater increases in the levels of phosphorylated p72(Syk), B-cell linker protein (BLNK), and phospholipase C-gamma , and greater activation of the Ig accessory molecule CD79b in response to treatment with anti-mu than did mock transfected CLL cells lacking ZAP-70
Venkataraman et al., Mol Immunol 1998 : Previous studies have shown that PKA-activation blocks BCR induced phospholipase Cgamma-activation and calcium mobilization