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Molecular Mechanism of the Inhibition of Phospholipase C β3 by Protein Kinase C

pmid: 10893237
Molecular Mechanism of the Inhibition of Phospholipase C β3 by Protein Kinase C
Activation of protein kinase C (PKC) can result from stimulation of the receptor-G protein-phospholipase C (PLCbeta) pathway. In turn, phosphorylation of PLCbeta by PKC may play a role in the regulation of receptor-mediated phosphatidylinositide (PI) turnover and intracellular Ca(2+) release. Activation of endogenous PKC by phorbol 12-myristate 13-acetate inhibited both Galpha(q)-coupled (oxytocin and M1 muscarinic) and Galpha(i)-coupled (formyl-Met-Leu-Phe) receptor-stimulated PI turnover by 50-100% in PHM1, HeLa, COSM6, and RBL-2H3 cells expressing PLCbeta(3). Activation of conventional PKCs with thymeleatoxin similarly inhibited oxytocin or formyl-Met-Leu-Phe receptor-stimulated PI turnover. The PKC inhibitory effect was also observed when PLCbeta(3) was stimulated directly by Galpha(q) or Gbetagamma in overexpression assays. PKC phosphorylated PLCbeta(3) at the same predominant site in vivo and in vitro. Peptide sequencing of in vitro phosphorylated recombinant PLCbeta(3) and site-directed mutagenesis identified Ser(1105) as the predominant phosphorylation site. Ser(1105) is also phosphorylated by protein kinase A (PKA; Yue, C., Dodge, K. L., Weber, G., and Sanborn, B. M. (1998) J. Biol. Chem. 273, 18023-18027). Similar to PKA, the inhibition by PKC of Galpha(q)-stimulated PLCbeta(3) activity was completely abolished by mutation of Ser(1105) to Ala. In contrast, mutation of Ser(1105) or Ser(26), another putative phosphorylation target, to Ala had no effect on inhibition of Gbetagamma-stimulated PLCbeta(3) activity by PKC or PKA. These data indicate that PKC and PKA act similarly in that they inhibit Galpha(q)-stimulated PLCbeta(3) as a result of phosphorylation of Ser(1105). Moreover, PKC and PKA both inhibit Gbetagamma-stimulated activity by mechanisms that do not involve Ser(1105).
- The University of Texas at Austin United States
- The University of Texas System United States
- California Institute of Technology United States
- The University of Texas Health Science Center at Houston United States
570, Receptors, Peptide, Receptor, Muscarinic M1, Phospholipase C beta, 610, Phosphatidylinositols, Cyclic AMP-Dependent Protein Kinases, Heterotrimeric GTP-Binding Proteins, Receptors, Formyl Peptide, Receptors, Muscarinic, Enzyme Activation, Isoenzymes, Receptors, Oxytocin, Type C Phospholipases, Serine, Phosphorylation, Receptors, Immunologic, Caltech Library Services, Protein Kinase C, Signal Transduction
570, Receptors, Peptide, Receptor, Muscarinic M1, Phospholipase C beta, 610, Phosphatidylinositols, Cyclic AMP-Dependent Protein Kinases, Heterotrimeric GTP-Binding Proteins, Receptors, Formyl Peptide, Receptors, Muscarinic, Enzyme Activation, Isoenzymes, Receptors, Oxytocin, Type C Phospholipases, Serine, Phosphorylation, Receptors, Immunologic, Caltech Library Services, Protein Kinase C, Signal Transduction
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