Ca2+-dependent and Ca2+-independent degradation of phosphatidylinositol in rabbit vas deferens
- 15 January 1981
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 194 (1), 129-136
- https://doi.org/10.1042/bj1940129
Abstract
The effects of Ca2+ and acetylcholine on the degradation and synthesis of phosphatidylinositol in rabbit vas deferens was studied in vitro by a pulse–chase technique and by measuring the content of the phospholipid in the tissue. Ca2+-dependent degradation of phosphatidylinositol was found in slices and homogenates prelabelled with myo-[2-3H]inositol. The phosphatidylinositol content of the slices also decreased by a Ca2+-dependent mechanism. On the other hand, removal of intracellular Ca2+ with the ionophore A23187 and EGTA increased the amount of phosphatidylinositol. These results indicate that the intracellular Ca2+ concentration has an important role in regulating the phosphatidylinositol content of the tissue. Increasing the extracellular K+ concentration, which causes an increase in plasma-membrane Ca2+ permeability, did not enhance phosphatidylinositol breakdown nor decrease its tissue content. However, phosphatidylinositol synthesis was clearly inhibited. After stimulation of the smooth muscle with acetylcholine, degradation of phosphatidylinositol was enhanced. Furthermore, the content of phosphatidylinositol in the tissue also decreased. These phenomena were evident even in the absence of Ca2+. The acetylcholine-induced degradation of phosphatidylinositol was blocked by the muscarinic antagonist atropine, but not by the nicotinic antagonist (+)-tubocurarine. The acetylcholine-induced decrease in the phosphatidylinositol content of the tissue led to the compensatory synthesis of phosphatidylinositol. Synthesis was separated from degradation in the same tissue. Compensatory synthesis was inhibited by acetylcholine. The degradation of phosphatidylinositol induced by acetylcholine was not inhibited by 8-bromoguanosine 3′:5′-cyclic monophosphate, indicating that the degradative process was not mediated by an increase in the cyclic nucleotide.This publication has 26 references indexed in Scilit:
- Tissue-specific effects of divalent cations and activators on soluble guanylate cyclaseBiochimica et Biophysica Acta (BBA) - Enzymology, 1979
- Increases in cyclic GMP levels may not mediate relaxant effects of sodium nitroprusside, verapamil and hydralazine in rat vas deferensNature, 1978
- Solubilization of the enzyme catalyzing CDP-diglyceride-independent incorporation of myo-inositol into phosphatidyl inositol and its comparison to CDP-diglyceride:Inositol transferaseArchives of Biochemistry and Biophysics, 1977
- Does cyclic GMP mediate the negative inotropic effect of acetylcholine in the heart?Nature, 1977
- Sodium nitroprusside and other smooth muscle-relaxants increase cyclic GMP levels in rat ductus deferensNature, 1977
- Receptor occupancy dose—response curve suggests that phosphatidyl‐inositol breakdown may be intrinsic to the mechanism of the muscarinic cholinergic receptorFEBS Letters, 1976
- Inositol phospholipids and cell surface receptor functionBiochimica et Biophysica Acta (BBA) - Reviews on Biomembranes, 1975
- Adrenergic stimulation of phosphatidylinositol labelling in rat vas deferensBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1974
- Quantitative aspects of drug-receptor interactionsJournal of Theoretical Biology, 1973
- Studies on the enzymic hydrolysis of monophosphoinositide by phospholipase preparations from P. notatum and ox pancreasBiochimica et Biophysica Acta, 1959