首页> 美国卫生研究院文献>Biochemical Journal >Stimulated cholesterol-enriched platelets display increased cytosolic Ca2+ and phospholipase A activity independent of changes in inositol trisphosphates and agonist/receptor binding.
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Stimulated cholesterol-enriched platelets display increased cytosolic Ca2+ and phospholipase A activity independent of changes in inositol trisphosphates and agonist/receptor binding.

机译:受刺激的富含胆固醇的血小板显示出增加的胞质Ca2 +和磷脂酶A活性而与三磷酸肌醇和激动剂/受体结合的变化无关。

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摘要

To investigate the mechanism of enhanced responsiveness of cholesterol-enriched human platelets, we compared stimulation by surface-membrane-receptor (thrombin) and post-receptor (AlF4-) G-protein-directed pathways. Platelets were labelled with [32P]Pi and [methyl-3H] choline chloride, incubated with sonicated lipid dispersions of various ratios of cholesterol and phospholipid, and loaded with the fluorescent Ca2+ indicator fura-2. We report the following. (1) Cholesterol enrichment enhances cytosolic Ca2+ accumulation and phospholipase A activation in response to both receptor-directed and post-receptor-directed agonists. No enhancement by cholesterol of phospholipase A activity at fixed Ca2+ concentrations is observed in lysed platelets, implying that no perturbation by cholesterol of phospholipase A/substrate interaction occurs in our preparations. (2) In both normal and cholesterol-enriched platelets, Ca2+ mobilization is promoted by a factor(s) apart from InsP3 that appear(s) to be modulated by cholesterol. A disproportionate increase in cytosolic Ca2+ relative to [32P]InsP3 is observed with increasing doses of thrombin in normal, and to a larger extent in cholesterol-enriched, platelets. When AlF4- is the agonist, there is no cholesterol-associated enhancement in [32P]InsP3 to account for the heightened Ca2+ rise seen with cholesterol enrichment. (3) Enhanced phospholipase A activation is not necessarily proportional to cytosolic Ca2+ increase. The magnitude of the increase in phospholipase A activity for a given rise in cytosolic Ca2+ is greater in cholesterol-enriched platelets that are stimulated by AlF4- than in those stimulated by thrombin. We conclude that increased membrane microviscosity associated with cholesterol enrichment may promote G-protein/phospholipase A interaction as well as the Ca2(+)-release mechanism, without significantly altering G-protein/phospholipase C interaction.
机译:为了研究富含胆固醇的人血小板反应性增强的机制,我们比较了表面膜受体(凝血酶)和受体后(AlF4-)G蛋白定向途径的刺激。用[32P] Pi和[甲基-3H]胆碱氯化物标记血小板,与各种比例的胆固醇和磷脂的超声脂质分散体一起孵育,并加载荧光Ca2 +指示剂fura-2。我们报告以下内容。 (1)胆固醇的富集增强了细胞内Ca2 +的积累和磷脂酶A的激活,从而响应受体导向和受体后导向的激动剂。在裂解的血小板中未观察到胆固醇在固定的Ca2 +浓度下的胆固醇增强作用,这表明在我们的制剂中没有胆固醇对磷脂酶A /底物相互作用的干扰。 (2)在正常和富含胆固醇的血小板中,Ca2 +动员都是由InsP3以外的其他因素促进的,而InsP3似乎受到胆固醇的调节。在正常情况下,随着凝血酶剂量的增加,相对于[32P] InsP3,胞质Ca2 +的增加不成比例,并且在富含胆固醇的血小板中更大程度地观察到。当AlF4-是激动剂时,[32P] InsP3中没有与胆固醇相关的增强作用,可以解释因胆固醇富集而导致的Ca2 +升高。 (3)增强的磷脂酶A激活不一定与胞质Ca2 +增加成正比。给定的细胞溶质Ca2 +升高时,磷脂酶A活性增加的幅度在AlF4-刺激的胆固醇富集的血小板中要比凝血酶刺激的血小板高。我们得出的结论与胆固醇富集相关的增加的膜微粘度可能会促进G蛋白/磷脂酶A相互作用以及Ca2(+)释放机制,而不会显着改变G蛋白/磷脂酶C相互作用。

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