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关于花生四烯酸在血小板磷脂中替代的拓扑分布以及与血小板活化伴随的磷脂效应相关酶的研究。

Studies on topological distribution of arachidonic acid replacement in platelet phospholipids and on enzymes involved in the phospholipid effect accompanying platelet activation.

作者信息

Chap H, Mauco G, Perret B, Plantavid M, Laffont F, Simon M F, Douste-Blazy L

出版信息

Agents Actions. 1981 Dec;11(6-7):538-40. doi: 10.1007/BF01978729.

Abstract

In this short review recent results obtained on platelet phospholipid metabolism are summarized. The first part reports a topological study of arachidonic acid (AA) replacement in platelet phospholipids. It is shown that incubation of platelets with radioactive free arachidonic acid leads to a labelling of the phospholipids present inside the platelet, whereas the exchange of intact phosphatidylcholine (PC) molecules with the plasma lipoproteins occurs on the platelet outer surface. This should allow a selective labelling of the small external pool of AA in order to follow its behaviour during platelet activation. In the second part, some enzymes involved in the metabolism of phosphatidylinositol (PI) have been further characterized. The first one is a diglyceride-lipase, which is located in the plasma membrane and releases the two fatty acids esterifying the diglycerides formed from PI by the action of the platelet phospholipase C. Such an enzyme is probably responsible for the release of AA from PI occurring upon platelet activation. On the other hand, cytosolic phospholipid exchange proteins able to catalyse the transfer of PI between membranes have been identified. The possible role of the enzymes involved in the acceleration of PI turnover occurring during platelet activation is discussed.

摘要

在这篇简短的综述中,总结了近期在血小板磷脂代谢方面取得的研究成果。第一部分报道了对血小板磷脂中花生四烯酸(AA)置换的拓扑学研究。结果表明,用放射性游离花生四烯酸孵育血小板会导致血小板内部存在的磷脂被标记,而完整的磷脂酰胆碱(PC)分子与血浆脂蛋白的交换则发生在血小板外表面。这应能对少量外部花生四烯酸池进行选择性标记,以便追踪其在血小板激活过程中的行为。在第二部分中,对参与磷脂酰肌醇(PI)代谢的一些酶进行了进一步的表征。第一种是二酰甘油脂肪酶,它位于质膜中,通过血小板磷脂酶C的作用释放出由PI形成的二酰甘油酯化的两种脂肪酸。这种酶可能负责血小板激活时PI中花生四烯酸的释放。另一方面,已鉴定出能够催化膜间PI转移的胞质磷脂交换蛋白。讨论了参与血小板激活过程中PI周转加速的酶的可能作用。

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