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脑突触体对花生四烯酰标记的磷脂酰肌醇的降解作用。

Degradation of arachidonoyl-labeled phosphatidylinositols by brain synaptosomes.

作者信息

Der O M, Sun G Y

出版信息

J Neurochem. 1981 Feb;36(2):355-62. doi: 10.1111/j.1471-4159.1981.tb01602.x.

DOI:10.1111/j.1471-4159.1981.tb01602.x
PMID:7463064
Abstract

Incubation of synaptosomes together with 1-acyl-2-[14C]arachidonoyl-sn-glycerophosphoinositols (GPI) and sodium deoxycholate yielded diacylglycerols and free arachidonic acid. Diacylglycerol formation is attributed to hydrolysis by the diacyl-GPI-specific phospholipase C (EC 3.1.4.10), and this reaction requires sodium deoxycholate for optimal activity. The free arachidonic acid formed is attributed to hydrolysis of diacyl-GPI by phospholipase A (EC 3.1.1.5). Free fatty acid release was observed during incubation, even in the absence of bile salts, but this process was preferentially stimulated by sodium taurocholate. The release of fatty acids was not specific for diacyl-GPI, as similar release was obtained during incubation with other phosphoglycerides. In the presence of deoxycholate (2 mg/ml), the release of diacylglycerols was maximal at a diacyl-GPI concentration around 1.0 mM. However, the free fatty acid release was linear with respect to the substrate at least up to 1.4 mM. The rate of diacylglycerol release from diacyl-GPI was more rapid in the initial 30 min, whereas the free fatty acid release was linear with time up to 2 h. Under this incubation condition, calcium was found to stimulate both types of hydrolytic action, although the concentration needed to achieve this stimulation was rather high. This type of labeled precursor is potentially useful for studies of the different modes of diacyl-GPI degradation by enzymes in brain subcellular membranes.

摘要

将突触体与1-酰基-2-[14C]花生四烯酰基-sn-甘油磷酸肌醇(GPI)以及脱氧胆酸钠一起孵育,会产生二酰基甘油和游离花生四烯酸。二酰基甘油的形成归因于二酰基-GPI特异性磷脂酶C(EC 3.1.4.10)的水解作用,并且该反应需要脱氧胆酸钠以达到最佳活性。形成的游离花生四烯酸归因于磷脂酶A(EC 3.1.1.5)对二酰基-GPI的水解。在孵育过程中观察到即使在没有胆汁盐的情况下也有游离脂肪酸释放,但该过程优先受到牛磺胆酸钠的刺激。脂肪酸的释放并非二酰基-GPI所特有,因为在与其他磷酸甘油酯孵育期间也获得了类似的释放。在脱氧胆酸钠(2 mg/ml)存在的情况下,二酰基甘油的释放在二酰基-GPI浓度约为1.0 mM时达到最大值。然而,游离脂肪酸的释放至少在高达1.4 mM时与底物呈线性关系。二酰基-GPI中二酰基甘油的释放速率在最初30分钟内更快,而游离脂肪酸的释放在长达2小时内与时间呈线性关系。在这种孵育条件下,发现钙会刺激这两种水解作用,尽管实现这种刺激所需的浓度相当高。这种类型的标记前体对于研究脑亚细胞膜中酶对二酰基-GPI的不同降解模式可能是有用的。

相似文献

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Degradation of arachidonoyl-labeled phosphatidylinositols by brain synaptosomes.脑突触体对花生四烯酰标记的磷脂酰肌醇的降解作用。
J Neurochem. 1981 Feb;36(2):355-62. doi: 10.1111/j.1471-4159.1981.tb01602.x.
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The accumulation of free arachidonic acid, diacylglycerols, prostaglandins, and lipoxygenase reaction products in the brain during experimental epilepsy.实验性癫痫发作期间大脑中游离花生四烯酸、二酰基甘油、前列腺素和脂氧合酶反应产物的积累。
Adv Neurol. 1986;44:879-902.

引用本文的文献

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Effects of postdecapitative ischemia on arachidonate release from brain synaptosomes.
Neurochem Res. 1981 May;6(5):567-76. doi: 10.1007/BF00964394.
2
Effects of cannabinoids on the activities of mouse brain lipases.
Neurochem Res. 1986 Sep;11(9):1273-88. doi: 10.1007/BF00966122.
3
Metabolism of phosphatidylinositol in plasma membranes and synaptosomes of rat cerebral cortex: a comparison between endogenous vs exogenous substrate pools.大鼠大脑皮质质膜和突触体中磷脂酰肌醇的代谢:内源性与外源性底物池的比较
Lipids. 1990 May;25(5):273-7. doi: 10.1007/BF02544387.