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能量缺乏的心肌细胞中的磷脂降解:膜联蛋白V起作用吗?

Phospholipid degradation in energy-deprived cardiac myocytes: does annexin V play a role?

作者信息

Jans S W, Willems J, van Bilsen M, Reutelingsperger C P, van der Vusse G J

机构信息

Department of Physiology, Cardiovascular Research Institute Maastricht, Maastricht University, The Netherlands.

出版信息

J Mol Cell Cardiol. 1997 May;29(5):1401-10. doi: 10.1006/jmcc.1997.0378.

Abstract

This study explored whether annexin V, a protein with established phospholipase A2 inhibiting properties, plays a role in the degradation of membrane phospholipids of adult cardiac myocytes during metabolic inhibition (20 mM 2-deoxyglucose and 1 mM iodoacetic acid). Experiments were carried out on isolated cardiac myocytes prelabeled with [14C]-arachidonic acid, which were subjected to metabolic inhibition for up to 240 min. Under control conditions, annexin V was found to be localised predominantly at the sarcolemma. After 120 min of metabolic inhibition, the release of lactate dehydrogenase (LDH) was still comparable with control cells, while morphological changes were already visible. After 240 min of metabolic inhibition, LDH release was significantly elevated compared to control cells incubated for the same period of time (35% v 20% of total cellular activity). All myocytes had lost their typical elongated shape and sarcolemmal "blebs" had been formed. In metabolically inhibited cells, annexin V localisation seemed to be more pronounced at the level of the sarcolemma compared to controls, whereas membrane phospholipid hydrolysis occurred at a significantly elevated rate, as evidenced by a significantly enhanced accumulation of labeled arachidonic acid within the cells. The present findings are not in favor of the hypothesis that the increase in net degradation of phospholipids in energy-deprived cardiac myocytes is caused by a loss of annexin V from the sarcolemma, which would increase the vulnerability of the sarcolemma to phospholipase A2 activity.

摘要

本研究探讨了膜联蛋白V(一种具有既定磷脂酶A2抑制特性的蛋白质)在代谢抑制(20 mM 2-脱氧葡萄糖和1 mM碘乙酸)期间对成年心肌细胞膜磷脂降解是否起作用。实验在预先用[14C]-花生四烯酸标记的分离心肌细胞上进行,这些细胞接受长达240分钟的代谢抑制。在对照条件下,发现膜联蛋白V主要定位于肌膜。代谢抑制120分钟后,乳酸脱氢酶(LDH)的释放仍与对照细胞相当,而形态学变化已经可见。代谢抑制240分钟后,与同期培养的对照细胞相比,LDH释放显著升高(占总细胞活性的35%对20%)。所有心肌细胞均失去其典型的细长形状,并形成了肌膜“小泡”。在代谢抑制的细胞中,与对照相比,膜联蛋白V在肌膜水平的定位似乎更明显,而膜磷脂水解以显著升高的速率发生,细胞内标记花生四烯酸的积累显著增加证明了这一点。目前的研究结果不支持以下假设:能量缺乏的心肌细胞中磷脂净降解的增加是由膜联蛋白V从肌膜丢失所致,这会增加肌膜对磷脂酶A2活性的易感性。

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