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细胞死亡中的溶酶体膜通透性改变

Lysosomal membrane permeabilization in cell death.

作者信息

Boya P, Kroemer G

机构信息

3D Lab (Development, Differentiation and Degeneration), Department of Cellular and Molecular Physiopathology, Centro de Investigaciones Biológicas, CSIC, Madrid, Spain.

出版信息

Oncogene. 2008 Oct 27;27(50):6434-51. doi: 10.1038/onc.2008.310.

DOI:10.1038/onc.2008.310
PMID:18955971
Abstract

Mitochondrial outer membrane permeabilization (MOMP) constitutes one of the major checkpoint(s) of apoptotic and necrotic cell death. Recently, the permeabilization of yet another organelle, the lysosome, has been shown to initiate a cell death pathway, in specific circumstances. Lysosomal membrane permeabilization (LMP) causes the release of cathepsins and other hydrolases from the lysosomal lumen to the cytosol. LMP is induced by a plethora of distinct stimuli including reactive oxygen species, lysosomotropic compounds with detergent activity, as well as some endogenous cell death effectors such as Bax. LMP is a potentially lethal event because the ectopic presence of lysosomal proteases in the cytosol causes digestion of vital proteins and the activation of additional hydrolases including caspases. This latter process is usually mediated indirectly, through a cascade in which LMP causes the proteolytic activation of Bid (which is cleaved by the two lysosomal cathepsins B and D), which then induces MOMP, resulting in cytochrome c release and apoptosome-dependent caspase activation. However, massive LMP often results in cell death without caspase activation; this cell death may adopt a subapoptotic or necrotic appearance. The regulation of LMP is perturbed in cancer cells, suggesting that specific strategies for LMP induction might lead to novel therapeutic avenues.

摘要

线粒体外膜通透性改变(MOMP)是凋亡性和坏死性细胞死亡的主要检查点之一。最近研究表明,在特定情况下,另一种细胞器——溶酶体的通透性改变也会引发细胞死亡途径。溶酶体膜通透性改变(LMP)会导致组织蛋白酶和其他水解酶从溶酶体腔释放到细胞质中。LMP可由多种不同刺激诱导,包括活性氧、具有去污剂活性的溶酶体促渗化合物以及一些内源性细胞死亡效应因子,如Bax。LMP是一个潜在的致死事件,因为溶酶体蛋白酶在细胞质中的异位存在会导致重要蛋白质的消化,并激活包括半胱天冬酶在内的其他水解酶。后一过程通常通过一个级联反应间接介导,其中LMP导致Bid的蛋白水解激活(Bid被两种溶酶体组织蛋白酶B和D切割),然后诱导MOMP,导致细胞色素c释放和凋亡小体依赖性半胱天冬酶激活。然而,大量的LMP通常会导致细胞死亡而无半胱天冬酶激活;这种细胞死亡可能呈现亚凋亡或坏死的形态。癌细胞中LMP的调节受到干扰,这表明诱导LMP的特定策略可能会带来新的治疗途径。

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