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线粒体、细胞凋亡与自身免疫

Mitochondria, apoptosis and autoimmunity.

作者信息

Pinkoski Michael J, Waterhouse Nigel J, Green Douglas R

机构信息

Medical Research Council, Toxicology Unit, Leicester, UK.

出版信息

Curr Dir Autoimmun. 2006;9:55-73. doi: 10.1159/000090772.

Abstract

A functional immune system is dependent on the generation and selection of a lymphocyte repertoire that is sufficiently diverse to respond to innumerable foreign antigens yet be adequately self-tolerant to avoid the development of autoimmunity. Programmed cell death by a process known as apoptosis is responsible for negative selection of nonreactive leukocyte precursors and autoreactive thymocytes, killing of infected and transformed cells by cytotoxic lymphocytes and deletion of superfluous activated lymphocytes by activation-induced cell death (AICD) and peripheral deletion at the termination of an immune response. Mitochondrial respiration is required to meet the energy requirements of activated and proliferating peripheral lymphocytes. Several mitochondrial proteins have been implicated as regulators of apoptosis in the immune system that are required for prevention of autoimmunity. Recent discoveries have shed light on mitochondrial functions as they relate to cell death, including caspase-dependent and -independent apoptosis, mitochondrial death substrates and events that disable mitochondrial functions during apoptosis. These discoveries, taken with reports that the specific manner by which a cell dies greatly impacts on the nature of subsequent immune responses, highlight an exciting era of research on mitochondrial function and its role in apoptosis and the effects on immune responses.

摘要

一个功能正常的免疫系统依赖于淋巴细胞库的产生和选择,该淋巴细胞库需足够多样化,以应对无数的外来抗原,同时又能充分耐受自身,从而避免自身免疫性疾病的发生。通过一种称为凋亡的过程进行的程序性细胞死亡,负责对无反应性白细胞前体和自身反应性胸腺细胞进行阴性选择,通过细胞毒性淋巴细胞杀死被感染和转化的细胞,并通过活化诱导的细胞死亡(AICD)以及在免疫反应终止时的外周清除来清除多余的活化淋巴细胞。线粒体呼吸是满足活化和增殖的外周淋巴细胞能量需求所必需的。几种线粒体蛋白被认为是免疫系统中凋亡的调节因子,它们对于预防自身免疫是必需的。最近的发现揭示了线粒体与细胞死亡相关的功能,包括半胱天冬酶依赖性和非依赖性凋亡、线粒体死亡底物以及在凋亡过程中使线粒体功能丧失的事件。这些发现,再加上有关细胞死亡的特定方式对后续免疫反应的性质有重大影响的报道,凸显了一个关于线粒体功能及其在凋亡中的作用以及对免疫反应影响的令人兴奋的研究时代。

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