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内皮细胞中线粒体活性氧介导的信号传导

Mitochondrial reactive oxygen species-mediated signaling in endothelial cells.

作者信息

Zhang David X, Gutterman David D

机构信息

Department of Internal Medicine and Cardiovascular Center, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, WI 53226, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2007 May;292(5):H2023-31. doi: 10.1152/ajpheart.01283.2006. Epub 2007 Jan 19.

Abstract

Once thought of as toxic by-products of cellular metabolism, reactive oxygen species (ROS) have been implicated in a large variety of cell-signaling processes. Several enzymatic systems contribute to ROS production in vascular endothelial cells, including NA(D)PH oxidase, xanthine oxidase, uncoupled endothelial nitric oxide synthase, and the mitochondrial electron transport chain. The respiratory chain is the major source of ROS in most mammalian cells, but the role of mitochondria-derived ROS in vascular cell signaling has received little attention. A new paradigm has evolved in recent years postulating that, in addition to producing ATP, mitochondria also play a key role in cell signaling and regulate a variety of cellular functions. This review focuses on the emerging role of mitochondrial ROS as signaling molecules in vascular endothelial cells. Specifically, we discuss some recent findings that indicate that mitochondrial ROS regulate vascular endothelial function, focusing on major sites of ROS production in endothelial mitochondria, factors modulating mitochondrial ROS production, the physiological and clinical implications of endothelial mitochondrial ROS, and methodological considerations in the study of mitochondrial contribution to vascular ROS generation.

摘要

活性氧(ROS)曾被认为是细胞代谢的有毒副产物,现在已被证明与多种细胞信号传导过程有关。几种酶系统参与血管内皮细胞中ROS的产生,包括NA(D)PH氧化酶、黄嘌呤氧化酶、解偶联的内皮型一氧化氮合酶和线粒体电子传递链。呼吸链是大多数哺乳动物细胞中ROS的主要来源,但线粒体衍生的ROS在血管细胞信号传导中的作用却很少受到关注。近年来出现了一种新的模式,即除了产生ATP外,线粒体在细胞信号传导中也起着关键作用,并调节多种细胞功能。本综述重点关注线粒体ROS作为血管内皮细胞信号分子的新作用。具体而言,我们讨论了一些最近的发现,这些发现表明线粒体ROS调节血管内皮功能,重点关注内皮线粒体中ROS产生的主要部位、调节线粒体ROS产生的因素、内皮线粒体ROS的生理和临床意义,以及研究线粒体对血管ROS生成贡献的方法学考虑。

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