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首页> 外文期刊>Antioxidants and redox signalling >Mitochondrial ROS generation and its regulation: mechanisms involved in H(2)O(2) signaling.
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Mitochondrial ROS generation and its regulation: mechanisms involved in H(2)O(2) signaling.

机译:线粒体ROS产生及其调控:参与H(2)O(2)信号传导的机制。

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Mitochondria are the main source of reactive oxygen species in the cell. These reactive oxygen species have long been known as being involved in oxidative stress. This is a review of the mechanisms involved in reactive oxygen species generation by the respiratory chain and some of the dehydrogenases and the control by thermodynamic and kinetic constraints. Mitochondrial ROS produced at the level of the bc1 complex as well at the level of complex I are discussed. It was recognized more than a decade ago that they can also function as signaling molecules. This signaling role will be developed both in terms of mechanism and in terms of mitochondrial ROS signaling. The notion that hydrogen peroxide acts not only as a damaging oxidant but also as a signaling molecule was proposed more than a decade ago. Hydrogen peroxide signaling can be either direct (oxidation of its target) or indirect (involving peroxiredoxins, for example). The consequences of ROS signaling on crucial biologic processes such as cell proliferation and differentiation are discussed.
机译:线粒体是细胞中活性氧的主要来源。早已知道这些活性氧物质参与氧化应激。本文综述了呼吸链和某些脱氢酶与活性氧生成有关的机制,以及热力学和动力学约束的控制。讨论了在bc1复合体水平和复合体I水平产生的线粒体ROS。十多年前,人们认识到它们也可以起信号分子的作用。无论是在机理上还是在线粒体ROS信号方面,都将发挥这种信号作用。十多年前,有人提出过氧化氢不仅起破坏性氧化剂的作用,而且还起信号分子的作用。过氧化氢信号可以是直接的(靶标氧化),也可以是间接的(例如涉及过氧化物酶)。讨论了ROS信号对关键生物学过程(如细胞增殖和分化)的影响。

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