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线粒体过氧化物酶在抗氧化防御和氧化还原信号中的作用。

Mitochondrial peroxiredoxin involvement in antioxidant defence and redox signalling.

机构信息

Free Radical Research Group and National Research Centre for Growth and Development, Department of Pathology, University of Otago, Christchurch 8011, New Zealand.

出版信息

Biochem J. 2009 Dec 23;425(2):313-25. doi: 10.1042/BJ20091541.

Abstract

Prxs (peroxiredoxins) are a family of proteins that are extremely effective at scavenging peroxides. The Prxs exhibit a number of intriguing properties that distinguish them from conventional antioxidants, including a susceptibility to inactivation by hyperoxidation in the presence of excess peroxide and the ability to form complex oligomeric structures. These properties, combined with a high cellular abundance and reactivity with hydrogen peroxide, have led to speculation that the Prxs function as redox sensors that transmit signals as part of the cellular response to oxidative stress. Multicellular organisms express several different Prxs that can be categorized by their subcellular distribution. In mammals, Prx 3 and Prx 5 are targeted to the mitochondrial matrix. Mitochondria are a major source of hydrogen peroxide, and this oxidant is implicated in the damage associated with aging and a number of pathologies. Hydrogen peroxide can also act as a second messenger, and is linked with signalling events in mitochondria, including the induction of apoptosis. A simple kinetic competition analysis estimates that Prx 3 will be the target for up to 90% of hydrogen peroxide generated in the matrix. Therefore, mitochondrial Prxs have the potential to play a major role in mitochondrial redox signalling, but the extent of this role and the mechanisms involved are currently unclear.

摘要

过氧化物酶(Prxs)是一类能够有效清除过氧化物的蛋白质家族。Prxs 具有许多有趣的特性,使其有别于传统的抗氧化剂,包括在存在过量过氧化物时易被超氧化失活的特性,以及形成复杂寡聚体结构的能力。这些特性,加上高细胞丰度和与过氧化氢的反应性,导致人们推测 Prxs 作为氧化还原传感器发挥作用,作为细胞对氧化应激反应的一部分传递信号。多细胞生物表达几种不同的 Prxs,可根据其亚细胞分布进行分类。在哺乳动物中,Prx 3 和 Prx 5 靶向线粒体基质。线粒体是过氧化氢的主要来源,这种氧化剂与衰老和许多病理相关的损伤有关。过氧化氢也可以作为第二信使,与线粒体中的信号事件有关,包括凋亡的诱导。简单的动力学竞争分析估计,Prx 3 将成为基质中产生的高达 90%的过氧化氢的靶标。因此,线粒体 Prxs 有可能在线粒体氧化还原信号中发挥主要作用,但目前尚不清楚这种作用的程度和涉及的机制。

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