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蛋白质维持与衰老:氧化蛋白质修复的作用。

Maintenance of proteins and aging: the role of oxidized protein repair.

作者信息

Petropoulos Isabelle, Friguet Bertrand

机构信息

Laboratoire de Biologie et Biochimie Cellulaire du Vieillissement, EA 3106/IFR 117, Université Denis Diderot-Paris 7, CC 7128, 2 Place Jussieu, Paris Cedex, France.

出版信息

Free Radic Res. 2006 Dec;40(12):1269-76. doi: 10.1080/10715760600917144.

Abstract

According to the free radical theory of aging proposed by Denham Harman (Journal of Gerontology 1956, 11, pp. 298-300), the continuous oxidative damage to cellular components over an organism's life span is a causal factor of the aging process. The age-related build-up of oxidized protein is therefore resulting from increased protein oxidative damage and/or decreased elimination of oxidized proteins. In this mini-review, we will address the fate, during aging, of the protein maintenance systems that are involved in the degradation of irreversibly oxidized proteins and in the repair of reversible protein oxidative damage with a special focus on the methionine sulfoxide reductases system. Since these protein degradation and repair systems have been found to be impaired with age, it is proposed that not only failure of redox homeostasis but, as importantly, failure of protein maintenance are critical factors in the aging process.

摘要

根据德纳姆·哈曼提出的衰老自由基理论(《老年学杂志》1956年,第11卷,第298 - 300页),在生物体的生命周期中,细胞成分持续受到氧化损伤是衰老过程的一个因果因素。因此,与年龄相关的氧化蛋白质积累是蛋白质氧化损伤增加和/或氧化蛋白质清除减少的结果。在这篇小型综述中,我们将探讨在衰老过程中,参与不可逆氧化蛋白质降解和可逆蛋白质氧化损伤修复的蛋白质维持系统的命运,特别关注甲硫氨酸亚砜还原酶系统。由于这些蛋白质降解和修复系统已被发现会随着年龄增长而受损,因此有人提出,不仅氧化还原稳态的失衡,而且同样重要的是蛋白质维持功能的失效,都是衰老过程中的关键因素。

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