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氧化应激、衰老与蛋白酶体系统

Oxidative stress, aging and the proteasomal system.

作者信息

Grune T

机构信息

Clinics of Physical Medicine and Rehabilitation, Medical Faculty (Charité), Humboldt University Berlin, Schumannstr. 20/21, D-10098 Berlin, Germany.

出版信息

Biogerontology. 2000;1(1):31-40. doi: 10.1023/a:1010037908060.

Abstract

Oxygen free radicals and other oxidants are causing potential danger for intracellular proteins during the lifetime of cells and organisms. Therefore, protein oxidation is one of the natural consequences of aerobic life. The degradation of non-functional, oxidized proteins is an essential part of the antioxidant defenses of cells. The major proteolytic system responsible for the removal of oxidized cytosolic proteins is the proteasomal system. This system consists of the 20S 'core' proteasome and a multitude of various regulators. It is known that certain components of this system are regulated during oxidative stress and aging. One of the highlights of age-related changes of cellular metabolism is the accumulation of oxidized proteins. The question whether the accumulation of oxidized proteins during aging is due to a malfunction of the intracellular proteolytic machinery of the cell remains still unsolved. The information available about an age-related decline of the proteasomal system is very contradictory. The current literature about the proteasomal system, the regulation of this system during oxidative stress and the age-related changes are in the focus of this review.

摘要

在细胞和生物体的生命过程中,氧自由基和其他氧化剂会对细胞内蛋白质造成潜在危险。因此,蛋白质氧化是有氧生命的自然结果之一。无功能氧化蛋白质的降解是细胞抗氧化防御的重要组成部分。负责清除氧化胞质蛋白的主要蛋白水解系统是蛋白酶体系统。该系统由20S“核心”蛋白酶体和多种不同的调节因子组成。已知该系统的某些成分在氧化应激和衰老过程中受到调节。细胞代谢与年龄相关变化的一个突出特点是氧化蛋白质的积累。衰老过程中氧化蛋白质的积累是否是由于细胞内蛋白水解机制故障所致,这一问题仍未解决。关于蛋白酶体系统与年龄相关的功能衰退的现有信息非常矛盾。本文综述聚焦于当前有关蛋白酶体系统、该系统在氧化应激期间的调节以及与年龄相关变化的文献。

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