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蛋白质氧化与蛋白水解

Protein oxidation and proteolysis.

作者信息

Bader Nicolle, Grune Tilman

机构信息

Institute of Biological Chemistry and Nutrition, University of Hohenheim, Garbenstrasse 28, D-70593 Stuttgart, Germany.

出版信息

Biol Chem. 2006 Oct-Nov;387(10-11):1351-5. doi: 10.1515/BC.2006.169.

Abstract

One of the hallmarks of chronic or severe oxidative stress is the accumulation of oxidized proteins, which tend to form high-molecular-weight aggregates. The major proteolytic system responsible for the removal of oxidized cytosolic and nuclear proteins is the proteasome. This complicated proteolytic system contains a core proteasomal form (20S proteasome) and several regulators. All of these components are affected by oxidative stress to various degrees. The ATP-stimulated 26S proteasome is sensitive to oxidative stress, whereas the 20S form seems to be more resistant. The nuclear proteasome selectively degrades oxidatively damaged histones in the nuclei of mammalian cells, where it is activated and regulated by automodified PARP-1 after oxidative challenge. In this brief review we highlight the proteolysis and its regulatory effects during oxidative stress.

摘要

慢性或严重氧化应激的一个标志是氧化蛋白质的积累,这些氧化蛋白质倾向于形成高分子量聚集体。负责清除氧化的胞质和核蛋白的主要蛋白水解系统是蛋白酶体。这个复杂的蛋白水解系统包含一种核心蛋白酶体形式(20S蛋白酶体)和几种调节因子。所有这些成分都受到氧化应激不同程度的影响。ATP刺激的26S蛋白酶体对氧化应激敏感,而20S形式似乎更具抗性。核蛋白酶体在哺乳动物细胞核中选择性地降解氧化损伤的组蛋白,在氧化应激后,它在细胞核中由自身修饰的PARP-1激活和调节。在这篇简短的综述中,我们重点介绍了氧化应激期间的蛋白水解及其调节作用。

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