Fransen Marc, Nordgren Marcus, Wang Bo, Apanasets Oksana
Department of Cellular and Molecular Medicine, Katholieke Universiteit Leuven, Leuven, Belgium.
Biochim Biophys Acta. 2012 Sep;1822(9):1363-73. doi: 10.1016/j.bbadis.2011.12.001. Epub 2011 Dec 9.
Peroxisomes are cell organelles that play a central role in lipid metabolism. At the same time, these organelles generate reactive oxygen and nitrogen species as byproducts. Peroxisomes also possess intricate protective mechanisms to counteract oxidative stress and maintain redox balance. An imbalance between peroxisomal reactive oxygen species/reactive nitrogen species production and removal may possibly damage biomolecules, perturb cellular thiol levels, and deregulate cellular signaling pathways implicated in a variety of human diseases. Somewhat surprisingly, the potential role of peroxisomes in cellular redox metabolism has been underestimated for a long time. However, in recent years, peroxisomal reactive oxygen species/reactive nitrogen species metabolism and signaling have become the focus of a rapidly evolving and multidisciplinary research field with great prospects. This review is mainly devoted to discuss evidence supporting the notion that peroxisomal metabolism and oxidative stress are intimately interconnected and associated with age-related diseases. We focus on several key aspects of how peroxisomes contribute to cellular reactive oxygen species/reactive nitrogen species levels in mammalian cells and how these cells cope with peroxisome-derived oxidative stress. We also provide a brief overview of recent strategies that have been successfully employed to detect and modulate the peroxisomal redox status. Finally, we highlight some gaps in our knowledge and propose potential avenues for further research. This article is part of a Special Issue entitled: Metabolic Functions and Biogenesis of peroxisomes in Health and Disease.
过氧化物酶体是在脂质代谢中起核心作用的细胞器。同时,这些细胞器会产生作为副产物的活性氧和活性氮。过氧化物酶体还拥有复杂的保护机制来对抗氧化应激并维持氧化还原平衡。过氧化物酶体产生的活性氧/活性氮与清除之间的失衡可能会损害生物分子、扰乱细胞硫醇水平,并使涉及多种人类疾病的细胞信号通路失调。有点令人惊讶的是,过氧化物酶体在细胞氧化还原代谢中的潜在作用长期以来一直被低估。然而,近年来,过氧化物酶体的活性氧/活性氮代谢及信号传导已成为一个快速发展且前景广阔的多学科研究领域的焦点。本综述主要致力于讨论支持过氧化物酶体代谢与氧化应激紧密相连且与年龄相关疾病有关这一观点的证据。我们关注过氧化物酶体如何影响哺乳动物细胞中细胞活性氧/活性氮水平的几个关键方面,以及这些细胞如何应对过氧化物酶体衍生的氧化应激。我们还简要概述了最近成功用于检测和调节过氧化物酶体氧化还原状态的策略。最后,我们强调了我们知识中的一些空白,并提出了进一步研究的潜在途径。本文是名为:健康与疾病中过氧化物酶体的代谢功能与生物发生的特刊的一部分。