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当亚硝基化作用到达线粒体时:从信号传递到与年龄相关的疾病。

When -Nitrosylation Gets to Mitochondria: From Signaling to Age-Related Diseases.

机构信息

Institute of Sports Medicine Copenhagen, Bispebjerg Hospital, Copenhagen, Denmark.

UniCamillus-Saint Camillus International University of Health Sciences, Rome, Italy.

出版信息

Antioxid Redox Signal. 2020 Apr 20;32(12):884-905. doi: 10.1089/ars.2019.7872. Epub 2020 Feb 7.

Abstract

Cysteines have an essential role in redox signaling, transforming an oxidant signal into a biological response. Among reversible cysteine post-translational modifications, -nitrosylation acts as a redox-switch in several pathophysiological states, such as ischemia/reperfusion, synaptic transmission, cancer, and muscular dysfunctions. Growing pieces of and evidence argue for -nitrosylation being deeply involved in development and aging, and playing a role in the onset of different pathological states. New findings suggest it being an enzymatically regulated cellular process, with deep impact on mitochondrial structure and function, and in cellular metabolism. In light of this, the recent discovery of the denitrosylase -nitrosoCoA (coenzyme A) reductase takes on even greater importance and opens new perspectives on -nitrosylation as a general mechanism of cellular homeostasis. Based on these recent findings, we aim at summarizing and elaborating on the established and emerging crucial roles of -nitrosylation in mitochondrial metabolism and mitophagy, and provide an overview of the pathophysiological effects induced by its deregulation. The identification of new -nitrosylation targets, and the comprehension of the mechanisms through which -nitrosylation modulates specific classes of proteins, that is, those impinging on diverse mitochondrial functions, may help to better understand the pathophysiology of aging, and propose lines of intervention to slow down or extend the onset of aging-related diseases.

摘要

半胱氨酸在氧化还原信号中起着至关重要的作用,将氧化剂信号转化为生物学反应。在可逆转的半胱氨酸翻译后修饰中,-亚硝基化作用作为几种病理生理状态(如缺血/再灌注、突触传递、癌症和肌肉功能障碍)中的氧化还原开关。越来越多的证据表明 -亚硝基化作用深深地参与了发育和衰老过程,并在不同病理状态的发生中发挥作用。新的发现表明它是一种酶调节的细胞过程,对线粒体结构和功能以及细胞代谢有深远的影响。鉴于此,最近发现的脱亚硝酰基酶 -亚硝基 CoA(辅酶 A)还原酶的重要性更加凸显,并为 -亚硝基化作为细胞内稳态的一般机制开辟了新的视角。基于这些最近的发现,我们旨在总结和阐述 -亚硝基化在线粒体代谢和线粒体自噬中已确立和新兴的关键作用,并概述其失调引起的病理生理效应。鉴定新的 -亚硝基化靶标,并理解 -亚硝基化调节特定类别的蛋白质(即影响多种线粒体功能的蛋白质)的机制,可能有助于更好地理解衰老的病理生理学,并提出减缓或延缓与衰老相关的疾病发生的干预措施。

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