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线粒体作为细胞内信号细胞器。更新。

Mitochondria as intracellular signalling organelles. An update.

机构信息

Institute of Cellular Biology and Pathology "Nicolae Simionescu" of the Romanian Academy, 8, B.P. Hasdeu Street, 050568 Bucharest, Romania.

出版信息

Cell Signal. 2023 Sep;109:110794. doi: 10.1016/j.cellsig.2023.110794. Epub 2023 Jul 6.

Abstract

Traditionally, mitochondria are known as "the powerhouse of the cell," responsible for energy (ATP) generation (by the electron transport chain, oxidative phosphorylation, the tricarboxylic acid cycle, and fatty acid ß-oxidation), and for the regulation of several metabolic processes, including redox homeostasis, calcium signalling, and cellular apoptosis. The extensive studies conducted in the last decades portray mitochondria as multifaceted signalling organelles that ultimately command cells' survival or death. Based on current knowledge, we'll outline the mitochondrial signalling to other intracellular compartments in homeostasis and pathology-related mitochondrial stress conditions here. The following topics are discussed: (i) oxidative stress and mtROS signalling in mitohormesis, (ii) mitochondrial Ca signalling; (iii) the anterograde (nucleus-to-mitochondria) and retrograde (mitochondria-to-nucleus) signal transduction, (iv) the mtDNA role in immunity and inflammation, (v) the induction of mitophagy- and apoptosis - signalling cascades, (vi) the mitochondrial dysfunctions (mitochondriopathies) in cardiovascular, neurodegenerative, and malignant diseases. The novel insights into molecular mechanisms of mitochondria-mediated signalling can explain mitochondria adaptation to metabolic and environmental stresses to achieve cell survival.

摘要

传统上,线粒体被称为“细胞的动力工厂”,负责能量(ATP)的产生(通过电子传递链、氧化磷酸化、三羧酸循环和脂肪酸β-氧化),以及调节几种代谢过程,包括氧化还原稳态、钙信号和细胞凋亡。过去几十年的广泛研究表明,线粒体是多功能的信号细胞器,最终指挥细胞的生存或死亡。基于目前的知识,我们将在这里概述线粒体在细胞内环境平衡和与线粒体应激相关的病理条件下向其他细胞内区室的信号转导。讨论的主题包括:(i)在mitohormesis 中的氧化应激和 mtROS 信号转导,(ii)线粒体钙信号转导,(iii)顺行(核到线粒体)和逆行(线粒体到核)信号转导,(iv)mtDNA 在免疫和炎症中的作用,(v)诱导线粒体自噬和凋亡信号级联,(vi)心血管、神经退行性和恶性疾病中的线粒体功能障碍(线粒体病)。对线粒体介导的信号转导分子机制的新见解可以解释线粒体适应代谢和环境应激以实现细胞生存的能力。

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