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衰老过程中的线粒体:除活性氧外,还有新陈代谢。

Mitochondria in ageing: there is metabolism beyond the ROS.

作者信息

Breitenbach Michael, Rinnerthaler Mark, Hartl Johannes, Stincone Anna, Vowinckel Jakob, Breitenbach-Koller Hannelore, Ralser Markus

机构信息

Department of Cell Biology, University of Salzburg, Salzburg, Austria.

出版信息

FEMS Yeast Res. 2014 Feb;14(1):198-212. doi: 10.1111/1567-1364.12134. Epub 2014 Jan 16.

Abstract

Mitochondria are responsible for a series of metabolic functions. Superoxide leakage from the respiratory chain and the resulting cascade of reactive oxygen species-induced damage, as well as mitochondrial metabolism in programmed cell death, have been intensively studied during ageing in single-cellular and higher organisms. Changes in mitochondrial physiology and metabolism resulting in ROS are thus considered to be hallmarks of ageing. In this review, we address 'other' metabolic activities of mitochondria, carbon metabolism (the TCA cycle and related underground metabolism), the synthesis of Fe/S clusters and the metabolic consequences of mitophagy. These important mitochondrial activities are hitherto less well-studied in the context of cellular and organismic ageing. In budding yeast, they strongly influence replicative, chronological and hibernating lifespan, connecting the diverse ageing phenotypes studied in this single-cellular model organism. Moreover, there is evidence that similar processes equally contribute to ageing of higher organisms as well. In this scenario, increasing loss of metabolic integrity would be one driving force that contributes to the ageing process. Understanding mitochondrial metabolism may thus be required for achieving a unifying theory of eukaryotic ageing.

摘要

线粒体负责一系列代谢功能。呼吸链中超氧化物的泄漏以及由此引发的活性氧物种诱导损伤的级联反应,以及程序性细胞死亡中的线粒体代谢,在单细胞生物和高等生物衰老过程中都得到了深入研究。因此,线粒体生理和代谢变化导致的活性氧被认为是衰老的标志。在本综述中,我们探讨线粒体的“其他”代谢活动、碳代谢(三羧酸循环及相关地下代谢)、铁硫簇的合成以及线粒体自噬的代谢后果。这些重要的线粒体活动在细胞和机体衰老的背景下迄今研究较少。在芽殖酵母中,它们强烈影响复制寿命、时序寿命和休眠寿命,将在这种单细胞模式生物中研究的多种衰老表型联系起来。此外,有证据表明类似过程同样对高等生物的衰老有贡献。在这种情况下,代谢完整性的不断丧失将是导致衰老过程的一个驱动力。因此,理解线粒体代谢可能是实现真核生物衰老统一理论所必需的。

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