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线粒体呼吸链对秀丽隐杆线虫寿命的影响。

Effects of the mitochondrial respiratory chain on longevity in C. elegans.

作者信息

Dancy Beverley M, Sedensky Margaret M, Morgan Philip G

机构信息

Center for Developmental Therapeutics, Seattle Children's Research Institute, 1900 Ninth Avenue C9S-9, Seattle, WA 98199, USA.

出版信息

Exp Gerontol. 2014 Aug;56:245-55. doi: 10.1016/j.exger.2014.03.028. Epub 2014 Apr 5.

Abstract

How an organism ages is a question that has fascinated biologists, and the elderly, for centuries. One useful approach to understanding complex processes such as aging is to study genetic variation in model organisms such as the nematode, Caenorhabditis elegans. Classical mutant strains and RNAi screens have demonstrated that mitochondrial function is a major factor affecting longevity. Recent advances in the biochemical methods for studying mitochondrial functions have extended the usefulness of C. elegans for deciphering the molecular mechanisms by which mitochondria determine lifespan. Defects of all complexes in the mitochondrial respiratory chain have been described and have varied effects on lifespan. The phenotypes of these mutants indicate that the locality, production rate, and/or steady-state level of reactive oxygen species (ROS) is a defining lifespan-determining factor in these mutants. Mutants of enzymes involved in ROS scavenging have also been described, such as mitochondrial superoxide dismutases, and reveal a complex connection between ROS and lifespan. Energy balance, transcriptional signaling pathways, stress tolerance, and metabolic restructuring are also tied to ROS, and may also play roles in the mutants' altered lifespans. In this review, we discuss how findings with C. elegans genetics extend our understanding of the contributions of the mitochondrial respiratory chain and ROS to the process of aging.

摘要

几个世纪以来,生物体如何衰老一直是吸引着生物学家以及老年人的一个问题。理解诸如衰老等复杂过程的一种有效方法是研究模式生物(如线虫秀丽隐杆线虫)中的基因变异。经典突变株和RNA干扰筛选表明,线粒体功能是影响寿命的一个主要因素。研究线粒体功能的生化方法的最新进展扩展了秀丽隐杆线虫在破译线粒体决定寿命的分子机制方面的用途。线粒体呼吸链中所有复合物的缺陷都已被描述,并且对寿命有不同的影响。这些突变体的表型表明,活性氧(ROS)的局部性、产生速率和/或稳态水平是这些突变体中决定寿命的一个关键因素。参与ROS清除的酶的突变体也已被描述,如线粒体超氧化物歧化酶,揭示了ROS与寿命之间的复杂联系。能量平衡、转录信号通路、应激耐受性和代谢重组也与ROS相关,并且可能在突变体寿命改变中也起作用。在这篇综述中,我们讨论了秀丽隐杆线虫遗传学的研究结果如何扩展了我们对线粒体呼吸链和ROS在衰老过程中的作用的理解。

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