Making heads or tails of mitochondrial membranes in longevity and aging: a role for comparative studies.

Teresa G Valencak, Vian Azzu
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引用次数: 23

Abstract

Mitochondria play vital roles in metabolic energy transduction, intermediate molecule metabolism, metal ion homeostasis, programmed cell death and regulation of the production of reactive oxygen species. As a result of their broad range of functions, mitochondria have been strongly implicated in aging and longevity. Numerous studies show that aging and decreased lifespan are also associated with high reactive oxygen species production by mitochondria, increased mitochondrial DNA and protein damage, and with changes in the fatty acid composition of mitochondrial membranes. It is possible that the extent of fatty acid unsaturation of the mitochondrial membrane determines susceptibility to lipid oxidative damage and downstream protein and genome toxicity, thereby acting as a determinant of aging and lifespan. Reviewing the vast number of comparative studies on mitochondrial membrane composition, metabolism and lifespan reveals some evidence that lipid unsaturation ratios may correlate with lifespan. However, we caution against simply relating these two traits. They may be correlative but have no functional relation. We discuss an important methodology for body mass and phylogenetic correction in comparative studies.

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在寿命和衰老中形成线粒体膜的头或尾:一个比较研究的角色。
线粒体在代谢能量转导、中间分子代谢、金属离子稳态、细胞程序性死亡和活性氧产生调控等方面发挥着重要作用。由于线粒体具有广泛的功能,它与衰老和长寿密切相关。大量研究表明,衰老和寿命缩短还与线粒体活性氧产生高、线粒体DNA和蛋白质损伤增加以及线粒体膜脂肪酸组成的变化有关。线粒体膜的脂肪酸不饱和程度可能决定了脂质氧化损伤的易感性以及下游蛋白质和基因组毒性,从而成为衰老和寿命的决定因素。回顾线粒体膜组成、代谢和寿命的大量比较研究,揭示了脂质不饱和率可能与寿命相关的一些证据。然而,我们警告不要简单地将这两种特征联系起来。它们可能是相关的,但没有功能关系。我们讨论了比较研究中体重和系统发育校正的一种重要方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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