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健康、衰老及疾病中的线粒体:表观遗传学视角

Mitochondria in health, aging and diseases: the epigenetic perspective.

作者信息

D'Aquila Patrizia, Bellizzi Dina, Passarino Giuseppe

机构信息

Department of Biology, Ecology and Earth Sciences (DiBEST), University of Calabria, 87036, Rende, Italy.

出版信息

Biogerontology. 2015 Oct;16(5):569-85. doi: 10.1007/s10522-015-9562-3. Epub 2015 Feb 25.

Abstract

The rate/quality of human aging and the development/progression of diseases depend on a complex interplay among genetics, epigenetics and environment. In this scenario, mitochondrial function (or dysfunction) and mitochondrial DNA have emerged as major players. This is mainly due to their crucial role in energetic balance, in modulating epigenetic programs and in influencing cell stress response. Moreover, it is also emerging the existence of epigenetic changes in mitochondrial DNA and of non coding mitochondrial RNAs which, together with the nuclear ones, play regulatory roles in numerous human phenotypes. In this review we will provide an overview on "mitochondrial epigenetics" state of the art, by summarizing the involvement of mitochondrial function and of mitochondria-nucleus communication in regulating nuclear epigenome, as well as the key aspects of the epigenetic marks related to mitochondrial DNA. Despite the limited data available in the literature to date, mainly due to the novelty of the topic, the intriguing interplay of the mitochondrial epigenetic changes in both physiological and pathological conditions will also be presented.

摘要

人类衰老的速率/质量以及疾病的发展/进程取决于基因、表观遗传学和环境之间复杂的相互作用。在这种情况下,线粒体功能(或功能障碍)和线粒体DNA已成为主要因素。这主要是由于它们在能量平衡、调节表观遗传程序以及影响细胞应激反应中起着至关重要的作用。此外,线粒体DNA的表观遗传变化和非编码线粒体RNA的存在也逐渐显现,它们与核内的表观遗传变化一起,在众多人类表型中发挥调节作用。在这篇综述中,我们将通过总结线粒体功能和线粒体-细胞核通讯在调节核表观基因组中的作用,以及与线粒体DNA相关的表观遗传标记的关键方面,概述“线粒体表观遗传学”的最新进展。尽管目前文献中的数据有限,主要是因为该主题较新,但我们也将介绍线粒体表观遗传变化在生理和病理条件下有趣的相互作用。

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