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整合表观基因组学和转录组学分析揭示间歇性禁食对大脑代谢的切换作用。

Integrative epigenomic and transcriptomic analyses reveal metabolic switching by intermittent fasting in brain.

机构信息

Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore.

Genome Institute of Singapore, Singapore, Singapore.

出版信息

Geroscience. 2022 Aug;44(4):2171-2194. doi: 10.1007/s11357-022-00537-z. Epub 2022 Mar 31.

Abstract

Intermittent fasting (IF) remains the most effective intervention to achieve robust anti-aging effects and attenuation of age-related diseases in various species. Epigenetic modifications mediate the biological effects of several environmental factors on gene expression; however, no information is available on the effects of IF on the epigenome. Here, we first found that IF for 3 months caused modulation of H3K9 trimethylation (H3K9me) in the cerebellum, which in turn orchestrated a plethora of transcriptomic changes involved in robust metabolic switching processes commonly observed during IF. Second, a portion of both the epigenomic and transcriptomic modulations induced by IF was remarkably preserved for at least 3 months post-IF refeeding, indicating that memory of IF-induced epigenetic changes was maintained. Notably, though, we found that termination of IF resulted in a loss of H3K9me regulation of the transcriptome. Collectively, our study characterizes the novel effects of IF on the epigenetic-transcriptomic axis, which controls myriad metabolic processes. The comprehensive analyses undertaken in this study reveal a molecular framework for understanding how IF impacts the metabolo-epigenetic axis of the brain and will serve as a valuable resource for future research.

摘要

间歇性禁食(IF)仍然是最有效的干预措施,可以在各种物种中实现强大的抗衰老效果和减轻与年龄相关的疾病。表观遗传修饰介导了几种环境因素对基因表达的生物学影响;然而,关于 IF 对表观基因组的影响的信息尚不清楚。在这里,我们首先发现,IF 3 个月导致小脑 H3K9 三甲基化(H3K9me)的调节,进而协调了大量与 IF 期间常见的强大代谢转换过程相关的转录组变化。其次,IF 诱导的表观基因组和转录组调节的一部分至少在 IF 重新喂养后 3 个月内显著保存,表明 IF 诱导的表观遗传变化的记忆得以维持。值得注意的是,我们发现 IF 的终止导致 H3K9me 对转录组的调节丧失。总的来说,我们的研究描述了 IF 对表观转录组轴的新影响,该轴控制着无数的代谢过程。本研究进行的综合分析揭示了理解 IF 如何影响大脑的代谢-表观遗传轴的分子框架,并将成为未来研究的宝贵资源。

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