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衰老过程中雷帕霉素靶蛋白和自噬的代谢控制 - 一篇小综述。

Metabolic control by target of rapamycin and autophagy during ageing - a mini-review.

机构信息

Institute of Molecular Biology and Biotechnology, Foundation for Research and Technology - Hellas, Heraklion, Greece.

出版信息

Gerontology. 2013;59(4):340-8. doi: 10.1159/000348599. Epub 2013 Apr 9.

Abstract

The conserved target of rapamycin (TOR) pathway integrates signals from nutrient and energy availability, growth factors and stress to regulate cell growth and proliferation, development and metabolism. Growing evidence suggests that TOR signalling controls the rate at which cells and tissues age, thereby contributing to whole-organism ageing. Although significant progress has been made in the last decades towards understanding fundamental aspects of the ageing process, the precise mechanisms underlying the age-related effects of TOR are still not fully understood. TOR interfaces with several cellular processes, such as DNA transcription, mRNA translation, protein turnover and autophagy, among others. Interestingly, TOR regulates various aspects of metabolism including mitochondrial function and lipid metabolism. Inhibition of TOR activity stimulates autophagy, a conserved lysosomal catabolic pathway that controls the degradation and turnover of macromolecules and organelles. Autophagy also has an important role in maintaining metabolic homeostasis at both the cellular and whole-organism level. Ageing in diverse organisms ranging from yeast to mammals appears to be associated with insufficient autophagy. Here, we summarize recent developments that outline how TOR and autophagy modulate the ageing process, with special emphasis on their role in the regulation of metabolism. A better understanding of the complex interplay between TOR, autophagy and ageing will pave the way for the development of novel therapeutic strategies to treat age-related pathologies.

摘要

雷帕霉素靶蛋白(TOR)通路是一个整合了营养和能量可用性、生长因子和应激等信号的保守通路,用于调节细胞生长和增殖、发育和代谢。越来越多的证据表明,TOR 信号通路控制着细胞和组织衰老的速度,从而影响整个机体的衰老。尽管在过去几十年中,人们在理解衰老过程的基本方面取得了重大进展,但 TOR 与年龄相关的作用的确切机制仍不完全清楚。TOR 与许多细胞过程相互作用,如 DNA 转录、mRNA 翻译、蛋白质周转和自噬等。有趣的是,TOR 调节代谢的各个方面,包括线粒体功能和脂质代谢。抑制 TOR 活性会刺激自噬,这是一种保守的溶酶体分解代谢途径,可控制大分子和细胞器的降解和周转。自噬在细胞和整个机体水平上维持代谢稳态方面也具有重要作用。从酵母到哺乳动物等各种生物的衰老似乎都与自噬不足有关。在这里,我们总结了最近的研究进展,概述了 TOR 和自噬如何调节衰老过程,特别强调了它们在调节代谢中的作用。更好地理解 TOR、自噬和衰老之间的复杂相互作用将为开发治疗与年龄相关的病理的新的治疗策略铺平道路。

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