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长寿途径与蛋白质组的维持:自噬和线粒体自噬在酵母衰老过程中的作用。

Longevity pathways and maintenance of the proteome: the role of autophagy and mitophagy during yeast ageing.

作者信息

Sampaio-Marques Belém, Burhans William C, Ludovico Paula

机构信息

Life and Health Sciences Research Institute (ICVS), School of Health Sciences, University of Minho, Braga, Portugal. ; ICVS/3B's - PT Government Associate Laboratory, Braga/Guimarães, Portugal.

Dept. of Molecular and Cellular Biology, Roswell Park Cancer Institute, Buffalo, NY 14263, USA.

出版信息

Microb Cell. 2014 Apr 7;1(4):118-127. doi: 10.15698/mic2014.04.136.

Abstract

Ageing is a complex and multi-factorial process that results in the progressive accumulation of molecular alterations that disrupt different cellular functions. The budding yeast is an important model organism that has significantly contributed to the identification of conserved molecular and cellular determinants of ageing. The nutrient-sensing pathways are well-recognized modulators of longevity from yeast to mammals, but their downstream effectors and outcomes on different features of ageing process are still poorly understood. A hypothesis that is attracting increased interest is that one of the major functions of these "longevity pathways" is to contribute to the maintenance of the proteome during ageing. In support of this hypothesis, evidence shows that TOR/Sch9 and Ras/PKA pathways are important regulators of autophagy that in turn are essential for healthy cellular ageing. It is also well known that mitochondria homeostasis and function regulate lifespan, but how mitochondrial dynamics, mitophagy and biogenesis are regulated during ageing remains to be elucidated. This review describes recent findings that shed light on how longevity pathways and metabolic status impact maintenance of the proteome in both yeast ageing paradigms. These findings demonstrate that yeast remain a powerful model system for elucidating these relationships and their influence on ageing regulation.

摘要

衰老过程复杂且受多种因素影响,会导致分子改变逐渐积累,进而扰乱不同细胞功能。芽殖酵母是一种重要的模式生物,对鉴定衰老过程中保守的分子和细胞决定因素有显著贡献。营养感应通路是从酵母到哺乳动物公认的寿命调节因子,但其下游效应器以及对衰老过程不同特征的影响仍知之甚少。一个越来越受关注的假说是,这些“长寿通路”的主要功能之一是在衰老过程中有助于蛋白质组的维持。支持这一假说的证据表明,TOR/Sch9和Ras/PKA通路是自噬的重要调节因子,而自噬反过来对健康的细胞衰老至关重要。众所周知,线粒体稳态和功能调节寿命,但衰老过程中线粒体动力学、线粒体自噬和生物合成如何被调节仍有待阐明。本综述描述了最近的研究发现,这些发现揭示了长寿通路和代谢状态如何影响酵母衰老模式下蛋白质组的维持。这些发现表明,酵母仍然是阐明这些关系及其对衰老调节影响的强大模型系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4dae/5349200/679e01877c7d/mic-01-118-g01.jpg

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