Department of Developmental and Molecular Biology, Albert Einstein College of Medicine, NY, USA; Institute for Aging Studies, Albert Einstein College of Medicine, NY, USA.
Department of Developmental and Molecular Biology, Albert Einstein College of Medicine, NY, USA; Institute for Aging Studies, Albert Einstein College of Medicine, NY, USA; Departmento de Bioquimica y Biologia Molecular, Universidad de Cordoba, Cordoba, Spain.
Ageing Res Rev. 2021 Dec;72:101468. doi: 10.1016/j.arr.2021.101468. Epub 2021 Sep 24.
Autophagy, an essential cellular process that mediates degradation of proteins and organelles in lysosomes, has been tightly linked to cellular quality control for its role as part of the proteostasis network. The current interest in identifying the cellular and molecular determinants of aging, has highlighted the important contribution of malfunctioning of autophagy with age to the loss of proteostasis that characterizes all old organisms. However, the diversity of cellular functions of the different types of autophagy and the often reciprocal interactions of autophagy with other determinants of aging, is placing autophagy at the center of the aging process. In this work, we summarize evidence for the contribution of autophagy to health- and lifespan and provide examples of the bidirectional interplay between autophagic pathways and several of the so-called hallmarks of aging. This central role of autophagy in aging, and the dependence on autophagy of many geroprotective interventions, has motivated a search for direct modulators of autophagy that could be used to slow aging and extend healthspan. Here, we review some of those ongoing therapeutic efforts and comment on the potential of targeting autophagy in aging.
自噬是一种重要的细胞过程,它在溶酶体中介导蛋白质和细胞器的降解,由于其作为蛋白质稳态网络的一部分的作用,与细胞质量控制密切相关。目前,人们对鉴定衰老的细胞和分子决定因素的兴趣日益浓厚,这凸显了自噬随着年龄的增长而出现故障对所有老年生物中特征性的蛋白质稳态丧失的重要贡献。然而,不同类型的自噬的细胞功能多样性,以及自噬与衰老的其他决定因素之间经常相互作用,使自噬处于衰老过程的中心。在这项工作中,我们总结了自噬对健康和寿命的贡献的证据,并提供了自噬途径与几种所谓的衰老标志之间双向相互作用的例子。自噬在衰老中的核心作用,以及许多抗衰老干预措施对自噬的依赖,促使人们寻找可以延缓衰老和延长健康寿命的自噬直接调节剂。在这里,我们回顾了其中一些正在进行的治疗努力,并评论了靶向衰老中自噬的潜力。