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多细胞生物中的自噬遗传学

The Genetics of Autophagy in Multicellular Organisms.

作者信息

Zhang Hong

机构信息

National Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China; email:

College of Life Sciences, University of Chinese Academy of Sciences, Beijing, China.

出版信息

Annu Rev Genet. 2022 Nov 30;56:17-39. doi: 10.1146/annurev-genet-022422-095608. Epub 2022 Jun 9.

Abstract

Autophagy, a lysosome-mediated degradation process evolutionarily conserved from yeast to mammals, is essential for maintaining cellular homeostasis and combating diverse cellular stresses. Autophagy involves de novo synthesis of a double-membrane autophagosome, sequestration of selected cellular contents, and subsequent delivery of sequestrated contents to the vacuole (in yeasts and plants) or to lysosomes (in animal cells) for degradation and recycling. Genetic studies in unicellular and multicellular model organisms have systematically revealed the molecular machinery, regulation, and function of autophagy in physiological settings. I review genetic studies in model organisms-from yeast to worm to fly-that enable us to not only identify autophagy genes, including genes and the metazoan-specific genes, but also uncover variants of autophagy in developmental contexts, novel regulatory mechanisms, and signaling events involved in mediating systemic autophagy response. Genetic analysis also helps us understand the liquid-liquid phase separation and transition that control autophagic degradation of protein aggregates. The emerging role of autophagy in zebrafish tissue regeneration is also discussed.

摘要

自噬是一种从酵母到哺乳动物在进化上保守的溶酶体介导的降解过程,对于维持细胞内稳态和应对多种细胞应激至关重要。自噬涉及双膜自噬体的从头合成、选定细胞内容物的隔离,以及随后将隔离的内容物输送到液泡(在酵母和植物中)或溶酶体(在动物细胞中)进行降解和再循环。单细胞和多细胞模式生物的遗传学研究系统地揭示了自噬在生理环境中的分子机制、调控和功能。我回顾了从酵母到蠕虫再到果蝇等模式生物的遗传学研究,这些研究不仅使我们能够鉴定自噬基因,包括酵母特异性Atg基因和后生动物特异性Atg基因,还能揭示发育背景下自噬的变体、新的调控机制以及介导全身自噬反应的信号事件。遗传分析还帮助我们理解控制蛋白质聚集体自噬降解的液-液相分离和转变。本文还讨论了自噬在斑马鱼组织再生中的新作用。

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