溶酶体作为细胞分解代谢、代谢信号和器官生理的协调者。

IF 81.3 1区 生物学 Q1 CELL BIOLOGY
Carmine Settembre, Rushika M. Perera
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引用次数: 0

摘要

每个细胞都必须通过大分子分解来满足营养感知、利用和循环的基本需求,以协调生长、修复和应激适应程序。溶酶体通过水解酶、营养转运体和信号因子之间的同步相互作用协调这些关键功能,共同实现与其他细胞器的代谢协调和特定基因表达程序的调节。在这篇综述中,我们讨论了溶酶体依赖信号通路的最新发现,重点讨论了溶酶体如何通过与雷帕霉素复合物1 (mTORC1)的机制靶点的物理和功能关联来感知营养有效性,以及作为回应,小眼/转录因子E (MiT/TFE)转录因子如何对溶酶体的生物发生进行反馈调节。我们还强调了溶酶体与其他细胞器的相互作用,这有助于细胞稳态。最后,我们讨论了溶酶体功能障碍如何导致多种疾病病理,以及遗传突变如何损害溶酶体水解,运输或信号传导成分导致多器官疾病,并具有严重的代谢和神经影响。在细胞和有机体水平上对溶酶体组成和功能的更深入理解,可能会揭示人类生理学和疾病的基本见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Lysosomes as coordinators of cellular catabolism, metabolic signalling and organ physiology

Lysosomes as coordinators of cellular catabolism, metabolic signalling and organ physiology

Lysosomes as coordinators of cellular catabolism, metabolic signalling and organ physiology
Every cell must satisfy basic requirements for nutrient sensing, utilization and recycling through macromolecular breakdown to coordinate programmes for growth, repair and stress adaptation. The lysosome orchestrates these key functions through the synchronised interplay between hydrolytic enzymes, nutrient transporters and signalling factors, which together enable metabolic coordination with other organelles and regulation of specific gene expression programmes. In this Review, we discuss recent findings on lysosome-dependent signalling pathways, focusing on how the lysosome senses nutrient availability through its physical and functional association with mechanistic target of rapamycin complex 1 (mTORC1) and how, in response, the microphthalmia/transcription factor E (MiT/TFE) transcription factors exert feedback regulation on lysosome biogenesis. We also highlight the emerging interactions of lysosomes with other organelles, which contribute to cellular homeostasis. Lastly, we discuss how lysosome dysfunction contributes to diverse disease pathologies and how inherited mutations that compromise lysosomal hydrolysis, transport or signalling components lead to multi-organ disorders with severe metabolic and neurological impact. A deeper comprehension of lysosomal composition and function, at both the cellular and organismal level, may uncover fundamental insights into human physiology and disease. Lysosomes orchestrate key cellular functions such as nutrient sensing, degradation of macromolecules and stress adaptation. This Review discusses the integration of signalling pathways at the lysosome and highlights the interaction of lysosomes with other organelles and mechanisms that ensure lysosome homeostasis.
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来源期刊
Nature Reviews Molecular Cell Biology
Nature Reviews Molecular Cell Biology 生物-细胞生物学
CiteScore
173.60
自引率
0.50%
发文量
118
审稿时长
6-12 weeks
期刊介绍: Nature Reviews Molecular Cell Biology is a prestigious journal that aims to be the primary source of reviews and commentaries for the scientific communities it serves. The journal strives to publish articles that are authoritative, accessible, and enriched with easily understandable figures, tables, and other display items. The goal is to provide an unparalleled service to authors, referees, and readers, and the journal works diligently to maximize the usefulness and impact of each article. Nature Reviews Molecular Cell Biology publishes a variety of article types, including Reviews, Perspectives, Comments, and Research Highlights, all of which are relevant to molecular and cell biologists. The journal's broad scope ensures that the articles it publishes reach the widest possible audience.
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