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Ragulator复合物:深入探究其对代谢及其他方面的多功能影响。

The Ragulator complex: delving its multifunctional impact on metabolism and beyond.

作者信息

Tsujimoto Kohei, Takamatsu Hyota, Kumanogoh Atsushi

机构信息

Department of Respiratory Medicine and Clinical Immunology, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.

Department of Immunopathology, Immunology Frontier Research Center (IFReC), Osaka University, Suita, Osaka, Japan.

出版信息

Inflamm Regen. 2023 May 12;43(1):28. doi: 10.1186/s41232-023-00278-2.

Abstract

Our understanding of lysosomes has undergone a significant transformation in recent years, from the view that they are static organelles primarily responsible for the disposal and recycling of cellular waste to their recognition as highly dynamic structures. Current research posits that lysosomes function as a signaling hub that integrates both extracellular and intracellular stimuli, thereby regulating cellular homeostasis. The dysregulation of lysosomal function has been linked to a wide range of diseases. Of note, lysosomes contribute to the activation of mammalian target of rapamycin complex 1 (mTORC1), a key regulator of cellular metabolism. The Ragulator complex, a protein complex anchored on the lysosomal membrane, was initially shown to tether the mTORC1 complex to lysosomes. Recent research has substantially expanded our understanding of the roles of the Ragulator complex in lysosomes, including roles in the regulation of metabolism, inflammation, cell death, cell migration, and the maintenance of homeostasis, via interactions with various proteins. This review summarizes our current knowledge on the diverse functions of the Ragulator complex, highlighting important protein interactions.

摘要

近年来,我们对溶酶体的理解发生了重大转变,从认为它们是主要负责细胞废物处理和回收的静态细胞器,到认识到它们是高度动态的结构。目前的研究认为,溶酶体作为一个信号枢纽,整合细胞外和细胞内刺激,从而调节细胞内稳态。溶酶体功能失调与多种疾病有关。值得注意的是,溶酶体有助于激活雷帕霉素复合物1(mTORC1)的哺乳动物靶点,这是细胞代谢的关键调节因子。Ragulator复合物是一种锚定在溶酶体膜上的蛋白质复合物,最初被证明能将mTORC1复合物拴系到溶酶体上。最近的研究极大地扩展了我们对Ragulator复合物在溶酶体中作用的理解,包括通过与各种蛋白质相互作用在代谢调节、炎症、细胞死亡、细胞迁移和稳态维持中的作用。这篇综述总结了我们目前对Ragulator复合物多种功能的认识,突出了重要的蛋白质相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a180/10176720/93f76eb90840/41232_2023_278_Fig1_HTML.jpg

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