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关于内质网-高尔基体中间体的已知与未知

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内质网-高尔基体中间体(ERGIC)最初是在研究病毒蛋白胞内转运机制的过程中被发现的.由于其特殊的结构以及亚细胞定位,早期研究认为它是内质网和高尔基体之间的"交通枢纽",其主要职能是为经典分泌路径中物质的分选和双向运输过程提供保障.而近期的探索揭示了ERGIC在细胞遭受胁迫时的一系列非经典功能:参与调控自噬体膜的早期形成,作为非经典分泌蛋白质的"集散地"等.多项研究揭示多种冠状病毒会"挟持"宿主的ERGIC,将其作为复制和组装的平台.还有研究显示ERGIC在有关蛋白合成质控过程中发挥作用,可能还会以内质网漩涡等多种内膜形态呈现,从而协助细胞平衡内膜系统的稳态以应对外界压力.尽管人们已经认识到ERGIC结构的独特性以及功能的多样性,但当前对其功能的理解仍然十分有限,特别是ERGIC通过何种机制在不同生理和病理条件下协调其动态结构与多样功能仍不甚明了.该综述旨在全面概述ERGIC的细胞功能和分子调控机制,并对相关议题进行探讨.
The Knowns and Unknowns of ER-Golgi Intermediate Compartment
The ERGIC(endoplasmic reticulum-Golgi intermediate compartment)was initially discovered during the study of intracellular transport mechanisms of viral proteins.Early studies,due to its unique structure and subcellular localization,posited the ERGIC as a"transit hub"between the endoplasmic reticulum and the Golgi apparatus,playing roles in cargo sorting and bidirectional transport within the conventional secretory pathway.Subsequent research,however,unveiled a series of unconventional functions for ERGIC under cellular stress,such as modulating the early formation of autophagosomes and acting as a central hub for unconventional secretory proteins.Various studies have shown that many coronaviruses hijack the host's ERGIC,using it as a platform for replication and assembly.Additionally,there's evidence suggesting ERGIC's involvement in protein synthesis qual-ity control and its potential existence in different membrane structures like ER Whorl,ensuring cellular homeostasis under stress conditions.While the distinct structure and multifaceted functions of ERGIC have been recognized,the current understanding of its functionalities remains very limited.Specifically,the mechanisms through which ER-GIC coordinates its dynamic structures and diverse functions under different physiological and pathological condi-tions are still not very clear.This review aims to provide a comprehensive overview of ERGIC's cellular functions and molecular regulatory mechanisms and delve into related topics.

the ER-Golgi intermediate compartmentmembrane trafficunconventional protein secretionautophagy

李树林、葛亮

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清华大学生命科学学院,清华大学-北京大学生命科学联合中心,膜生物学国家重点实验室,北京 100084

内质网-高尔基体中间体 膜泡运输 蛋白质非经典分泌 细胞自噬

国家自然科学基金国家自然科学基金国家自然科学基金

922543023213002332225013

2024

中国细胞生物学学报
中国科学院上海生命科学研究院,生物化学与细胞生物学研究所,中国细胞生物学学会

中国细胞生物学学报

CSTPCD
影响因子:0.554
ISSN:1674-7666
年,卷(期):2024.46(1)
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