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传统早期分泌途径与自噬之间的细胞器间协调在细胞稳态和应激反应中的作用

Impact of interorganelle coordination between the conventional early secretory pathway and autophagy in cellular homeostasis and stress response.

作者信息

Tapia Diego, Cavieres Viviana A, Burgos Patricia V, Cancino Jorge

机构信息

Cell Biology of Interorganelle Signaling Laboratory, Centro de Biología Celular y Biomedicina (CEBICEM), Facultad de Medicina y Ciencia, Universidad San Sebastián, Santiago, Chile.

Organelle Phagy Lab, Centro de Biología Celular y Biomedicina (CEBICEM), Facultad de Medicina y Ciencia, Universidad San Sebastián, Santiago, Chile.

出版信息

Front Cell Dev Biol. 2023 Apr 21;11:1069256. doi: 10.3389/fcell.2023.1069256. eCollection 2023.

Abstract

The conventional early secretory pathway and autophagy are two essential interconnected cellular processes that are crucial for maintaining cellular homeostasis. The conventional secretory pathway is an anabolic cellular process synthesizing and delivering proteins to distinct locations, including different organelles, the plasma membrane, and the extracellular media. On the other hand, autophagy is a catabolic cellular process that engulfs damaged organelles and aberrant cytosolic constituents into the double autophagosome membrane. After fusion with the lysosome and autolysosome formation, this process triggers digestion and recycling. A growing list of evidence indicates that these anabolic and catabolic processes are mutually regulated. While knowledge about the molecular actors involved in the coordination and functional cooperation between these two processes has increased over time, the mechanisms are still poorly understood. This review article summarized and discussed the most relevant evidence about the key molecular players implicated in the interorganelle crosstalk between the early secretory pathway and autophagy under normal and stressful conditions.

摘要

传统的早期分泌途径和自噬是两个重要的相互关联的细胞过程,对维持细胞内稳态至关重要。传统分泌途径是一种合成代谢的细胞过程,可将蛋白质合成并输送到不同位置,包括不同的细胞器、质膜和细胞外介质。另一方面,自噬是一种分解代谢的细胞过程,它将受损的细胞器和异常的胞质成分吞噬到双自噬体膜中。与溶酶体融合并形成自溶酶体后,该过程触发消化和再循环。越来越多的证据表明,这些合成代谢和分解代谢过程相互调节。虽然随着时间的推移,人们对参与这两个过程之间协调和功能合作的分子因子的了解有所增加,但机制仍知之甚少。这篇综述文章总结并讨论了在正常和应激条件下,早期分泌途径和自噬之间细胞器间串扰中涉及的关键分子参与者的最相关证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/827f/10160633/9fea3a76dc6c/fcell-11-1069256-g001.jpg

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