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Endoplasmic reticulum stress signalling - from basic mechanisms to clinical applications

机译:内质网应力信号 - 从基本机制到临床应用

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摘要

The endoplasmic reticulum (ER) is a membranous intracellular organelle and the first compartment of the secretory pathway. As such, the ER contributes to the production and folding of approximately one-third of cellular proteins, and is thus inextricably linked to the maintenance of cellular homeostasis and the fine balance between health and disease. Specific ER stress signalling pathways, collectively known as the unfolded protein response (UPR), are required for maintaining ER homeostasis. The UPR is triggered when ER protein folding capacity is overwhelmed by cellular demand and the UPR initially aims to restore ER homeostasis and normal cellular functions. However, if this fails, then the UPR triggers cell death. In this review, we provide a UPR signalling-centric view of ER functions, from the ER's discovery to the latest advancements in the understanding of ER and UPR biology. Our review provides a synthesis of intracellular ER signalling revolving around proteostasis and the UPR, its impact on other organelles and cellular behaviour, its multifaceted and dynamic response to stress and its role in physiology, before finally exploring the potential exploitation of this knowledge to tackle unresolved biological questions and address unmet biomedical needs. Thus, we provide an integrated and global view of existing literature on ER signalling pathways and their use for therapeutic purposes.
机译:内质网(ER)是膜状细胞内细胞器和分泌途径的第一室。因此,ER有助于产生和折叠大约三分之一的细胞蛋白,因此与维持细胞稳态和健康和疾病之间的细平衡有不可缩放。特异性ER应激信号传导途径,统称为展开蛋白质反应(UPR),用于维持ER稳态。当ER蛋白折叠容量被细胞需求不堪重负时,uPR被触发,并且UPR最初旨在恢复ER稳态和正常的蜂窝功能。但是,如果这失败,那么UPR触发了细胞死亡。在这篇综述中,我们提供了一个UPR信心为中心的ER功能视图,从ER的发现到了解ER和UPR生物学的最新进步。我们的审查提供了促进蛋白质和UPR的细胞内ER信号传导的合成,其对其他细胞器和细胞行为的影响,其多方面和对压力的动态响应及其在生理学中的作用,之前终于探讨了这种知识的潜在利用,以解决尚未解决的问题生物学问题和解决未满足的生物医学需求。因此,我们在ER信号通道上提供了现有文献的集成和全球视图及其用于治疗目的的用途。

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