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非编码RNA对未折叠蛋白反应的调控

Regulation of the unfolded protein response by noncoding RNA.

作者信息

McMahon Mari, Samali Afshin, Chevet Eric

机构信息

INSERM U1242 "Chemistry, Oncogenesis, Stress, Signalling," Université de Rennes 1, Rennes, France.

Centre de Lutte Contre le Cancer Eugène Marquis, Rennes, France; and.

出版信息

Am J Physiol Cell Physiol. 2017 Sep 1;313(3):C243-C254. doi: 10.1152/ajpcell.00293.2016. Epub 2017 Jun 21.

DOI:10.1152/ajpcell.00293.2016
PMID:28637678
Abstract

Cells are exposed to various intrinsic and extrinsic stresses in both physiological and pathological conditions. To adapt to those conditions, cells have evolved various mechanisms to cope with the disturbances in protein demand, largely through the unfolded protein response (UPR) in the endoplasmic reticulum (ER), but also through the integrated stress response (ISR). Both responses initiate downstream signaling to transcription factors that, in turn, trigger adaptive programs and/or in the case of prolonged stress, cell death mechanisms. Recently, noncoding RNAs, including microRNA and long noncoding RNA, have emerged as key players in the stress responses. These noncoding RNAs act as both regulators and effectors of the UPR and fine-tune the output of the stress signaling pathways. Although much is known about the UPR and the cross talk that exists between pathways, the contribution of small noncoding RNA has not been fully assessed. Herein we bring together and review the current known functions of noncoding RNA in regulating adaptive pathways in both physiological and pathophysiological conditions, illustrating how they operate within the known UPR functions and contribute to diverse cellular outcomes.

摘要

在生理和病理条件下,细胞都会受到各种内在和外在的压力。为了适应这些条件,细胞进化出了各种机制来应对蛋白质需求的紊乱,主要是通过内质网(ER)中的未折叠蛋白反应(UPR),但也通过综合应激反应(ISR)。这两种反应都会启动下游信号传导至转录因子,进而触发适应性程序,或者在长期应激的情况下触发细胞死亡机制。最近,包括微小RNA和长链非编码RNA在内的非编码RNA已成为应激反应中的关键参与者。这些非编码RNA既是UPR的调节因子,也是效应器,并微调应激信号通路的输出。尽管人们对UPR以及各通路之间存在的相互作用了解很多,但小非编码RNA的作用尚未得到充分评估。在此,我们汇总并综述了非编码RNA在生理和病理生理条件下调节适应性通路的当前已知功能,阐明它们如何在已知的UPR功能中发挥作用并促成多种细胞结果。

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