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氧化稳态通过翻译控制调节对还原性内质网应激的反应。

Oxidative Homeostasis Regulates the Response to Reductive Endoplasmic Reticulum Stress through Translation Control.

作者信息

Maity Shuvadeep, Rajkumar Asher, Matai Latika, Bhat Ajay, Ghosh Asmita, Agam Ganesh, Kaur Simarjot, Bhatt Niraj R, Mukhopadhyay Arnab, Sengupta Shantanu, Chakraborty Kausik

机构信息

CSIR-Institute of Genomics and Integrative Biology, South Campus, Mathura Road, New Delhi 110025, India.

CSIR-Institute of Genomics and Integrative Biology, South Campus, Mathura Road, New Delhi 110025, India; Academy of Scientific and Innovative Research, CSIR- Institute of Genomics and Integrative Biology, Mathura Road Campus, New Delhi 110025, India.

出版信息

Cell Rep. 2016 Jul 19;16(3):851-65. doi: 10.1016/j.celrep.2016.06.025. Epub 2016 Jun 30.

Abstract

Reductive stress leads to the loss of disulfide bond formation and induces the unfolded protein response of the endoplasmic reticulum (UPR(ER)), necessary to regain proteostasis in the compartment. Here we show that peroxide accumulation during reductive stress attenuates UPR(ER) amplitude by altering translation without any discernible effect on transcription. Through a comprehensive genetic screen in Saccharomyces cerevisiae, we identify modulators of reductive stress-induced UPR(ER) and demonstrate that oxidative quality control (OQC) genes modulate this cellular response in the presence of chronic but not acute reductive stress. Using a combination of microarray and relative quantitative proteomics, we uncover a non-canonical translation attenuation mechanism that acts in a bipartite manner to selectively downregulate highly expressed proteins, decoupling the cell's transcriptional and translational response during reductive ER stress. Finally, we demonstrate that PERK, a canonical translation attenuator in higher eukaryotes, helps in bypassing a ROS-dependent, non-canonical mode of translation attenuation.

摘要

还原应激会导致二硫键形成的丧失,并诱导内质网的未折叠蛋白反应(UPR(ER)),这是在该细胞器中恢复蛋白质稳态所必需的。在此我们表明,还原应激期间过氧化物的积累通过改变翻译来减弱UPR(ER)的幅度,而对转录没有任何可察觉的影响。通过在酿酒酵母中进行全面的遗传筛选,我们鉴定出还原应激诱导的UPR(ER)的调节因子,并证明氧化质量控制(OQC)基因在慢性而非急性还原应激存在的情况下调节这种细胞反应。使用微阵列和相对定量蛋白质组学相结合的方法,我们发现了一种非经典的翻译减弱机制,该机制以二分法起作用,选择性地下调高表达蛋白,在还原内质网应激期间使细胞的转录和翻译反应脱钩。最后,我们证明,真核生物中的经典翻译减弱因子PERK有助于绕过一种依赖活性氧的非经典翻译减弱模式。

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