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A Ribosome-Bound Quality Control Complex Triggers Degradation of Nascent Peptides and Signals Translation Stress

机译:核糖体结合的质量控制复合物触发新生肽的降解并传递信号翻译应力

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摘要

The conserved transcriptional regulator heat shock factor 1 (Hsf1) is a key sensor of proteotoxic and other stress in the eukaryotic cytosol. We surveyed Hsf1 activity in a genome-wide loss-of-function library in Saccaromyces cerevisiae as well as ~78,000 double mutants and found Hsf1 activity to be modulated by highly diverse stresses. These included disruption of a ribosome-bound complex we named the Ribosome Quality Control Complex (RQC) comprising the Ltn1 E3 ubiquitin ligase, two highly conserved but poorly characterized proteins (Tae2 and Rqc1), and Cdc48 and its cofactors. Electron microscopy and biochemical analyses revealed that the RQC forms a stable complex with 60S ribosomal subunits containing stalled polypeptides and triggers their degradation. A negative feedback loop regulates the RQC, and Hsf1 senses an RQCmediated translation-stress signal distinctly from other stresses. Our work reveals the range of stresses Hsf1 monitors and elucidates a conserved cotranslational protein quality control mechanism.
机译:保守的转录调节因子热休克因子1(Hsf1)是真核细胞质中蛋白毒性和其他应激的关键传感器。我们调查了酿酒酵母中全基因组功能丧失文库中的Hsf1活性以及约78,000个双突变体,发现Hsf1活性受高度多样化的胁迫调控。这些包括破坏核糖体结合的复合物,我们将其命名为核糖体质量控制复合物(RQC),其中包括Ltn1 E3泛素连接酶,两个高度保守但特性不佳的蛋白质(Tae2和Rqc1)以及Cdc48及其辅因子。电子显微镜和生化分析表明,RQC与含有失速多肽的60S核糖体亚基形成稳定的复合物并触发其降解。负反馈环路调节RQC,而Hsf1则与其他应力明显不同地感觉到RQC介导的翻译应力信号。我们的工作揭示了Hsf1监控的压力范围,并阐明了保守的共翻译蛋白质量控制机制。

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