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The ribosome quality control pathway can access nascent polypeptides stalled at the Sec61 translocon

机译:核糖体质量控制途径可以访问停滞在Sec61 translocon的新生多肽

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摘要

Cytosolic ribosomes that stall during translation are split into subunits, and nascent polypeptides trapped in the 60S subunit are ubiquitinated by the ribosome quality control (RQC) pathway. Whether the RQC pathway can also target stalls during cotranslational translocation into the ER is not known. Here we report that listerin and NEMF, core RQC components, are bound to translocon-engaged 60S subunits on native ER membranes. RQC recruitment to the ER in cultured cells is stimulated by translation stalling. Biochemical analyses demonstrated that translocon-targeted nascent polypeptides that subsequently stall are polyubiquitinated in 60S complexes. Ubiquitination at the translocon requires cytosolic exposure of the polypeptide at the ribosome–Sec61 junction. This exposure can result from either failed insertion into the Sec61 channel or partial backsliding of translocating nascent chains. Only Sec61-engaged nascent chains early in their biogenesis were relatively refractory to ubiquitination. Modeling based on recent 60S–RQC and 80S–Sec61 structures suggests that the E3 ligase listerin accesses nascent polypeptides via a gap in the ribosome–translocon junction near the Sec61 lateral gate. Thus the RQC pathway can target stalled translocation intermediates for degradation from the Sec61 channel.
机译:在翻译过程中停滞的胞质核糖体被分成亚基,而被困在60S亚基中的新生多肽则通过核糖体质量控制(RQC)途径泛素化。 RQC途径是否也可以在共翻译易位到ER期间靶向失速。在这里我们报告说,李斯特菌素和NEMF,核心RQC组件,绑定到天然ER膜上的跨膜结合60S亚基。翻译停滞刺激了RQC在培养细胞中募集到ER。生化分析表明,随后停滞的,以透子细胞为靶标的新生多肽在60S复合物中被多泛素化。在转运子处的泛素化需要多肽在核糖体-Sec61连接处的胞质暴露。这种暴露可能是由于未能成功插入Sec61通道或易位新生链的部分向后滑动引起的。只有Sec61参与的新生链在它们的生物发生早期才相对难于泛素化。基于最近的60S–RQC和80S–Sec61结构的建模表明,E3连接酶李斯特菌素通过Sec61侧门附近的核糖体-Transconcon交界处的间隙进入新生多肽。因此,RQC途径可以靶向停滞的易位中间体,以从Sec61通道降解。

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