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iRQC, a surveillance pathway for 40S ribosomal quality control during mRNA translation initiation

机译:IRQC,MRNA翻译开始期间40s核糖体质量控制的监测途径

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Post-translational modification of ribosomal proteins enables rapid and dynamic regulation of protein biogenesis. Site-specific ubiquitylation of 40S ribosomal proteins uS10 and eS10 plays a key role during ribosome-associated quality control (RQC). Distinct, and previously functionally ambiguous, ubiquitylation events on the 40S proteins uS3 and uS5 are induced by diverse proteostasis stressors that impact translation activity. Here, we identify the ubiquitin ligase RNF10 and the deubiquitylating enzyme USP10 as the key enzymes that regulate uS3 and uS5 ubiquitylation. Prolonged uS3 and uS5 ubiquitylation results in 40S, but not 60S, ribosomal protein degradation in a manner independent of canonical autophagy. We show that blocking progression of either scanning or elongating ribosomes past the start codon triggers site-specific ubiquitylation events on ribosomal proteins uS5 and uS3. This study identifies and characterizes a distinct arm in the RQC pathway, initiation RQC (iRQC), that acts on 40S ribosomes during translation initiation to modulate translation activity and capacity.
机译:核糖体蛋白的翻译后改性能够快速和动态调节蛋白质生物发生。 40s核糖体蛋白US10和ES10的特异性泛醌型在核糖体相关质量控制(RQC)期间起着关键作用。在40s蛋白US3和US5上的不同和先前功能含糊的泛醌型事件被影响转化活性的不同蛋白质压力源引起。在此,我们鉴定泛素连接酶RNF10和诸如调节US3和US5泛菌化的关键酶的脱脂酶USP10。延长US3和US5 ubiquitylation导致40s,但不是60s,核糖体蛋白质蛋白质,以与规范自噬的方式劣化。我们表明,在核糖体蛋白US5和US3上阻止扫描或伸长核糖体的进展触发起始密码子触发特异性泛醌型事件。该研究识别并表征RQC途径中的明显臂,启动RQC(IRQC),其在翻译开始期间在40S核糖体上起作用以调节翻译活性和容量。

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