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Cdc48-associated complex bound to 60S particles is required for the clearance of aberrant translation products

机译:需要清除与60S颗粒结合的Cdc48相关复合物才能清除异常翻译产物

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摘要

Ribosome stalling on eukaryotic mRNAs triggers cotranslational RNA and protein degradation through conserved mechanisms. For example, mRNAs lacking a stop codon are degraded by the exosome in association with its cofactor, the SKI complex, whereas the corresponding aberrant nascent polypeptides are ubiquitinated by the E3 ligases Ltn1 and Not4 and become proteasome substrates. How translation arrest is linked with polypeptide degradation is still unclear. Genetic screens with SKI and LTN1 mutants allowed us to identify translation-associated element 2 (Tae2) and ribosome quality control 1 (Rqc1), two factors that we found associated, together with Ltn1 and the AAA-ATPase Cdc48, to 60S ribosomal subunits. Translation-associated element 2 (Tae2), Rqc1, and Cdc48 were all required for degradation of polypeptides synthesized from Non-Stop mRNAs (Non-Stop protein decay; NSPD). Both Ltn1 and Rqc1 were essential for the recruitment of Cdc48 to 60S particles. Polysome gradient analyses of mutant strains revealed unique intermediates of this pathway, showing that the polyubiquitination of Non-Stop peptides is a progressive process. We propose that ubiquitination of the nascent peptide starts on the 80S and continues on the 60S, on which Cdc48 is recruited to escort the substrate for proteasomal degradation.
机译:核糖体停滞在真核mRNA上会通过保守机制触发共翻译RNA和蛋白质降解。例如,缺少终止密码子的mRNA被外来体与其辅因子SKI复合物降解,而相应的异常新生多肽被E3连接酶Ltn1和Not4泛素化,并成为蛋白酶体底物。尚不清楚翻译停滞如何与多肽降解联系在一起。带有SKI和LTN1突变体的遗传筛选使我们能够鉴定与翻译相关的元件2(Tae2)和核糖体质量控制1(Rqc1),这是我们发现与Ltn1和AAA-ATPase Cdc48相关的两个因素,与60S核糖体亚基相关。翻译相关元素2(Tae2),Rqc1和Cdc48都是降解非停止mRNA合成的多肽(非停止蛋白衰变; NSPD)所必需的。 Ltn1和Rqc1对于将Cdc48募集到60S颗粒都是必不可少的。突变菌株的多核糖体梯度分析揭示了该途径的独特中间体,表明非停止肽的多聚泛素化是一个渐进过程。我们建议新生肽的泛素化作用始于80年代,并持续于60年代,在该时期上募集了Cdc48来陪伴底物进行蛋白酶体降解。

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