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Ribosome pausing a dangerous necessity for co-translational events

机译:核糖体暂停共翻译事件的危险必需品

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摘要

In recent years translation elongation has emerged as an important contributor to the regulation of gene expression. There are multiple quality control checkpoints along the way of producing mature proteins and targeting them to the right cellular compartment, or associating them correctly with their partners. Ribosomes pause to allow co-translational protein folding, protein targeting or protein interactions, and the pausing is dictated by a combination of the mRNA sequence and structure, the tRNA availability and the nascent peptide. However, ribosome pausing can also lead to ribosome collisions and co-translational degradation of both mRNA and nascent chain. Understanding how the translating ribosome tunes the different maturation steps that nascent proteins must undergo, what the timing of these maturation events is, and how degradation can be avoided when pausing is needed, is now possible by the emergence of methods to follow ribosome dynamics . This review summarizes some of the recent studies that have advanced our knowledge about co-translational events using the power of ribosome profiling, and some of the questions that have emerged from these studies.
机译:近年来,翻译延伸已成为调节基因表达的重要因素。在产生成熟蛋白质并将其靶向正确的细胞区室或将其与伴侣正确结合的过程中,存在多个质量控制检查点。核糖体暂停以允许共翻译蛋白折叠,蛋白靶向或蛋白相互作用,并且暂停是由mRNA序列和结构,tRNA可用性和新生肽的组合决定的。但是,核糖体暂停也可能导致核糖体碰撞以及mRNA和新生链的共翻译降解。通过遵循核糖体动力学的方法的出现,现在可以理解翻译核糖体如何调节新生蛋白质必须经历的不同成熟步骤,这些成熟事件的发生时间以及在需要暂停时如何避免降解。这篇综述总结了一些最近的研究,这些研究利用核糖体图谱的功能增强了我们对共翻译事件的认识,并总结了这些研究中出现的一些问题。

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