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Translation inhibitors cause abnormalities in ribosome profiling experiments

机译:翻译抑制剂导致核糖体谱分析实验异常

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Ribosome profiling and high-throughput sequencing provide unprecedented opportunities for the analysis of mRNA translation. Using this novel method, several studies have demonstrated the widespread role of short upstream reading frames in translational control as well as slower elongation at the beginning of open reading frames in response to stress. Based on the initial studies, the importance of adding or omitting translation inhibitors, such as cycloheximide, was noted as it markedly affected ribosome coverage profiles. For that reason, many recent studies omitted translation inhibitors in the culture medium. Here, we investigate the influence of ranging cycloheximide concentrations on ribosome profiles in Saccharomyces cerevisiae and demonstrate that increasing the drug concentration can overcome some of the artifacts. We subjected cells to various manipulations and show that neither oxidative stress nor heat shock nor amino acid starvation affect translation elongation. Instead, the observations in the initial studies are the result of cycloheximide-inflicted artifacts. Likewise, we find little support for short upstream reading frames to be involved in widespread protein synthesis regulation under stress conditions. Our study highlights the need for better standardization of ribosome profiling methods.
机译:核糖体分析和高通量测序为mRNA翻译分析提供了前所未有的机会。使用这种新颖的方法,一些研究已经证明了较短的上游阅读框在翻译控制中的广泛作用,以及在开放阅读框开始时响应压力而较慢的延伸。根据最初的研究,注意到添加或省略翻译抑制剂(如环己酰亚胺)的重要性,因为它显着影响核糖体的覆盖范围。因此,最近的许多研究都省略了培养基中的翻译抑制剂。在这里,我们调查了环己酰亚胺的浓度对酿酒酵母中核糖体谱的影响,并证明增加药物浓度可以克服某些假象。我们对细胞进行了各种处理,结果表明氧化应激,热休克或氨基酸饥饿都不会影响翻译延伸。取而代之的是,初始研究中的观察结果是由环己酰亚胺造成的伪迹的结果。同样,我们发现短的上游阅读框很少参与压力条件下广泛的蛋白质合成调控。我们的研究强调需要更好地标准化核糖体分析方法。

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