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Quantitative effect of target translation on small RNA efficacy reveals a novel mode of interaction

机译:目标翻译对小RNA功效的定量作用揭示了一种新型的相互作用方式

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Small regulatory RNAs (sRNAs) in bacteria regulate many important cellular activities under normal conditions and in response to stress. Many sRNAs bind to the mRNA targets at or near the 5' untranslated region (UTR) resulting in translation inhibition and accelerated degradation. Often the sRNA-binding site is adjacent to or overlapping with the ribosomal binding site (RBS), suggesting a possible interplay between sRNA and ribosome binding. Here we combine quantitative experiments with mathematical modeling to reveal novel features of the interaction between small RNAs and the translation machinery at the 5' UTR of a target mRNA. By measuring the response of a library of reporter targets with varied RBSs, we find that increasing translation rate can lead to increased repression. Quantitative analysis of these data suggests a recruitment model, where bound ribosomes facilitate binding of the sRNA. We experimentally verified predictions of this model for the cell-to-cell variability of target expression. Our findings offer a framework for understanding sRNA silencing in the context of bacterial
机译:细菌中的小型调节性RNA(sRNA)在正常条件下以及对压力的反应中调节许多重要的细胞活动。许多sRNA在5'非翻译区(UTR)或附近与mRNA靶标结合,导致翻译抑制和加速降解。 sRNA结合位点通常与核糖体结合位点(RBS)相邻或重叠,表明sRNA与核糖体结合之间可能存在相互作用。在这里,我们将定量实验与数学建模相结合,以揭示目标RNA的5'UTR处小RNA与翻译机制之间相互作用的新颖特征。通过测量具有不同RBS的报告基因靶标库的响应,我们发现增加的翻译速率可以导致增加的抑制。这些数据的定量分析表明了一种募集模型,其中结合的核糖体促进了sRNA的结合。我们实验验证了该模型对目标表达的细胞间变异性的预测。我们的发现为理解细菌环境中的sRNA沉默提供了一个框架。

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