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The role of tRNA and ribosome competition in coupling the expression of different mRNAs in Saccharomyces cerevisiae

机译:tRNA和核糖体竞争在酿酒酵母中不同mRNA表达偶联中的作用

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摘要

Protein synthesis translates information from messenger RNAs into functional proteomes. Because of the finite nature of the resources required by the translational machinery, both the overall protein synthesis activity of a cell and activity on individual mRNAs are controlled by the allocation of limiting resources. Upon introduction of heterologous sequences into an organism-for example for the purposes of bioprocessing or synthetic biology-limiting resources may also become overstretched, thus negatively affecting both endogenous and heterologous gene expression. In this study, we present a mean-field model of translation in Saccharomyces cerevisiae for the investigation of two particular translational resources, namely ribosomes and aminoacylated tRNAs. We firstly use comparisons of experiments with heterologous sequences and simulations of the same conditions to calibrate our model, and then analyse the behaviour of the translational system in yeast upon introduction of different types of heterologous sequences. Our main findings are that: competition for ribosomes, rather than tRNAs, limits global translation in this organism; that tRNA aminoacylation levels exert, at most, weak control over translational activity; and that decoding speeds and codon adaptation exert strong control over local (mRNA specific) translation rates.
机译:蛋白质合成将信息从信使RNA转换为功能蛋白质组。由于翻译机制所需资源的有限性质,细胞的总体蛋白质合成活性和单个mRNA的活性均受限制资源分配的控制。一旦将异源序列引入生物体中(例如出于生物加工或合成生物学的目的),限制资源也可能变得过度伸展,从而对内源和异源基因表达均产生负面影响。在这项研究中,我们提出了酿酒酵母翻译的平均场模型,用于研究两种特定的翻译资源,即核糖体和氨基酰化的tRNA。我们首先使用具有异源序列的实验比较和相同条件的模拟来校准我们的模型,然后在引入不同类型的异源序列后分析酵母中翻译系统的行为。我们的主要发现是:对核糖体而不是tRNA的竞争限制了该生物体的整体翻译。 tRNA氨基酰化水平最多只能对翻译活性产生弱控制;并且解码速度和密码子适应性对本地(特定于mRNA的)翻译速率具有强大的控制力。

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