论文标题

建模核糖体迁移率对蛋白质合成速率的影响

Modelling the effect of ribosome mobility on the rate of protein synthesis

论文作者

Dauloudet, Olivier, Neri, Izaak, Walter, Jean-Charles, Dorignac, Jérôme, Geniet, Frédéric, Parmeggiani, Andrea

论文摘要

翻译是蛋白质合成的主要步骤之一。它由将mRNA上编码的核苷酸序列转化为氨基酸多肽序列的核糖体组成。与mRNA结合的核糖体单向移动,而未结合的核糖体在细胞质中弥漫。据推测,核糖体的有限扩散在核糖体回收中起重要作用,而mRNA循环化提高了翻译的效率。为了估计细胞质扩散对翻译速率的影响,我们认为完全不对称的简单排除过程(Tasep)与有限扩散的储层结合在一起,我们将其称为具有扩散(RTD)的核糖体传输模型。在此模型中,我们得出了蛋白质合成速率的分析表达,这是核糖体扩散常数的函数,该核体的扩散常数得到了连续时间蒙特卡洛模拟的结果证实的。使用广泛的生物学相关参数,我们得出结论,生物细胞中的扩散足够快,因此它在控制翻译起始率中不起作用。

Translation is one of the main steps in the synthesis of proteins. It consists of ribosomes that translate sequences of nucleotides encoded on mRNA into polypeptide sequences of amino acids. Ribosomes bound to mRNA move unidirectionally, while unbound ribosomes diffuse in the cytoplasm. It has been hypothesized that finite diffusion of ribosomes plays an important role in ribosome recycling and that mRNA circularization enhances the efficiency of translation. In order to estimate the effect of cytoplasmic diffusion on the rate of translation, we consider a Totally Asymmetric Simple Exclusion Process (TASEP) coupled to a finite diffusive reservoir, which we call the Ribosome Transport model with Diffusion (RTD). In this model, we derive an analytical expression for the rate of protein synthesis as a function of the diffusion constant of ribosomes, which is corroborated with results from continuous-time Monte Carlo simulations. Using a wide range of biological relevant parameters, we conclude that diffusion in biological cells is fast enough so that it does not play a role in controlling the rate of translation initiation.

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