A deterministic model for non-monotone relationship between translation of upstream and downstream open reading frames

D E Andreev;P V Baranov;A Milogorodskii;D Rachinskii
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引用次数: 1

Abstract

Totally asymmetric simple exclusion process (TASEP) modelling was shown to offer a parsimonious explanation for the experimentally confirmed ability of a single upstream open reading frames (uORFs) to upregulate downstream translation during the integrated stress response. As revealed by numerical simulations, the model predicts that reducing the density of scanning ribosomes upstream of certain uORFs increases the flow of ribosomes downstream. To gain a better insight into the mechanism which ensures the non-monotone relation between the upstream and downstream flows, in this work, we propose a phenomenological deterministic model approximating the TASEP model of the translation process. We establish the existence of a stationary solution featuring the decreasing density along the uORF for the deterministic model. Further, we find an explicit non-monotone relation between the upstream ribosome density and the downstream flow for the stationary solution in the limit of increasing uORF length and increasingly leaky initiation. The stationary distribution of the TASEP model, the stationary solution of the deterministic model and the explicit limit are compared numerically.
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上游和下游开放阅读框翻译非单调关系的确定性模型
完全不对称简单排除过程(TASEP)模型被证明为实验证实的单个上游开放阅读框架(uORF)在综合应力反应过程中上调下游翻译的能力提供了一个简洁的解释。正如数值模拟所揭示的,该模型预测,降低某些uORF上游扫描核糖体的密度会增加下游核糖体的流量。为了更好地了解确保上游和下游流量之间非单调关系的机制,在这项工作中,我们提出了一个现象学确定性模型,该模型近似于翻译过程的TASEP模型。对于确定性模型,我们建立了具有沿uORF递减密度的平稳解的存在性。此外,我们发现在uORF长度增加和泄漏引发增加的极限下,固定溶液的上游核糖体密度和下游流量之间存在显式的非单调关系。数值比较了TASEP模型的平稳分布、确定性模型的平稳解和显式极限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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