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首页> 外文期刊>Journal of computational biology: A journal of computational molecular cell biology >A general modeling strategy for gene regulatory networks with stochastic dynamics
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A general modeling strategy for gene regulatory networks with stochastic dynamics

机译:具有随机动力学的基因调控网络的通用建模策略

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A stochastic genetic toggle switch model that consists of two identical, mutually repressive genes is built using the Gillespie algorithm with time delays as an example of a simple stochastic gene regulatory network. The stochastic kinetics of this model is investigated, and it is found that the delays for the protein productions can highly weaken the global fluctuations for the expressions of the two genes, making the two mutually repressive genes coexist for a long time. Starting from this model, we propose a practical modeling strategy for more complex gene regulatory networks. Unlike previous applications of the Gillespie algorithm to simulate specific genetic networks dynamics, this modeling strategy is proposed for an ensemble approach to study the dynamical properties of these networks. The model allows any combination of gene expression products, forming complex multimers, and each one of the multimers is assigned to a randomly chosen gene promoter site as an activator or inhibitor. In addition, each gene, although it has only one promoter site, can have multiple regulatory sites and distinct rates of translation and transcription. Also, different genes have different time delays for transcription and translation and all reaction constant rates are initially randomly chosen from a range of values. Therefore, the general strategy here proposed may be used to simulate real genetic networks.
机译:以简单的随机基因调控网络为例,使用具有时延的Gillespie算法构建了一个由两个相同的,相互抑制的基因组成的随机遗传切换模型。研究了该模型的随机动力学,发现蛋白质生产的延迟可以大大减弱两个基因表达的整体波动,从而使两个相互抑制的基因长时间共存。从该模型开始,我们为更复杂的基因调控网络提出了一种实用的建模策略。与吉列斯比算法先前用于模拟特定遗传网络动力学的应用程序不同,此建模策略是为研究这些网络的动力学特性的整体方法而提出的。该模型允许基因表达产物的任何组合,形成复杂的多聚体,并且每个多聚体被分配给随机选择的基因启动子位点作为活化剂或抑制剂。此外,每个基因尽管只有一个启动子位点,但可以具有多个调控位点以及不同的翻译和转录速率。同样,不同的基因对于转录和翻译具有不同的时间延迟,并且所有反应恒定速率最初都是从一系列值中随机选择的。因此,这里提出的一般策略可以用来模拟真实的遗传网络。

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