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Streamlining the construction of large-scale dynamic models using generic kinetic equations

机译:使用通用动力学方程简化大型动力学模型的构建

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Motivation: Studying biological systems, not just at an individual component level but at a system-wide level, gives us great potential to understand fundamental functions and essential biological properties. Despite considerable advances in the topological analysis of metabolic networks, inadequate knowledge of the enzyme kinetic rate laws and their associated parameter values still hampers large-scale kinetic modelling. Furthermore, the integration of gene expression and protein levels into kinetic models is not straightforward.Results: The focus of our research is on streamlining the construction of large-scale kinetic models. A novel software tool was developed, which enables the generation of generic rate equations for all reactions in a model. It encompasses an algorithm for estimating the concentration of proteins for a reaction to reach a particular steady state when kinetic parameters are unknown, and two robust methods for parameter estimation. It also allows for the seamless integration of gene expression or protein levels into a reaction and can generate equations for both transcription and translation. We applied this methodology to model the yeast glycolysis pathway; our results show that the behaviour of the system can be accurately described using generic kinetic equations.Availability and implementation: The software tool, together with its source code in Java, is available from our project web site at http://www.bioinf.manchester.ac.uk/schwartz/grapeContact: jean-marc.schwartz@manchester.ac.ukSupplementary information: Supplementary data are available at Bioinformatics online.
机译:动机:研究生物系统不仅在单个组件层面,而且在整个系统层面,都使我们有很大的潜力来了解基本功能和基本生物学特性。尽管在代谢网络的拓扑分析方面取得了长足的进步,但是对酶动力学速率定律及其相关参数值的了解不足,仍然阻碍了大规模动力学建模。而且,将基因表达和蛋白质水平整合到动力学模型中并不是一件容易的事。结果:我们的研究重点是简化大规模动力学模型的构建。开发了一种新颖的软件工具,该工具可以生成模型中所有反应的通用速率方程。它包含一种算法,用于在动力学参数未知时估算达到特定稳态的反应蛋白浓度,以及两种用于参数估算的可靠方法。它还可以将基因表达或蛋白质水平无缝整合到反应中,并可以生成转录和翻译的方程式。我们应用这种方法来模拟酵母糖酵解途径。我们的结果表明,可以使用通用动力学方程式准确描述系统的行为。可用性和实现:该软件工具及其Java源代码可从我们的项目网站http://www.bioinf获得。 manchester.ac.uk/schwartz/grape联系人:jean-marc.schwartz@manchester.ac.uk补充信息:补充数据可从在线生物信息学获得。

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