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Parameter optimization and sensitivity analysis for large kinetic models using a real-coded genetic algorithm

机译:使用实编码遗传算法的大型动力学模型的参数优化和灵敏度分析

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Dynamic modeling is a powerful tool for predicting changes in metabolic regulation. However, a large number of input parameters, including kinetic constants and initial metabolite concentrations, are required to construct a kinetic model. Therefore, it is important not only to optimize the kinetic parameters, but also to investigate the effects of their perturbations on the overall system. We investigated the efficiency of the use of a real-coded genetic algorithm (RCGA) for parameter optimization and sensitivity analysis in the case of a large kinetic model involving glycolysis and the pentose phosphate pathway in Escherichia coli K-12. Sensitivity analysis of the kinetic model using an RCGA demonstrated that the input parameter values had different effects on model outputs. The results showed highly influential parameters in the model and their allowable ranges for maintaining metabolite-level stability. Furthermore, it was revealed that changes in these influential parameters may complement one another. This study presents an efficient approach based on the use of an RCGA for optimizing and analyzing parameters in large kinetic models. ? 2012 Elsevier B.V.
机译:动态建模是预测代谢调节变化的强大工具。但是,构建动力学模型需要大量输入参数,包括动力学常数和初始代谢物浓度。因此,不仅要优化动力学参数,而且研究其摄动对整个系统的影响也很重要。我们调查了在涉及糖酵解和磷酸戊糖磷酸途径的大动力学模型的情况下,使用实码遗传算法(RCGA)进行参数优化和灵敏度分析的效率。使用RCGA对动力学模型进行的敏感性分析表明,输入参数值对模型输出具有不同的影响。结果表明,该模型中的参数及其保持代谢物水平稳定性的允许范围均具有很大的影响力。此外,已经揭示出这些影响参数的变化可以相互补充。这项研究提出了一种基于RCGA的有效方法,用于优化和分析大型动力学模型中的参数。 ? 2012年Elsevier B.V.

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