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Total enzyme activity constraint and homeostatic constraint impact on the optimization potential of a kinetic model

机译:总酶活性约束和稳态约束对动力学模型的优化潜力的影响

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AbstractThe application of biologically and biochemically relevant constraints during the optimization of kinetic models reduces the impact of suggested changes in processes not included in the scope of the model. This increases the probability that the design suggested by model optimization can be carried out by an organism after implementation of design in vivo.A case study was carried out to determine the impact of total enzyme activity and homeostatic constraints on the objective function values and the following ranking of adjustable parameter combinations. The application of constraints on the model of sugar cane metabolism revealed that a homeostatic constraint caused heavier limitations of the objective function than a total enzyme activity constraint. Both constraints changed the ranking of adjustable parameter combinations: no “universal” constraint-independent top-ranked combinations were found. Therefore, when searching for the best subset of adjustable parameters, a full scan of their combinations is suggested for a small number of adjustable parameters, and evolutionary search strategies are suggested for a large number. Simultaneous application of both constraints is suggested.]]>
机译:<![cdata [ 抽象 在动力学模型的优化期间应用生物学和生物化学相关约束的应用减少了在模型范围内未包含在不包括在模型范围内的建议变化的影响。这增加了模型优化所建议的设计的概率可以通过在体内设计的设计之后进行。 进行了案例研究以确定总酶活性和稳态约束对目标函数值的影响以及以下调节参数组合的排名。约束对甘蔗代谢模型的应用揭示了稳态约束导致目标函数的较重限制而不是总酶活性约束。这两个约束都改变了可调参数组合的排名:未找到“通用”约束独立的排名组合。因此,当搜索最佳可调参数的子集时,建议为少量可调参数建议它们组合的完整扫描,并且建议大量的进化搜索策略。建议同时应用两个约束。 ]]>

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