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Predicting the Structural Design of Metabolic Pathways: An Evolutionary Approach

机译:预测代谢途径的结构设计:一种进化方法

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Metabolic systems are characterized by two different types of data, describing first their structural properties (stoicheiometric relations of the chemical conversions, regulatory couplings, kinetic parameter of the enzymes), and second their variables (metabolite concentrations, fluxes). The former are generally fixed during the life span of a cell or an organism, whereas the latter may change in a short time scale, for example within hours or days. To elucidate the main features of the structural properties of metabolic systems one has to take into account that the various enzyme systems withint he cells are the result of selection. We follow the hypothesis that the stoicheiometric design of metabolism, as well as the kinetic design of enzymatic mechanisms, may be explained in terms of optimization principles (Heinrich & Holzhutter, 1985; Melendez-Hevia & Isidoro, 1985; Heinrich et al., 1991), which also apply to understanding the structure of macromolecules such as glycogen, as Melendez-Hevia describes in Chapter 36. It may be expected that such a theoretical approach is not only of academic interest but will also be useful for the purposeful modification (optimization) of metabolism in biotechnology.
机译:代谢系统的特征在于两种不同类型的数据,首先描述它们的结构特性(化学转化的化学计量关系,调节耦合,酶的动力学参数),然后描述它们的变量(代谢物浓度,通量)。前者通常在细胞或生物的生命周期内是固定的,而后者可能会在很短的时间内发生变化,例如在数小时或数天内。为了阐明代谢系统结构特征的主要特征,必须考虑到细胞内的各种酶系统是选择的结果。我们遵循这样的假说:新陈代谢的化学计量学设计以及酶机制的动力学设计可以用最优化原理来解释(Heinrich&Holzhutter,1985; Melendez-Hevia&Isidoro,1985; Heinrich等,1991)。 ),这也适用于理解大分子(例如糖原)的结构,如Melendez-Hevia在第36章中所述。可以预期,这种理论方法不仅具有学术意义,而且对于有目的的修饰(优化)也很有用。 )生物技术中的新陈代谢。

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