Kohn M C, Letzkus W J
J Theor Biol. 1983 Jan 21;100(2):293-304. doi: 10.1016/0022-5193(83)90353-3.
A graph theoretical method is proposed for modeling metabolic networks including enzymic cascades and synergistic binding of ligands to enzymes. Formal operations on the graph of a given network leads to the identification of feedback metabolites and the enzymes which regulate the feedback. These systemic properties are thus isolated from the purely local regulation of individual enzymes. The method was applied to a model of glycogen metabolism. At low cyclic AMP and insulin levels feedback control of the system is predicted to be largely with the glycogen branching and debranching enzymes, which set the amount of glycogen in the metabolically available outer branches.
提出了一种图论方法,用于对包括酶级联反应以及配体与酶的协同结合在内的代谢网络进行建模。对给定网络的图进行形式运算,可识别出反馈代谢物以及调节反馈的酶。因此,这些系统特性与单个酶的纯局部调节分离开来。该方法应用于糖原代谢模型。在低环磷酸腺苷和胰岛素水平下,预计该系统的反馈控制主要由糖原分支酶和脱支酶进行,它们决定了代谢可用外分支中糖原的量。