Reder C
U.E.R. de Mathématiques et Informatique, Université de Bordeaux I, Talence, France.
J Theor Biol. 1988 Nov 21;135(2):175-201. doi: 10.1016/s0022-5193(88)80073-0.
In the general framework of metabolic control theory, we describe a method of mathematical modelling that provides a way of analysing the sensitivity of a metabolic system to perturbations of the environment or of the internal state of this system. The method can be applied to any metabolic system, involving for instance conservation relationships, non-specific external parameters, etc., and leads in particular to a characterization of the control matrices and to a generalization of the summation and connectivity theorems. In this paper, we emphasize the structural characterizations and properties of the systems which depend only on the structure of the metabolic network, and not on the reaction kinetics. The advantage of this approach lies of course in the fact that the structure of the metabolic network is an invariant of the system which depends neither on the environment nor on the internal state of this system. The aim of this paper is to show the efficiency of such a structural approach.
在代谢控制理论的总体框架下,我们描述了一种数学建模方法,该方法提供了一种分析代谢系统对环境扰动或其内部状态扰动的敏感性的途径。该方法可应用于任何代谢系统,例如涉及守恒关系、非特异性外部参数等,并特别导致控制矩阵的表征以及求和与连通性定理的推广。在本文中,我们强调仅依赖于代谢网络结构而非反应动力学的系统的结构表征和性质。这种方法的优势当然在于代谢网络的结构是系统的一个不变量,它既不依赖于环境也不依赖于该系统的内部状态。本文的目的是展示这种结构方法的有效性。