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A Deficiency-Based Approach to Parametrizing Positive Equilibria of Biochemical Reaction Systems

机译:基于缺陷的生化反应系统正平衡参数化方法

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摘要

We present conditions which guarantee a parametrization of the set of positive equilibria of a generalized mass-action system. Our main results state that (1) if the underlying generalized chemical reaction network has an effective deficiency of zero, then the set of positive equilibria coincides with the parametrized set of complex-balanced equilibria and (2) if the network is weakly reversible and has a kinetic deficiency of zero, then the equilibrium set is nonempty and has a positive, typically rational, parametrization. Via the method of network translation, we apply our results to classical mass-action systems studied in the biochemical literature, including the EnvZ–OmpR and shuttled WNT signaling pathways. A parametrization of the set of positive equilibria of a (generalized) mass-action system is often a prerequisite for the study of multistationarity and allows an easy check for the occurrence of absolute concentration robustness, as we demonstrate for the EnvZ–OmpR pathway.
机译:我们提出的条件可以保证广义质量作用系统的正平衡集的参数化。我们的主要结果表明,(1)如果基础的广义化学反应网络的有效缺陷为零,则正平衡集与复平衡平衡的参数化集重合;(2)如果网络是弱可逆的且具有如果动力学缺陷为零,则均衡集是非空的,并且具有正的(通常是有理的)参数化。通过网络翻译的方法,我们将我们的结果应用于生化文献中研究的经典质量作用系统,包括EnvZ–OmpR和穿梭的WNT信号通路。 (广义的)质量作用系统的一组正平衡的参数化通常是研究多平稳性的先决条件,并且可以很容易地检查绝对浓度稳健性的发生,正如我们对EnvZ-OmpR途径的证明。

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