Mastny Ethan A, Haseltine Eric L, Rawlings James B
Department of Chemical and Biological Engineering, University of Wisconsin-Madison, Madison, Wisconsin 53706-1607, USA.
J Chem Phys. 2007 Sep 7;127(9):094106. doi: 10.1063/1.2764480.
The quasi-steady-state approximation (QSSA) is a model reduction technique used to remove highly reactive species from deterministic models of reaction mechanisms. In many reaction networks the highly reactive intermediates (QSSA species) have populations small enough to require a stochastic representation. In this work we apply singular perturbation analysis to remove the QSSA species from the chemical master equation for two classes of problems. The first class occurs in reaction networks where all the species have small populations and the QSSA species sample zero the majority of the time. The perturbation analysis provides a reduced master equation in which the highly reactive species can sample only zero, and are effectively removed from the model. The reduced master equation can be sampled with the Gillespie algorithm. This first stochastic QSSA reduction is applied to several example reaction mechanisms (including Michaelis-Menten kinetics) [Biochem. Z. 49, 333 (1913)]. A general framework for applying the first QSSA reduction technique to new reaction mechanisms is derived. The second class of QSSA model reductions is derived for reaction networks where non-QSSA species have large populations and QSSA species numbers are small and stochastic. We derive this second QSSA reduction from a combination of singular perturbation analysis and the Omega expansion. In some cases the reduced mechanisms and reaction rates from these two stochastic QSSA models and the classical deterministic QSSA reduction are equivalent; however, this is not usually the case.
准稳态近似(QSSA)是一种模型简化技术,用于从反应机理的确定性模型中去除高活性物种。在许多反应网络中,高活性中间体(QSSA物种)的数量足够少,需要用随机表示。在这项工作中,我们应用奇异摄动分析从两类问题的化学主方程中去除QSSA物种。第一类出现在所有物种数量都很少且QSSA物种在大多数时间采样为零的反应网络中。摄动分析提供了一个简化的主方程,其中高活性物种只能采样为零,并有效地从模型中去除。简化的主方程可以用 Gillespie 算法进行采样。这种第一种随机QSSA简化方法应用于几个示例反应机理(包括米氏动力学)[《生物化学杂志》49, 333 (1913)]。推导了将第一种QSSA简化技术应用于新反应机理的一般框架。第二类QSSA模型简化是针对非QSSA物种数量大且QSSA物种数量少且随机的反应网络推导的。我们从奇异摄动分析和欧米伽展开的组合中推导出这种第二种QSSA简化。在某些情况下,这两种随机QSSA模型和经典确定性QSSA简化的简化机理和反应速率是等效的;然而,通常并非如此。