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近似值及其对信号转导通路动态建模的影响。

Approximations and their consequences for dynamic modelling of signal transduction pathways.

作者信息

Millat Thomas, Bullinger Eric, Rohwer Johann, Wolkenhauer Olaf

机构信息

University of Rostock, 18051 Rostock, Germany.

出版信息

Math Biosci. 2007 May;207(1):40-57. doi: 10.1016/j.mbs.2006.08.012. Epub 2006 Aug 24.

Abstract

Signal transduction is the process by which the cell converts one kind of signal or stimulus into another. This involves a sequence of biochemical reactions, carried out by proteins. The dynamic response of complex cell signalling networks can be modelled and simulated in the framework of chemical kinetics. The mathematical formulation of chemical kinetics results in a system of coupled differential equations. Simplifications can arise through assumptions and approximations. The paper provides a critical discussion of frequently employed approximations in dynamic modelling of signal transduction pathways. We discuss the requirements for conservation laws, steady state approximations, and the neglect of components. We show how these approximations simplify the mathematical treatment of biochemical networks but we also demonstrate differences between the complete system and its approximations with respect to the transient and steady state behavior.

摘要

信号转导是细胞将一种信号或刺激转化为另一种信号或刺激的过程。这涉及由蛋白质执行的一系列生化反应。复杂细胞信号网络的动态响应可以在化学动力学框架内进行建模和模拟。化学动力学的数学公式产生一个耦合微分方程组。通过假设和近似可以进行简化。本文对信号转导途径动态建模中常用的近似进行了批判性讨论。我们讨论了守恒定律、稳态近似和成分忽略的要求。我们展示了这些近似如何简化生化网络的数学处理,但我们也展示了完整系统与其近似在瞬态和稳态行为方面的差异。

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