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Basic concepts and principles of stoichiometric modeling of metabolic networks

机译:代谢网络化学计量建模的基本概念和原理

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Metabolic networks supply the energy and building blocks for cell growth and maintenance. Cells continuously rewire their metabolic networks in response to changes in environmental conditions to sustain fitness. Studies of the systemic properties of metabolic networks give insight into metabolic plasticity and robustness, and the ability of organisms to cope with different environments. Constraint-based stoichiometric modeling of metabolic networks has become an indispensable tool for such studies. Herein, we review the basic theoretical underpinnings of constraint-based stoichiometric modeling of metabolic networks. Basic concepts, such as stoichiometry, chemical moiety conservation, flux modes, flux balance analysis, and flux solution spaces, are explained with simple, illustrative examples. We emphasize the mathematical definitions and their network topological interpretations.
机译:代谢网络为细胞生长和维护提供能量和构建块。 细胞响应于环境条件的变化而连续重新缠绕其代谢网络以维持健身。 对代谢网络的全身性质的研究能够了解代谢可塑性和鲁棒性,以及生物应对不同环境的能力。 基于约束的代谢网络的化学化学计量建模已经成为这种研究的不可缺少的工具。 在此,我们审查了基于约束的代谢网络化化学计量建模的基本理论基础。 用简单的说明性实施例说明了基本概念,例如化学计量,化学部分保守,助焊剂模式,助焊剂平衡分析和助焊剂溶液空间。 我们强调数学定义及其网络拓扑解释。

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