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Optimization and control of metabolic networks

机译:代谢网络的优化和控制

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Metabolism, which comprises the complete set of biochemical reactions in a living cell, is one of the most complex cellular processes. Metabolic networks connect biochemical reactions via substrate and product substances called metabolites. Analysis of metabolic networks via network theory, stoichiometry, optimization and control tools is one of central topics in systems biology and allows for in depth comprehending the complex molecular mechanisms of an organism. In this paper, we first introduce metabolic flux balance analysis and its application in prediction of gene essentiality, synthetic lethality, and disease biomarkers. Then we review metabolic control models including strain optimization models, drug target discovery models and other metabolic intervention models. Finally, we look at new progresses in this area and present our work in these aspects including a metabolite-centric mass flow model. This overview gives a general framework for metabolic network analysis and its application in diverse areas.
机译:代谢包括活细胞中完整的生化反应,是最复杂的细胞过程之一。代谢网络通过称为代谢产物的底物和产物物质连接生物化学反应。通过网络理论,化学计量,优化和控制工具对代谢网络进行分析是系统生物学的中心主题之一,可以深入理解生物体的复杂分子机制。在本文中,我们首先介绍了代谢通量平衡分析及其在预测基因必需性,合成致死性和疾病生物标记物中的应用。然后,我们回顾了代谢控制模型,包括菌株优化模型,药物靶点发现模型和其他代谢干预模型。最后,我们着眼于该领域的新进展,并介绍了我们在这些方面的工作,包括以代谢物为中心的质量流模型。该概述为代谢网络分析及其在不同领域中的应用提供了一个总体框架。

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