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Graph models and mathematical programming in biochemical network analysis and metabolic engineering design

机译:生化网络分析和代谢工程设计中的图形模型和数学编程

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Thanks to the technological innovations introduced in the biological research pipeline, it is possible to write a list of parts containing the molecular units building living systems. This list constitutes the starting point for Systems Biology, a new paradigmatic approach in life sciences, that focuses on the complex behaviors of living systems deriving from the interactions of their molecular basis. In this way biological systems are represented as networks of interacting entities. Computational models of biological networks will help us to deeply understand the development of living organisms. In this paper we first introduce a general graph based model of biological systems and we then focus our attention on metabolic networks. We show how metabolic networks optimization techniques based on linear programming (LP) can be used to meet objectives such as flux maximization and optimal growth. Moreover we show that Petri Nets are useful in biochemical networks representation and for steady state pathways identification. Results obtained by studying the robustness of Eschericlria coli metabolic network with sensitivity analysis tools are presented. Finally we suggest how computational models of biochemical networks can be employed in metabolic engineering design.
机译:由于在生物研究管道中引入了技术创新,因此可以编写包含构成生命系统的分子单元的零件清单。此列表构成了生命科学领域的一种新的范式方法系统生物学的起点,该方法着重于由分子基础相互作用而产生的生命系统的复杂行为。这样,生物系统被表示为相互作用实体的网络。生物网络的计算模型将帮助我们深入了解生物体的发展。在本文中,我们首先介绍一个基于图的生物系统模型,然后将注意力集中在代谢网络上。我们展示了如何使用基于线性规划(LP)的代谢网络优化技术来满足通量最大化和最佳生长等目标。此外,我们表明Petri网可用于生化网络表示和稳态途径识别。提出了通过使用敏感性分析工具研究大肠埃希氏大肠杆菌代谢网络的鲁棒性而获得的结果。最后,我们建议如何在代谢工程设计中采用生化网络的计算模型。

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