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Main Pathway Discovery in Metabolic Pathways

机译:代谢途径中的主要途径发现

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摘要

The requires an integrative biological systems analysis as the quantitative description at the hierarchical level of molecular, cellular and phenotypic functions including their interaction with the environment is very complex. The growing awareness of the complex interplay between the genome and physiological functions of the cell needs a new holistic and full integrative view. Our goal is to give a better comprehension of the physiological state of the cell from a better interpretation of the interactions between metabolic and signaling networks. In this paper a logical model of Glycolysis is proposed allowing to describe the dynamical response of a biological system perturbed by a pulse of glucose. Starting with the discretization of some metabolite considered in steady state hypothese finding produce logical formulas on the metabolites which cannot be measured in a dynamical states and therefore the main pathway.
机译:这就要求对生物系统进行综合分析,因为在分子,细胞和表型功能(包括它们与环境的相互作用)的层次结构上的定量描述非常复杂。对细胞基因组和生理功能之间复杂相互作用的日益增长的认识需要新的整体和全面整合的观点。我们的目标是通过更好地理解代谢和信号传导网络之间的相互作用,从而更好地理解细胞的生理状态。在本文中,提出了糖酵解的逻辑模型,该模型允许描述受葡萄糖脉冲干扰的生物系统的动力学响应。从稳态下考虑的某些代谢物离散化开始,假设发现会在动力学状态下无法测量的代谢物上产生逻辑公式,因此无法确定主要途径。

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