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Quantitative Analysis of Cellular Metabolic Dissipative Self-Organized Structures

机译:细胞代谢耗散自组织结构的定量分析

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摘要

One of the most important goals of the postgenomic era is understanding the metabolic dynamic processes and the functional structures generated by them. Extensive studies during the last three decades have shown that the dissipative self-organization of the functional enzymatic associations, the catalytic reactions produced during the metabolite channeling, the microcompartmentalization of these metabolic processes and the emergence of dissipative networks are the fundamental elements of the dynamical organization of cell metabolism. Here we present an overview of how mathematical models can be used to address the properties of dissipative metabolic structures at different organizational levels, both for individual enzymatic associations and for enzymatic networks. Recent analyses performed with dissipative metabolic networks have shown that unicellular organisms display a singular global enzymatic structure common to all living cellular organisms, which seems to be an intrinsic property of the functional metabolism as a whole. Mathematical models firmly based on experiments and their corresponding computational approaches are needed to fully grasp the molecular mechanisms of metabolic dynamical processes. They are necessary to enable the quantitative and qualitative analysis of the cellular catalytic reactions and also to help comprehend the conditions under which the structural dynamical phenomena and biological rhythms arise. Understanding the molecular mechanisms responsible for the metabolic dissipative structures is crucial for unraveling the dynamics of cellular life.
机译:后基因组时代的最重要目标之一是了解代谢动力学过程及其所产生的功能结构。在过去的三十年中,广泛的研究表明,功能性酶缔合的耗散自组织,在代谢物通道中产生的催化反应,这些代谢过程的微区室化以及耗散网络的出现是动力学组织的基本要素。细胞新陈代谢。在这里,我们概述了数学模型如何用于解决不同组织水平的耗散性代谢结构的特性,无论是对于个体酶促关联还是对于酶促网络而言。最近用耗散性代谢网络进行的分析表明,单细胞生物显示出所有活细胞生物共有的单一整体酶结构,这似乎是整个功能代谢的固有特性。需要完全基于实验的数学模型及其相应的计算方法来充分掌握代谢动力学过程的分子机制。它们对于实现细胞催化反应的定量和定性分析以及帮助理解结构动力学现象和生物节律产生的条件是必不可少的。了解负责代谢耗散结构的分子机制对于揭示细胞生命的动力学至关重要。

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