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Metabolic pathway analysis: Basic concepts and scientific applications inthe post-genomic era

机译:代谢途径分析:后基因组时代的基本概念和科学应用

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This article reviews the relatively short history of metabolic pathway analysis. Computer-aided algorithms for the synthesis of metabolic pathways are discussed. Important algebraic concepts used in pathway analysis, such as null space and convex cone, are explained. It is demonstrated how these concepts can be translated into meaningful metabolic concepts. For example, it is shown that the simplest vectors spanning the region of all admissible fluxes in stationary states, for which the term elementary flux modes was coined, correspond to fundamental pathways in the system. The concepts are illustrated with the help of a reaction scheme representing the glyoxylate cycle and adjacent reactions of aspartate and glutamate synthesis. The interrelations between pathway analysis and metabolic control theory are outlined. Promising applications for genome annotation and for biotechnological purposes are discussed. Armed with a better understanding of the architecture of cellular metabolism and the enormous amount of genomic data available today, biochemists and biotechnologists will be able to draw the entire metabolic map of a cell and redesign it by rational and directed metabolic engineering.
机译:本文回顾了代谢途径分析的相对较短的历史。讨论了代谢途径合成的计算机辅助算法。解释了路径分析中使用的重要代数概念,例如零空间和凸锥。演示了如何将这些概念转化为有意义的代谢概念。例如,它表明,在稳态下跨越所有可允许通量的区域的最简单矢量对应于系统中的基本路径,在此状态中,术语基本通量模式被创造出来。借助代表乙醛酸循环以及天冬氨酸和谷氨酸合成的相邻反应的反应方案来说明概念。概述了途径分析与代谢控制理论之间的相互关系。讨论了用于基因组注释和生物技术目的的有希望的应用。有了对细胞代谢体系结构的更好理解以及当今可获得的大量基因组数据,生物化学家和生物技术人员将能够绘制出细胞的整个代谢图,并通过合理的定向代谢工程对其进行重新设计。

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