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通过通路分析了解代谢途径。

Understanding the roadmap of metabolism by pathway analysis.

作者信息

Schuster Stefan, von Kamp Axel, Pachkov Mikhail

机构信息

Department of Bioinformatics, Friedrich-Schiller University of Jena, Germany.

出版信息

Methods Mol Biol. 2007;358:199-226. doi: 10.1007/978-1-59745-244-1_12.

Abstract

The theoretical investigation of the structure of metabolic systems has recently attracted increasing interest. In this chapter, the basic concepts of metabolic pathway analysis are described and various applications are outlined. In particular, the concepts of nullspace and elementary flux modes are explained. The presentation is illustrated by a simple example from tyrosine metabolism and a system describing lysine production in Corynebacterium glutamicum. The latter system gives rise to 37 elementary modes, 36 of which produce lysine with different molar yields. The examples illustrate that metabolic pathway analysis is a useful tool for better understanding the complex architecture of intracellular metabolism, for determining the pathways on which the molar conversion yield of a substrate-product pair under study is maximal, and for assigning functions to orphan genes (functional genomics). Moreover, problems emerging in the modeling of large networks are discussed. An outlook on current trends in the field concludes the chapter.

摘要

代谢系统结构的理论研究近来愈发受到关注。在本章中,描述了代谢途径分析的基本概念并概述了其各种应用。特别地,解释了零空间和基本通量模式的概念。通过酪氨酸代谢的一个简单例子以及一个描述谷氨酸棒杆菌中赖氨酸生产的系统来说明这一内容。后一个系统产生37种基本模式,其中36种以不同的摩尔产率产生赖氨酸。这些例子表明,代谢途径分析是一个有用的工具,有助于更好地理解细胞内代谢的复杂结构,确定所研究的底物-产物对的摩尔转化率最大的途径,以及为孤儿基因赋予功能(功能基因组学)。此外,还讨论了大型网络建模中出现的问题。本章最后展望了该领域的当前趋势。

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