Stucki Jörg W
Department of Pharmacology, University of Bern, Bern, Switzerland.
Eur J Biochem. 2004 Jul;271(13):2745-54. doi: 10.1111/j.1432-1033.2004.04203.x.
Some methods to study and intuitively understand steady-state flows in complicated metabolic pathways are discussed. For this purpose, a suitable decomposition of complex metabolic schemes into smaller subsystems is used. These independent subsystems are then interpreted as basic colors of a chromatic coloring scheme. The mixture of these basic colors allows an intuitive picture of how a steady state in a metabolic pathway can be understood. Furthermore, actions of drugs can be more easily investigated on this basis. An anaerobic variant of pyruvate metabolism in rat liver mitochondria is presented as a simple example. This experiment allows measurement of the percentage that each basic color contributes to the steady states resulting from different experimental conditions. Possible implementations of existing algorithms and rational design of new drugs are discussed. A MATHEMATICA program, based on a new algorithm for finding all basic colors of stoichiometric networks, is included.
本文讨论了一些研究和直观理解复杂代谢途径中稳态流的方法。为此,我们将复杂的代谢方案适当地分解为较小的子系统。然后,这些独立的子系统被解释为彩色配色方案的基本颜色。这些基本颜色的混合可以直观地呈现出如何理解代谢途径中的稳态。此外,在此基础上可以更轻松地研究药物的作用。以大鼠肝线粒体丙酮酸代谢的厌氧变体为例进行说明。该实验可以测量每种基本颜色对不同实验条件下产生的稳态的贡献百分比。文中还讨论了现有算法的可能实现方式以及新药的合理设计。本文还包含了一个基于用于寻找化学计量网络所有基本颜色的新算法的MATHEMATICA程序。