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首页> 外文期刊>Journal of Theoretical Biology >EXTENDING DOUBLE MODULATION - COMBINATORIAL RULES FOR IDENTIFYING THE MODULATIONS NECESSARY FOR DETERMINING ELASTICITIES IN METABOLIC PATHWAYS
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EXTENDING DOUBLE MODULATION - COMBINATORIAL RULES FOR IDENTIFYING THE MODULATIONS NECESSARY FOR DETERMINING ELASTICITIES IN METABOLIC PATHWAYS

机译:扩展双重调制-组合规则,用于确定确定代谢途径中弹性的必要调制

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The double modulation method for determining the elasticities of pathway enzymes, originally devised by Kacser & Burns (Biochem. Sec. Trans. 7, 1149-1160, 1979), is extended to pathways of complex topological structure, including branching and feedback loops. An explicit system of linear equations for the unknown elasticities is derived. The constraints imposed on this linear system imply that modulations of more than one enzyme are not necessarily independent. Simple combinatorial rules are described for identifying without using any algebra the set of independent modulations that allow the determination of the elasticities of any enzyme. By repeated application, the minimum numbers of modulations required to determine the elasticities of all enzymes of a given pathway can be determined. The procedure is illustrated with numerous examples. (C) 1996 Academic Press Limited. [References: 10]
机译:最初由Kacser&Burns(Biochem。Sec。Trans。7,1149-1160,1979)设计的用于确定途径酶弹性的双重调制方法扩展到复杂拓扑结构的途径,包括分支和反馈回路。推导了一个用于未知弹性的线性方程的显式系统。施加在该线性系统上的约束条件意味着不止一种酶的调节不一定是独立的。描述了简单的组合规则,用于在不使用任何代数的情况下识别允许确定任何酶的弹性的一组独立调制。通过重复应用,可以确定确定给定途径的所有酶的弹性所需的最小调节数。通过大量示例说明了该过程。 (C)1996 Academic Press Limited。 [参考:10]

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