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关于大型代谢系统中底物循环的分析

On the analysis of substrate cycles in large metabolic systems.

作者信息

Leiser J, Blum J J

机构信息

Department of Physiology, Duke University Medical Center, Durham, NC 27710.

出版信息

Cell Biophys. 1987 Dec;11:123-38. doi: 10.1007/BF02797119.

Abstract

The simultaneous operation of paired, opposing reactions (substrate cycles) or parallel reactions (dual pathways) with seeming wastage of ATP is widespread in cellular metabolism. Analysis of such "futile" pathways has hitherto been limited to loci with only two or three interconnecting fluxes. We introduce here a method that allows straightforward analysis of more complex systems. The method involves the linear superposition of "fundamental" modes, one or more of which may be energetically wasteful. Decomposition of a flux pattern into such modes allows computation of the amount of free energy "wasted" at any locus. Appropriate normalizations of energy wastage yield a number of indices useful for assessing the energetic impact of futile pathways on the cell and for comparing the degree of regulation of substrate cycles or dual pathways under different metabolic conditions. This approach is applied to steady-state flux data obtained in the protozoan Tetrahymena pyriformis and in isolated rat hepatocytes under a variety of conditions.

摘要

细胞代谢中普遍存在成对的、相反的反应(底物循环)或平行反应(双途径)同时运作,看似消耗ATP的情况。迄今为止,对这种“无效”途径的分析仅限于只有两三个相互连接通量的位点。我们在此介绍一种方法,可直接分析更复杂的系统。该方法涉及“基本”模式的线性叠加,其中一个或多个模式可能在能量上是浪费的。将通量模式分解为这些模式,可以计算在任何位点“浪费”的自由能数量。对能量浪费进行适当的归一化处理,可得出一些指标,这些指标有助于评估无效途径对细胞的能量影响,以及比较不同代谢条件下底物循环或双途径的调节程度。该方法应用于在多种条件下从原生动物梨形四膜虫和分离的大鼠肝细胞中获得的稳态通量数据。

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