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Composition of Metabolic Flux Distributions by Functionally Interpretable Minimal Flux Modes(Min Modes)

机译:通过功能解释的最小磁通模式(MIN模式)的代谢焊剂分布的组成

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All cellular functions are ultimately linked to the metabolism which constitutes a highly branched network of thousands of enzyme-catalyzed chemical reactions and carrier-mediated transport processes. Depending on the prevailing functions (e.g. detoxification of a toxin or accumulation of biomass) the distribution of fluxes in the metabolic network may vary considerably. To better reveal and quantify this flux-function relationship we propose a novel computational approach which identifies distinct contributions-so called minimal flux modes (short: Min Modes)-to a stationary flux distribution in the network. Each of these contributions is characterized by a single metabolic output. A Min Mode is a minimal (according to a defined cost function) steady state flux distribution that enables the production of a single metabolite. We apply this concept to a metabolic network of Methylobacterium extorquens AMI comprising of 95 reactions and 74 metabolites, 17 of these metabolites entering the biomass of the bacterium and are thus considered as the metabolic output of the network. Min Modes represent a manageable set of fundamental flux modes in the network having a clear physiological meaning and-although not representing a basis in strict mathematical sense-provide a satisfactory approximation of the overall flux distribution in cases tested so far.
机译:所有细胞功能最终与代谢相连,该代谢构成成千上万的酶催化的化学反应和载体介导的运输过程的高度分支网络。取决于现行功能(例如,生物质的毒素或积累的解毒),代谢网络中的助熔剂的分布可能很大。为了更好地揭示和量化该磁通功能关系,我们提出了一种新颖的计算方法,其识别出不同的贡献 - 所谓的最小磁通模式(短:Min模式) - 在网络中的静止通量分布。这些贡献中的每一个都以单一代谢输出为特征。 MIN模式是最小的(根据定义的成本函数)稳态通量分布,其能够产生单个代谢物。我们将该概念应用于包含95个反应和74代谢物的甲基杆菌AMI的代谢网络,其中这些代谢物中的17种进入细菌的生物质,因此被认为是网络的代谢产出。 Min模式代表网络中具有明确的生理学意义的网络中的可管理基本磁通模式集,虽然没有表示严格的数学意义上的基础 - 在到目前为止测试的情况下,提供总体通量分布的令人满意的近似。

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