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Analysis of metabolic network based on conservation of molecular structure

机译:基于分子结构保守性的代谢网络分析

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Recent work has revealed much about chemical reactions inside hundreds of organisms as well as universal characteristics of metabolic networks, which shed light on the evolution of the networks. However, characteristics of individual metabolites have been neglected. For example, some carbohydrates have structures that are decomposed into small molecules by metabolic reactions, but coenzymes such as ATP are mostly preserved. Such differences in metabolite characteristics are important for understanding the universal characteristics of metabolic networks. To quantify the structure conservation of metabolites, we defined the "structure conservation index" (SCI) for each metabolite as the fraction of metabolite atoms restored to their original positions through metabolic reactions. As expected, coenzymes and coenzyme-like metabolites that have reaction loops in the network show a higher SCI. Using the index, we found that the sum of metabolic fluxes is negatively correlated with the structure preservation of metabolite. Also, we found that each reaction path around high SCI metabolites changes independently, while changes in reaction paths involving low SCI metabolites coincide through evolution processes. These correlations may provide a clue to universal properties of metabolic networks.
机译:最近的工作揭示了许多有关数百种生物体内化学反应以及代谢网络的普遍特征的信息,这为网络的发展提供了启示。但是,单个代谢物的特性已被忽略。例如,一些碳水化合物具有通过代谢反应分解成小分子的结构,但是大多数的辅酶如ATP被保留。代谢物特征的这种差异对于理解代谢网络的普遍特征非常重要。为了量化代谢物的结构保守性,我们将每种代谢物的“结构保守性指数”(SCI)定义为通过代谢反应恢复到其原始位置的代谢物原子的比例。不出所料,在网络中具有反应环的辅酶和类辅酶代谢物表现出更高的SCI。使用该指标,我们发现代谢通量的总和与代谢物的结构保存呈负相关。同样,我们发现围绕高SCI代谢物的每个反应路径独立变化,而涉及低SCI代谢物的反应路径变化在进化过程中重合。这些相关性可以为代谢网络的普遍性质提供线索。

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