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Predicting metabolic pathways from metabolic networks with limited biological knowledge

机译:利用生物学知识有限的代谢网络预测代谢途径

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Understanding the metabolism of new species (e.g. endophytic fungi that produce fuel) have tremendous impact on human lives. Based on predicted proteins and existing reaction databases, one can construct the metabolic network for the species. Next is to identify critical metabolic pathways from the network. Existing computational techniques identify conserved pathways based on multiple networks of related species, but have the following drawbacks. Some do not rely on additional information, so only locate short (of length at most 5), but not necessarily interesting, conserved paths. The others require extensive information (the complete pathway on one species). In reality, researchers usually know only partial information of a metabolic pathway and may not have a conserved pathway in a related species. The Conserved Metabolic Pathway (CMP) problem is to find conserved pathways from the networks with partial information on the initial substrates and final products of the target pathways. Experimental results show that our algorithm CMPFinder can predict useful metabolic pathways with acceptable accuracy.
机译:了解新物种(例如产生燃料的内生真菌)的代谢对人类生活具有巨大影响。基于预测的蛋白质和现有的反应数据库,人们可以为该物种构建代谢网络。接下来是从网络中识别关键的代谢途径。现有的计算技术基于相关物种的多个网络识别保守的途径,但是具有以下缺点。有些不依赖其他信息,因此只能定位较短(长度最多为5)但不一定有趣的保守路径。其他的则需要广泛的信息(关于一个物种的完整途径)。实际上,研究人员通常只知道代谢途径的部分信息,而在相关物种中可能没有保守的途径。保守代谢途径(CMP)问题是从网络中找到保守途径,并在目标途径的初始底物和最终产物上获得部分信息。实验结果表明,我们的算法CMPFinder可以以可接受的准确度预测有用的代谢途径。

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