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Functional modules by relating protein interaction networks and gene expression

机译:通过关联蛋白质相互作用网络和基因表达的功能模块

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摘要

Genes and proteins are organized on the basis of their particular mutual relations or according to their interactions in cellular and genetic networks. These include metabolic or signaling pathways and protein interaction, regulatory or co-expression networks. Integrating the information from the different types of networks may lead to the notion of a functional network and functional modules. To find these modules, we propose a new technique which is based on collective, multi-body correlations in a genetic network. We calculated the correlation strength of a group of genes (e.g. in the co-expression network) which were identified as members of a module in a different network (e.g. in the protein interaction network) and estimated the probability that this correlation strength was found by chance. Groups of genes with a significant correlation strength in different networks have a high probability that they perform the same function. Here, we propose evaluating the multi-body correlations by applying the superparamagnetic approach. We compare our method to the presently applied mean Pearson correlations and show that our method is more sensitive in revealing functional relationships.
机译:基因和蛋白质是根据其特定的相互关系或根据它们在细胞和遗传网络中的相互作用而组织的。这些包括代谢或信号传导途径和蛋白质相互作用,调节或共表达网络。集成来自不同类型网络的信息可能会导致功能网络和功能模块的概念。为了找到这些模块,我们提出了一种基于遗传网络中集体多体相关性的新技术。我们计算了一组基因的相关强度(例如,在共表达网络中),这些基因被确定为不同网络中模块的成员(例如,在蛋白质相互作用网络中),并估计了通过机会。在不同网络中具有显着相关强度的基因组极有可能执行相同的功能。在这里,我们建议通过应用超顺磁性方法评估多体相关性。我们将我们的方法与当前应用的均值Pearson相关性进行了比较,表明我们的方法在揭示功能关系方面更为敏感。

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