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PheNetic:基于网络的分子谱数据解读

PheNetic: network-based interpretation of molecular profiling data.

作者信息

De Maeyer Dries, Weytjens Bram, Renkens Joris, De Raedt Luc, Marchal Kathleen

机构信息

Dept. of Microbial and Molecular Systems, KULeuven, Leuven, 3000, Belgium Dept. of Information Technology (INTEC, iMINDS), U.Ghent, Ghent, 9052, Belgium.

Dept. of Computer Science, KULeuven, Leuven, 3000, Belgium.

出版信息

Nucleic Acids Res. 2015 Jul 1;43(W1):W244-50. doi: 10.1093/nar/gkv347. Epub 2015 Apr 15.

Abstract

Molecular profiling experiments have become standard in current wet-lab practices. Classically, enrichment analysis has been used to identify biological functions related to these experimental results. Combining molecular profiling results with the wealth of currently available interactomics data, however, offers the opportunity to identify the molecular mechanism behind an observed molecular phenotype. In this paper, we therefore introduce 'PheNetic', a user-friendly web server for inferring a sub-network based on probabilistic logical querying. PheNetic extracts from an interactome, the sub-network that best explains genes prioritized through a molecular profiling experiment. Depending on its run mode, PheNetic searches either for a regulatory mechanism that gave explains to the observed molecular phenotype or for the pathways (in)activated in the molecular phenotype. The web server provides access to a large number of interactomes, making sub-network inference readily applicable to a wide variety of organisms. The inferred sub-networks can be interactively visualized in the browser. PheNetic's method and use are illustrated using an example analysis of differential expression results of ampicillin treated Escherichia coli cells. The PheNetic web service is available at http://bioinformatics.intec.ugent.be/phenetic/.

摘要

分子谱分析实验已成为当前湿实验室操作的标准。传统上,富集分析已被用于识别与这些实验结果相关的生物学功能。然而,将分子谱分析结果与当前可用的丰富的相互作用组学数据相结合,提供了识别观察到的分子表型背后分子机制的机会。因此,在本文中,我们介绍了“PheNetic”,这是一个用户友好的网络服务器,用于基于概率逻辑查询推断子网络。PheNetic从相互作用组中提取最能解释通过分子谱分析实验优先排序的基因的子网络。根据其运行模式,PheNetic要么搜索能够解释观察到的分子表型的调控机制,要么搜索在分子表型中(被)激活的途径。该网络服务器提供对大量相互作用组的访问,使得子网络推断很容易应用于多种生物体。推断出的子网络可以在浏览器中进行交互式可视化。通过对氨苄青霉素处理的大肠杆菌细胞差异表达结果的示例分析来说明PheNetic的方法和用途。PheNetic网络服务可在http://bioinformatics.intec.ugent.be/phenetic/获取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd7d/4489255/a1e752efc9cd/gkv347fig1.jpg

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