eXamine:探索网络中的带注释模块。
eXamine: exploring annotated modules in networks.
作者信息
Dinkla Kasper, El-Kebir Mohammed, Bucur Cristina-Iulia, Siderius Marco, Smit Martine J, Westenberg Michel A, Klau Gunnar W
机构信息
Eindhoven University of Technology, Den Dolech 2, 5600 MB, Eindhoven, The Netherlands.
出版信息
BMC Bioinformatics. 2014 Jul 10;15:201. doi: 10.1186/1471-2105-15-201.
BACKGROUND
Biological networks have a growing importance for the interpretation of high-throughput "omics" data. Integrative network analysis makes use of statistical and combinatorial methods to extract smaller subnetwork modules, and performs enrichment analysis to annotate the modules with ontology terms or other available knowledge. This process results in an annotated module, which retains the original network structure and includes enrichment information as a set system. A major bottleneck is a lack of tools that allow exploring both network structure of extracted modules and its annotations.
RESULTS
This paper presents a visual analysis approach that targets small modules with many set-based annotations, and which displays the annotations as contours on top of a node-link diagram. We introduce an extension of self-organizing maps to lay out nodes, links, and contours in a unified way. An implementation of this approach is freely available as the Cytoscape app eXamine
CONCLUSIONS
eXamine accurately conveys small and annotated modules consisting of several dozens of proteins and annotations. We demonstrate that eXamine facilitates the interpretation of integrative network analysis results in a guided case study. This study has resulted in a novel biological insight regarding the virally-encoded G-protein coupled receptor US28.
背景
生物网络对于高通量“组学”数据的解读愈发重要。整合网络分析利用统计和组合方法提取较小的子网模块,并进行富集分析,用本体术语或其他可用知识对这些模块进行注释。这一过程产生一个带注释的模块,它保留了原始网络结构,并将富集信息作为一个集合系统包含在内。一个主要瓶颈是缺乏能够同时探索提取模块的网络结构及其注释的工具。
结果
本文提出一种可视化分析方法,该方法针对具有许多基于集合注释的小模块,并将注释显示为节点 - 链接图之上的轮廓。我们引入了自组织映射的扩展,以统一的方式布局节点、链接和轮廓。此方法的一个实现作为Cytoscape应用程序eXamine免费提供。
结论
eXamine准确地传达了由几十种蛋白质和注释组成的带注释的小模块。我们证明,在一个指导性案例研究中,eXamine有助于对整合网络分析结果的解读。这项研究产生了关于病毒编码的G蛋白偶联受体US28的新生物学见解。