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GO-2D: identifying 2-dimensional cellular-localized functional modules in Gene Ontology

机译:GO-2D:在基因本体论中识别二维细胞定位的功能模块

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Background Rapid progress in high-throughput biotechnologies (e.g. microarrays) and exponential accumulation of gene functional knowledge make it promising for systematic understanding of complex human diseases at functional modules level. Based on Gene Ontology, a large number of automatic tools have been developed for the functional analysis and biological interpretation of the high-throughput microarray data. Results Different from the existing tools such as Onto-Express and FatiGO, we develop a tool named GO-2D for identifying 2-dimensional functional modules based on combined GO categories. For example, it refines biological process categories by sorting their genes into different cellular component categories, and then extracts those combined categories enriched with the interesting genes (e.g., the differentially expressed genes) for identifying the cellular-localized functional modules. Applications of GO-2D to the analyses of two human cancer datasets show that very specific disease-relevant processes can be identified by using cellular location information. Conclusion For studying complex human diseases, GO-2D can extract functionally compact and detailed modules such as the cellular-localized ones, characterizing disease-relevant modules in terms of both biological processes and cellular locations. The application results clearly demonstrate that 2-dimensional approach complementary to current 1-dimensional approach is powerful for finding modules highly relevant to diseases.
机译:背景技术高通量生物技术(例如微阵列)的快速发展和基因功能知识的指数积累使其有希望在功能模块水平上系统地了解复杂的人类疾病。基于基因本体论,已经开发了许多用于对高通量微阵列数据进行功能分析和生物学解释的自动工具。结果与现有工具(如Onto-Express和FatiGO)不同,我们开发了一种名为GO-2D的工具,用于根据组合的GO类别识别二维功能模块。例如,它通过将它们的基因分类到不同的细胞成分类别中来细化生物过程类别,然后提取那些富含感兴趣的基因(例如,差异表达的基因)的组合类别,以鉴定细胞定位的功能模块。 GO-2D在两个人类癌症数据集分析中的应用表明,可以通过使用细胞位置信息来确定与疾病相关的非常特殊的过程。结论对于研究复杂的人类疾病,GO-2D可以提取功能紧凑且详细的模块,例如细胞定位模块,从生物学过程和细胞位置方面表征与疾病相关的模块。应用结果清楚地表明,与当前的一维方法互补的二维方法对于查找与疾病高度相关的模块非常有力。

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