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Computational methods for analysis of cellular functions and pathways collectively targeted by differentially expressed microRNA.

机译:分析差异表达的microRNA共同靶向的细胞功能和途径的计算方法。

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This report presents computational methods of analysis of cellular processes, functions, and pathways affected by differentially expressed microRNA, a statistical basis of the gene enrichment analysis method, a modification of enrichment analysis method accounting for combinatorial targeting of Gene Ontology categories by multiple miRNAs and examples of the global functional profiling of predicted targets of differentially expressed miRNAs in cancer. We have also summarized an application of Ingenuity Pathway Analysis tools for in depth analysis of microRNA target sets that may be useful for the biological interpretation of microRNA profiling data. To illustrate the utility of these methods, we report the main results of our recent computational analysis of five published datasets of aberrantly expressed microRNAs in five human cancers (pancreatic cancer, breast cancer, colon cancer, lung cancer, and lymphoma). Using a combinatorial target prediction algorithm and statistical enrichment analysis, we have determined Gene Ontology categories as well as biological functions, disease categories, toxicological categories, and signaling pathways that are: targeted by multiple microRNAs; statistically significantly enriched with target genes; and known to be affected in specific cancers. Our recent computational analysis of predicted targets of co-expressed miRNAs in five human cancers suggests that co-expressed miRNAs provide systemic compensatory response to the abnormal phenotypic changes in cancer cells by targeting a broad range of functional categories and signaling pathways reportedly affected in a particular cancer.
机译:本报告介绍了受差异表达的microRNA影响的细胞过程,功能和途径分析的计算方法,基因富集分析方法的统计基础,对富集分析方法的修改以说明多个miRNA对基因本体类别的组合靶向癌症中差异表达的miRNA的预测靶标的总体功能分析我们还总结了Ingenuity Pathway Analysis工具在深度分析microRNA目标集中的应用,这可能对microRNA分析数据的生物学解释很有用。为了说明这些方法的实用性,我们报告了我们最近对五种人类癌症(胰腺癌,乳腺癌,结肠癌,肺癌和淋巴瘤)中异常表达的microRNA的五个数据集进行的计算分析的主要结果。通过使用组合目标预测算法和统计分析,我们确定了基因本体论类别以及生物学功能,疾病类别,毒理学类别和信号通路,这些目标是:多个microRNA靶向;统计上显着富集了靶基因;并且已知会感染特定的癌症。我们最近对五种人类癌症中共表达的miRNA的预测靶标进行的计算分析表明,共表达的miRNA通过针对据报道受特定疾病影响的广泛功能类别和信号通路,针对癌细胞的异常表型变化提供了系统性的补偿性反应。癌症。

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