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Hierarchical Modularity in ERα Transcriptional Network Is Associated with Distinct Functions and Implicates Clinical Outcomes

机译:ERα转录网络中的分层模块与不同的功能相关,并暗示临床结果

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Recent genome-wide profiling reveals highly complex regulation networks among ERα and its targets. We integrated estrogen (E2)-stimulated time-series ERα ChIP-seq and gene expression data to identify the ERα-centered transcription factor (TF) hubs and their target genes, and inferred the time-variant hierarchical network structures using a Bayesian multivariate modeling approach. With its recurrent motif patterns, we determined three embedded regulatory modules from the ERα core transcriptional network. The GO analyses revealed the distinct biological function associated with each of three embedded modules. The survival analysis showed the genes in each module were able to render a significant survival correlation in breast cancer patient cohorts. In summary, our Bayesian statistical modeling and modularity analysis not only reveals the dynamic properties of the ERα-centered regulatory network and associated distinct biological functions, but also provides a reliable and effective genomic analytical approach for the analysis of dynamic regulatory network for any given TF.. ? 2012 Macmillan Publishers Limited. All rights reserved
机译:最近的基因组分析揭示了ERα及其目标之间的高度复杂的调节网络。我们综合雌激素(E2) - 刺激的时间序列ERα芯片-SEQ和基因表达数据,以鉴定ERα中心的转录因子(TF)集线器及其靶基因,并使用贝叶斯多变量建模推断时变分层网络结构方法。利用其经常性图案模式,我们确定了来自ERα核心转录网络的三个嵌入式调节模块。 GO分析显示了与三个嵌入模块中的每一个相关的不同生物学功能。存活分析显示每个模块中的基因能够在乳腺癌患者队列中具有显着的存活相关性。总之,我们的贝叶斯统计学建模和模块化分析不仅揭示了ERα中心的调节网络和相关的不同生物功能的动态特性,而且还提供了一种可靠而有效的基因组分析方法,用于分析任何给定的TF的动态监管网络... 2012 Macmillan Publishers Limited。版权所有

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