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首页> 外文期刊>BMC Genomics >Searching ChIP-seq genomic islands for combinatorial regulatory codes in mouse embryonic stem cells
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Searching ChIP-seq genomic islands for combinatorial regulatory codes in mouse embryonic stem cells

机译:在ChIP-seq基因组岛中搜索小鼠胚胎干细胞中的组合调控密码

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Background To facilitate deciphering underlying transcriptional regulatory circuits in mouse embryonic stem (ES) cells, recent ChIP-seq data provided genome-wide binding locations of several key transcription factors (TFs); meanwhile, existing efforts profiled gene expression in ES cells and in their early differentiated state. It has been shown that the gene expression profiles are correlated with the binding of these TFs. However, it remains unclear whether other TFs, referred to as cofactors, participate the gene regulation by collaborating with the ChIP-seq TFs. Results Based on our analyses of the ES gene expression profiles and binding sites of potential cofactors in vicinity of the ChIP-seq TF binding locations, we identified a list of co-binding features that show significantly different characteristics between different gene expression patterns (activated or repressed gene expression in ES cells) at a false discovery rate of 10%. Gene classification with a subset of the identified features achieved up to 20% improvement over classification only based on the ChIP-seq TFs. More than 1/3 of reasoned regulatory roles of cofactor candidates involved in these features are supported by existing literatures. Finally, the predicted target genes of the majority candidates present expected expression change in another independent data set, which serves as a supplementary validation of these candidates. Conclusions Our results revealed a list of combinatorial genomic features that are significantly associated with gene expression in ES cells, suggesting potential cofactors of the ChIP-seq TFs for gene regulation.
机译:背景技术为了便于破译小鼠胚胎干(ES)细胞中的潜在转录调节回路,最近的ChIP-seq数据提供了几种关键转录因子(TF)的全基因组结合位置;这些信息包括:同时,现有的研究描述了ES细胞及其早期分化状态的基因表达。已经表明基因表达谱与这些TF的结合相关。但是,尚不清楚其他称为辅助因子的TF是否通过与ChIP-seq TF协作来参与基因调控。结果基于对我们的ES基因表达谱和ChIP-seq TF结合位点附近潜在辅因子结合位点的分析,我们确定了一系列共结合特征,这些特征显示了不同基因表达模式之间的显着不同特征(激活或抑制ES细胞中的基因表达)的错误发现率为10%。与仅基于ChIP-seq TF的分类相比,具有部分已识别特征的基因分类可实现高达20%的改进。现有文献支持超过1/3的参与这些功能的辅因子候选药物的合理调节作用。最后,多数候选基因的预测靶基因在另一个独立的数据集中呈现了预期的表达变化,这是对这些候选基因的补充验证。结论我们的结果揭示了与ES细胞中基因表达显着相关的组合基因组特征,这表明ChIP-seq TF的潜在辅助因子可用于基因调控。

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