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Integrating ChIP-seq with other functional genomics data

机译:将ChIP-seq与其他功能基因组学数据整合

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摘要

Transcription is regulated by transcription factor (TF) binding at promoters and distal regulatory elements and histone modifications that control the accessibility of these elements. Chromatin immunoprecipitation followed by sequencing (ChIP-seq) has become the standard assay for identifying genome-wide protein–DNA interactions in vitro and in vivo. As large-scale ChIP-seq data sets have been collected for different TFs and histone modifications, their potential to predict gene expression can be used to test hypotheses about the mechanisms of gene regulation. In addition, complementary functional genomics assays provide a global view of chromatin accessibility and long-range cis-regulatory interactions that are being combined with TF binding and histone remodeling to study the regulation of gene expression. Thus, ChIP-seq analysis is now widely integrated with other functional genomics assays to better understand gene regulatory mechanisms. In this review, we discuss advances and challenges in integrating ChIP-seq data to identify context-specific chromatin states associated with gene activity. We describe the overall computational design of integrating ChIP-seq data with other functional genomics assays. We also discuss the challenges of extending these methods to low-input ChIP-seq assays and related single-cell assays.
机译:转录受启动子和远端调控元件上的转录因子(TF)结合以及控制这些元件可及性的组蛋白修饰的调控。染色质免疫沉淀后再测序(ChIP-seq)已成为鉴定体内外全基因组蛋白质-DNA相互作用的标准方法。由于已经收集了用于不同TF和组蛋白修饰的大规模ChIP-seq数据集,因此可以利用其预测基因表达的潜力来测试有关基因调控机制的假设。此外,互补功能基因组学测定法提供了染色质可及性和远程顺式-调控相互作用的全局视图,这些相互作用与TF结合和组蛋白重塑相结合以研究基因表达的调控。因此,ChIP-seq分析现已与其他功能基因组学分析广泛集成,以更好地了解基因调控机制。在这篇综述中,我们讨论了在整合ChIP-seq数据以识别与基因活性相关的特定上下文染色质状态方面的进展和挑战。我们描述了将ChIP-seq数据与其他功能基因组学分析相集成的总体计算设计。我们还将讨论将这些方法扩展到低输入ChIP-seq分析和相关单细胞分析的挑战。

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