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IC-Finder: inferring robustly the hierarchical organization of chromatin folding

机译:IC-Finder:强制推断染色质折叠的分层组织

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The spatial organization of the genome plays a crucial role in the regulation of gene expression. Recent experimental techniques like Hi-C have emphasized the segmentation of genomes into interaction compartments that constitute conserved functional domains participating in the maintenance of a proper cell identity. Here, we propose a novel method, IC-Finder, to identify interaction compartments (IC) from experimental Hi-C maps. IC-Finder is based on a hierarchical clustering approach that we adapted to account for the polymeric nature of chromatin. Based on a benchmark of realistic in silico Hi-C maps, we show that IC-Finder is one of the best methods in terms of reliability and is the most efficient numerically. IC-Finder proposes two original options: a probabilistic description of the inferred compartments and the possibility to explore the various hierarchies of chromatin organization. Applying the method to experimental data in fly and human, we show how the predicted segmentation may depend on the normalization scheme and how 3D compartmentalization is tightly associated with epigenomic information. IC-Finder provides a robust and generic 'all-in-one' tool to uncover the general principles of 3D chromatin folding and their influence on gene regulation. The software is available at http://membrestimc.imag.fr/Daniel.Jost/DJ-TIMC/Software.html.
机译:基因组的空间组织在基因表达的调节中起着至关重要的作用。最近的实验技术如Hi-C强调了基因组的分割成相互作用隔室,构成参与维持适当的细胞标识的保守功能域。在这里,我们提出了一种新的方法IC-Finder,识别来自实验Hi-C地图的相互作用隔间(IC)。 IC-Finder基于分层聚类方法,我们适于考虑染色质的聚合物性质。基于Silico Hi-C地图的现实基准,我们表明IC-Finder是可靠性方面的最佳方法之一,是数值最有效的。 IC-Finder提出了两种原始选择:推断隔间的概率描述以及探索染色质组织各种等级的可能性。在飞行和人中将方法应用于实验数据,我们展示了预测的分割如何取决于归一化方案以及3D隔间化如何与表观组织信息紧密相关。 IC-Finder提供了一种强大而通用的“一体化”工具,以发现3D染色质折叠的一般原则及其对基因调控的影响。该软件可在http://membreesimc.imag.fr/daniel.jost/dj-timc/software.html中获得。

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