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首页> 外文期刊>BMC Genomics >Reveal cell type-specific regulatory elements and their characterized histone code classes via a hidden Markov model
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Reveal cell type-specific regulatory elements and their characterized histone code classes via a hidden Markov model

机译:通过隐藏的马尔可夫模型揭示特定于特定于特定的监管元素及其特征的组蛋白代码类

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摘要

With the maturity of next generation sequencing technology, a huge amount of epigenomic data have been generated by several large consortia in the last decade. These plenty resources leave us the opportunity about sufficiently utilizing those data to explore biological problems. Here we developed an integrative and comparative method, CsreHMM, which is based on a hidden Markov model, to systematically reveal cell type-specific regulatory elements (CSREs) along the whole genome, and simultaneously recognize the histone codes (mark combinations) charactering them. This method also reveals the subclasses of CSREs and explicitly label those shared by a few cell types. We applied this method to a data set of 9 cell types and 9 chromatin marks to demonstrate its effectiveness and found that the revealed CSREs relates to different kinds of functional regulatory regions significantly. Their proximal genes have consistent expression and are likely to participate in cell type-specific biological functions. These results suggest CsreHMM has the potential to help understand cell identity and the diverse mechanisms of gene regulation.
机译:随着下一代测序技术的成熟度,在过去十年中,几个大型联盟已经产生了大量的表观胸部数据。这些资源将我们的机会留下足够利用这些数据来探索生物问题。在这里,我们开发了一种综合性和比较方法CSRehmm,其基于隐藏的马尔可夫模型,以沿着整个基因组系统地揭示细胞类型特异性调节元素(CSRES),并同时识别特征的组蛋白代码(标记组合)。此方法还揭示了CSRES的子类,并明确标记了几种细胞类型共享的那些。我们将该方法应用于9个细胞类型和9种染色质标记的数据集,以证明其有效性,并发现揭示的CSRES显着涉及不同类型的功能调节区。它们的近端基因具有一致的表达,并且可能参与细胞类型特异性生物学功能。这些结果表明CSREHMM有可能有助于了解细胞标识和基因调节的多样化机制。

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