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Modelling epigenetic regulation of gene expression in 12 human cell types reveals combinatorial patterns of cell-type-specific genes

机译:对12种人类细胞类型中基因表达的表观遗传调控进行建模揭示了细胞类型特异性基因的组合模式

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The maintenance of the diverse cell types in a multicellular organism is one of the fundamental mysteries of biology. Modelling the dynamic regulatory relationships between the histone modifications and the gene expression across the diverse cell types is essential for the authors to understand the mechanisms of the epigenetic regulation. Here, the authors thoroughly assessed the histone modification enrichment profiles at the promoters and constructed quantitative models between the histone modification abundances and the gene expression in 12 human cell types. The author??s results showed that the histone modifications at the promoters exhibited remarkably cell-type-dependent variability in the cell-type-specific (CTS) genes. They demonstrated that the variable profiles of the modifications are highly predictive for the dynamic changes of the gene expression across all the cell types. Their findings revealed the close relationship between the combinatorial patterns of the histone modifications and the CTS gene expression. They anticipate that the findings and the methods they used in this study could provide useful information for the future studies of the regulatory roles of the histone modifications in the CTS genes.
机译:多细胞生物中多种细胞类型的维持是生物学的基本谜团之一。对组蛋白修饰和基因表达在不同细胞类型之间的动态调控关系进行建模,对于作者了解表观遗传调控机制至关重要。在这里,作者彻底评估了启动子处的组蛋白修饰富集谱,并构建了12种人类细胞类型中组蛋白修饰丰度与基因表达之间的定量模型。作者的结果表明,启动子上的组蛋白修饰在细胞类型特异性(CTS)基因中表现出明显的细胞类型依赖性变异性。他们证明了修饰的可变图谱可高度预测所有细胞类型中基因表达的动态变化。他们的发现揭示了组蛋白修饰的组合模式与CTS基因表达之间的密切关系。他们预计,本研究中使用的发现和方法可以为将来研究CTS基因中组蛋白修饰的调控作用提供有用的信息。

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