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Phylogenetic Analysis of Cell Types Using Histone Modifications

机译:使用组蛋白修饰的细胞类型的系统发育分析

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In cell differentiation, a cell of a less specialized type becomes one of a more specialized type, even though all cells have the same genome. Transcription factors and epigenetic marks like histone modifications can play a significant role in the differentiation process. In this paper, we present a simple analysis of cell types and differentiation paths using phylogenetic inference based on ChIP-Seq histone modification data. We propose new data representation techniques and new distance measures for ChIp-Seq data and use these together with standard phylogenetic inference methods to build biologically meaningful trees that indicate how diverse types of cells are related. We demonstrate our approach on H3K4me3 and H3K27me3 data for 37 and 13 types of cells respectively, using the dataset to explore various issues surrounding replicate data, variability between cells of the same type, and robustness. The promising results we obtain point the way to a new approach to the study of cell differentiation.
机译:在细胞分化中,即使所有细胞都具有相同的基因组,专业化程度较低的细胞也将成为专业化程度较高的细胞之一。转录因子和表观遗传标记(例如组蛋白修饰)可以在分化过程中发挥重要作用。在本文中,我们使用基于ChIP-Seq组蛋白修饰数据的系统发育推断,对细胞类型和分化途径进行了简单分析。我们为ChIp-Seq数据提出了新的数据表示技术和新的距离度量,并将它们与标准的系统发育推断方法一起使用,以构建生物学上有意义的树,这些树表明了不同类型的细胞之间的关系。我们展示了我们分别针对37种和13种类型的细胞的H3K4me3和H3K27me3数据的方法,使用数据集探​​索了围绕复制数据,相同类型的细胞之间的变异性和鲁棒性的各种问题。我们获得的有希望的结果为细胞分化研究的新方法指明了道路。

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