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Inter-Chromosomal Contact Networks Provide Insights into Mammalian Chromatin Organization

机译:染色体间接触网络提供对哺乳动物染色质组织的见解

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摘要

The recent advent of conformation capture techniques has provided unprecedented insights into the spatial organization of chromatin. We present a large-scale investigation of the inter-chromosomal segment and gene contact networks in embryonic stem cells of two mammalian organisms: humans and mice. Both interaction networks are characterized by a high degree of clustering of genome regions and the existence of hubs. Both genomes exhibit similar structural characteristics such as increased flexibility of certain Y chromosome regions and co-localization of centromere-proximal regions. Spatial proximity is correlated with the functional similarity of genes in both species. We also found a significant association between spatial proximity and the co-expression of genes in the human genome. The structural properties of chromatin are also species specific, including the presence of two highly interactive regions in mouse chromatin and an increased contact density on short, gene-rich human chromosomes, thereby indicating their central nuclear position. Trans-interacting segments are enriched in active marks in human and had no distinct feature profile in mouse. Thus, in contrast to interactions within individual chromosomes, the inter-chromosomal interactions in human and mouse embryonic stem cells do not appear to be conserved.
机译:构象捕获技术的最新出现为染色质的空间组织提供了空前的见识。我们目前对两种哺乳动物:人类和小鼠的胚胎干细胞中染色体间段和基因接触网络的大规模调查。这两个相互作用网络的特征在于基因组区域的高度聚类和集线器的存在。这两个基因组都表现出相似的结构特征,例如某些Y染色体区域的灵活性增加以及着丝粒附近区域的共定位。空间接近度与两个物种中基因的功能相似性相关。我们还发现空间接近度与人类基因组中基因的共表达之间存在显着关联。染色质的结构特性也是物种特异性的,包括在小鼠染色质中存在两个高度相互作用的区域,以及在短的,富含基因的人类染色体上增加的接触密度,从而表明了它们的核心核位置。反式相互作用的片段在人体内富含活性标记,在小鼠中没有明显的特征。因此,与单个染色体内的相互作用相反,人和小鼠胚胎干细胞中的染色体间相互作用似乎并不保守。

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