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3D organization of chicken genome demonstrates evolutionary conservation of topologically associated domains and highlights unique architecture of erythrocytes’ chromatin

机译:鸡基因组的3D组织展示了拓扑相关域的进化保守性并突出了红细胞染色质的独特结构

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摘要

How chromosomes are folded, spatially organized and regulated in three dimensions inside the cell nucleus are among the longest standing questions in cell biology. Genome-wide chromosome conformation capture (Hi-C) technique allowed identifying and characterizing spatial chromatin compartments in several mammalian species. Here, we present the first genome-wide analysis of chromatin interactions in chicken embryonic fibroblasts (CEF) and adult erythrocytes. We showed that genome of CEF is partitioned into topologically associated domains (TADs), distributed in accordance with gene density, transcriptional activity and CTCF-binding sites. In contrast to mammals, where all examined somatic cell types display relatively similar spatial organization of genome, chicken erythrocytes strongly differ from fibroblasts, showing pronounced A- and B- compartments, absence of typical TADs and formation of long-range chromatin interactions previously observed on mitotic chromosomes. Comparing mammalian and chicken genome architectures, we provide evidence highlighting evolutionary role of chicken TADs and their significance in genome activity and regulation.
机译:在细胞生物学中,染色体如何折叠,在空间上如何组织以及如何在细胞核内的三个维度进行调控是最长期存在的问题之一。全基因组染色体构象捕获(Hi-C)技术允许识别和表征几种哺乳动物物种中的空间染色质区室。在这里,我们提出了在鸡胚胎成纤维细胞(CEF)和成年红细胞中染色质相互作用的第一个全基因组分析。我们显示,CEF的基因组被划分为拓扑相关的域(TADs),根据基因密度,转录活性和CTCF结合位点分布。与哺乳动物相比,所有检查的体细胞类型均显示相对相似的基因组空间组织,而鸡的红细胞与成纤维细胞明显不同,表现出明显的A-和B-区室,不存在典型的TAD,并且以前观察到长距离染色质相互作用的形成。有丝分裂染色体。比较哺乳动物和鸡的基因组架构,我们提供的证据强调了鸡TAD的进化作用及其在基因组活性和调控中的意义。

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