Developmental Epigenetics, Department of Biochemistry, University of Oxford, South Parks Road, Oxford, OX1 3QU, UK.
Program in Systems Biology, Department of Medicine, Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Howard Hughes Medical Institute, Worcester, MA, 01605, USA.
Nat Commun. 2019 Jan 3;10(1):30. doi: 10.1038/s41467-018-07907-2.
The inactive X chromosome (Xi) in female mammals adopts an atypical higher-order chromatin structure, manifested as a global loss of local topologically associated domains (TADs), A/B compartments and formation of two mega-domains. Here we demonstrate that the non-canonical SMC family protein, SmcHD1, which is important for gene silencing on Xi, contributes to this unique chromosome architecture. Specifically, allelic mapping of the transcriptome and epigenome in SmcHD1 mutant cells reveals the appearance of sub-megabase domains defined by gene activation, CpG hypermethylation and depletion of Polycomb-mediated H3K27me3. These domains, which correlate with sites of SmcHD1 enrichment on Xi in wild-type cells, additionally adopt features of active X chromosome higher-order chromosome architecture, including A/B compartments and partial restoration of TAD boundaries. Xi chromosome architecture changes also occurred following SmcHD1 knockout in a somatic cell model, but in this case, independent of Xi gene derepression. We conclude that SmcHD1 is a key factor in defining the unique chromosome architecture of Xi.
雌性哺乳动物的失活 X 染色体 (Xi) 采用一种非典型的高级染色质结构,表现为局部拓扑关联域 (TAD)、A/B 区室的整体丢失以及两个巨型域的形成。在这里,我们证明了非典型 SMC 家族蛋白 SmcHD1 对 Xi 上基因沉默很重要,它有助于形成这种独特的染色体结构。具体来说,在 SmcHD1 突变细胞中转录组和表观基因组的等位基因作图揭示了亚兆碱基大小的域的出现,这些域由基因激活、CpG 超甲基化和多梳蛋白介导的 H3K27me3 耗竭定义。这些域与野生型细胞中 Xi 上 SmcHD1 富集的位点相关,此外还表现出活性 X 染色体高级染色体结构的特征,包括 A/B 区室和 TAD 边界的部分恢复。在体细胞模型中敲除 SmcHD1 后,Xi 染色体结构也发生了变化,但在这种情况下,与 Xi 基因去抑制无关。我们得出结论,SmcHD1 是定义 Xi 独特染色体结构的关键因素。