原肠化
外胚层
胚芽层
重编程
生物
表观遗传学
中胚层
表观基因组
DNA甲基化
内胚层
细胞生物学
染色质
表观遗传学
生殖细胞
胚胎
遗传学
胚胎干细胞
诱导多能干细胞
细胞
胚胎发生
基因表达
基因
作者
Ricard Argelaguet,Stephen J. Clark,Hisham Mohammed,L. Carine Stapel,Christel Krueger,Chantriolnt-Andreas Kapourani,Iván Imaz-Rosshandler,Tim Lohoff,Yunlong Xiang,Courtney W. Hanna,Sébastien A. Smallwood,Ximena Ibarra-Soria,Florian Buettner,Guido Sanguinetti,Wei Xie,Felix Krueger,Berthold Göttgens,Peter J. Rugg‐Gunn,Gavin Kelsey,Wendy Dean
出处
期刊:Nature
[Nature Portfolio]
日期:2019-12-11
卷期号:576 (7787): 487-491
被引量:416
标识
DOI:10.1038/s41586-019-1825-8
摘要
Formation of the three primary germ layers during gastrulation is an essential step in the establishment of the vertebrate body plan and is associated with major transcriptional changes1-5. Global epigenetic reprogramming accompanies these changes6-8, but the role of the epigenome in regulating early cell-fate choice remains unresolved, and the coordination between different molecular layers is unclear. Here we describe a single-cell multi-omics map of chromatin accessibility, DNA methylation and RNA expression during the onset of gastrulation in mouse embryos. The initial exit from pluripotency coincides with the establishment of a global repressive epigenetic landscape, followed by the emergence of lineage-specific epigenetic patterns during gastrulation. Notably, cells committed to mesoderm and endoderm undergo widespread coordinated epigenetic rearrangements at enhancer marks, driven by ten-eleven translocation (TET)-mediated demethylation and a concomitant increase of accessibility. By contrast, the methylation and accessibility landscape of ectodermal cells is already established in the early epiblast. Hence, regulatory elements associated with each germ layer are either epigenetically primed or remodelled before cell-fate decisions, providing the molecular framework for a hierarchical emergence of the primary germ layers.
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