Systems Biology Center, National Heart, Lung, and Blood Institute, NIH, Bethesda, MD, 20892, USA.
Int J Biol Sci. 2013 Dec 9;9(10):1134-44. doi: 10.7150/ijbs.7998. eCollection 2013.
Embryonic stem cells (ESCs) possess an open and highly dynamic chromatin landscape, which underlies their plasticity and ultimately maintains ESC pluripotency. The ESC epigenome must not only maintain the transcription of pluripotency-associated genes but must also, through gene priming, facilitate rapid and cell type-specific activation of developmental genes upon lineage commitment. Trans-generational inheritance ensures that the ESC chromatin state is stably transmitted from one generation to the next; yet at the same time, epigenetic marks are highly dynamic, reversible and responsive to extracellular cues. Once committed to differentiation, the ESC epigenome is remodeled and resolves into a more compact chromatin state. A thorough understanding of the role of chromatin modifiers in ESC fate and differentiation will be important if they are to be used for therapeutic purposes. Recent technical advances, particularly in next-generation sequencing technologies, have provided a genome-scale view of epigenetic marks and chromatin modifiers. More affordable and faster sequencing platforms have led to a comprehensive characterization of the ESC epigenome and epigenomes of differentiated cell types. In this review, we summarize and discuss the recent progress that has highlighted the central role of histone modifications, histone variants, DNA methylation and chromatin modifiers in ESC pluripotency and ESC fate. We provide a detailed and comprehensive discussion of genome-wide studies that are pertinent to our understanding of mammalian development.
胚胎干细胞(ESCs)具有开放和高度动态的染色质景观,这是它们可塑性的基础,并最终维持 ESC 的多能性。ESC 表观基因组不仅必须维持多能性相关基因的转录,而且还必须通过基因启动,促进谱系承诺后发育基因的快速和细胞类型特异性激活。跨代遗传确保 ESC 染色质状态从一代稳定传递到下一代; 然而,同时,表观遗传标记是高度动态的、可逆的并且对外界信号有反应。一旦分化,ESC 表观基因组就会被重塑并转变为更紧凑的染色质状态。如果要将染色质修饰物用于治疗目的,那么深入了解它们在 ESC 命运和分化中的作用将非常重要。最近的技术进步,特别是在下一代测序技术方面,提供了对表观遗传标记和染色质修饰物的基因组规模的了解。更实惠和更快的测序平台导致了对 ESC 表观基因组和分化细胞类型的表观基因组的全面表征。在这篇综述中,我们总结并讨论了最近的进展,这些进展强调了组蛋白修饰、组蛋白变体、DNA 甲基化和染色质修饰物在 ESC 多能性和 ESC 命运中的核心作用。我们提供了与我们对哺乳动物发育的理解相关的全基因组研究的详细和全面的讨论。