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母源到合子转变过程中的表观遗传景观动态。

Dynamics of the epigenetic landscape during the maternal-to-zygotic transition.

机构信息

Epigenetics Programme, Babraham Institute, Cambridge, UK.

Wellcome Trust Sanger Institute, Hinxton, Cambridge, UK.

出版信息

Nat Rev Mol Cell Biol. 2018 Jul;19(7):436-450. doi: 10.1038/s41580-018-0008-z.

Abstract

A remarkable epigenetic remodelling process occurs shortly after fertilization, which restores totipotency to the zygote. This involves global DNA demethylation, chromatin remodelling, genome spatial reorganization and substantial transcriptional changes. Key to these changes is the transition from the maternal environment of the oocyte to an embryonic-driven developmental expression programme, a process termed the maternal-to-zygotic transition (MZT). Zygotic genome activation occurs predominantly at the two-cell stage in mice and the eight-cell stage in humans, yet the dynamics of its control are still mostly obscure. In recent years, partly due to single-cell and low-cell number epigenomic studies, our understanding of the epigenetic and chromatin landscape of preimplantation development has improved considerably. In this Review, we discuss the latest advances in the study of the MZT, focusing on DNA methylation, histone post-translational modifications, local chromatin structure and higher-order genome organization. We also discuss key mechanistic studies that investigate the mode of action of chromatin regulators, transcription factors and non-coding RNAs during preimplantation development. Finally, we highlight areas requiring additional research, as well as new technological advances that could assist in eventually completing our understanding of the MZT.

摘要

受精后不久会发生显著的表观遗传重塑过程,使受精卵恢复全能性。这涉及到全基因组 DNA 去甲基化、染色质重塑、基因组空间重排和大量转录变化。这些变化的关键是从卵母细胞的母体环境过渡到胚胎驱动的发育表达程序,这个过程称为母源到合子的转变(MZT)。在小鼠中,合子基因组激活主要发生在二细胞期,而在人类中则发生在八细胞期,但对其调控的动力学仍知之甚少。近年来,部分由于单细胞和低细胞数量的表观基因组学研究,我们对胚胎植入前发育的表观遗传和染色质景观的理解有了很大的提高。在这篇综述中,我们讨论了 MZT 研究的最新进展,重点讨论了 DNA 甲基化、组蛋白翻译后修饰、局部染色质结构和高级基因组组织。我们还讨论了一些关键的机制研究,这些研究调查了染色质调节剂、转录因子和非编码 RNA 在胚胎植入前发育过程中的作用模式。最后,我们强调了需要进一步研究的领域,以及新的技术进步,这些进步可能有助于最终完成我们对 MZT 的理解。

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