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摆脱并保持摆脱:哺乳动物DNA甲基化重编程的新见解。

Get Out and Stay Out: New Insights Into DNA Methylation Reprogramming in Mammals.

作者信息

Greenberg Maxim V C

机构信息

Centre National de la Recherche Scientifique, Institut Jacques Monod, Université de Paris, Paris, France.

出版信息

Front Cell Dev Biol. 2021 Jan 7;8:629068. doi: 10.3389/fcell.2020.629068. eCollection 2020.

Abstract

Vertebrate genomes are marked by notably high levels of 5-cytosine DNA methylation (5meC). The clearest function of DNA methylation among members of the subphylum is repression of potentially deleterious transposable elements (TEs). However, enrichment in the bodies of protein coding genes and pericentromeric heterochromatin indicate an important role for 5meC in those genomic compartments as well. Moreover, DNA methylation plays an important role in silencing of germline-specific genes. Impaired function of major components of DNA methylation machinery results in lethality in fish, amphibians and mammals. Despite such apparent importance, mammals exhibit a dramatic loss and regain of DNA methylation in early embryogenesis prior to implantation, and then again in the cells specified for the germline. In this minireview we will highlight recent studies that shine light on two major aspects of embryonic DNA methylation reprogramming: (1) The mechanism of DNA methylation loss after fertilization and (2) the protection of discrete loci from ectopic DNA methylation deposition during reestablishment. Finally, we will conclude with some extrapolations for the evolutionary underpinnings of such extraordinary events that seemingly put the genome under unnecessary risk during a particularly vulnerable window of development.

摘要

脊椎动物基因组的显著特征是5-胞嘧啶DNA甲基化(5meC)水平很高。在该亚门成员中,DNA甲基化最明确的功能是抑制潜在有害的转座元件(TE)。然而,在蛋白质编码基因的基因体和着丝粒周围异染色质中的富集表明5meC在这些基因组区域也起着重要作用。此外,DNA甲基化在生殖系特异性基因的沉默中起重要作用。DNA甲基化机制主要成分的功能受损会导致鱼类、两栖动物和哺乳动物死亡。尽管具有如此明显的重要性,但哺乳动物在植入前的早期胚胎发生过程中,以及在为生殖系指定的细胞中,DNA甲基化会出现显著的丢失和重新获得。在这篇微型综述中,我们将重点介绍最近的研究,这些研究揭示了胚胎DNA甲基化重编程的两个主要方面:(1)受精后DNA甲基化丢失的机制,以及(2)在重新建立过程中保护离散位点免受异位DNA甲基化沉积的影响。最后,我们将对这些非凡事件的进化基础进行一些推断,这些事件似乎在发育的一个特别脆弱的阶段使基因组处于不必要的风险之中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2906/7817772/85aee278990a/fcell-08-629068-g0001.jpg

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