MRC Human Genetics Unit, MRC IGMM (Institute of Genetics and Molecular Medicine), University of Edinburgh, Western General Hospital, Crewe Rd, Edinburgh EH4 1SX, UK.
Biochem J. 2013 Apr 1;451(1):13-23. doi: 10.1042/BJ20121585.
Methylation of the cytosine base in DNA, DNA methylation, is an essential epigenetic mark in mammals that contributes to the regulation of transcription. Several advances have been made in this area in recent years, leading to a leap forward in our understanding of how this pathway contributes to gene regulation during embryonic development, and the functional consequences of its perturbation in human disease. Critical to these advances is a comprehension of the genomic distribution of modified cytosine bases in unprecedented detail, drawing attention to genomic regions beyond gene promoters. In addition, we have a more complete understanding of the multifactorial manner by which DNA methylation influences gene regulation at the molecular level, and which genes rely directly on the DNA methylome for their normal transcriptional regulation. It is becoming apparent that a major role of DNA modification is to act as a relatively stable, and mitotically heritable, template that contributes to the establishment and maintenance of chromatin states. In this regard, interplay is emerging between DNA methylation and the PcG (Polycomb group) proteins, which act as evolutionarily conserved mediators of cell identity. In the present paper we review these aspects of DNA methylation, and discuss how a multifunctional view of DNA modification as an integral part of chromatin organization is influencing our understanding of this epigenetic mark's contribution to transcriptional regulation.
DNA 中的胞嘧啶碱基甲基化(DNA methylation)是哺乳动物中一种重要的表观遗传标记,有助于转录调控。近年来,该领域取得了多项进展,使我们对该途径如何在胚胎发育过程中参与基因调控以及其在人类疾病中的扰动的功能后果有了飞跃式的理解。这些进展的关键是在前所未有的细节水平上理解修饰的胞嘧啶碱基在基因组中的分布,这引起了人们对基因启动子以外的基因组区域的关注。此外,我们更全面地了解了 DNA 甲基化在分子水平上影响基因调控的多因素方式,以及哪些基因直接依赖 DNA 甲基组来进行正常的转录调控。越来越明显的是,DNA 修饰的一个主要作用是作为一个相对稳定的、有丝分裂遗传的模板,有助于染色质状态的建立和维持。在这方面,DNA 甲基化与 PcG(Polycomb 组)蛋白之间的相互作用正在出现,PcG 蛋白作为细胞身份的进化保守介质。在本文中,我们回顾了 DNA 甲基化的这些方面,并讨论了将 DNA 修饰视为染色质组织不可或缺的一部分的多功能观点如何影响我们对这种表观遗传标记对转录调控贡献的理解。