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转录调控、正常分化及癌症中的基因内DNA甲基化

Intragenic DNA methylation in transcriptional regulation, normal differentiation and cancer.

作者信息

Kulis Marta, Queirós Ana C, Beekman Renée, Martín-Subero José I

机构信息

Departamento de Anatomía Patológica, Farmacología y Microbiología, Universidad de Barcelona, Unidad de Hematopatología, Hospital Clinic, Institut d'Investigacions Biomédiques August Pi i Sunyer (IDIBAPS), Barcelona, Spain.

出版信息

Biochim Biophys Acta. 2013 Nov;1829(11):1161-74. doi: 10.1016/j.bbagrm.2013.08.001. Epub 2013 Aug 9.

Abstract

Ever since the discovery of DNA methylation at cytosine residues, the role of this so called fifth base has been extensively studied and debated. Until recently, the majority of DNA methylation studies focused on the analysis of CpG islands associated to promoter regions. However, with the upcoming possibilities to study DNA methylation in a genome-wide context, this epigenetic mark can now be studied in an unbiased manner. As a result, recent studies have shown that not only promoters but also intragenic and intergenic regions are widely modulated during physiological processes and disease. In particular, it is becoming increasingly clear that DNA methylation in the gene body is not just a passive witness of gene transcription but it seems to be actively involved in multiple gene regulation processes. In this review we discuss the potential role of intragenic DNA methylation in alternative promoter usage, regulation of short and long non-coding RNAs, alternative RNA processing, as well as enhancer activity. Furthermore, we summarize how the intragenic DNA methylome is modified both during normal cell differentiation and neoplastic transformation.

摘要

自从发现胞嘧啶残基上的DNA甲基化以来,这种所谓的第五碱基的作用就一直受到广泛研究和争论。直到最近,大多数DNA甲基化研究都集中在与启动子区域相关的CpG岛分析上。然而,随着在全基因组范围内研究DNA甲基化的可能性不断增加,现在可以以无偏见的方式研究这种表观遗传标记。因此,最近的研究表明,不仅启动子,基因内和基因间区域在生理过程和疾病中也受到广泛调节。特别是,越来越清楚的是,基因体内的DNA甲基化不仅仅是基因转录的被动见证者,它似乎还积极参与多种基因调控过程。在这篇综述中,我们讨论了基因内DNA甲基化在替代启动子使用、短和长非编码RNA调控、RNA加工以及增强子活性中的潜在作用。此外,我们总结了在正常细胞分化和肿瘤转化过程中基因内DNA甲基化组是如何被修饰的。

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