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微小RNA组与表观遗传机制之间的相互作用:对健康与疾病的影响

Interplay between the miRNome and the epigenetic machinery: Implications in health and disease.

作者信息

Poddar Shagun, Kesharwani Devesh, Datta Malabika

机构信息

CSIR-Institute of Genomics and Integrative Biology, Delhi, India.

Training and Development Complex, CSIR Campus, Academy of Scientific and Innovative Research, Taramani, Chennai, India.

出版信息

J Cell Physiol. 2017 Nov;232(11):2938-2945. doi: 10.1002/jcp.25819. Epub 2017 Mar 27.

Abstract

Epigenetics refers to functionally relevant genomic changes that do not involve changes in the basic nucleotide sequence. Majorly, these are of two types: DNA methylation and histone modifications. Small RNA molecules called miRNAs are often thought to mediate post-transcriptional epigenetic changes by mRNA degradation or translational attenuation. While DNA methylation and histone modifications have their own independent effects on various cellular events, several reports are suggestive of an obvious interplay between these phenomena and the miRNA regulatory program within the cell. Several miRNAs like miR-375, members of miR-29 family, miR-34, miR-200, and others are regulated by DNA methylation and histone modifications in various types of cancers and metabolic diseases. On the other hand, miRNAs like miR-449a, miR-148, miR-101, miR-214, and miR-128 target members of the epigenetic machinery and their dysregulation leads to diverse cellular aberrations. In spite of being independent cellular events, emergence of such reports that suggest a connection between DNA methylation, histone modification, and miRNA function in several diseases indicate that this connecting axis offers a valuable target with great therapeutic potential that might be exploited for disease management. We review the current status of crosstalk between the major epigenetic modifications and the miRNA machinery and discuss this in the context of health and disease.

摘要

表观遗传学是指功能上相关的基因组变化,这些变化不涉及基本核苷酸序列的改变。主要有两种类型:DNA甲基化和组蛋白修饰。被称为miRNA的小RNA分子通常被认为通过mRNA降解或翻译衰减来介导转录后表观遗传变化。虽然DNA甲基化和组蛋白修饰对各种细胞事件有各自独立的影响,但有几份报告表明这些现象与细胞内的miRNA调控程序之间存在明显的相互作用。几种miRNA,如miR-375、miR-29家族成员、miR-34、miR-200等,在各种类型的癌症和代谢疾病中受DNA甲基化和组蛋白修饰的调控。另一方面,miR-449a、miR-148、miR-101、miR-214和miR-128等miRNA靶向表观遗传机制的成员,它们的失调会导致多种细胞异常。尽管这些是独立的细胞事件,但有报告表明DNA甲基化、组蛋白修饰和miRNA功能在几种疾病中存在联系,这表明这个连接轴提供了一个具有巨大治疗潜力的有价值靶点,可用于疾病管理。我们综述了主要表观遗传修饰与miRNA机制之间相互作用的现状,并在健康和疾病的背景下进行了讨论。

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