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表观遗传学与代谢疾病的后天易感性

Epigenetics and Acquired Predisposition to Metabolic Disease.

作者信息

Deodati Annalisa, Inzaghi Elena, Cianfarani Stefano

机构信息

Dipartimento Pediatrico Universitario Ospedaliero "Bambino Gesù" Children's Hospital, Tor Vergata University, Rome, Italy.

Department of Women's and Children's Health, Karolinska Institutet, Stockholm, Sweden.

出版信息

Front Genet. 2020 Jan 29;10:1270. doi: 10.3389/fgene.2019.01270. eCollection 2019.

Abstract

Epidemiological evidence has shown an association between prenatal malnutrition and a higher risk of developing metabolic disease in adult life. An inadequate intrauterine milieu affects both growth and development, leading to a permanent programming of endocrine and metabolic functions. Programming may be due to the epigenetic modification of genes implicated in the regulation of key metabolic mechanisms, including DNA methylation, histone modifications, and microRNAs (miRNAs). The expression of miRNAs in organs that play a key role in metabolism is influenced by programming, as demonstrated by both experimental and human studies. miRNAs modulate multiple pathways such as insulin signaling, immune responses, adipokine function, lipid metabolism, and food intake. Liver is one of the main target organs of programming, undergoing structural, functional, and epigenetic changes following the exposure to a suboptimal intrauterine environment. The focus of this review is to provide an overview of the effects of exposure to an adverse milieu on epigenome with a focus on the molecular mechanisms involved in liver programming.

摘要

流行病学证据表明,产前营养不良与成年后患代谢性疾病的较高风险之间存在关联。子宫内环境不足会影响生长和发育,导致内分泌和代谢功能的永久性编程。编程可能是由于参与关键代谢机制调节的基因发生表观遗传修饰,包括DNA甲基化、组蛋白修饰和微小RNA(miRNA)。实验研究和人体研究均表明,miRNA在代谢中起关键作用的器官中的表达受编程影响。miRNA调节多种途径,如胰岛素信号传导、免疫反应、脂肪因子功能、脂质代谢和食物摄入。肝脏是编程的主要靶器官之一,在暴露于次优子宫内环境后会发生结构、功能和表观遗传变化。本综述的重点是概述暴露于不良环境对表观基因组的影响,重点关注肝脏编程所涉及的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55c0/7000755/e34cdc9f07cf/fgene-10-01270-g001.jpg

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