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褪黑素在治疗表观遗传功能障碍性疾病中的前瞻性应用

The Prospective Application of Melatonin in Treating Epigenetic Dysfunctional Diseases.

作者信息

Monayo Seth Mikaye, Liu Xin

机构信息

Department of Pharmacology (The State-Province Key Laboratories of Biomedicine-Pharmaceutics of China, Key Laboratory of Cardiovascular Research, Ministry of Education), College of Pharmacy, Harbin Medical University, Harbin, China.

出版信息

Front Pharmacol. 2022 May 20;13:867500. doi: 10.3389/fphar.2022.867500. eCollection 2022.

Abstract

In the past, different human disorders were described by scientists from the perspective of either environmental factors or just by genetically related mechanisms. The rise in epigenetic studies and its modifications, i.e., heritable alterations in gene expression without changes in DNA sequences, have now been confirmed in diseases. Modifications namely, DNA methylation, posttranslational histone modifications, and non-coding RNAs have led to a better understanding of the coaction between epigenetic alterations and human pathologies. Melatonin is a widely-produced indoleamine regulator molecule that influences numerous biological functions within many cell types. Concerning its broad spectrum of actions, melatonin should be investigated much more for its contribution to the upstream and downstream mechanistic regulation of epigenetic modifications in diseases. It is, therefore, necessary to fill the existing gaps concerning corresponding processes associated with melatonin with the physiological abnormalities brought by epigenetic modifications. This review outlines the findings on melatonin's action on epigenetic regulation in human diseases including neurodegenerative diseases, diabetes, cancer, and cardiovascular diseases. It summarizes the ability of melatonin to act on molecules such as proteins and RNAs which affect the development and progression of diseases.

摘要

过去,不同的人类疾病是由科学家从环境因素或仅从基因相关机制的角度来描述的。表观遗传学研究及其修饰(即基因表达的可遗传改变而DNA序列不变)的兴起,如今已在疾病中得到证实。具体而言,DNA甲基化、组蛋白翻译后修饰和非编码RNA等修饰,使人们对表观遗传改变与人类病理之间的协同作用有了更深入的了解。褪黑素是一种广泛产生的吲哚胺调节分子,它影响多种细胞类型中的众多生物学功能。鉴于其广泛的作用谱,应更多地研究褪黑素对疾病中表观遗传修饰的上游和下游机制调节的贡献。因此,有必要填补褪黑素与表观遗传修饰带来的生理异常相关的现有空白。本综述概述了褪黑素对人类疾病(包括神经退行性疾病、糖尿病、癌症和心血管疾病)表观遗传调控作用的研究结果。它总结了褪黑素作用于影响疾病发展和进展的蛋白质和RNA等分子的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d402/9163742/cd076bfeadec/fphar-13-867500-g001.jpg

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