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Epigenetic Regulation: A New Frontier for Biomedical Engineers
Annual Review of Biomedical Engineering ( IF 9.7 ) Pub Date : 2017-06-20 00:00:00 , DOI: 10.1146/annurev-bioeng-071516-044720
Zhen Chen 1, 2 , Shuai Li 2 , Shankar Subramaniam 3 , John Y.-J. Shyy 2 , Shu Chien 2, 3
Affiliation  

Gene expression in mammalian cells depends on the epigenetic status of the chromatin, including DNA methylation, histone modifications, promoter–enhancer interactions, and noncoding RNA–mediated regulation. The coordinated actions of these multifaceted regulations determine cell development, cell cycle regulation, cell state and fate, and the ultimate responses in health and disease. Therefore, studies of epigenetic modulations are critical for our understanding of gene regulation mechanisms at the molecular, cellular, tissue, and organ levels. The aim of this review is to provide biomedical engineers with an overview of the principles of epigenetics, methods of study, recent findings in epigenetic regulation in health and disease, and computational and sequencing tools for epigenetics analysis, with an emphasis on the cardiovascular system. This review concludes with the perspectives of the application of bioengineering to advance epigenetics and the utilization of epigenetics to translate bioengineering research into clinical medicine.

中文翻译:


表观遗传调控:生物医学工程师的新领域

哺乳动物细胞中的基因表达取决于染色质的表观遗传状态,包括DNA甲基化,组蛋白修饰,启动子-增强子相互作用和非编码RNA介导的调控。这些多方面法规的协调作用决定了细胞发育,细胞周期调控,细胞状态和命运以及健康和疾病的最终反应。因此,表观遗传调制的研究对于我们了解分子,细胞,组织和器官水平的基因调控机制至关重要。这篇综述的目的是向生物医学工程师提供表观遗传学原理,研究方法,健康和疾病中表观遗传调控的最新发现以及表观遗传学分析的计算和测序工具的概述,重点是心血管系统。

更新日期:2017-06-20
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