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Chromatin remodelling and epigenetic state regulation by non-coding RNAs in the diseased heart

机译:患病心脏中非编码RNA染色质重塑和表观遗传状态调节

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摘要

Epigenetics refers to all the changes in phenotype and gene expression which are not due to alterations in the DNA sequence. These mechanisms have a pivotal role not only in the development but also in the maintenance during adulthood of a physiological phenotype of the heart. Because of the crucial role of epigenetic modifications, their alteration can lead to the arise of pathological conditions.Heart failure affects an estimated 23 million people worldwide and leads to substantial numbers of hospitalizations and health care costs: ischemic heart disease, hypertension, rheumatic fever and other valve diseases, cardiomyopathy, cardiopulmonary disease, congenital heart disease and other factors may all lead to heart failure, either alone or in concert with other risk factors. Epigenetic alterations have recently been included among these risk factors as they can affect gene expression in response to external stimuli.In this review, we provide an overview of all the major classes of chromatin remodellers, providing examples of how their disregulation in the adult heart alters specific gene programs with subsequent development of major cardiomyopathies. Understanding the functional significance of the different epigenetic marks as points of genetic control may be useful for developing promising future therapeutic tools.
机译:表观遗传学是指表型和基因表达的所有改变,这些改变不是由于DNA序列的改变。这些机制不仅在心脏的生理表型的成年过程中而且在其维持过程中都起着关键作用。由于表观遗传修饰的关键作用,它们的改变可能导致病理状况的发生。全球约有2300万人受到心脏衰竭的影响,并导致大量的住院和医疗保健费用:缺血性心脏病,高血压,风湿热和其他瓣膜疾病,心肌病,心肺疾病,先天性心脏病和其他因素可能单独或与其他危险因素一起导致心力衰竭。表观遗传改变最近已被包括在这些危险因素中,因为它们可以响应外部刺激而影响基因表达。在这篇综述中,我们概述了染色质重塑剂的所有主要类别,并提供了它们在成年心脏中如何失调的示例。特定的基因程序,随后发展为主要的心肌病。了解不同表观遗传标记作为基因控制点的功能意义可能对开发有前途的未来治疗工具有用。

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