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The emerging role of epigenetics in rheumatic diseases

机译:表观遗传学在风湿性疾病中的新兴作用

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摘要

Epigenetics is a key mechanism regulating the expression of genes. There are three main and interrelated mechanisms: DNA methylation, post-translational modification of histone proteins and non-coding RNA. Gene activation is generally associated with lower levels of DNA methylation in promoters and with distinct histone marks such as acetylation of amino acids in histones. Unlike the genetic code, the epigenome is altered by endogenous (e.g. hormonal) and environmental (e.g. diet, exercise) factors and changes with age. Recent evidence implicates epigenetic mechanisms in the pathogenesis of common rheumatic disease, including RA, OA, SLE and scleroderma. Epigenetic drift has been implicated in age-related changes in the immune system that result in the development of a pro-inflammatory status termed inflammageing, potentially increasing the risk of age-related conditions such as polymyalgia rheumatica. Therapeutic targeting of the epigenome has shown promise in animal models of rheumatic diseases. Rapid advances in computational biology and DNA sequencing technology will lead to a more comprehensive understanding of the roles of epigenetics in the pathogenesis of common rheumatic diseases
机译:表观遗传学是调节基因表达的关键机制。存在三种主要且相互关联的机制:DNA甲基化,组蛋白的翻译后修饰和非编码RNA。基因激活通常与启动子中较低的DNA甲基化水平相关,并与不同的组蛋白标记(例如组蛋白中的氨基酸乙酰化)相关。与遗传密码不同,表观基因组会受到内源性因素(例如激素)和环境因素(例如饮食,运动)的影响,并且会随着年龄的变化而改变。最近的证据表明表观遗传机制参与了风湿性疾病的发病机理,包括RA,OA,SLE和硬皮病。表观遗传漂移与免疫系统中与年龄相关的变化有关,这种变化导致称为炎症的促炎状态的发展,潜在地增加了与年龄相关的疾病如风湿性多肌痛的风险。在风湿性疾病的动物模型中,表观基因组的治疗靶向已显示出希望。计算生物学和DNA测序技术的飞速发展将导致对表观遗传学在常见风湿病发病机理中的作用的更全面的了解

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