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首页> 外文期刊>Hypertension research: Official journal of the Japanese Society of Hypertension >Epigenetic modification: a regulatory mechanism in essential hypertension
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Epigenetic modification: a regulatory mechanism in essential hypertension

机译:表观遗传学修饰:必需高血压的调节机制

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Essential hypertension (EH) is a multifactorial disease of the cardiovascular system that is influenced by the interplay of genetic, epigenetic, and environmental factors. The molecular dynamics underlying EH etiopathogenesis is unknown; however, earlier studies have revealed EH-associated genetic variants. Nevertheless, this finding alone is not sufficient to explain the variability in blood pressure, suggesting that other risk factors are involved, such as epigenetic modifications. Therefore, this review highlights the potential contribution of well-defined epigenetic mechanisms in EH, specifically, DNA methylation, post-translational histone modifications, and microRNAs. We further emphasize global and gene-specific DNA methylation as one of the most well-studied hallmarks among all epigenetic modifications in EH. In addition, post-translational histone modifications, such as methylation, acetylation, and phosphorylation, are described as important epigenetic markers associated with EH. Finally, we discuss microRNAs that affect blood pressure by regulating master genes such as those implicated in the renin-angiotensin-aldosterone system. These epigenetic modifications, which appear to contribute to various cardiovascular diseases, including EH, may be a promising research area for the development of novel future strategies for EH prevention and therapeutics.
机译:基本高血压(EH)是心血管系统的多因素疾病,受遗传,表观遗传和环境因素的相互作用的影响。 eh eh病因发生的分子动力学未知;然而,早期的研究揭示了EH相关的遗传变异。尽管如此,这种发现不足以解释血压的可变性,这表明涉及其他危险因素,例如表观遗传修饰。因此,本综述突出了eH,特别是DNA甲基化,翻译后的组蛋白修饰和微稻草的潜在贡献。我们进一步强调全球和基因特异性DNA甲基化作为EH中所有表观遗传修饰中最熟练的标志之一。另外,翻译后的组蛋白修饰,例如甲基化,乙酰化和磷酸化,被描述为与eH相关的重要表观遗传标记。最后,我们讨论通过调节母基因,例如在肾素 - 血管紧张素 - 醛固酮体系中涉及的母基因等母基因讨论微小润荷。这些表观遗传修饰似乎有助于各种心血管疾病,包括欧盟,可能是开发新的未来eh预防和治疗方法的未来战略的有希望的研究领域。

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