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Choline's role in maintaining liver function: New evidence for epigenetic mechanisms

机译:胆碱在维持肝功能中的作用:表观遗传机制的新证据

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PURPOSE OF REVIEW: Humans eating diets low in choline develop fatty liver and liver damage. Rodents fed choline-methionine-deficient diets not only develop fatty liver, but also progress to develop fibrosis and hepatocarcinoma. This review focuses on the role of choline in liver function, with special emphasis on the epigenetic mechanisms of action. RECENT FINDINGS: Dietary intake of methyl donors like choline influences the methylation of DNA and histones, thereby altering the epigenetic regulation of gene expression. The liver is the major organ within which methylation reactions occur, and many of the hepatic genes involved in pathways for the development of fatty liver, hepatic fibrosis, and hepatocarcinomas are epigenetically regulated. SUMMARY: Dietary intake of choline varies over a three-fold range and many humans have genetic polymorphisms that increase their demand for choline. Choline is an important methyl donor needed for the generation of S-adenosylmethionine. Dietary choline intake is an important modifier of epigenetic marks on DNA and histones, and thereby modulates the gene expression in many of the pathways involved in liver function and dysfunction.
机译:审查目的:食用胆碱含量低的饮食的人会发展出脂肪肝和肝损害。饲喂缺乏胆碱蛋氨酸的饮食的啮齿动物不仅会发展为脂肪肝,而且还会发展为纤维化和肝癌。这篇综述着重于胆碱在肝功能中的作用,特别着重于表观遗传机制。最近发现:饮食中摄入甲基供体(如胆碱)会影响DNA和组蛋白的甲基化,从而改变基因表达的表观遗传调控。肝脏是发生甲基化反应的主要器官,并且参与脂肪肝,肝纤维化和肝癌发生途径的许多肝基因受到表观遗传调控。简介:饮食中胆碱的摄入量在三倍范围内变化,许多人具有遗传多态性,从而增加了他们对胆碱的需求。胆碱是产生S-腺苷甲硫氨酸所需的重要的甲基供体。饮食中胆碱的摄入是DNA和组蛋白上表观遗传标记的重要修饰剂,从而调节涉及肝功能和功能障碍的许多途径中的基因表达。

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