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表观遗传学:解析其在糖尿病及其慢性并发症中的作用。

Epigenetics: deciphering its role in diabetes and its chronic complications.

机构信息

Department of Diabetes, Beckman Research Institute of City of Hope, Duarte, California 91010, USA.

出版信息

Clin Exp Pharmacol Physiol. 2011 Jul;38(7):451-9. doi: 10.1111/j.1440-1681.2011.05497.x.

Abstract
  1. Increasing evidence suggests that epigenetic factors might regulate the complex interplay between genes and the environment, and affect human diseases, such as diabetes and its complications. 2. Clinical trials have underscored the long lasting beneficial effects of strict glycaemic control for reducing the progression of diabetic complications. They have also shown that diabetic complications, such as diabetic nephropathy, a chronic kidney disorder, can continue even after blood glucose normalization, suggesting a metabolic memory of the prior glycaemic state. 3. Dysregulation of epigenetic post-transcriptional modifications of histones in chromatin, including histone lysine methylation, has been implicated in aberrant gene regulation associated with the pathology of diabetes and its complications. Genome-wide studies have shown cell-type specific changes in histone methylation patterns under diabetic conditions. In addition, studies in vascular cells have shown long lasting changes in epigenetic modifications at key inflammatory gene promoters after prior exposure to diabetic conditions, suggesting a possible mechanism for metabolic memory. 4. Recent studies have shown roles for histone methylation, DNA methylation, as well as microRNA in diabetic nephropathy. Whether these epigenetic factors play a role in metabolic memory of diabetic kidney disease is less well understood. 5. The incidence of diabetes is growing rapidly, as also the cost of treating the resulting complications. A better understanding of metabolic memory and the potential involvement of epigenetic mechanisms in this phenomenon could enable the development of new therapeutic targets for the treatment and/or prevention of sustained diabetic complications.
摘要
  1. 越来越多的证据表明,表观遗传因素可能调节基因与环境之间的复杂相互作用,并影响人类疾病,如糖尿病及其并发症。

  2. 临床试验强调了严格控制血糖对减少糖尿病并发症进展的长期有益效果。它们还表明,糖尿病并发症,如慢性肾脏疾病糖尿病肾病,即使在血糖正常化后仍会持续存在,这表明先前血糖状态存在代谢记忆。

  3. 染色质中组蛋白的表观遗传转录后修饰(包括组蛋白赖氨酸甲基化)的失调与糖尿病及其并发症的病理学相关的异常基因调控有关。全基因组研究表明,在糖尿病条件下,组蛋白甲基化模式存在细胞类型特异性变化。此外,血管细胞的研究表明,先前暴露于糖尿病条件后,关键炎症基因启动子的表观遗传修饰会发生持久变化,这表明代谢记忆的一种可能机制。

  4. 最近的研究表明,组蛋白甲基化、DNA 甲基化以及 microRNA 在糖尿病肾病中发挥作用。这些表观遗传因素是否在糖尿病肾病的代谢记忆中起作用尚不清楚。

  5. 糖尿病的发病率正在迅速增长,治疗由此产生的并发症的成本也在增加。更好地了解代谢记忆以及表观遗传机制在这一现象中的潜在作用,可能为治疗和/或预防持续的糖尿病并发症提供新的治疗靶点。

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