Speckmann Bodo, Grune Tilman
a German Institute of Human Nutrition Potsdam-Rehbruecke ; Department of Molecular Toxicology ; Nuthetal , Germany.
Epigenetics. 2015;10(3):179-90. doi: 10.1080/15592294.2015.1013792.
Alterations of epigenetic marks are linked to normal development and cellular differentiation as well as to the progression of common chronic diseases. The plasticity of these marks provides potential for disease therapies and prevention strategies. Macro- and micro-nutrients have been shown to modulate disease risk in part via effects on the epigenome. The essential micronutrient selenium affects human health outcomes, e.g., cancers, cardiovascular and autoimmune diseases, via selenoproteins and through a range of biologically active dietary selenocompounds and metabolism products thereof. This review provides an assessment of the current literature regarding epigenetic effects of dietary and synthetic selenocompounds, which include the modulation of marks and editors of epigenetic information and interference with one-carbon metabolism, which provides the methyl donor for DNA methylation. The relevance of a selenium-epigenome interaction for human health is discussed, and we also indicate where future studies will be helpful to gain a deeper understanding of epigenetic effects elicited by selenium.
表观遗传标记的改变与正常发育、细胞分化以及常见慢性疾病的进展相关。这些标记的可塑性为疾病治疗和预防策略提供了潜力。大量营养素和微量营养素已被证明部分通过对表观基因组的影响来调节疾病风险。必需的微量营养素硒通过硒蛋白以及一系列具有生物活性的膳食硒化合物及其代谢产物影响人类健康结果,如癌症、心血管疾病和自身免疫性疾病。本综述评估了有关膳食和合成硒化合物表观遗传效应的当前文献,其中包括对表观遗传信息标记和编辑的调节以及对一碳代谢的干扰,一碳代谢为DNA甲基化提供甲基供体。讨论了硒与表观基因组相互作用对人类健康的相关性,并且我们还指出了未来哪些研究将有助于更深入地了解硒引发的表观遗传效应。