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Daily variations of homocysteine concentrationmay influencemethylation of DNA in normal healthy individuals

机译:同型半胱氨酸浓度的每日变化可能影响正常健康个体的DNA甲基化

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The regulation of genetic expression is tightly controlled and well balanced in the organism by different epigenetic mechanisms such as DNA methylation and histone modifications. DNA methylation occurring after embryogenesis is seen mainly as an irreversible event. Even small changes in genomic DNA methylation might be of biological relevance, and several factors influencing DNA methylation have been identified so far, one being homocysteine. In this study, genomic DNA methylation was analyzed and homocysteine plasma levels were measured over a 24 h period in 30 healthy students (15 males and 15 females) exposed to a standard 24 h regime of daytime activity alternating with nighttime sleep. Plasma homocysteine concentrations were measured using HPLC detection. DNA was extracted from whole EDTA blood, and genomic DNA methylation was assessed by fluorescently labeled cytosine extension assay. Both homocysteine and DNA methylation showed 24 h variation. Homocysteine showed a significant daily rhythm with an evening peak and nocturnal nadir in all subjects (p < 0.001). Males showed higher overall homocysteine levels compared to females (p = 0.002). Genomic DNA methylation showed a significant rhythm with increased levels at night (p = 0.021), which was inverse to plasma homocysteine levels.
机译:通过不同的表观遗传机制(例如DNA甲基化和组蛋白修饰),生物中的基因表达调控受到严格控制并保持良好平衡。胚胎发生后发生的DNA甲基化主要被视为不可逆事件。即使基因组DNA甲基化的微小变化也可能具有生物学意义,到目前为止,已经发现了影响DNA甲基化的几个因素,其中一个是高半胱氨酸。在这项研究中,对30名健康学生(24名白天活动与夜间睡眠交替暴露)的30名健康学生(15名男性和15名女性)在24小时内分析了基因组DNA甲基化并测定了同型半胱氨酸血浆水平。使用HPLC检测测量血浆同型半胱氨酸浓度。从全EDTA血液中提取DNA,并通过荧光标记的胞嘧啶延伸分析评估基因组DNA甲基化。高半胱氨酸和DNA甲基化都显示24小时变化。同型半胱氨酸在所有受试者中均表现出明显的每日节律,夜间高峰和夜间最低点(p <0.001)。与女性相比,男性表现出更高的同型半胱氨酸水平(p = 0.002)。基因组DNA甲基化显示出明显的节律,夜间水平升高(p = 0.021),与血浆同型半胱氨酸水平成反比。

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