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Customized MethylC-Capture Sequencing to Evaluate Variation in the Human Sperm DNA Methylome Representative of Altered Folate Metabolism

机译:定制甲基C-捕获测序以评估人体精子DNA甲基姆的变异,代表改变的叶酸代谢

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Background: The sperm DNA methylation landscape is unique and critical for offspring health. If gamete-derived DNA methylation escapes reprograming in early embryos, epigenetic defects in sperm may be transmitted to the next generation. Current techniques to assess sperm DNA methylation show bias toward CpG-dense regions and do not target areas of dynamic methylation, those predicted to be environmentally sensitive and tunable regulatory elements. Objectives: Our goal was to assess variation in human sperm DNA methylation and design a targeted capture panel to interrogate the human sperm methylome. Methods: To characterize variation in sperm DNA methylation, we performed whole genome bisulfite sequencing (WGBS) on an equimolar pool of sperm DNA from a wide cross section of 30 men varying in age, fertility status, methylenetetrahydrofolate reductase ( MTHFR ) genotype, and exposures. With our targeted capture panel, in individual samples, we examined the effect of MTHFR genotype ( n = 13 677CC , n = 8 677TT ), as well as high-dose folic acid supplementation ( n = 6 , per genotype, before and after supplementation). Results: Through WGBS we discovered nearly 1 million CpGs possessing intermediate methylation levels (20–80%), termed dynamic sperm CpGs. These dynamic CpGs, along with 2 million commonly assessed CpGs, were used to customize a capture panel for targeted interrogation of the human sperm methylome and test its ability to detect effects of altered folate metabolism. As compared with MTHFR 677CC men, those with the 677TT genotype (50% decreased MTHFR activity) had both hyper- and hypomethylation in their sperm. High-dose folic acid supplement treatment exacerbated hypomethylation in MTHFR 677TT men compared with 677CC . In both cases, 80 % of altered methylation was found in dynamic sperm CpGs, uniquely measured by our assay. Discussion: Our sperm panel allowed the discovery of differential methylation following conditions affecting folate metabolism in novel dynamic sperm CpGs. Improved ability to examine variation in sperm DNA methylation can facilitate comprehensive studies of environment–epigenome interactions.
机译:背景:精子DNA甲基化景观对于后代健康是独​​特的并且是至关重要的。如果在早期胚胎中重新编程的配子衍生的DNA甲基化脱落,则精子中的表观遗传缺陷可以传递到下一代。评估精子DNA甲基化的目前的技术表现出偏向CpG - 致密区域,并且不靶向动态甲基化区域,预测是环境敏感和可调调节元件。目的:我们的目标是评估人体精子DNA甲基化的变异,并设计靶向捕获面板以询问人体精子甲膜。方法:为了表征精子DNA甲基化的变化,我们在来自年龄,生育状态,甲基四丁二醇酯还原酶(MTHFR)基因型和曝光的宽横截面,对来自30个男性的宽横截面进行了全基因组亚硫酸氢盐测序(WGBS)。 。通过我们的目标捕获面板,在单个样品中,我们检查了MTHFR基因型(n = 13 677cc,n = 8 677tt)的效果,以及高剂量叶酸补充剂(n = 6,每个基因型,补充之前和之后)。结果:通过WGBS,我们发现了具有中间甲基化水平(20-80%)的近100万CpGs,称为动态精子CpG。这些动态CPG以及200万普通评估的CPGS用于定制捕获面板,用于靶向询问人体精子甲虫,并测试其检测改变叶酸代谢效果的能力。与MTHFR 677CC男性相比,那些具有677TT基因型(50%降低的MTHFR活性)在它们的精子中具有超级和低甲基化。与677cc相比,高剂量叶酸补充处理在MTHFR 677TT男性中加剧了低甲基化。在这两种情况下,在动态精子Cpg中发现> 80%的改变的甲基化,通过我们的测定唯一测量。讨论:我们的精子面板允许在影响新型动态精子CpG中的叶酸代谢后发现差异甲基化。改善检查精子DNA甲基化变化的能力可以促进对环境 - 表观蛋白组的综合研究。

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