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发育过程中维生素 D 缺乏对小鼠精子 DNA 甲基化的影响。

Impact of vitamin D depletion during development on mouse sperm DNA methylation.

机构信息

a Department of Genetics, School of Medicine , University of North Carolina at Chapel Hill , Chapel Hill , NC , USA.

b Nutrition Research Institute , University of North Carolina at Chapel Hill , Kannapolis , NC , USA.

出版信息

Epigenetics. 2018;13(9):959-974. doi: 10.1080/15592294.2018.1526027. Epub 2018 Oct 21.

Abstract

Suboptimal environmental conditions during development can substantially alter the epigenome. Stable environmentally-induced changes to the germline epigenome, in particular, have important implications for the health of the next generation. We showed previously that developmental vitamin D depletion (DVD) resulted in loss of DNA methylation at several imprinted loci over two generations. Here, we assessed the impact of DVD on genome-wide methylation in mouse sperm in order to characterize the number, extent and distribution of methylation changes in response to DVD and to find genes that may be susceptible to this prevalent environmental perturbation. We detected 15,827 loci that were differentially methylated in DVD mouse sperm vs. controls. Most epimutations (69%) were loss of methylation, and the extent of methylation change and number of CpGs affected in a region were associated with genic location and baseline methylation state. Methylation response to DVD at validated loci was only detected in offspring that exhibited a phenotypic response to DVD (increased body and testes weight) suggesting the two types of responses are linked, though a causal relationship is unclear. Epimutations localized to regions enriched for developmental and metabolic genes and pathway analyses showed enrichment for Cadherin, Wnt, PDGF and Integrin signaling pathways. These findings show for the first time that vitamin D status during development leads to substantial DNA methylation changes across the sperm genome and that locus susceptibility is linked to genomic and epigenomic context.

摘要

发育过程中环境条件不佳会显著改变表观基因组。生殖系表观基因组中稳定的环境诱导变化,特别是对下一代的健康有重要影响。我们之前表明,发育性维生素 D 缺乏(DVD)会导致两代多个印记基因座的 DNA 甲基化丢失。在这里,我们评估了 DVD 对小鼠精子全基因组甲基化的影响,以表征 DVD 响应中甲基化变化的数量、程度和分布,并找到可能易受这种普遍环境干扰影响的基因。我们在 DVD 小鼠精子与对照之间检测到 15827 个差异甲基化的基因座。大多数表观突变(69%)是甲基化丢失,并且区域内甲基化变化的程度和 CpG 的数量与基因位置和基线甲基化状态相关。在 DVD 验证基因座的 DNA 甲基化反应仅在表现出对 DVD 表型反应(体重和睾丸重量增加)的后代中检测到,这表明这两种反应是相关的,尽管因果关系尚不清楚。表观突变定位于富含发育和代谢基因的区域,通路分析显示钙黏蛋白、Wnt、PDGF 和整合素信号通路富集。这些发现首次表明,发育过程中的维生素 D 状态会导致精子基因组中大量的 DNA 甲基化变化,并且基因座易感性与基因组和表观基因组背景相关。

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