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The Impact of Arsenic Exposure on Whole Blood DNA Methylation: An Epigenome-Wide Study of Bangladeshi Adults

机译:砷暴露对全血DNA甲基化的影响:孟加拉国成年人的表观基因组研究

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Background: Arsenic exposure affects >200 million people worldwide, including ~56 million in Bangladesh. Arsenic exposure increases the risk of chronic disease, and one potential mechanism of arsenic toxicity is epigenetic dysregulation of DNA methylation. Objective: We assessed associations between arsenic exposure and genome-wide DNA methylation among 396 Bangladeshi adults participating in the Health Effects of Arsenic Longitudinal Study (HEALS), who were exposed by drinking naturally-contaminated well water. Methods: Methylation in whole blood DNA was measured at ~850,000 CpGs using the lllumina EPIC array. To assess associations between arsenic exposure and CpG methylation, we used multivariate linear regression models adjusted for covariates and surrogate variables (capturing unknown technical and biologic factors). We attempted replication and conducted a meta-analysis using an independent set of 400 exposed Bangladeshi adults with data on ~450,000 CpGs. Results: We identified nine CpGs associated with urine arsenic exposure (Bonferroni-corrected threshold p<6.5x10-8). Four of these CpGs annotated to the 450K array and all robustly replicated (p<10-3). The top two CpGs annotated upstream of ABR (cg01912040, cgl0003262). All urine arsenic-associated CpGs were also associated with arsenic measured in drinking water (p<0.05). Meta-analysis (n=796) identified 33 urine arsenic-associated CpGs (Bonferroni-corrected threshold p<1.3xl0-7). Among meta-analysis arsenic associated CpGs, gene-specific expression and methylation was associated for six CpGs (p<0.05) and associated CpGs annotated to three genes (EFNA1, SPSB1, SQSTM1) in the TNFa signaling via NFkB pathway (enrichment p=7.7x10-4). Conclusions: The robust associations between arsenic exposure and DNA methylation observed in this work suggest that epigenetic alterations may be important mediators in arsenic toxicity and could be further investigated as biomarkers of exposure and effect in exposed populations.
机译:背景:砷暴露影响了全球2亿多人,其中孟加拉国约有5600万人。砷暴露增加了慢性疾病的风险,砷毒性的一种潜在机制是DNA甲基化的表观遗传失调。目的:我们评估了396名参加砷纵向研究(HEALS)对健康的影响的孟加拉国成年人的砷暴露与全基因组DNA甲基化之间的关联,这些成年人通过喝受自然污染的井水而暴露。方法:使用lllumina EPIC阵列在〜850,000 CpGs下测量全血DNA的甲基化。为了评估砷暴露与CpG甲基化之间的关联,我们使用了针对协变量和替代变量(捕获未知技术和生物学因素)进行调整的多元线性回归模型。我们尝试使用独立的400名暴露的孟加拉国成年人进行复制并进行荟萃分析,数据约有45万CpGs。结果:我们确定了与尿砷暴露相关的九种CpG(Bonferroni校正阈值p <6.5x10-8)。这些CpG中有四个注释为450K阵列,并且全部被可靠复制(p <10-3)。前两个CpG标注在ABR的上游(cg01912040,cgl0003262)。所有尿砷相关的CpGs也与饮用水中的砷相关(p <0.05)。荟萃分析(n = 796)确定了33种与尿砷相关的CpG(邦费罗尼校正的阈值p <1.3x10-7)。在荟萃分析砷相关的​​CpGs中,通过NFkB途径的TNFa信号传导中的六个CpGs(p <0.05)和注释为三个基因(EFNA1,SPSB1,SQSTM1)的相关CpGs的基因特异性表达和甲基化相关(富集p = 7.7) x10-4)。结论:在这项工作中观察到的砷暴露与DNA甲基化之间的强相关性表明,表观遗传学改变可能是砷毒性的重要介质,可以作为暴露人群的暴露和效应的生物标志物进行进一步研究。

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