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Locus-Specific Differential DNA Methylation and Urinary Arsenic: An Epigenome-Wide Association Study in Blood among Adults with Low-to-Moderate Arsenic Exposure

机译:特异性差分DNA甲基化和尿砷:具有低于中等砷暴露的成人中血液中的外观血型关联研究

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Background: Chronic exposure to arsenic (As), a human toxicant and carcinogen, remains a global public health problem. Health risks persist after As exposure has ended, suggesting epigenetic dysregulation as a mechanistic link between exposure and health outcomes. Objectives: We investigated the association between total urinary As and locus-specific DNA methylation in the Strong Heart Study, a cohort of American Indian adults with low-to-moderate As exposure [total urinary As, mean ( ± SD ) μ g / g creatinine: 11.7 (10.6)]. Methods: DNA methylation was measured in 2,325 participants using the Illumina MethylationEPIC array. We implemented linear models to test differentially methylated positions (DMPs) and the DMRcate method to identify regions (DMRs) and conducted gene ontology enrichment analysis. Models were adjusted for estimated cell type proportions, age, sex, body mass index, smoking, education, estimated glomerular filtration rate, and study center. Arsenic was measured in urine as the sum of inorganic and methylated species. Results: In adjusted models, methylation at 20 CpGs was associated with urinary As after false discovery rate (FDR) correction ( FDR 0.05 ). After Bonferroni correction, 5 CpGs remained associated with total urinary As ( p Bonferroni 0.05 ), located in SLC7A11 , ANKS3 , LINGO3 , CSNK1D , ADAMTSL4 . We identified one DMR on chromosome 11 (chr11:2,322,050-2,323,247), annotated to C11orf2 ; TSPAN32 genes. Discussion: This is one of the first epigenome-wide association studies to investigate As exposure and locus-specific DNA methylation using the Illumina MethylationEPIC array and the largest epigenome-wide study of As exposure. The top DMP was located in SLC7A11A , a gene involved in cystine/glutamate transport and the biosynthesis of glutathione, an antioxidant that may protect against As-induced oxidative stress. Additional DMPs were located in genes associated with tumor development and glucose metabolism. Further research is needed, including research in more diverse populations, to investigate whether As-related DNA methylation signatures are associated with gene expression or may serve as biomarkers of disease development.
机译:背景:慢性暴露于砷(AS),人类毒物和致癌物,仍然是全球性的公共卫生问题。在暴露结束时,健康风险持续存在,表明外延遗传学失调作为暴露和健康结果之间的机械联系。目的:我们调查了在强烈的心脏研究中尿的泌尿和特异性DNA甲基化之间的关联,美国印度人成年人的群体,低至中等为暴露[总尿的平均值(±SD)μg/ g肌酐:11.7(10.6)]。方法:使用Illumina甲基化阵列在2,325名参与者中测量DNA甲基化。我们实施了线性模型以测试差异甲基化的位置(DMP)和DMRCate方法以鉴定区域(DMRS)和进行基因本体富集分析。调整模型估计细胞类型比例,年龄,性别,体重指数,吸烟,教育,估计肾小球过滤率和学习中心。在尿液中测量砷作为无机和甲基化物种的总和。结果:在调整模型中,20个CPG的甲基化与虚假发现率(FDR)校正后的尿液相关(FDR <0.05)。在Bonferroni校正之后,5个CPG仍然与总尿(P Bonferroni <0.05)相关联,位于SLC7A11,ANKS3,Lingo3,CSNK1D,AdamTsL4中。我们在染色体11上鉴定了一个DMR(CHR11:2,322,050-2,323,247),注释为C11ORF2; Tspan32基因。讨论:这是使用Illumina甲基化阵列的暴露和特异性DNA甲基化的第一种外观血细胞组合研究之一,以及作为暴露的最大的外延血型研究。顶部DMP位于SLC7A11A中,该基因参与胱氨酸/谷氨酸转运和谷胱甘肽的生物合成,抗氧化剂可以保护抗氧化胁迫。额外的DMPS位于与肿瘤发育和葡萄糖代谢相关的基因中。需要进一步研究,包括在更多样化的群体中的研究,研究与基因表达有关的DNA甲基化签发是否与疾病发育的生物标志物相关。
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