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The interactions between alcohol consumption and DNA methylation of the ADD1 gene promoter modulate essential hypertension susceptibility in a population-based, case-control study

机译:在一项基于人群的病例对照研究中,饮酒与ADD1基因启动子的DNA甲基化之间的相互作用调节了高血压的易感性

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The potential effects of the interactions between DNA methylation (CpG1 and CpG2-5 methylation levels) of the alpha-adducin (ADD1) gene promoter and ADD1 tagSNPs (tag single-nucleotide polymorphisms) or the environmental factors on essential hypertension (EH) risk have not been clarified. Thus, we performed an age-and gender-matched case-control study to investigate the association between ADD1 tagSNPs and EH. A total of 1020 subjects with EH and 1020 normotensive subjects were genotyped by melting temperature shift technology. Logistic regression was used to assess the associations of ADD1 tagSNPs, environmental factors and EH. The generalized multifactor dimensionality reduction (GMDR) method was applied to explore the potential interactions. Under additive, dominant and recessive models, no significant associations were evidenced between EH and rs3755885, rs2071694, rs4963 or rs3775067 with the complete data set or the gender-stratified analysis after adjusting for triglycerides, body mass index and alcohol consumption. However, we observed a significant association between rs4961 and EH under the dominant model after Bonferroni correction when adjusting for confounding factors in the entire sample (odds ratio (OR)= 0.64, 95% confidence interval (CI)= 0.50-0.83, P= 0.001). In GMDR, the two-factor interaction model of alcohol consumption and DNA methylation (CpG1 methylation) was the best model, with a maximum cross-validation consistency of 9/10 and testing balance accuracy of 0.63 (P= 0.01). Our results indicate that the SNP rs4961 has a protective role in the development of EH. In conclusion, the interactions between alcohol consumption and DNA methylation (CpG1 methylation) of the ADD1 gene promoter have a significant role in modifying EH susceptibility.
机译:α-adducin(ADD1)基因启动子的DNA甲基化(CpG1和CpG2-5甲基化水平)与ADD1 tagSNPs(标签单核苷酸多态性)或环境因素之间相互作用的潜在影响具有原发性高血压(EH)风险尚未澄清。因此,我们进行了年龄和性别匹配的病例对照研究,以研究ADD1 tagSNP与EH之间的关联。通过熔化温度变化技术对总共1020名EH和1020名血压正常的受试者进行了基因分型。 Logistic回归用于评估ADD1 tagSNP,环境因子和EH的关联。应用广义多维度降维(GMDR)方法探索潜在的相互作用。在加性,显性和隐性模型下,没有证据表明EH与rs3755885,rs2071694,rs4963或rs3775067具有完整的数据集或调整了甘油三酸酯,体重指数和酒精摄入量后的性别分层分析。但是,当调整整个样本中的混杂因素时,在Bonferroni校正后的优势模型下,我们观察到rs4961和EH之间存在显着关联(优势比(OR)= 0.64,95%置信区间(CI)= 0.50-0.83,P = 0.001)。在GMDR中,酒精消耗和DNA甲基化(CpG1甲基化)的两因素相互作用模型是最好的模型,最大交叉验证一致性为9/10,测试平衡精度为0.63(P = 0.01)。我们的结果表明,SNP rs4961在EH的发展中具有保护作用。总之,酒精消耗与ADD1基因启动子的DNA甲基化(CpG1甲基化)之间的相互作用在改变EH敏感性方面具有重要作用。

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