Body mass index and lung function: A two-step epigenetic Mendelian randomization study

IF 2.7 4区 医学 Q2 GENETICS & HEREDITY Genes and Environment Pub Date : 2018-09-15 DOI:10.1183/13993003.CONGRESS-2018.PA1276
A. Amaral, M. Imboden, M. Wielscher, F. Rezwan, C. Minelli, J. Garcia-Aymerich, G. Peralta, J. Auvinen, A. Jeong, Emmanuel Schaffner, A. Beckmeyer-Borowko, J. Holloway, M. Järvelin, N. Probst-Hensch, D. Jarvis
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Abstract

Background: A Mendelian randomisation (MR) study and longitudinal studies have reported the association of lung function with body mass index (BMI). Aim: To investigate whether the association of lung function with BMI is mediated by DNA methylation. Methods: Using data from population-based cohorts (ECRHS, NFBC, SAPALDIA) from the Ageing Lungs in European Cohorts (ALEC) consortium and summary data from published studies, we assessed the mediating role of DNA methylation in the association of lung function with BMI using a 2-step epigenetic MR approach. In step 1 MR, we estimated the causal effect of BMI on peripheral blood DNA methylation (measured at genome-wide level, i.e. >450k CpGs), using 97 BMI-associated SNPs as instrumental variables for BMI in 2,134 participants. In step 2 MR, we estimated the causal effect of DNA methylation on FEV1, FVC, and FEV1/FVC in 7,577 participants (not included in the 1st step) from the same cohorts. As instrumental variables, in this step, we used independent SNPs occurring close (in cis) to 2 CpGs identified in the first step. MR estimates were derived using the Wald ratio, with standard error from the delta method. Results: In step 1, we found that BMI has a small causal effect on DNA methylation levels (less than 1% change in methylation per 1-unit increase in BMI) at 17 CpGs. Of these CpGs, just two were significantly associated with cis-SNPs. In step 2, we found little evidence of a causal effect of DNA methylation at these two sites on lung function. Conclusion: Our findings do not support a mediating effect of DNA methylation in the association of lung function with BMI. However, we were underpowered to detect small effects. Funding: EU H2020 #633212
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体重指数和肺功能:一项两步表观遗传学孟德尔随机化研究
背景:一项孟德尔随机化(MR)研究和纵向研究报告了肺功能与体重指数(BMI)的关系。目的:探讨肺功能与BMI的关系是否由DNA甲基化介导。方法:使用来自欧洲老龄肺队列联盟(ALEC)的基于人群的队列(ECRHS、NFBC、SAPALDIA)的数据和已发表研究的总结数据,我们使用两步表观遗传学MR方法评估了DNA甲基化在肺功能与BMI关联中的介导作用。在步骤1MR中,我们估计了BMI对外周血DNA甲基化的因果影响(在全基因组水平上测量,即>450k CpG),使用97个BMI相关SNPs作为2134名参与者BMI的工具变量。在步骤2MR中,我们估计了来自同一队列的7577名参与者(不包括在第一步中)的DNA甲基化对FEV1、FVC和FEV1/FVC的因果影响。作为工具变量,在这一步中,我们使用了与第一步中鉴定的2个CpG接近(顺式)的独立SNP。MR估计值是使用Wald比率得出的,标准误差来自delta方法。结果:在第1步中,我们发现BMI对17个CpG的DNA甲基化水平有很小的因果影响(BMI每增加1个单位,甲基化变化不到1%)。在这些CpG中,只有两个与顺式SNPs显著相关。在第二步中,我们几乎没有发现这两个位点的DNA甲基化对肺功能有因果影响的证据。结论:我们的研究结果不支持DNA甲基化在肺功能与BMI之间的中介作用。然而,我们在检测小影响方面能力不足。资金:欧盟H2020#633212
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来源期刊
Genes and Environment
Genes and Environment Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
4.00
自引率
0.00%
发文量
24
审稿时长
27 weeks
期刊介绍: Genes and Environment is an open access, peer-reviewed journal that aims to accelerate communications among global scientists working in the field of genes and environment. The journal publishes articles across a broad range of topics including environmental mutagenesis and carcinogenesis, environmental genomics and epigenetics, molecular epidemiology, genetic toxicology and regulatory sciences. Topics published in the journal include, but are not limited to, mutagenesis and anti-mutagenesis in bacteria; genotoxicity in mammalian somatic cells; genotoxicity in germ cells; replication and repair; DNA damage; metabolic activation and inactivation; water and air pollution; ROS, NO and photoactivation; pharmaceuticals and anticancer agents; radiation; endocrine disrupters; indirect mutagenesis; threshold; new techniques for environmental mutagenesis studies; DNA methylation (enzymatic); structure activity relationship; chemoprevention of cancer; regulatory science. Genetic toxicology including risk evaluation for human health, validation studies on testing methods and subjects of guidelines for regulation of chemicals are also within its scope.
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