DNA甲基化
表观遗传学
表观基因组
遗传关联
生物
遗传学
类风湿性关节炎
CpG站点
甲基化
混淆
全基因组关联研究
主要组织相容性复合体
免疫学
基因型
医学
单核苷酸多态性
DNA
基因
内科学
基因表达
作者
Yun Liu,Martin J. Aryee,Leonid Padyukov,M. Daniele Fallin,Espen Hesselberg,Árni Rafn Rúnarsson,Lovisa E. Reinius,Nathalie Acevedo,Margaret A. Taub,Marcus Ronninger,Klementy Shchetynsky,Annika Scheynius,Juha Kere,Lars Alfredsson,Lars Klareskog,Tomas J. Ekström,Andrew P. Feinberg
摘要
Liu et al. use mediation analysis to find changes in DNA methylation that mediate the genetic risk for rheumatoid arthritis. Epigenetic mechanisms integrate genetic and environmental causes of disease, but comprehensive genome-wide analyses of epigenetic modifications have not yet demonstrated robust association with common diseases. Using Illumina HumanMethylation450 arrays on 354 anti-citrullinated protein antibody–associated rheumatoid arthritis cases and 337 controls, we identified two clusters within the major histocompatibility complex (MHC) region whose differential methylation potentially mediates genetic risk for rheumatoid arthritis. To reduce confounding factors that have hampered previous epigenome-wide studies, we corrected for cellular heterogeneity by estimating and adjusting for cell-type proportions in our blood-derived DNA samples and used mediation analysis to filter out associations likely to be a consequence of disease. Four CpGs also showed an association between genotype and variance of methylation. The associations for both clusters replicated at least one CpG (P < 0.01), with the rest showing suggestive association, in monocyte cell fractions in an independent cohort of 12 cases and 12 controls. Thus, DNA methylation is a potential mediator of genetic risk.
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