Genome-wide Pleiotropy Between Parkinson Disease and Autoimmune Diseases

全基因组关联研究 多效性 LRRK2 疾病 遗传关联 人类白细胞抗原 生物 遗传学 基因 免疫学 自身免疫性疾病 表型 单核苷酸多态性 医学 基因型 突变 内科学 抗原 抗体
作者
Aree Witoelar,Iris E. Jansen,Yunpeng Wang,Joshua Shulman,J. Raphael Gibbs,Cornelis Blauwendraat,Wesley K. Thompson,Dena G. Hernandez,Srdjan Djurovic,Andrew J. Schork,Francesco Bettella,David Ellinghaus,Andre Franke,Benedicte A. Lie,Linda K. McEvoy,Tom H. Karlsen,Suzanne Lesage,Huw R. Morris,Alexis Brice,Nicholas Wood
出处
期刊:JAMA Neurology [American Medical Association]
卷期号:74 (7): 780-780 被引量:312
标识
DOI:10.1001/jamaneurol.2017.0469
摘要

Recent genome-wide association studies (GWAS) and pathway analyses supported long-standing observations of an association between immune-mediated diseases and Parkinson disease (PD). The post-GWAS era provides an opportunity for cross-phenotype analyses between different complex phenotypes.To test the hypothesis that there are common genetic risk variants conveying risk of both PD and autoimmune diseases (ie, pleiotropy) and to identify new shared genetic variants and their pathways by applying a novel statistical framework in a genome-wide approach.Using the conjunction false discovery rate method, this study analyzed GWAS data from a selection of archetypal autoimmune diseases among 138 511 individuals of European ancestry and systemically investigated pleiotropy between PD and type 1 diabetes, Crohn disease, ulcerative colitis, rheumatoid arthritis, celiac disease, psoriasis, and multiple sclerosis. NeuroX data (6927 PD cases and 6108 controls) were used for replication. The study investigated the biological correlation between the top loci through protein-protein interaction and changes in the gene expression and methylation levels. The dates of the analysis were June 10, 2015, to March 4, 2017.The primary outcome was a list of novel loci and their pathways involved in PD and autoimmune diseases.Genome-wide conjunctional analysis identified 17 novel loci at false discovery rate less than 0.05 with overlap between PD and autoimmune diseases, including known PD loci adjacent to GAK, HLA-DRB5, LRRK2, and MAPT for rheumatoid arthritis, ulcerative colitis and Crohn disease. Replication confirmed the involvement of HLA, LRRK2, MAPT, TRIM10, and SETD1A in PD. Among the novel genes discovered, WNT3, KANSL1, CRHR1, BOLA2, and GUCY1A3 are within a protein-protein interaction network with known PD genes. A subset of novel loci was significantly associated with changes in methylation or expression levels of adjacent genes.The study findings provide novel mechanistic insights into PD and autoimmune diseases and identify a common genetic pathway between these phenotypes. The results may have implications for future therapeutic trials involving anti-inflammatory agents.
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