Genome-wide Association Analysis of Parkinson’s Disease and Schizophrenia Reveals Shared Genetic Architecture and Identifies Novel Risk Loci

全基因组关联研究 遗传建筑学 生物 遗传学 精神分裂症(面向对象编程) 遗传关联 维加维斯 基因座(遗传学) 疾病 错误发现率 单核苷酸多态性 表达数量性状基因座 数量性状位点 基因 医学 精神科 内科学 基因型
作者
Olav B. Smeland,Alexey Shadrin,Shahram Bahrami,Iris Broce,Martin Tesli,Oleksandr Frei,Katrine V. Wirgenes,Kevin S. O’Connell,Florian Krull,Francesco Bettella,Nils Eiel Steen,Leo P. Sugrue,Yunpeng Wang,Per Svenningsson,Manu Sharma,Lasse Pihlstrøm,Mathias Toft,Michael O’Donovan,Srdjan Djurovic,Rahul S. Desikan
出处
期刊:Biological Psychiatry [Elsevier]
卷期号:89 (3): 227-235 被引量:81
标识
DOI:10.1016/j.biopsych.2020.01.026
摘要

Parkinson's disease (PD) and schizophrenia (SCZ) are heritable brain disorders that involve dysregulation of the dopaminergic system. Epidemiological studies have reported potential comorbidity between the disorders, and movement disturbances are common in patients with SCZ before treatment with antipsychotic drugs. Despite this, little is known about shared genetic etiology between the disorders.We analyzed recent large genome-wide association studies on patients with SCZ (N = 77,096) and PD (N = 417,508) using a conditional/conjunctional false discovery rate (FDR) approach to evaluate overlap in common genetic variants and improve statistical power for genetic discovery. Using a variety of biological resources, we functionally characterized the identified genomic loci.We observed genetic enrichment in PD conditional on associations with SCZ and vice versa, indicating polygenic overlap. We then leveraged this cross-trait enrichment using conditional FDR analysis and identified 9 novel PD risk loci and 1 novel SCZ locus at conditional FDR < .01. Furthermore, we identified 9 genomic loci jointly associated with PD and SCZ at conjunctional FDR < .05. There was an even distribution of antagonistic and agonistic effect directions among the shared loci, in line with the insignificant genetic correlation between the disorders. Of 67 genes mapped to the shared loci, 65 are expressed in the human brain and show cell type-specific expression profiles.Altogether, the study increases understanding of the genetic architectures underlying SCZ and PD, indicating that common molecular genetic mechanisms may contribute to overlapping pathophysiological and clinical features between the disorders.
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