Specific Glial Functions Contribute to Schizophrenia Susceptibility

精神分裂症(面向对象编程) 神经科学 星形胶质细胞 少突胶质细胞 生物 全基因组关联研究 遗传关联 心理学 髓鞘 遗传学 基因 精神科 基因型 中枢神经系统 单核苷酸多态性
作者
A. Goudriaan,Christiaan de Leeuw,Stephan Ripke,Christina M. Hultman,Pamela Sklar,P. F. Sullivan,August B. Smit,Daniëlle Posthuma,Mark H. G. Verheijen
出处
期刊:Schizophrenia Bulletin [Oxford University Press]
卷期号:40 (4): 925-935 被引量:116
标识
DOI:10.1093/schbul/sbt109
摘要

Schizophrenia is a highly polygenic brain disorder. The main hypothesis for disease etiology in schizophrenia primarily focuses on the role of dysfunctional synaptic transmission. Previous studies have therefore directed their investigations toward the role of neuronal dysfunction. However, recent studies have shown that apart from neurons, glial cells also play a major role in synaptic transmission. Therefore, we investigated the potential causal involvement of the 3 principle glial cell lineages in risk to schizophrenia. We performed a functional gene set analysis to test for the combined effects of genetic variants in glial type-specific genes for association with schizophrenia. We used genome-wide association data from the largest schizophrenia sample to date, including 13 689 cases and 18 226 healthy controls. Our results show that astrocyte and oligodendrocyte gene sets, but not microglia gene sets, are associated with an increased risk for schizophrenia. The astrocyte and oligodendrocyte findings are related to astrocyte signaling at the synapse, myelin membrane integrity, glial development, and epigenetic control. Together, these results show that genetic alterations underlying specific glial cell type functions increase susceptibility to schizophrenia and provide evidence that the neuronal hypothesis of schizophrenia should be extended to include the role of glia.
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