Biological insights from 108 schizophrenia-associated genetic loci

生物 全基因组关联研究 遗传关联 精神分裂症(面向对象编程) 等位基因 遗传学 精神病 基因 单核苷酸多态性 基因组 医学 基因型 精神科
作者
Stephan Ripke,Benjamin M. Neale,Aiden Corvin,James Walters,Kai-How Farh,Peter Holmans,Phil Lee,Brendan Bulik‐Sullivan,David Collier,Hailiang Huang,Tune H. Pers,Ingrid Agartz,Esben Agerbo,Margot Albus,Madeline Alexander,Farooq Amin,Silviu‐Alin Bacanu,Martin Begemann,Richard A. Belliveau,Judit Bene
出处
期刊:Nature [Nature Portfolio]
卷期号:511 (7510): 421-427 被引量:7482
标识
DOI:10.1038/nature13595
摘要

Schizophrenia is a highly heritable disorder. Genetic risk is conferred by a large number of alleles, including common alleles of small effect that might be detected by genome-wide association studies. Here we report a multi-stage schizophrenia genome-wide association study of up to 36,989 cases and 113,075 controls. We identify 128 independent associations spanning 108 conservatively defined loci that meet genome-wide significance, 83 of which have not been previously reported. Associations were enriched among genes expressed in brain, providing biological plausibility for the findings. Many findings have the potential to provide entirely new insights into aetiology, but associations at DRD2 and several genes involved in glutamatergic neurotransmission highlight molecules of known and potential therapeutic relevance to schizophrenia, and are consistent with leading pathophysiological hypotheses. Independent of genes expressed in brain, associations were enriched among genes expressed in tissues that have important roles in immunity, providing support for the speculated link between the immune system and schizophrenia.
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