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Genetic Overlap Between Schizophrenia and Volumes of Hippocampus Putamen and Intracranial Volume Indicates Shared Molecular Genetic Mechanisms

机译:精神分裂症与海马壳壳和颅内体积的遗传重叠表明共有的分子遗传机制

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摘要

Schizophrenia (SCZ) is associated with differences in subcortical brain volumes and intracranial volume (ICV). However, little is known about the underlying etiology of these brain alterations. Here, we explored whether brain structure volumes and SCZ share genetic risk factors. Using conditional false discovery rate (FDR) analysis, we integrated genome-wide association study (GWAS) data on SCZ (n = 82315) and GWAS data on 7 subcortical brain volumes and ICV (n = 11840). By conditioning the FDR on overlapping associations, this statistical approach increases power to discover genetic loci. To assess the credibility of our approach, we studied the identified loci in larger GWAS samples on ICV (n = 26577) and hippocampal volume (n = 26814). We observed polygenic overlap between SCZ and volumes of hippocampus, putamen, and ICV. Based on conjunctional FDR < 0.05, we identified 2 loci shared between SCZ and ICV implicating genes FOXO3 (rs10457180) and ITIH4 (rs4687658), 2 loci shared between SCZ and hippocampal volume implicating SLC4A10 (rs4664442) and SPATS2L (rs1653290), and 2 loci shared between SCZ and volume of putamen implicating DCC (rs4632195) and DLG2 (rs11233632). The loci shared between SCZ and hippocampal volume or ICV had not reached significance in the primary GWAS on brain phenotypes. Proving our point of increased power, 2 loci did reach genome-wide significance with ICV (rs10457180) and hippocampal volume (rs4664442) in the larger GWAS. Three of the 6 identified loci are novel for SCZ. Altogether, the findings provide new insights into the relationship between SCZ and brain structure volumes, suggesting that their genetic architectures are not independent.
机译:精神分裂症(SCZ)与皮质下脑容量和颅内容量(ICV)的差异有关。但是,对于这些脑部改变的潜在病因知之甚少。在这里,我们探讨了大脑结构量和S​​CZ是否共享遗传风险因素。使用条件错误发现率(FDR)分析,我们整合了SCZ(n = 82315)的全基因组关联研究(GWAS)数据和7个皮质下脑体积和ICV(n = 11840)的GWAS数据。通过以重叠关联为条件来限制FDR,这种统计方法可以提高发现遗传基因座的能力。为了评估我们方法的可信度,我们研究了较大的GWAS样本中ICV(n = 26577)和海马体积(n = 26814)上确定的基因座。我们观察到SCZ与海马,壳壳和ICV的体积之间存在多基因重叠。基于联合FDR <0.05,我们确定了SCZ和ICV涉及基因FOXO3(rs10457180)和ITIH4(rs4687658)之间共有2个基因座,SCZ和海马体积涉及SLC4A10(rs4664442)和SPATS2L(rs1653290)之间共有2个基因座。在SCZ和涉及DCC(rs4632195)和DLG2(rs11233632)的壳聚糖量之间共享。在原发性GWAS中,SCZ与海马体积或ICV之间共享的基因座在脑表型上没有达到重要意义。为证明我们的功能增强点,在较大的GWAS中,ICV(rs10457180)和海马体积(rs4664442)确实有2个基因座达到了全基因组意义。 6个已识别基因座中的3个对于SCZ是新颖的。总之,这些发现为SCZ与大脑结构体积之间的关系提供了新的见解,表明它们的遗传结构不是独立的。

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