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Association Analysis of 94 Candidate Genes and Schizophrenia-Related Endophenotypes

机译:94种候选基因与精神分裂症相关内表型的关联分析

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摘要

While it is clear that schizophrenia is highly heritable, the genetic basis of this heritability is complex. Human genetic, brain imaging, and model organism studies have met with only modest gains. A complementary research tactic is to evaluate the genetic substrates of quantitative endophenotypes with demonstrated deficits in schizophrenia patients. We used an Illumina custom 1,536-SNP array to interrogate 94 functionally relevant candidate genes for schizophrenia and evaluate association with both the qualitative diagnosis of schizophrenia and quantitative endophenotypes for schizophrenia. Subjects included 219 schizophrenia patients and normal comparison subjects of European ancestry and 76 schizophrenia patients and normal comparison subjects of African ancestry, all ascertained by the UCSD Schizophrenia Research Program. Six neurophysiological and neurocognitive endophenotype test paradigms were assessed: prepulse inhibition (PPI), P50 suppression, the antisaccade oculomotor task, the Letter-Number Span Test, the California Verbal Learning Test-II, and the Wisconsin Card Sorting Test-64 Card Version. These endophenotype test paradigms yielded six primary endophenotypes with prior evidence of heritability and demonstrated schizophrenia-related impairments, as well as eight secondary measures investigated as candidate endophenotypes. Schizophrenia patients showed significant deficits on ten of the endophenotypic measures, replicating prior studies and facilitating genetic analyses of these phenotypes. A total of 38 genes were found to be associated with at least one endophenotypic measure or schizophrenia with an empirical p-value<0.01. Many of these genes have been shown to interact on a molecular level, and eleven genes displayed evidence for pleiotropy, revealing associations with three or more endophenotypic measures. Among these genes were ERBB4 and NRG1, providing further support for a role of these genes in schizophrenia susceptibility. The observation of extensive pleiotropy for some genes and singular associations for others in our data may suggest both converging and independent genetic (and neural) pathways mediating schizophrenia risk and pathogenesis.
机译:显然,精神分裂症是高度可遗传的,但是这种遗传性的遗传基础是复杂的。人类遗传学,大脑成像和模型生物研究仅取得了微不足道的进展。一项补充研究策略是评估精神分裂症患者表现出缺陷的定量内表型的遗传底物。我们使用Illumina定制的1,536-SNP阵列询问精神分裂症的94个功能相关的候选基因,并评估与精神分裂症的定性诊断和精神分裂症的定量内表型的关联。受试者包括219名欧洲血统的精神分裂症患者和正常对照受试者,以及76名非洲血统的精神分裂症患者和正常对照受试者,所有这些均由UCSD精神分裂症研究计划确定。评估了六个神经生理和神经认知内表型测试范式:脉冲抑制(PPI),P50抑制,抗眼动运动任务,字母跨度测试,加利福尼亚语言学习测验II和威斯康星卡片分类测验64版本。这些内表型测试范例产生了六种具有遗传力的先验证据的主要内表型,并显示出与精神分裂症相关的损伤,以及作为候选内表型而研究的八种次要指标。精神分裂症患者在十项内表型指标上显示出明显的缺陷,重复了先前的研究并促进了这些表型的遗传分析。发现总共38个基因与至少一种内表型测量或精神分裂症相关,经验p值<0.01。这些基因中的许多已经显示出在分子水平上相互作用,并且有11个基因显示出多效性的证据,揭示了与三种或更多种内表型测量的关联。这些基因中有ERBB4和NRG1,进一步支持了这些基因在精神分裂症易感性中的作用。在我们的数据中观察到某些基因的广泛多效性和其他基因的奇异关联可能表明介导精神分裂症风险和发病机制的趋同和独立遗传(和神经)途径。

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