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首页> 外文期刊>Schizophrenia bulletin >Multivariate Genetic Correlates of the Auditory Paired Stimuli-Based P2 Event-Related Potential in the Psychosis Dimension From the BSNIP Study
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Multivariate Genetic Correlates of the Auditory Paired Stimuli-Based P2 Event-Related Potential in the Psychosis Dimension From the BSNIP Study

机译:基于BSNIP研究的精神病维度中基于听觉配对刺激的P2事件相关电位的多元遗传相关性

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Objective: The complex molecular etiology of psychosis in schizophrenia (SZ) and psychotic bipolar disorder (PBP) is not well defined, presumably due to their multifactorial genetic architecture. Neurobiological correlates of psychosis can be identified through genetic associations of intermediate phenotypes such as event-related potential (ERP) from auditory paired stimulus processing (APSP). Various ERP components of APSP are heritable and aberrant in SZ, PBP and their relatives, but their multivariate genetic factors are less explored. Methods: We investigated the multivariate polygenic association of ERP from 64-sensor auditory paired stimulus data in 149 SZ, 209 PBP probands, and 99 healthy individuals from the multisite Bipolar-Schizophrenia Network on Intermediate Phenotypes study. Multivariate association of 64-channel APSP waveforms with a subset of 16 999 single nucleotide polymorphisms (SNPs) (reduced from 1 million SNP array) was examined using parallel independent component analysis (Para-ICA). Biological pathways associated with the genes were assessed using enrichment-based analysis tools. Results: Para-ICA identified 2 ERP components, of which one was significantly correlated with a genetic network comprising multiple linearly coupled gene variants that explained similar to 4% of the ERP phenotype variance. Enrichment analysis revealed epidermal growth factor, endocannabinoid signaling, glutamatergic synapse and maltohexaose transport associated with P2 component of the N1-P2 ERP waveform. This ERP component also showed deficits in SZ and PBP. Conclusions: Aberrant P2 component in psychosis was associated with gene networks regulating several fundamental biologic functions, either general or specific to nervous system development. The pathways and processes underlying the gene clusters play a crucial role in brain function, plausibly implicated in psychosis.
机译:目的:精神分裂症(SZ)和精神病性双相情感障碍(PBP)的精神病的复杂分子病因尚未明确定义,可能是由于其多因素遗传结构。精神病的神经生物学相关性可以通过中间表型的遗传关联来识别,例如来自听觉配对刺激处理(APSP)的事件相关电位(ERP)。 APSP的各种ERP组件在深圳,PBP及其亲属中都是可遗传的且异常的,但是对它们的多元遗传因素的研究较少。方法:我们从中性表型多站点双相精神分裂症网络的149个SZ,209个PBP先证者和99个健康个体的64个传感器听觉配对刺激数据中调查了ERP的多变量多基因关联。使用平行独立成分分析(Para-ICA),检查了64通道APSP波形与16999个单核苷酸多态性(SNP)(从100万个SNP阵列中减少)的子集的多变量关联。使用基于富集的分析工具评估了与基因相关的生物途径。结果:Para-ICA确定了2个ERP组件,其中一个与包含多个线性偶联基因变体的遗传网络显着相关,这些基因变体解释了相似于ERP表型变异的4%。富集分析显示表皮生长因子,内源性大麻素信号传导,谷氨酸能突触和麦芽六糖转运与N1-P2 ERP波形的P2成分有关。此ERP组件还显示出SZ和PBP的缺陷。结论:精神病中异常的P2成分与调节几种基本生物学功能的基因网络有关,这些生物学功能对神经系统发育具有一般性或特异性。基因簇的潜在通路和过程在脑功能中起着至关重要的作用,可能与精神病有关。

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