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诱发脑电图振荡与CHRM2受体基因多态性的连锁及连锁不平衡:对人类脑动力学和认知的影响

Linkage and linkage disequilibrium of evoked EEG oscillations with CHRM2 receptor gene polymorphisms: implications for human brain dynamics and cognition.

作者信息

Jones Kevin A, Porjesz Bernice, Almasy Laura, Bierut Laura, Goate Alison, Wang Jen C, Dick Danielle M, Hinrichs Anthony, Kwon Jennifer, Rice John P, Rohrbaugh John, Stock Heather, Wu William, Bauer Lance O, Chorlian David B, Crowe Raymond R, Edenberg Howard J, Foroud Tatiana, Hesselbrock Victor, Kuperman Samuel, Nurnberger John, O'Connor Sean J, Schuckit Marc A, Stimus Arthur T, Tischfield Jay A, Reich Theodore, Begleiter Henri

机构信息

Department of Psychiatry, Neurodynamics Laboratory, SUNY Health Science Center, 450 Clarkson Avenue, Box 1203, Brooklyn, NY 11203, USA.

出版信息

Int J Psychophysiol. 2004 Jul;53(2):75-90. doi: 10.1016/j.ijpsycho.2004.02.004.

Abstract

Event-related oscillations (ERO) offer an alternative theoretical and methodological approach to the analysis of event-related EEG responses. The P300 event-related potential (ERP) is elicited through the superposition of the delta (1-3 Hz) and theta (3-7 Hz) band oscillatory responses. The cholinergic neurotransmitter system has a key function in modulating excitatory post-synaptic potentials caused by glutamate, and therefore influences P300 generation and the underlying oscillatory responses. Here we report significant linkage and linkage disequilibrium between target case frontal theta band, visual evoked brain oscillations and a single nucleotide polymorphism (SNP) from the cholinergic muscarinic receptor gene (CHRM2) on chromosome 7. We also demonstrate significant linkage disequilibrium between CHRM2 SNPs and target case parietal delta band visual evoked oscillations (LD P<0.001). These findings were not observed for the equivalent non-target case data, suggesting a role for the CHRM2 gene in higher cognitive processing in humans.

摘要

事件相关振荡(ERO)为事件相关脑电图反应的分析提供了一种替代性的理论和方法。P300事件相关电位(ERP)是通过δ(1 - 3赫兹)和θ(3 - 7赫兹)频段振荡反应的叠加而产生的。胆碱能神经递质系统在调节由谷氨酸引起的兴奋性突触后电位方面具有关键作用,因此会影响P300的产生以及潜在的振荡反应。在此,我们报告了目标病例额叶θ频段、视觉诱发脑振荡与7号染色体上胆碱能毒蕈碱受体基因(CHRM2)的一个单核苷酸多态性(SNP)之间存在显著的连锁和连锁不平衡。我们还证明了CHRM2 SNPs与目标病例顶叶δ频段视觉诱发振荡之间存在显著的连锁不平衡(连锁不平衡P<0.001)。在等效的非目标病例数据中未观察到这些结果,这表明CHRM2基因在人类高级认知加工中发挥作用。

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