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首页> 外文期刊>Biological psychiatry >Genetic variability in the dopamine system (dopamine receptor D4, catechol-O-methyltransferase) modulates neurophysiological responses to gains and losses.
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Genetic variability in the dopamine system (dopamine receptor D4, catechol-O-methyltransferase) modulates neurophysiological responses to gains and losses.

机译:多巴胺系统(多巴胺受体D4,儿茶酚-O-甲基转移酶)的遗传变异性可调节神经生理反应对得失的影响。

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摘要

BACKGROUND: Interindividual variability in the processing of reward might be partially explained by genetic differences in the dopamine system. Here, we study whether brain responses (event-related potentials [ERPs], oscillatory activity) to monetary gains and losses in normal human subjects are modulated as a function of two dopaminergic polymorphisms (catechol-O-methyltransferase [COMT] valine [Val]158methionine [Met], dopamine receptor D4 [DRD4] single nucleotide polymorphism [SNP] -521). METHODS: Forty participants homozygous for the different alleles of both polymorphisms were selected from a larger population to assess the main effects and interactions. Based on the phasic/tonic dopamine hypothesis, we expected increased brain responses to losses and gains in participants homozygous for the Val/Val variant of the COMT polymorphism (related to higher enzyme activity). RESULTS: The medial frontal negativity (MFN) of the ERP and the increase in beta power for gains were enhanced for participants homozygous for the COMT ValVal allele when compared with homozygous MetMet participants. In contrast, no modulations in gain- and loss-related brain activity were found to be a function of the DRD4 SNP -521 polymorphism. CONCLUSIONS: The results demonstrate the role of the COMT Val/Met polymorphism in the processing of reward, consistent with theoretical explanations that suggest the possible role of dopamine in the MFN and beta power increase generation. In addition, the present results might agree with the phasic/tonic dopamine theory that predicts higher phasic dopamine responses in ValVal participants.
机译:背景:奖励过程中的个体差异可能部分由多巴胺系统的遗传差异解释。在这里,我们研究了正常人受试者对金钱收益和损失的大脑反应(事件相关电位[ERPs],振荡活动)是否根据两个多巴胺能多态性(儿茶酚-O-甲基转移酶[COMT]缬氨酸[Val])进行调节158蛋氨酸[Met],多巴胺受体D4 [DRD4]单核苷酸多态性[SNP] -521)。方法:从较大的人群中选择了两个多态性的不同等位基因纯合的参与者,以评估其主要作用和相互作用。基于阶段性/张力性多巴胺假说,我们预期对于COMT多态性的Val / Val变体(与更高的酶活性有关)纯合的参与者,大脑对丢失和增加的反应增加。结果:与纯合的MetMet参与者相比,纯合子的COMT ValVal等位基因参与者的ERP的内侧额叶负性(MFN)和增益的β能量增加得到了增强。相反,没有发现与增益和损失有关的大脑活动的调节是DRD4 SNP -521多态性的函数。结论:结果证明了COMT Val / Met多态性在奖励过程中的作用,与理论解释相符,这表明多巴胺可能在MFN和β功率增加产生中发挥作用。此外,目前的结果可能与预测ValVal参与者中较高的阶段性多巴胺反应的相/张力多巴胺理论相符。

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