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首页> 外文期刊>Neuropsychopharmacology >Multilocus Genetic Profile for Dopamine Signaling Predicts Ventral Striatum Reactivity
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Multilocus Genetic Profile for Dopamine Signaling Predicts Ventral Striatum Reactivity

机译:多巴胺信号传导的多位点遗传概况预测腹侧纹状体反应性。

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Research integrating neuroimaging and molecular genetics has yielded important insights into how variability in brain chemistry predicts individual differences in brain function, behavior and related risk for psychopathology. However, existing studies have been limited by their focus on the independent effects of single polymorphisms with modest impact on brain chemistry. Here, we explored the effects of five functional polymorphisms affecting dopamine (DA) signaling on reward-related ventral striatum (VS) reactivity, measured with BOLD fMRI, in a sample of 69 Caucasians. We also compiled individual multilocus genetic profile scores reflecting the additive effects of alleles conferring relatively increased DA signaling across the five polymorphic loci: DAT1 9-repeat, DRD4 7-repeat, DRD2 -141C Del, DRD2 Taq1A C (A2), and COMT 158Met. These multilocus DA profile scores accounted for 10.9% of the inter-individual variability in reward-related VS reactivity. In contrast, none of the individual polymorphisms accounted for significant variability. Our results show that biologically informed multilocus genetic profiles have unique promise as indices of variability in brain chemistry that may yield advances in mapping individual differences in behaviorally relevant brain function. In turn, such genetic profiles may fuel gene–environment interactions research establishing trajectories of risk for psychopathology.
机译:将神经影像学和分子遗传学结合起来的研究已经产生了重要的见解,说明了脑化学的变异性如何预测脑功能,行为和心理病理风险的个体差异。然而,现有的研究由于局限在单一多态性对大脑化学的适度影响上而受到局限。在这里,我们探讨了在69位高加索人的样本中,影响多巴胺(DA)信号传导的五种功能多态性对与奖励相关的腹侧纹状体(VS)反应性的影响,用BOLD fMRI测量。我们还编制了单个多基因座遗传图谱评分,反映了等位基因在五个多态性基因座上赋予DA信号相对增加的加性效应:DAT1 9重复,DRD4 7重复,DRD2 -141C Del,DRD2 Taq1A C(A2)和COMT 158Met 。这些多位点DA资料得分占奖励相关VS反应性个体间差异的10.9%。相反,没有一个个体多态性引起显着的可变性。我们的结果表明,生物学上已知的多基因座遗传图谱具有独特的前景,可作为大脑化学变异性的指标,可能会在绘制行为相关的大脑功能的个体差异方面取得进展。反过来,这种遗传特征可能会促进基因与环境之间的相互作用,从而建立确定心理病理风险轨迹的研究。

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