The physiological relevance of functional selectivity in dopamine signalling.

International journal of obesity supplements Pub Date : 2014-07-01 Epub Date: 2014-07-08 DOI:10.1038/ijosup.2014.3
N M Urs, M G Caron
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引用次数: 8

Abstract

We sought to determine the role of functionally selective dopamine (DA) signalling pathways (G protein or β-arrestin) in DA-dependent behaviours. Mice that were globally deficient for β-arrestins or mice deficient in GSK3β in D2 receptor (D2R)-expressing neurons were used to investigate the role of functional selectivity in DA-dependent behaviours such as locomotor activity and conditioned place preference (CPP). Wild-type or knockout mice were injected with drugs such as morphine and amphetamine, which are known to increase DA levels in the brain and to induce a hyper-locomotor response and CPP. Unlike β-arrestin1 (βarr1)-deficient mice, mice globally deficient for β-arrestin2 (βarr2) mount a reduced hyperlocomotor response to either morphine or amphetamine. However, mice deficient in GSK3β in D2R-expressing neurons show a significantly reduced locomotor response to only amphetamine but not morphine. Interestingly, all mice tested show a normal CPP response to either morphine or amphetamine. β-arrestin-mediated DA receptor signalling has an important role in the locomotor response, but not CPP, to drugs such as morphine and amphetamine, demonstrating a functional selectivity of DA-dependent behaviours in mice. It is likely that G-protein-dependent signalling through DA receptors mediates the CPP response.

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多巴胺信号功能选择性的生理相关性。
我们试图确定功能选择性多巴胺(DA)信号通路(G蛋白或β-阻滞蛋白)在DA依赖行为中的作用。我们使用D2受体(D2R)表达神经元中β-抑制素缺失或GSK3β缺失的小鼠,研究功能选择性在da依赖行为(如运动活动和条件位置偏好(CPP))中的作用。野生型或基因敲除小鼠注射吗啡和安非他明等药物,这些药物已知会增加大脑中的DA水平,并诱导超运动反应和CPP。与β-arrestin1 (βarr1)缺失的小鼠不同,β-arrestin2 (βarr2)缺失的小鼠对吗啡或安非他明的过度运动反应减弱。然而,在表达d2r的神经元中缺乏GSK3β的小鼠,仅对安非他明而非吗啡的运动反应显著降低。有趣的是,所有接受测试的小鼠对吗啡或安非他明都表现出正常的CPP反应。β-抑制素介导的DA受体信号传导在小鼠对吗啡和安非他明等药物的运动反应中发挥重要作用,但在CPP中不起作用,这表明小鼠对DA依赖行为具有功能选择性。可能是g蛋白依赖的信号通过DA受体介导CPP反应。
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