【2h】

Drosophila D1 dopamine receptor mediates caffeine-induced arousal

机译:果蝇D1多巴胺受体介导咖啡因引起的唤醒

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摘要

The arousing and motor-activating effects of psychostimulants are mediated by multiple systems. In Drosophila, dopaminergic transmission is involved in mediating the arousing effects of methamphetamine, although the neuronal mechanisms of caffeine (CAFF)-induced wakefulness remain unexplored. Here, we show that in Drosophila, as in mammals, the wake-promoting effect of CAFF involves both the adenosinergic and dopaminergic systems. By measuring behavioral responses in mutant and transgenic flies exposed to different drug-feeding regimens, we show that CAFF-induced wakefulness requires the Drosophila D1 dopamine receptor (dDA1) in the mushroom bodies. In WT flies, CAFF exposure leads to downregulation of dDA1 expression, whereas the transgenic overexpression of dDA1 leads to CAFF resistance. The wake-promoting effects of methamphetamine require a functional dopamine transporter as well as the dDA1, and they engage brain areas in addition to the mushroom bodies.
机译:精神刺激药的激发和运动激活作用由多种系统介导。在果蝇中,尽管咖啡因(CAFF)引起的觉醒的神经元机制尚不清楚,但多巴胺能传递参与了甲基苯丙胺的唤醒作用。在这里,我们表明在果蝇中,与在哺乳动物中一样,CAFF的唤醒促进作用涉及腺苷能和多巴胺能系统。通过测量暴露于不同药物喂养方案的突变体和转基因果蝇的行为反应,我们表明CAFF诱导的清醒需要蘑菇体内的果蝇D1多巴胺受体(dDA1)。在野生型果蝇中,CAFF暴露导致dDA1表达下调,而dDA1的转基因过表达导致CAFF抗性。甲基苯丙胺的唤醒促进作用不仅需要功能性的多巴胺转运蛋白,而且还需要dDA1,并且除蘑菇体外,它们还参与大脑区域。

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