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首页> 外文期刊>Current Biology: CB >Two Dopaminergic Neurons Signal to the Dorsal Fan-Shaped Body to Promote Wakefulness in Drosophila
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Two Dopaminergic Neurons Signal to the Dorsal Fan-Shaped Body to Promote Wakefulness in Drosophila

机译:两个多巴胺能神经元向背扇形身体发出信号,以促进果蝇的清醒

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摘要

Background The neuronal circuitry underlying sleep is poorly understood. Although dopamine (DA) is thought to play a key role in sleep/wake regulation, the identities of the individual DA neurons and their downstream targets required for this process are unknown. Results Here, we identify a DA neuron in each PPL1 cluster that promotes wakefulness in Drosophila. Imaging data suggest that the activity of these neurons is increased during wakefulness, consistent with a role in promoting arousal. Strikingly, these neurons project to the dorsal fan-shaped body, which has previously been shown to promote sleep. The reduced sleep caused by activation of DA neurons can be blocked by loss of DopR, and restoration of DopR expression in the fan-shaped body can rescue the wake-promoting effects of DA in a DopR mutant background. Conclusions These experiments define a novel arousal circuit at the single-cell level. Because the dorsal fan-shaped body promotes sleep, these data provide a key link between wake and sleep circuits. Furthermore, these findings suggest that inhibition of sleep centers via monoaminergic signaling is an evolutionarily conserved mechanism to promote arousal.
机译:背景睡眠基础的神经元电路知之甚少。尽管多巴胺(DA)被认为在睡眠/觉醒调节中起关键作用,但该过程所需的各个DA神经元及其下游靶标的身份尚不清楚。结果在这里,我们在每个PPL1簇中鉴定出一个DA神经元,该神经元可促进果蝇的觉醒。成像数据表明,这些神经元的活动在清醒过程中增加,与促进唤醒的作用一致。令人惊讶的是,这些神经元投射到背扇形的身体上,先前已经证明它可以促进睡眠。丧失DopR可以阻止DA神经元激活引起的睡眠减少,而扇形体中DopR表达的恢复可以挽救DA在DopR突变体背景下的唤醒作用。结论这些实验在单细胞水平上定义了一种新型的唤醒电路。由于背扇形身体促进睡眠,因此这些数据提供了唤醒和睡眠电路之间的关键链接。此外,这些发现表明通过单胺能信号传导抑制睡眠中枢是促进唤醒的进化保守机制。

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