Department of Neuropharmacology, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, Japan.
PLoS One. 2022 Nov 21;17(11):e0277918. doi: 10.1371/journal.pone.0277918. eCollection 2022.
Sleep is required to maintain physiological functions and is widely conserved across species. To understand the sleep-regulatory mechanisms, sleep-regulating genes and neuronal circuits are studied in various animal species. In the sleep-regulatory neuronal circuits in Drosophila melanogaster, the dorsal fan-shaped body (dFB) is a major sleep-promoting region. However, other sleep-regulating neuronal circuits were not well identified. We recently found that arousal-promoting T1 dopamine neurons, interneurons of protocerebral bridge (PB) neurons, and PB neurons innervating the ventral part of the FB form a sleep-regulatory circuit, which we named "the PB-FB pathway". In the exploration of other sleep-regulatory circuits, we found that activation of FB interneurons, also known as pontine neurons, promoted arousal. We then found that FB interneurons had possible connections with the PB-FB pathway and dFB neurons. Ca2+ imaging revealed that FB interneurons received excitatory signals from the PB-FB pathway. We also demonstrated the possible role of FB interneurons to regulate dFB neurons. These results suggested the role of FB interneurons in sleep regulation.
睡眠对于维持生理功能至关重要,并且在各种物种中广泛存在。为了理解睡眠调节机制,研究人员在各种动物物种中研究了调节睡眠的基因和神经元回路。在果蝇的睡眠调节神经元回路中,背扇形体(dFB)是主要的促进睡眠区域。然而,其他的睡眠调节神经元回路尚未被很好地识别。我们最近发现,促觉醒的 T1 多巴胺神经元、protocerebral bridge(PB)神经元的中间神经元以及投射到 FB 腹侧部分的 PB 神经元形成了一个睡眠调节回路,我们将其命名为“PB-FB 通路”。在探索其他睡眠调节回路时,我们发现 FB 中间神经元(也称为脑桥神经元)的激活可以促进觉醒。然后我们发现 FB 中间神经元可能与 PB-FB 通路和 dFB 神经元有联系。钙成像显示 FB 中间神经元接收来自 PB-FB 通路的兴奋性信号。我们还证明了 FB 中间神经元调节 dFB 神经元的可能性。这些结果表明 FB 中间神经元在睡眠调节中发挥作用。