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首页> 外文期刊>Journal of Neurophysiology >Daily rhythms in locomotor circuits in Drosophila involve PDF
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Daily rhythms in locomotor circuits in Drosophila involve PDF

机译:果蝇运动回路的日常节律涉及PDF

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The neuro-peptide pigment-dispersing factor (PDF) has been studied extensively in Drosophila, and its role in circadian time-keeping has been firmly established. The role of PDF outside of the clock circuit, however, is poorly understood. A recent study suggested that PDF may act on the ellipsoid body (EB) to link the clock and sleep/activity circuits. We performed whole brain optical imaging with the fluorescence resonance energy transfer (FRET)-based cAMP sensor Epac1-camps expressed under control of the pdfR promoter to address how the clock and sleep deprivation affect the physiology of these cells. Basal cAMP levels in EB were regulated both by PDF and synaptic inputs that are controlled by the circadian clock. Acute application of PDF to the brain caused a significant, and PDF-receptor-dependent, increase in cAMP in EB cells. Application of TTX to block circuit-mediated effects of PDF increased the morning response but not the response at night, implying the existence of a temporally regulated, PDF-stimulated input that blocks cAMP generation. ACh produced both direct (TTX-insensitive) and indirect (TTX-sensitive) increases in cAMP during the day but was totally TTX-insensitive at night, indicating that ACh-stimulated inputs to the EB are suppressed at night. Sleep deprivation did not affect the cAMP responses of these cells to either PDF or ACh. These results suggest a novel role for PDF as a modulator of activity outside of the clock circuit. By elucidating the mechanisms by which the neuropeptide PDF act on its target cells, our work contributes to our understating of how the central clock coordinates activity and sleep.
机译:在果蝇中已经广泛研究了神经肽颜料分散因子(PDF),并已牢固确立了其在昼夜节律中的作用。但是,人们对PDF在时钟电路之外的作用知之甚少。最近的一项研究表明,PDF可能作用于椭球体(EB),以将时钟与睡眠/活动电路联系起来。我们在基于pdfR启动子的控制下表达的基于荧光共振能量转移(FRET)的cAMP传感器Epac1-camps进行了全脑光学成像,以解决时钟和睡眠剥夺如何影响这些细胞的生理。 EB中的基础cAMP水平由PDF和由昼夜节律时钟控制的突触输入调节。 PDF在大脑上的急性应用导致EB细胞中cAMP的显着增加,并且依赖PDF受体。将TTX应用于阻断电路介导的PDF的作用会增加早晨的反应,但不会增加夜间的反应,这意味着存在受时间调节,受PDF刺激的输入,从而阻止cAMP的产生。在白天,ACh在cAMP中产生直接(TTX不敏感)和间接(TTX敏感)增加,但在晚上完全对TTX不敏感,这表明ACh刺激的EB输入在晚上被抑制。睡眠剥夺不影响这些细胞对PDF或ACh的cAMP反应。这些结果表明PDF作为时钟电路外部活动调制器的新颖作用。通过阐明神经肽PDF作用于其靶细胞的机制,我们的工作有助于我们低估了中央时钟如何协调活动和睡眠。

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