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Circadian rhythms in neuronal activity propagate through output circuits

机译:神经元活动的昼夜节律通过输出回路传播

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Twenty-four hour rhythms in behavior are organized by a network of circadian pacemaker neurons. Rhythmic activity in this network is generated by intrinsic rhythms in clock neuron physiology and communication between clock neurons. However, it is poorly understood how the activity of a small number of pacemaker neurons is translated into rhythmic behavior of the whole animal. To understand this, we screened for signals that could identify circadian output circuits in Drosophila melanogaster. We found that leucokinin neuropeptide (LK) and its receptor (LK-R) were required for normal behavioral rhythms. This LK/LK-R circuit connects pacemaker neurons to brain areas that regulate locomotor activity and sleep. Our experiments revealed that pacemaker neurons impose rhythmic activity and excitability on LK- and LK-R-expressing neurons. We also found pacemaker neuron-dependent activity rhythms in a second circadian output pathway controlled by DH44 neuropeptide-expressing neurons. We conclude that rhythmic clock neuron activity propagates to multiple downstream circuits to orchestrate behavioral rhythms.
机译:昼夜节律起搏器神经元网络组织了24小时的行为节律。该网络中的节律活动是由时钟神经元生理中的固有节律以及时钟神经元之间的通信产生的。但是,人们很少了解如何将少量起搏器神经元的活动转化为整个动物的节律行为。为了理解这一点,我们筛选了可识别果蝇黑昼夜生物体输出电路的信号。我们发现正常行为节律需要白细胞分裂素神经肽(LK)及其受体(LK-R)。 LK / LK-R电路将起搏器神经元连接到调节运动活动和睡眠的大脑区域。我们的实验表明,起搏器神经元对表达LK和LK-R的神经元施加节律性活动和兴奋性。我们还发现在由DH44表达神经肽的神经元控制的第二个生物钟输出途径中,起搏器神经元依赖性活动节律。我们得出结论,节律性时钟神经元活动会传播到多个下游回路,以协调行为节律。

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