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首页> 外文期刊>Neuron >Neuromedin S-Producing Neurons Act as Essential Pacemakers in the Suprachiasmatic Nucleus to Couple Clock Neurons and Dictate Circadian Rhythms
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Neuromedin S-Producing Neurons Act as Essential Pacemakers in the Suprachiasmatic Nucleus to Couple Clock Neurons and Dictate Circadian Rhythms

机译:产生Neuromedin S的神经元在视交叉上核中起着必不可少的起搏器作用,以耦合时钟神经元和听写昼夜节律

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摘要

Circadian behavior in mammals is orchestrated by neurons within the suprachiasmatic nucleus (SCN), yet the neuronal population necessary for the generation of timekeeping remains unknown. We show that a subset of SCN neurons expressing the neuropeptide neuromedin S (NMS) plays an essential role in the generation of daily rhythms in behavior. We demonstrate that lengthening period within Nms neurons is sufficient to lengthen period of the SCN and behavioral circadian rhythms. Conversely, mice without a functional molecular clock within Nms neurons lack synchronous molecular oscillations and coherent behavioral daily rhythms. Interestingly, we found that mice lacking Nms and its closely related paralog, Nmu, do not lose in vivo circadian rhythms. However, blocking vesicular transmission from Nms neurons with intact cell-autonomous clocks disrupts the timing mechanisms of the SCN, revealing that Nms neurons define a subpopulation of pacemakers that control SCN network synchrony and in vivo circadian rhythms through intercellular synaptic transmission.
机译:哺乳动物的昼夜节律行为是由视交叉上核(SCN)内的神经元所编排的,但是产生计时所需的神经元种群仍然未知。我们显示,表达神经肽Neuromedin S(NMS)的SCN神经元子集在行为的日常节奏的产生中起着至关重要的作用。我们证明在Nms神经元内延长周期足以延长SCN和行为昼夜节律的周期。相反,在Nms神经元内没有功能分子时钟的小鼠缺乏同步的分子振荡和连贯的日常行为节律。有趣的是,我们发现缺少Nms及其密切相关的旁系同源物Nmu的小鼠不会丢失体内的昼夜节律。但是,用完整的细胞自主时钟来阻止Nms神经元的囊泡传输会破坏SCN的计时机制,这表明Nms神经元定义了起搏器的一部分,这些起搏器通过细胞间突触传递来控制SCN网络的同步性和体内昼夜节律。

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