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首页> 外文期刊>PLoS Biology >Differentially Timed Extracellular Signals Synchronize Pacemaker Neuron Clocks
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Differentially Timed Extracellular Signals Synchronize Pacemaker Neuron Clocks

机译:差异定时的细胞外信号同步起搏器神经元时钟

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摘要

Synchronized neuronal activity is vital for complex processes like behavior. Circadian pacemaker neurons offer an unusual opportunity to study synchrony as their molecular clocks oscillate in phase over an extended timeframe (24 h). To identify where, when, and how synchronizing signals are perceived, we first studied the minimal clock neural circuit in Drosophila larvae, manipulating either the four master pacemaker neurons (LNvs) or two dorsal clock neurons (DN1s). Unexpectedly, we found that the PDF Receptor (PdfR) is required in both LNvs and DN1s to maintain synchronized LNv clocks. We also found that glutamate is a second synchronizing signal that is released from DN1s and perceived in LNvs via the metabotropic glutamate receptor (mGluRA). Because simultaneously reducing Pdfr and mGluRA expression in LNvs severely dampened Timeless clock protein oscillations, we conclude that the master pacemaker LNvs require extracellular signals to function normally. These two synchronizing signals are released at opposite times of day and drive cAMP oscillations in LNvs. Finally we found that PdfR and mGluRA also help synchronize Timeless oscillations in adult s-LNvs. We propose that differentially timed signals that drive cAMP oscillations and synchronize pacemaker neurons in circadian neural circuits will be conserved across species.
机译:同步神经元活动对于类似行为的复杂过程至关重要。 Ciaradian Pacemaker Neurons提供了一个不寻常的机会,以在延长的时间框架(24小时)上以阶段振荡的同步越野。为了识别感知的位置,何时以及如何同步信号,我们首先研究了德罗斯科菌幼虫的最小时钟神经电路,操纵四个脑卒中神经元(LNV)或两种背钟神经元(DN1S)。出乎意料地,我们发现在LNV和DN1中需要PDF受体(PDFR)以维持同步的LNV时钟。我们还发现谷氨酸是从DN1S释放的第二同步信号,并通过代表胞罗谷氨酸受体(MGLURA)在LNV中感知。因为同时减少LNV中的PDFR和Mglura表达严重阻尼的永恒的时钟蛋白振荡,我们得出结论,主起搏器LNV需要细胞外信号正常运作。这两个同步信号在一天的相反时间释放,并在LNV中驱动营地振荡。最后,我们发现PDFR和MGLURA也有助于在成人S-LNV中同步无线振荡。我们提出了在昼夜神经电路中驱动营地振荡和同步起搏器神经元的差异定时信号将在物种中保存。

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