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Identification of a Circadian Output Circuit for Rest:Activity Rhythms in Drosophila

机译:确定休息的昼夜节律输出电路:果蝇的活动节律

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Though much is known about the cellular and molecular components of the circadian clock, output pathways that couple clock cells to overt behaviors have not been identified.We conducted a screen for circadian-relevant neurons in the Drosophila brain and report here that cells of the pars intercerebralis (PI), a functional homolog of the mammalian hypothalamus, comprise an important component of the circadian output pathway for rest:activity rhythms. GFP reconstitution across synaptic partners (GRASP) analysis demonstrates that PI cells are connected to the clock through a polysynaptic circuit extending from pacemaker cells to PI neurons. Molecular profiling of relevant PI cells identified the corticotropin-releasing factor (CRF) homolog, DH44, as a circadian output molecule that is specifically expressed by PI neurons and is required for normal rest:activity rhythms. Notably, selective activation or ablation of just six DH44+ PI cells causes arrhythmicity. These findings delineate a circuit through which clock cells can modulate locomotor rhythms.
机译:尽管人们对生物钟的细胞和分子成分知之甚少,但尚未发现将钟细胞与明显行为耦合的输出途径。我们对果蝇大脑中与生物钟相关的神经元进行了筛选,并在此报告了大脑下丘脑(PI)是哺乳动物下丘脑的功能同源物,是昼夜节律活动的昼夜节律输出途径的重要组成部分。跨突触伴侣的GFP重组(GRASP)分析表明,PI细胞通过从起搏器细胞延伸到PI神经元的多突触回路与时钟连接。相关PI细胞的分子谱分析确定了促肾上腺皮质激素释放因子(CRF)同源物DH44,是昼夜节律输出分子,由PI神经元特异性表达,是正常休息:活动节奏所必需的。值得注意的是,仅六个DH44 + PI细胞的选择性激活或消融会导致心律不齐。这些发现勾勒出时钟单元可以通过其调节运动节奏的电路。

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