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In Vivo Monitoring of Multi-Unit Neural Activity in the Suprachiasmatic Nucleus Reveals Robust Circadian Rhythms in Period1−/− Mice

机译:上视交叉核中多单元神经活动的体内监测揭示了期间1-/-小鼠的稳健的昼夜节律。

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摘要

The master pacemaker in the suprachiasmatic nucleus (SCN) controls daily rhythms of behavior in mammals. C57BL/6J mice lacking Period1 (Per1−/−) are an anomaly because their SCN molecular rhythm is weak or absent in vitro even though their locomotor activity rhythm is robust. To resolve the contradiction between the in vitro and in vivo circadian phenotypes of Per1−/− mice, we measured the multi-unit activity (MUA) rhythm of the SCN neuronal population in freely-behaving mice. We found that in vivo Per1−/− SCN have high-amplitude MUA rhythms, demonstrating that the ensemble of neurons is driving robust locomotor activity in Per1−/− mice. Since the Per1−/− SCN electrical activity rhythm is indistinguishable from wild-types, in vivo physiological factors or coupling of the SCN to a known or unidentified circadian clock(s) may compensate for weak endogenous molecular rhythms in Per1−/− SCN. Consistent with the behavioral light responsiveness of Per1 −/− mice, in vivo MUA rhythms in Per1 −/− SCN exhibited large phase shifts in response to light. Since the acute response of the MUA rhythm to light in Per1−/− SCN is equivalent to wild-types, an unknown mechanism mediates enhanced light responsiveness of Per1−/− mice. Thus, Per1−/− mice are a unique model for investigating the component(s) of the in vivo environment that confers robust rhythmicity to the SCN as well as a novel mechanism of enhanced light responsiveness.
机译:视交叉上核(SCN)的主起搏器控制着哺乳动物的日常行为节律。缺乏Period1(Per1 -/-)的C57BL / 6J小鼠是一个异常,因为它们的SCN分子节律较弱或在体外不存在,即使它们的运动活动节律很强。为了解决Per1 -// 小鼠的体外和体内昼夜节律表型之间的矛盾,我们测量了行为自由的小鼠中SCN神经元群体的多单位活性(MUA)节律。我们发现,体内Per1 -/- SCN具有高幅度MUA节律,表明神经元的整体正在驱动Per1 -/-小鼠中强大的运动活动。由于Per1 -/- SCN的电活动节律与野生型没有区别,因此体内的生理因素或SCN与已知或未知的生物钟的耦合可能补偿了较弱的内源性分子节律在Per1 -/- SCN中。与Per1 -/-小鼠的行为光反应性一致,Per1 -/- SCN的体内MUA节律对光有较大的相移。由于Per1 -/- SCN中MUA节奏对光的急性反应与野生型相当,因此未知的机制介导了Per1 -/-小鼠增强的光反应性。因此, Per1 -// 小鼠是一种独特的模型,用于研究 in vivo 环境的组成部分,该组件赋予动物强烈的节奏感SCN以及增强光响应性的新机制。

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