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首页> 外文期刊>Trends in Neurosciences >Speed control: Cogs and gears that drive the circadian clock
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Speed control: Cogs and gears that drive the circadian clock

机译:速度控制:驱动生物钟的齿轮和齿轮

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摘要

In most organisms, an intrinsic circadian (~24-h) timekeeping system drives rhythms of physiology and behavior. Within cells that contain a circadian clock, specific transcriptional activators and repressors reciprocally regulate each other to generate a basic molecular oscillator. A mismatch of the period generated by this oscillator with the external environment creates circadian disruption, which can have adverse effects on neural function. Although several clock genes have been extensively characterized, a fundamental question remains: how do these genes work together to generate a ~24-h period? Period-altering mutations in clock genes can affect any of multiple regulated steps in the molecular oscillator. In this review, we examine the regulatory mechanisms that contribute to setting the pace of the circadian oscillator.
机译:在大多数生物中,内在的昼夜节律(约24小时)驱动着生理和行为的节奏。在包含生物钟的细胞中,特定的转录激活因子和阻遏物相互调节,以产生基本的分子振荡器。该振荡器产生的周期与外部环境不匹配会造成昼夜节律紊乱,这可能会对神经功能产生不利影响。尽管已经对几种时钟基因进行了广泛表征,但仍然存在一个基本问题:这些基因如何协同工作以产生〜24小时的周期?时钟基因中周期性改变的突变会影响分子振荡器中多个调控步骤中的任何一个。在这篇综述中,我们研究了有助于设定昼夜节律振荡器速度的调节机制。

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