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Physiological significance of a peripheral tissue circadian clock

机译:外周组织生物钟的生理意义

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Mammals have circadian clocks in peripheral tissues, but there is no direct evidence of their physiological importance. Unlike the su-prachiasmatic nucleus clock that is set by light and drives rest-activity and fasting-feeding cycles, peripheral clocks are set by daily feeding, suggesting that at least some contribute metabolic regulation. The liver plays a well known role in glucose homeosta-sis, and we report here that mice with a liver-specific deletion of Bmal1. an essential clock component, exhibited hypoglycemia restricted to the fasting phase of the daily feeding cycle, exaggerated glucose clearance, and loss of rhythmic expression of hepatic glucose regulatory genes. We conclude that the liver clock is important for buffering circulating glucose in a time-of-day-dependent manner. Our findings suggest that the liver clock contributes to homeostasis by driving a daily rhythm of hepatic glucose export that counterbalances the daily cycle of glucose ingestion resulting from the fasting-feeding cycle.
机译:哺乳动物在周围组织中有昼夜节律,但是没有直接证据表明它们的生理重要性。不同于由光设置的视交叉上核时钟,它驱动休息活动和禁食-进食周期,外围时钟由每日进食设置,这表明至少有一些有助于代谢调节。肝脏在葡萄糖稳态中起着众所周知的作用,我们在此报告具有肝脏特异性Bmal1缺失的小鼠。必需的时钟成分,其低血糖症仅限于每日喂养周期的禁食期,夸大的葡萄糖清除率以及肝葡萄糖调节基因的节律性表达缺失。我们得出结论,肝脏时钟对于以一天中依赖的方式缓冲循环葡萄糖很重要。我们的研究结果表明,肝脏时钟通过驱动肝脏每天输出葡萄糖的节律来促进体内稳态,从而抵消了空腹喂养周期引起的每日葡萄糖摄入周期。

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