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在持续光照条件下恢复生物钟缺陷小鼠的昼夜节律性。

Restoration of circadian rhythmicity in circadian clock-deficient mice in constant light.

作者信息

Abraham Diya, Dallmann Robert, Steinlechner Stephan, Albrecht Urs, Eichele Gregor, Oster Henrik

机构信息

Max-Planck Institute of Experimental Endocrinology, Hannover, Germany.

出版信息

J Biol Rhythms. 2006 Jun;21(3):169-76. doi: 10.1177/0748730406288040.

Abstract

In mammals, circadian rhythms in behavior and physiology are controlled by a central pacemaker, the SCN, and subordinated clocks throughout the body. On the molecular level, these clocks are based on transcriptional/translational feedback loops involving a set of clock genes that regulate their own transcription. Among the components driving the mammalian circadian clock are the Period 1 and 2 (Per1 and Per2) and Cryptochrome 1 and 2 (Cry1 and Cry2) genes. In the present study, the authors characterize the behavioral and molecular rhythms of Per2/Cry1 double mutant mice under 3 different lighting conditions. In an LD cycle, the activity of these animals is masked by light, while in DD, the mutants lose circadian rhythmicity but exhibit strong ultradian rhythms. In LL of higher intensity, circadian rhythms are restored on the behavioral level with a drastically shortened endogenous period. Furthermore, both in the SCN and in the periphery, clock gene rhythms are restored. Based on these observations and also on the fact that light-mediated induction of Per gene expression is preserved in these mutants, the authors propose a mechanism by which endogenous ultradian rhythms may relay timed light exposure to the SCN, leading to a reinitiation of self-sustained circadian rhythms in LL.

摘要

在哺乳动物中,行为和生理的昼夜节律由一个中央起搏器——视交叉上核(SCN)以及遍布全身的从属时钟控制。在分子水平上,这些时钟基于转录/翻译反馈回路,涉及一组调节自身转录的时钟基因。驱动哺乳动物昼夜节律钟的成分包括周期蛋白1和2(Per1和Per2)以及隐花色素1和2(Cry1和Cry2)基因。在本研究中,作者描述了Per2/Cry1双突变小鼠在3种不同光照条件下的行为和分子节律。在明暗周期(LD)中,这些动物的活动被光掩盖,而在持续黑暗(DD)中,突变体失去昼夜节律,但表现出强烈的超日节律。在更高强度的持续光照(LL)下,行为水平上的昼夜节律得以恢复,且内源性周期大幅缩短。此外,在SCN和外周组织中,时钟基因节律也得以恢复。基于这些观察结果以及这些突变体中光介导的Per基因表达诱导得以保留这一事实,作者提出了一种机制,即内源性超日节律可能将定时的光照传递给SCN,从而导致在LL中重新启动自我维持的昼夜节律。

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