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生理机能与生物钟蛋白的串扰。

The crosstalk between physiology and circadian clock proteins.

机构信息

Laboratory of Molecular Chronobiology, Douglas Mental Health University Institute, 6875 LaSalle Blvd., Montreal, QC, Canada.

出版信息

Chronobiol Int. 2009 Dec;26(8):1479-513. doi: 10.3109/07420520903497575.

Abstract

In mammals, many physiological processes present diurnal variations, and most of these rhythms persist even in absence of environmental timing cues. These endogenous circadian rhythms are generated by intracellular timing mechanisms termed circadian clocks. In mammals, the master clock is located in the suprachiasmatic nuclei (SCN), but other brain regions and most peripheral tissues contain circadian clocks. These clocks are responsive to environmental cues, in particular light/dark and feeding/fasting cycles. In the last few years, tissue-specific knock-out and transgenic mouse models have helped to define the physiological roles of specific clocks. Recent reports indicate that the clock-physiology connection is bi-directional, and physiological cues, in particular the energetic status of the cell, can feed into the clockwork. This effect was discovered unexpectedly in molecular analyses of clock protein modifications. Beyond the positive and negative transcription/translation feedback loops of the molecular oscillator lies another level of complexity. Post-translational modifications of clock proteins are both critical for the timing of the clock feedback mechanism and to provide regulatory fine-tuning. This review summarizes recent advances in our understanding of the roles of peripheral clocks and of post-translational modifications occurring on clock proteins. These two matters are at the intersection of physiology, metabolism, and the circadian system.

摘要

在哺乳动物中,许多生理过程呈现出昼夜节律变化,而且即使没有环境定时线索,这些节律大多仍然存在。这些内源性的昼夜节律是由称为生物钟的细胞内计时机制产生的。在哺乳动物中,主钟位于视交叉上核(SCN),但其他脑区和大多数外周组织都含有生物钟。这些时钟对环境线索敏感,特别是光/暗和进食/禁食周期。在过去的几年中,组织特异性敲除和转基因小鼠模型有助于确定特定时钟的生理作用。最近的报告表明,时钟-生理学联系是双向的,生理线索,特别是细胞的能量状态,可以反馈到时钟机制中。这一效应是在对时钟蛋白修饰的分子分析中意外发现的。除了分子振荡器的正、负转录/翻译反馈环之外,还有另一个复杂层次。时钟蛋白的翻译后修饰对于时钟反馈机制的定时和提供调节微调都至关重要。本文综述了我们对周围时钟的作用以及时钟蛋白上发生的翻译后修饰的理解的最新进展。这两个问题处于生理学、代谢和昼夜节律系统的交叉点。

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