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The mammalian circadian system: a hierarchical multi-oscillator structure for generating circadian rhythm

机译:哺乳动物昼夜节律系统:用于产生昼夜节律的分级多振荡器结构

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The circadian nature of physiology and behavior is regulated by a circadian clock that generates intrinsic rhythms with a periodicity of approximately 24??h. The mammalian circadian system is composed of a hierarchical multi-oscillator structure, with the central clock located in the suprachiasmatic nucleus (SCN) of the hypothalamus regulating the peripheral clocks found throughout the body. In the past two decades, key clock genes have been discovered in mammals and shown to be interlocked in transcriptional and translational feedback loops. At the cellular level, each cell is governed by its own independent clock; and yet, these cellular circadian clocks in the SCN form regional oscillators that are further coupled to one another to generate a single rhythm for the tissue. The oscillatory coupling within and between the regional oscillators appears to be critical for the extraordinary stability and the wide range of adaptability of the circadian clock, the mechanism of which is now being elucidated with newly advanced molecular tools.
机译:生理和行为的昼夜节律性由一个昼夜节律调节,该节律产生内在节律,周期约为24 ?? h。哺乳动物昼夜节律系统由分层的多振荡器结构组成,中央时钟位于下丘脑的上眼睑上核(SCN)中,调节整个人体的外围时钟。在过去的二十年中,已在哺乳动物中发现了关键的时钟基因,并显示它们与转录和翻译反馈环互锁。在蜂窝级别,每个单元都由其自己的独立时钟控制。然而,SCN中的这些细胞生物钟形成了区域振荡器,它们进一步相互耦合以为组织产生单一的节律。区域振荡器内部和之间的振荡耦合对于生物钟的非凡稳定性和广泛的适应性显得至关重要,现在已经通过新的先进分子工具阐明了其机理。

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