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昼夜节律钟和体温。

Circadian Clock and Body Temperature.

机构信息

Department of Systems Biology, Graduate School of Pharmaceutical Sciences, Kyoto University, Kyoto, Japan.

出版信息

Adv Exp Med Biol. 2024;1461:177-188. doi: 10.1007/978-981-97-4584-5_12.

Abstract

The circadian fluctuation of body temperature is one of the most prominent and stable outputs of the circadian clock and plays an important role in maintaining optimal day-night energy homeostasis. The body temperature of homothermic animals is not strictly constant, but it shows daily oscillation within a range of 1-3 °C, which is sufficient to synchronize the clocks of peripheral tissues throughout the body. The thermal entrainment mechanisms of the clock are partly mediated by the action of the heat shock transcription factor and cold-inducible RNA-binding protein-both have the ability to affect clock gene expression. Body temperature in the poikilotherms is not completely passive to the ambient temperature change; they can travel to the place of preferred temperature in a manner depending on the time of their endogenous clock. Based on this behavior-level thermoregulation, flies exhibit a clear body temperature cycle. Noticeably, flies and mice share the same molecular circuit for the controlled body temperature; in both species, the calcitonin receptors participate in the formation of body temperature rhythms during the active phase and exhibit rather specific expression in subsets of clock neurons in the brain. We summarize knowledge on mutual relationships between body temperature regulation and the circadian clock.

摘要

体温的昼夜波动是生物钟最显著和稳定的输出之一,在维持最佳的日夜能量平衡中发挥着重要作用。恒温动物的体温并非严格恒定,而是在 1-3°C 的范围内呈现每日波动,这足以使全身的外周组织时钟同步。时钟的热驯化机制部分是通过热休克转录因子和冷诱导 RNA 结合蛋白的作用介导的——这两者都有影响生物钟基因表达的能力。变温动物的体温对环境温度变化并不是完全被动的;它们可以根据内源性时钟的时间移动到偏好温度的地方。基于这种行为水平的体温调节,果蝇表现出明显的体温周期。值得注意的是,果蝇和小鼠共享用于控制体温的相同分子回路;在这两个物种中,降钙素受体参与活动期体温节律的形成,并在大脑中的时钟神经元亚群中表现出相当特异的表达。我们总结了体温调节和生物钟之间相互关系的知识。

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