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生物钟模型中的非线性现象。

Nonlinear phenomena in models of the circadian clock.

作者信息

van Soest Inge, Del Olmo Marta, Schmal Christoph, Herzel Hanspeter

机构信息

Institute for Theoretical Biology, Charité and Humboldt Universität zu Berlin, 10115 Berlin, Germany.

Master Program Neuroscience and Cognition, Utrecht University, Utrecht, The Netherlands.

出版信息

J R Soc Interface. 2020 Sep;17(170):20200556. doi: 10.1098/rsif.2020.0556. Epub 2020 Sep 30.

Abstract

The mammalian circadian clock is well-known to be important for our sleep-wake cycles, as well as other daily rhythms such as temperature regulation, hormone release or feeding-fasting cycles. Under normal conditions, these daily cyclic events follow 24 h limit cycle oscillations, but under some circumstances, more complex nonlinear phenomena, such as the emergence of chaos, or the splitting of physiological dynamics into oscillations with two different periods, can be observed. These nonlinear events have been described at the organismic and tissue level, but whether they occur at the cellular level is still unknown. Our results show that period-doubling, chaos and splitting appear in different models of the mammalian circadian clock with interlocked feedback loops and in the absence of external forcing. We find that changes in the degradation of clock genes and proteins greatly alter the dynamics of the system and can induce complex nonlinear events. Our findings highlight the role of degradation rates in determining the oscillatory behaviour of clock components, and can contribute to the understanding of molecular mechanisms of circadian dysregulation.

摘要

众所周知,哺乳动物的生物钟对我们的睡眠 - 觉醒周期以及其他日常节律(如体温调节、激素释放或进食 - 禁食周期)很重要。在正常情况下,这些日常周期性事件遵循24小时极限环振荡,但在某些情况下,可以观察到更复杂的非线性现象,如混沌的出现,或生理动态分裂为具有两个不同周期的振荡。这些非线性事件已在生物体和组织水平上得到描述,但它们是否发生在细胞水平上仍然未知。我们的结果表明,在具有联锁反馈回路且无外部强迫的哺乳动物生物钟的不同模型中出现了倍周期、混沌和分裂现象。我们发现生物钟基因和蛋白质降解的变化极大地改变了系统的动态,并可诱导复杂的非线性事件。我们的研究结果突出了降解速率在决定生物钟组件振荡行为中的作用,并有助于理解昼夜节律失调的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6981/7536064/cdebe78acc2e/rsif20200556-g1.jpg

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