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两种细胞节律耦合产生的多节律性。

Multi-rhythmicity generated by coupling two cellular rhythms.

机构信息

1 Center for Systems Biology, School of Mathematical Sciences, Soochow University , Suzhou , People's Republic of China.

2 Unité de Chronobiologie Théorique, Faculté des Sciences, Université Libre de Bruxelles (ULB) , Brussels , Belgium.

出版信息

J R Soc Interface. 2019 Mar 29;16(152):20180835. doi: 10.1098/rsif.2018.0835.

Abstract

The cell cycle and the circadian clock represent two major cellular rhythms, which are coupled because the circadian clock governs the synthesis of several proteins of the network that drives the mammalian cell cycle. Analysis of a detailed model for these coupled cellular rhythms previously showed that the cell cycle can be entrained at the circadian period of 24 h, or at a period of 48 h, depending on the autonomous period of the cell cycle and on the coupling strength. We show by means of numerical simulations that multiple stable periodic regimes, i.e. multi-rhythmicity, may originate from the coupling of the two cellular rhythms. In these conditions, the cell cycle can evolve to any one of two (birhythmicity) or three stable periodic regimes (trirhythmicity). When applied at the right phase, transient perturbations of appropriate duration and magnitude can induce the switch between the different oscillatory states. Such switching is characterized by final state sensitivity, which originates from the complex structure of the attraction basins. By providing a novel instance of multi-rhythmicity in a realistic model for the coupling of two major cellular rhythms, the results throw light on the conditions in which multiple stable periodic regimes may coexist in biological systems.

摘要

细胞周期和生物钟代表两种主要的细胞节律,它们是耦合的,因为生物钟控制着驱动哺乳动物细胞周期的网络中的几种蛋白质的合成。对这些耦合细胞节律的详细模型的分析表明,细胞周期可以在 24 小时的生物钟周期或 48 小时的周期中被驯化,这取决于细胞周期的自主周期和耦合强度。我们通过数值模拟表明,多个稳定的周期性状态,即多节奏性,可能源于两个细胞节律的耦合。在这些条件下,细胞周期可以进化到两种(双节奏性)或三种稳定的周期性状态(三节奏性)之一。当在正确的相位施加时,具有适当持续时间和幅度的短暂扰动可以诱导不同振荡状态之间的切换。这种切换的特征是最终状态敏感性,它源于吸引盆地的复杂结构。通过在两个主要细胞节律耦合的现实模型中提供多节奏性的新实例,结果阐明了多个稳定周期性状态可能在生物系统中共存的条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/702f/6451392/bebeb8a24665/rsif20180835-g1.jpg

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