Coupling of the cell cycle and metabolism in yeast cell-cycle-related oscillations via resource criticality and checkpoint gating

Q3 Mathematics Letters in Biomathematics Pub Date : 2018-05-11 DOI:10.1080/23737867.2018.1456366
Luke Morgan, Gregory Moses, T. Young
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引用次数: 4

Abstract

Abstract We investigate the possibility that slow metabolic, cell-cycle-related oscillations in yeast and associated temporal clustering of cells within the cell cycle could be due to an interplay between near-critical metabolism and cell cycle checkpoints. We construct a dynamical model of the cell cycles of a large culture of cells that incorporates checkpoint gating and metabolic mode switching that are triggered by resource thresholds. We investigate the model analytically and prove that there exist open sets of parameter values for which the model possesses stable periodic solutions that exhibit metabolic oscillations with cell cycle clustering. Simulations of the model give evidence that such solutions exist for large sets of parameter values. This demonstrates that checkpoint gating coupled with critical resources can be a robust mechanism for producing the phenomena observed in experiments.
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酵母细胞周期相关振荡中细胞周期和代谢的耦合通过资源临界性和检查点门控
我们研究了酵母中代谢缓慢、细胞周期相关的振荡和细胞周期内细胞相关的时间聚集的可能性,这可能是由于近临界代谢和细胞周期检查点之间的相互作用。我们构建了一个大型细胞培养细胞周期的动态模型,该模型包含由资源阈值触发的检查点门控和代谢模式切换。我们对该模型进行了分析研究,并证明存在参数值的开放集,该模型具有稳定的周期解,并表现出随细胞周期聚类的代谢振荡。模型的模拟证明,对于大的参数值集,存在这样的解。这表明,与关键资源相结合的检查点门控可以成为产生实验中观察到的现象的强大机制。
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来源期刊
Letters in Biomathematics
Letters in Biomathematics Mathematics-Statistics and Probability
CiteScore
2.00
自引率
0.00%
发文量
0
审稿时长
14 weeks
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