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Cell Simulation for Circadian Rhythm Based on Michaelis-MentenModel

机译:基于Michaelis-MentenModel的昼夜节律细胞模拟

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We report here the development of a cell biological simulation systembased on ordinary differential equations and the results on the simulationof the heat pulses' effects on the circadian rhythm in Drosophila.The simulator implements intra-cellular processes: transcription,translation, transport, modification (association, disassociation),degradation. It simulates the temporal behavior of concentrations ofproteins and mRNA involved in various biological phenomena. Moreover, thesystem is able to determine the exact type of reaction for a givenregulatory pathway. In order to prove the usefulness of the simulator weconstruct a model of the circadian rhythm in Drosophilaand wesimulate the effect of the heat pulses applied in early afternoon on thecircadian clock proteins PER and TIM. Our simulation results show therobustness of the genetic network as well as the important role playedby dClk mRNA in the mechanism of phase-shift responses.
机译:我们在此报告基于常微分方程的细胞生物学模拟系统的开发以及热脉冲对果蝇昼夜节律影响的模拟结果。该模拟器实现了细胞内过程:转录,翻译,转运,修饰(缔合) ,解除关联),降级。它模拟了涉及各种生物学现象的蛋白质和mRNA浓度的时间行为。而且,该系统能够确定给定调节途径的确切反应类型。为了证明模拟器的有效性,我们建立了果蝇昼夜节律的模型,并模拟了午后施加的热脉冲对昼夜节律时钟蛋白PER和TIM的影响。我们的模拟结果表明遗传网络的鲁棒性以及dClk mRNA在相移响应机制中的重要作用。

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