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Stochastic modelling of nucleocytoplasmic oscillations of the transcription factor Msn2 in yeast

机译:酵母中转录因子Msn2的核质振荡的随机建模

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摘要

Stress induces oscillatory nucleocytoplasmic shuttling of the transcription factor Msn2 in yeast. The subcellular localization of Msn2 is controlled by the cAMP-dependent protein kinase, PKA. Recent experimental observations corroborated by a deterministic computational model for the cAMP–PKA pathway in yeast suggest that the oscillatory dynamics of Msn2 results from the periodic activation of PKA associated with stress-induced oscillations in the level of cAMP. The model accounts for the occurrence of oscillations of Msn2 in a window bounded by two critical values of the stress intensity. In contrast to the rather irregular oscillatory behaviour observed within single yeast cells by means of fluorescence measurements, the deterministic model can only produce a regular pattern of oscillations. To investigate whether the experimentally observed variability could be explained by molecular noise due to the small number of molecules involved in the oscillatory mechanism, we examine a stochastic version of the model for periodic nucleocytoplasmic shuttling of Msn2 coupled to oscillations in the cAMP–PKA pathway. The results of stochastic simulations compare well to the irregular oscillations observed experimentally in the nucleocytoplasmic shuttling of Msn2 in individual yeast cells. The stochastic model retains the property of oscillations within a range bounded by two critical values of stress intensity. We determine the dynamic behaviour as a function of this control parameter and show that the effect of noise markedly depends on the distance from the bifurcation points in the domain of oscillatory behaviour. Finally, we assess the role played by thresholds due to zero-order ultrasensitivity in phosphorylation–dephosphorylation cycles, both in the cAMP–PKA pathway and in the reactions controlling nucleocytoplasmic shuttling of Msn2. In regard to these thresholds, stochastic simulations show that large-amplitude variations of Msn2 associated with large-amplitude oscillations in cAMP can occur outside the domain of sustained oscillations predicted by the deterministic approach.
机译:应激诱导酵母中转录因子Msn2的振荡性核仁穿梭。 Msn2的亚细胞定位受cAMP依赖性蛋白激酶PKA控制。酵母中cAMP-PKA通路的确定性计算模型证实了最近的实验观察结果,表明Msn2的振荡动力学是由PKA的周期性激活导致的,该激活与应力诱导的cAMP水平的振荡有关。该模型说明了在以应力强度的两个临界值为边界的窗口中Msn2振荡的发生。与通过荧光测量在单个酵母细胞中观察到的相当不规则的振荡行为相反,确定性模型只能产生规则的振荡模式。为了研究实验观察到的变异性是否可以由振荡机制中涉及的少量分子引起的分子噪声解释,我们研究了模型的随机版本,该模型用于Msn2周期性核质穿梭与cAMP-PKA途径中的振荡耦合。随机模拟的结果与在单个酵母细胞中Msn2的核质穿梭中实验观察到的不规则振荡很好地比较。随机模型将振动的特性保留在以应力强度的两个临界值为边界的范围内。我们将动态行为确定为该控制参数的函数,并表明噪声的影响明显取决于振荡行为域中离分叉点的距离。最后,我们评估了在cAMP-PKA途径以及控制Msn2核质穿梭的反应中,由于零阶超敏性导致的阈值在磷酸化-去磷酸化循环中的作用。关于这些阈值,随机模拟显示,与cAMP中大振幅振荡相关的Msn2大振幅变化可能发生在确定性方法预测的持续振荡范围之外。

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