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首页> 外文期刊>Physical review, E >Entrainment of a cellular circadian oscillator by light in the presence of molecular noise
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Entrainment of a cellular circadian oscillator by light in the presence of molecular noise

机译:在分子噪声的存在下,通过光夹紧蜂窝昼夜振荡器

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摘要

In this paper, we consider a stochastic molecular circadian oscillator described by a sequence of biological reactions and its deterministic kinetics governed by a system of ordinary differential equations in the limit of large numbers of molecules. The oscillations in the model are generated by negative feedback regulation of a gene. The focus of this paper is the entrainment of the oscillator by a periodic light signal that affects the maximal transcription rate of the gene. We introduce two scalings of the model parameters that provide independent control over the natural frequency of the oscillator and the relative noise level. We study entrainment in two ways: by visualizing the stochastic limit cycle in various projections of the discrete phase space of the system and by evaluating the maximum of the normalized cross correlation of the light signal with the number of protein molecules in the cell. The visualization method ignores the phase of the oscillator, and we find in this way that entrainment has a subtle organizing effect on the limit cycle as a whole. The cross correlation results reveal an interval of natural frequencies of the oscillator surrounding the frequency of the light signalwithin whichmaximal entrainment occurs with rather sharp drops in entrainment at the edges of this interval. The width of the interval of maximal entrainment increases with the amplitude of the light signal. These statements are applicable both to the stochastic oscillator and to its deterministic limit, but the results are most clear-cut in the deterministic case and degrade from there as the relative noise level increases.
机译:在本文中,我们考虑一种由一系列生物反应和其确定性动力学描述的随机分子昼夜振荡器,其由大量分子限制的常微分方程系统管理。模型中的振荡是由基因的负反馈调节产生的。本文的焦点是通过影响基因的最大转录率的周期性光信号夹紧振荡器。我们介绍了两个模型参数的缩放,可在振荡器的固有频率和相对噪声水平上进行独立控制。我们以两种方式研究夹带:通过在系统的离散相空间的各种投影中显示随机极限周期,并通过评估光信号与细胞中蛋白质分子的数量的标准化交叉相关的最大值。可视化方法忽略了振荡器的相位,我们以这种方式发现,夹带对整个限制周期具有微妙的组织效果。互相关结果揭示了围绕光信号的频率的振荡器的自然频率的间隔,在这种间隔的边缘处的夹带中的相当尖锐的滴度发生时发生了多种夹带。最大夹带间隔的宽度随着光信号的幅度而增加。这些陈述适用于随机振荡器和其确定性极限,但结果在确定性情况下最清晰地切割,并且随着相对噪声水平的增加,从那里降级。

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