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首页> 外文期刊>IEEE Transactions on Automatic Control >Intercellular Delay Regulates the Collective Period of Repressively Coupled Gene Regulatory Oscillator Networks
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Intercellular Delay Regulates the Collective Period of Repressively Coupled Gene Regulatory Oscillator Networks

机译:细胞间延迟调节阻抑耦合基因调控振荡器网络的集体时期。

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摘要

Most biological rhythms are generated by a population of cellular oscillators coupled through intercellular signaling. Recent experimental evidence shows that the collective period may differ significantly from the autonomous period in the presence of intercellular delays. The phenomenon has been investigated using delay-coupled phase oscillators, but the proposed phase model contains no direct biological mechanism, which may weaken the model's reliability in unraveling biophysical principles. Based on a published gene regulatory oscillator model, we analyze the collective period of delay-coupled biological oscillators using the multivariable harmonic balance technique. We prove that, in contradiction to the common intuition that the collective period increases linearly with the coupling delay, the collective period turns out to be a periodic function of the intercellular delay. More surprisingly, the collective period may even decrease with the intercellular delay when the delay resides in certain regions. The collective period is given in a closed-form in terms of biochemical reaction constants and thus provides biological insights as well as guidance in synthetic-biological-oscillator design. Simulation results are given based on a segmentation clock model to confirm the theoretical predictions.
机译:大多数生物节律由通过细胞间信号传导耦合的细胞振荡器群体产生。最近的实验证据表明,在存在细胞间延迟的情况下,集体时期可能与自主时期明显不同。已经使用延迟耦合相位振荡器对这种现象进行了研究,但是所提出的相位模型没有直接的生物学机制,这可能会削弱该模型在阐明生物物理原理方面的可靠性。基于已发布的基因调节振荡器模型,我们使用多变量谐波平衡技术分析了延迟耦合生物振荡器的集体周期。我们证明,与通常的想法相反,集体周期随耦合延迟线性增加,事实证明集体周期是细胞间延迟的周期函数。更令人惊讶的是,当延迟位于某些区域时,集体周期甚至会随着细胞间延迟而减少。集体时期以生化反应常数形式以封闭形式给出,因此可提供生物学见解以及合成生物学振荡器设计指南。基于分段时钟模型给出了仿真结果,以确认理论预测。

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