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Impact of time delays on oscillatory dynamics of interlinked positive and negative feedback loops

机译:时间延迟对正负反馈环的振荡动力学的影响

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Interlinking a positive feedback loop (PFL) with a negative feedback loop (NFL) constitutes a typical motif in genetic networks, performing various functions in cell signaling. How time delay in feedback regulation affects the dynamics of such systems still remains unclear. Here, we investigate three systems of interlinked PFL and NFL with time delays: a synthetic genetic oscillator, a three-node circuit, and a simplified single-node model. The stability of steady states and the routes to oscillation in the single-node model are analyzed in detail. The amplitude and period of oscillations vary with a pointwise periodicity over a range of time delay. Larger-amplitude oscillations can be induced when the PFL has an appropriately long delay, in comparison with the PFL with no delay or short delay; this conclusion holds true for all the three systems. We unravel the underlying mechanism for the above effects via analytical derivation under a limiting condition. We also develop a stochastic algorithm for simulating a single reaction with two delays and show that robust oscillations can be maintained by the PFL with a properly long delay in the single-node system. This work presents an effective method for constructing robust large-amplitude oscillators and interprets why similar circuit architectures are engaged in timekeeping systems such as circadian clocks.
机译:将正反馈回路(PFL)与负反馈回路(NFL)相互链接构成了遗传网络中的典型主题,在细胞信号传导中发挥了多种功能。反馈调节中的时间延迟如何影响此类系统的动力学仍然不清楚。在这里,我们研究了具有时延的PFL和NFL互连的三个系统:合成遗传振荡器,三节点电路和简化的单节点模型。详细分析了单节点模型的稳态稳定性和振荡路径。振荡的幅度和周期在一定的时间延迟范围内呈逐点周期性变化。与没有延迟或短暂延迟的PFL相比,当PFL具有适当的较长延迟时,会引起较大的振幅振荡。这个结论对于所有三个系统都成立。通过在有限条件下的分析推导,我们揭示了上述效应的潜在机理。我们还开发了一种用于模拟具有两个延迟的单个反应的随机算法,并显示了PFL可以在单节点系统中以适当长的延迟来保持鲁棒的振荡。这项工作为构造鲁棒的大振幅振荡器提供了一种有效的方法,并解释了为什么类似的电路体系结构被用于诸如昼夜节拍的计时系统中。

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