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Biochemical oscillations in delayed negative cyclic feedback: Existence and profiles

机译:延迟负循环反馈中的生化振荡:存在与特征

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In this paper, we propose a theoretical framework to systematically analyze the existence and the profiles of chemical oscillations in gene regulatory networks with negative cyclic feedback. In particular, we analytically derive the existence conditions and the profiles of oscillations in terms of reaction kinetic parameters and reveal dimensionless quantities that essentially characterize the oscillatory dynamics. These discoveries then allow us to provide general biological insights that are useful for the design of synthetic gene circuits and wet-lab experiments. We point out that time delays due to splicing and transport play an important role for both of the existence and the profiles of oscillations. To this end, we first show that local instability leads to oscillations in cyclic gene regulatory networks, and we derive the existence conditions based on local instability analysis. Then, we analyze the period, phase and amplitude of oscillations using multivariable harmonic balance analysis. These results are demonstrated with two existing biochemical networks, the Pentilator and a self-repression network of a Hes protein.
机译:在本文中,我们提出了一个理论框架来系统地分析具有负循环反馈的基因调控网络中化学振荡的存在和分布。特别是,我们从反应动力学参数的角度分析得出了存在条件和振动分布,并揭示了无量纲的量,该量纲基本上表征了振动动力学。这些发现使我们能够提供一般的生物学见解,这些见解对于合成基因回路的设计和湿实验室实验很有用。我们指出,由于剪接和传输引起的时间延迟对于振荡的存在和分布都起着重要的作用。为此,我们首先表明局部不稳定性导致循环基因调控网络中的振荡,并基于局部不稳定性分析得出存在条件。然后,我们使用多元谐波平衡分析来分析振荡的周期,相位和幅度。这些结果已通过两个现有的生化网络,呼吸机和Hes蛋白的自抑制网络得到证明。

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