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Harmonic Oscillations in Homeostatic Controllers: Dynamics of the p53 Regulatory System

机译:稳态控制器中的谐波振荡:p53调节系统的动力学

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摘要

Homeostatic mechanisms are essential for the protection and adaptation of organisms in a changing and challenging environment. Previously, we have described molecular mechanisms that lead to robust homeostasis/adaptation under inflow or outflow perturbations. Here we report that harmonic oscillations occur in models of such homeostatic controllers and that a close relationship exists between the control of the p53/Mdm2 system and that of a homeostatic inflow controller. This homeostatic control model of the p53 system provides an explanation why large fluctuations in the amplitude of p53/Mdm2 oscillations may arise as part of the homeostatic regulation of p53 by Mdm2 under DNA-damaging conditions. In the presence of DNA damage p53 is upregulated, but is subject to a tight control by Mdm2 and other factors to avoid a premature apoptotic response of the cell at low DNA damage levels. One of the regulatory steps is the Mdm2-mediated degradation of p53 by the proteasome. Oscillations in the p53/Mdm2 system are considered to be part of a mechanism by which a cell decides between cell cycle arrest/DNA repair and apoptosis. In the homeostatic inflow control model, harmonic oscillations in p53/Mdm2 levels arise when the binding strength of p53 to degradation complexes increases. Due to the harmonic character of the oscillations rapid fluctuating noise can lead, as experimentally observed, to large variations in the amplitude of the oscillation but not in their period, a behavior which has been difficult to simulate by deterministic limit-cycle models. In conclusion, the oscillatory response of homeostatic controllers may provide new insights into the origin and role of oscillations observed in homeostatically controlled molecular networks.
机译:稳态机制对于在不断变化和充满挑战的环境中保护和适应生物至关重要。以前,我们已经描述了在流入或流出扰动下导致强大的动态平衡/适应的分子机制。在这里,我们报告说,在此类稳态控制器的模型中会发生谐波振荡,并且p53 / Mdm2系统的控制与稳态流入控制器的控制之间存在密切关系。 p53系统的这种稳态控制模型提供了一个解释,说明为什么在DNA破坏条件下Mdm2对p53的稳态调节可能会引起p53 / Mdm2振荡幅度的大波动。在存在DNA损伤的情况下,p53被上调,但受到Mdm2和其他因素的严格控制,以避免在低DNA损伤水平下细胞过早的凋亡反应。调节步骤之一是蛋白酶体介导的Mdm2介导的p53降解。 p53 / Mdm2系统中的振荡被认为是细胞决定细胞周期停滞/ DNA修复与凋亡之间机制的一部分。在稳态流入控制模型中,当p53与降解复合物的结合强度增加时,会出现p53 / Mdm2水平的谐波振荡。由于振荡的谐波特性,如实验观察到的那样,快速波动的噪声会导致振荡幅度的大变化,而不是其周期大,这种行为很难通过确定性极限循环模型来模拟。总之,稳态控制器的振荡响应可能会为在稳态控制分子网络中观察到的振荡的起源和作用提供新的见解。

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