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Frequency Domain Analysis Reveals External Periodic Fluctuations Can Generate Sustained p53 Oscillation

机译:频域分析显示外部周期性波动可产生持续的p53振荡

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摘要

p53 is a well-known tumor suppressor protein that regulates many pathways, such as ones involved in cell cycle and apoptosis. The p53 levels are known to oscillate without damping after DNA damage, which has been a focus of many recent studies. A negative feedback loop involving p53 and MDM2 has been reported to be responsible for this oscillatory behavior, but questions remain as how the dynamics of this loop alter in order to initiate and maintain the sustained or undamped p53 oscillation. Our frequency domain analysis suggests that the sustained p53 oscillation is not completely dictated by the negative feedback loop; instead, it is likely to be also modulated by periodic DNA repair-related fluctuations that are triggered by DNA damage. According to our analysis, the p53-MDM2 feedback mechanism exhibits adaptability in different cellular contexts. It normally filters noise and fluctuations exerted on p53, but upon DNA damage, it stops performing the filtering function so that DNA repair-related oscillatory signals can modulate the p53 oscillation. Furthermore, it is shown that the p53-MDM2 feedback loop increases its damping ratio allowing p53 to oscillate at a frequency more synchronized with the other cellular efforts to repair the damaged DNA, while suppressing its inherent oscillation-generating capability. Our analysis suggests that the overexpression of MDM2, observed in many types of cancer, can disrupt the operation of this adaptive mechanism by making it less responsive to the modulating signals after DNA damage occurs.
机译:p53是一种众所周知的肿瘤抑制蛋白,可调节许多途径,例如参与细胞周期和细胞凋亡的途径。众所周知,p53的水平在DNA损伤后不会衰减而振荡,这是许多近期研究的重点。据报道,涉及该振荡行为的是涉及p53和MDM2的负反馈回路,但仍存在问题,如该回路的动力学如何变化,以启动和维持持续或未衰减的p53振荡。我们的频域分析表明,持续的p53振荡并非完全由负反馈环路决定;相反,p53的振荡并不完全由负反馈环路决定。取而代之的是,它也可能受到DNA损伤引发的周期性DNA修复相关波动的调节。根据我们的分析,p53-MDM2反馈机制在不同的细胞环境中表现出适应性。它通常过滤掉施加在p53上的噪音和波动,但是一旦DNA受损,它就会停止执行过滤功能,以便与DNA修复相关的振荡信号可以调节p53的振荡。此外,已表明p53-MDM2反馈回路增加了其阻尼比,从而使p53能够以与其他细胞修复受损DNA的努力更为同步的频率振荡,同时抑制了其固有的振荡产生能力。我们的分析表明,在多种类型的癌症中观察到的MDM2过度表达可通过使其对DNA发生损伤后的调节信号不敏感而破坏这种适应性机制的运作。

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