Wang Conghua, Zhang Yuan, Cao Jinde, Yang Zhichun
IEEE Trans Neural Netw Learn Syst. 2025 May;36(5):9725-9732. doi: 10.1109/TNNLS.2024.3424784. Epub 2025 May 2.
Circadian rhythm disruptions are linked to increased cancer risk and unfavorable prognosis in patients with cancer, highlighting the critical role of the interplay between the circadian rhythm factor Per2 and the tumor suppressor p53. This brief presents, for the first time, a mathematical model to capture the dynamics of the p53-Per2 network in DNA-damaged cells. The model accurately describes the different stages of the process from unstressed cells to cellular repair and finally to apoptosis as the degree of DNA damage increases. Furthermore, it is found that increasing the inhibition of Per2 by p53 leads to the phase advance of Per2 oscillations, whereas by modulating the inhibition of Mdm2 by Per2, an independent amplitude modulation of active p53 can be achieved, with the range of modulation increasing with the strength of the inhibition. Moreover, the effects of time delays inherent in the transcription, translation, and nuclear translocation of Per2 on the circadian rhythm of DNA-damaged cells are quantitatively investigated by theoretical analyses. It is found that time delays can induce stable oscillations through a supercritical Hopf bifurcation, thereby maintaining the circadian function of DNA-damaged cells and enhancing their DNA-damage repair capacity. This study proposes new insights into cancer prevention and treatment strategies.
昼夜节律紊乱与癌症患者癌症风险增加和预后不良有关,这突出了昼夜节律因子Per2与肿瘤抑制因子p53之间相互作用的关键作用。本简报首次提出了一个数学模型,以捕捉DNA损伤细胞中p53-Per2网络的动态变化。该模型准确描述了随着DNA损伤程度增加,从不应激细胞到细胞修复再到凋亡这一过程的不同阶段。此外,研究发现,增加p53对Per2的抑制会导致Per2振荡的相位提前,而通过调节Per2对Mdm2的抑制,可以实现活性p53的独立幅度调制,调制范围随抑制强度的增加而增大。此外,通过理论分析定量研究了Per2转录、翻译和核转位过程中固有的时间延迟对DNA损伤细胞昼夜节律的影响。研究发现,时间延迟可通过超临界霍普夫分岔诱导稳定振荡,从而维持DNA损伤细胞的昼夜功能并增强其DNA损伤修复能力。本研究为癌症预防和治疗策略提供了新的见解。