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首页> 外文期刊>IET systems biology >Combinatorial dynamics of protein synthesis time delay and negative feedback loop in NF-κB signalling pathway
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Combinatorial dynamics of protein synthesis time delay and negative feedback loop in NF-κB signalling pathway

机译:NF-κB信号通路中蛋白质合成时间延迟和负反馈环的组合动力学

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摘要

The transcription factor NF-κB links immune response and inflammatory reaction and its different oscillation patterns determine different cell fates. In this study, a mathematical model with IκBα protein synthesis time delay is developed based on the experimental evidences. The results show that time delay has the ability to drive oscillation of NF-κB via Hopf bifurcation. Meanwhile, the amplitude and period are sensitive to the time delay. Moreover, the time delay threshold is a function of four parameters characterising the negative feedback loop. Likewise, the parameters also have effects on the amplitude and period of NF-κB oscillation induced by time delay. Therefore, the oscillation patterns of NF-κB are collaborative results of time delay coupled with the negative feedback loop. These results not only enhance the understanding of NF-κB biological oscillation but also provide clues for the development of anti-inflammatory or anti-cancer drugs.
机译:转录因子NF-κB链路免疫应答和炎症反应及其不同的振荡模式决定了不同的细胞命名。在该研究中,基于实验证据开发了具有IκBα蛋白质合成时间延迟的数学模型。结果表明,时间延迟能够通过HOPF分叉驱动NF-κB的振荡。同时,幅度和周期对时间延迟敏感。此外,时间延迟阈值是表征负反馈回路的四个参数的函数。同样地,参数也对时滞诱导的NF-κB振荡的幅度和周期产生影响。因此,NF-κB的振荡模式是与负反馈回路耦合的时滞的协作结果。这些结果不仅增强了对NF-κB生物振荡的理解,而且还提供了抗炎或抗癌药物的发育的线索。

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