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Kinetic control of negative feedback regulators of NF-κB/RelA determines their pathogen- and cytokine-receptor signaling specificity

机译:负反馈调节因子NF-κB/ RelA的动力学控制决定了其病原体和细胞因子受体的信号传导特异性

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摘要

Mammalian signaling networks contain an abundance of negative feedback regulators that may have overlapping (“fail-safe”) or specific functions. Within the NF-κB signaling module, IκBα is known as a negative feedback regulator, but the newly characterized inhibitor IκBδ is also inducibly expressed in response to inflammatory stimuli. To examine IκBδ's roles in inflammatory signaling, we mathematically modeled the 4-IκB-containing NF-κB signaling module and developed a computational phenotyping methodology of general applicability. We found that IκBδ, like IκBα, can provide negative feedback, but each functions stimulus-specifically. Whereas IκBδ attenuates persistent, pathogen-triggered signals mediated by TLRs, the more prominent IκBα does not. Instead, IκBα, which functions more rapidly, is primarily involved in determining the temporal profile of NF-κB signaling in response to cytokines that serve intercellular communication. Indeed, when removing the inducing cytokine stimulus by compound deficiency of the tnf gene, we found that the lethality of iκbα−/− mouse was rescued. Finally, we found that IκBδ provides signaling memory owing to its long half-life; it integrates the inflammatory history of the cell to dampen NF-κB responsiveness during sequential stimulation events.
机译:哺乳动物信号网络包含大量的负反馈调节器,这些调节器可能具有重叠(“故障保护”)或特定功能。在NF-κB信号传导模块中,IκBα被称为负反馈调节剂,但新鉴定的抑制剂IκBδ也可响应炎症刺激而诱导表达。为了检查IκBδ在炎症信号传导中的作用,我们对包含4-IκB的NF-κB信号传导模块进行了数学建模,并开发了具有普遍适用性的计算表型方法。我们发现IκBδ像IκBα一样可以提供负反馈,但是每个函数都具有特定的刺激作用。 IκBδ减弱了由TLR介导的持续的病原体触发信号,而更突出的IκBα则没有。取而代之的是,功能更快的IκBα主要参与确定NF-κB信号转导的时间变化,以响应细胞间通信中的细胞因子。确实,当通过tnf基因的复合缺陷消除诱导的细胞因子刺激时,我们发现可以挽救iκbα-/-小鼠的致死性。最后,我们发现IκBδ由于其半衰期长而提供了信号记忆。它整合了细胞的炎症史,以抑制顺序刺激事件中的NF-κB反应性。

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