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The Regulatory Logic of the NF-κB Signaling System

机译:NF-κB信号系统的调节逻辑

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摘要

NF-κB refers to multiple dimers of Rel homology domain (RHD) containing polypeptides, which are controlled by a stimulus-responsive signaling system that mediates the physiological responses to inflammatory intercellular cytokines, pathogen exposure, and developmental signals. The NF-κB signaling system operates on transient or short timescales, relevant to inflammation and immune responses, and on longer-term timescales relevant to cell differentiation and organ formation. Here, we summarize our current understanding of the kinetic mechanisms that allow for NF-κB regulation at these different timescales. We distinguish between the regulation of NF-κB dimer formation and the regulation of NF-κB activity. Given the number of regulators and reactions involved, the NF-κB signaling system is capable of integrating a multitude of signals to tune NF-κB activity, signal dose responsiveness, and dynamic control. We discuss the prevailing mechanisms that mediate signaling cross talk.
机译:NF-κB是指含有Rel同源结构域(RHD)的多肽的多个二聚体,其受刺激反应信号系统控制,该信号系统介导对炎症性细胞间细胞因子,病原体暴露和发育信号的生理反应。 NF-κB信号系统在与炎症和免疫反应相关的短暂或短时标上运行,并在与细胞分化和器官形成相关的长时标上运行。在这里,我们总结了我们目前对在这些不同时间尺度上调节NF-κB的动力学机制的理解。我们区分了NF-κB二聚体形成的调节和NF-κB活性的调节。考虑到涉及的调节剂和反应的数量,NF-κB信号系统能够整合多种信号,以调节NF-κB的活性,信号剂量反应性和动态控制。我们讨论了介导信号串扰的流行机制。

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