一个 NFκB 系统同时用于经典和非经典信号转导。
A single NFκB system for both canonical and non-canonical signaling.
机构信息
Signaling Systems Laboratory and San Diego Center for Systems Biology, Department of Chemistry and Biochemistry, University of California, San Diego, 9500 Gillman Dr, La Jolla, CA 92093, USA.
出版信息
Cell Res. 2011 Jan;21(1):86-102. doi: 10.1038/cr.2010.161. Epub 2010 Nov 23.
Two distinct nuclear factor κB (NFκB) signaling pathways have been described; the canonical pathway that mediates inflammatory responses, and the non-canonical pathway that is involved in immune cell differentiation and maturation and secondary lymphoid organogenesis. The former is dependent on the IκB kinase adaptor molecule NEMO, the latter is independent of it. Here, we review the molecular mechanisms of regulation in each signaling axis and attempt to relate the apparent regulatory logic to the physiological function. Further, we review the recent evidence for extensive cross-regulation between these two signaling axes and summarize them in a wiring diagram. These observations suggest that NEMO-dependent and -independent signaling should be viewed within the context of a single NFκB signaling system, which mediates signaling from both inflammatory and organogenic stimuli in an integrated manner. As in other regulatory biological systems, a systems approach including mathematical models that include quantitative and kinetic information will be necessary to characterize the network properties that mediate physiological function, and that may break down to cause or contribute to pathology.
已经描述了两种不同的核因子 kappa B(NFκB)信号通路;经典途径介导炎症反应,非经典途径参与免疫细胞分化和成熟以及次级淋巴器官发生。前者依赖于 IκB 激酶衔接分子 NEMO,后者则不依赖于它。在这里,我们综述了每个信号轴的调控分子机制,并试图将明显的调控逻辑与生理功能联系起来。此外,我们还回顾了最近关于这两个信号轴之间广泛交叉调控的证据,并将它们总结在一个接线图中。这些观察结果表明,NEMO 依赖和独立的信号应该在单个 NFκB 信号系统的背景下进行观察,该系统以整合的方式介导来自炎症和器官发生刺激的信号。与其他调控生物系统一样,包括包含定量和动力学信息的数学模型的系统方法将是必要的,以表征介导生理功能的网络特性,并且可能会崩溃导致或导致病理。
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