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Cutting edge: NF-kappaB activating pattern recognition and cytokine receptors license NLRP3 inflammasome activation by regulating NLRP3 expression

机译:前沿:NF-κB活化模式识别和细胞因子受体通过调节NLRp3表达许可NLRp3炎性体激活

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摘要

The IL-1 family cytokines are regulated on transcriptional and posttranscriptional levels. Pattern recognition and cytokine receptors control pro-IL-1beta transcription whereas inflammasomes regulate the proteolytic processing of pro-IL-1beta. The NLRP3 inflammasome, however, assembles in response to extracellular ATP, pore-forming toxins, or crystals only in the presence of proinflammatory stimuli. How the activation of gene transcription by signaling receptors enables NLRP3 activation remains elusive and controversial. In this study, we show that cell priming through multiple signaling receptors induces NLRP3 expression, which we identified to be a critical checkpoint for NLRP3 activation. Signals provided by NF-kappaB activators are necessary but not sufficient for NLRP3 activation, and a second stimulus such as ATP or crystal-induced damage is required for NLRP3 activation.
机译:IL-1家族的细胞因子受转录和转录后水平的调节。模式识别和细胞因子受体控制前IL-1β的转录,而炎症小体调节前IL-1β的蛋白水解过程。但是,仅在存在促炎性刺激的情况下,NLRP3炎性小体才响应细胞外ATP,成孔毒素或晶体而组装。通过信号受体的基因转录激活如何使NLRP3激活仍然不清楚和有争议。在这项研究中,我们显示了通过多种信号受体引发的细胞可诱导NLRP3表达,我们确定这是NLRP3激活的关键检查点。 NF-κB激活剂提供的信号对于NLRP3激活是必需的,但并不足够,而NLRP3激活则需要第二种刺激,例如ATP或晶体诱导的损伤。

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