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Cell death is not essential for caspase-1-mediated interleukin-1 beta activation and secretion

机译:细胞死亡对于caspase-1介导的白介素1β激活和分泌不是必需的

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Caspase-1 cleaves and activates the pro-inflammatory cytokine interleukin-1 beta ( IL-1 beta), yet the mechanism of IL-1 beta release and its dependence on cell death remains controversial. To address this issue, we generated a novel inflammasome independent system in which we directly activate caspase-1 by dimerization. In this system, caspase-1 dimerization induced the cleavage and secretion of IL-1 beta, which did not require processing of caspase-1 into its p20 and p10 subunits. Moreover, direct caspase-1 dimerization allowed caspase-1 activation of IL-1 beta to be separated from cell death. Specifically, we demonstrate at the single cell level that IL-1 beta can be released from live, metabolically active, cells following caspase-1 activation. In addition, we show that dimerized or endogenous caspase-8 can also directly cleave IL-1 beta into its biologically active form, in the absence of canonical inflammasome components. Therefore, cell death is not obligatory for the robust secretion of bioactive IL-1 beta.
机译:Caspase-1裂解并激活促炎性细胞因子白介素-1β(IL-1 beta),但IL-1β释放的机制及其对细胞死亡的依赖性仍存在争议。为了解决这个问题,我们生成了一个新的独立于炎症小体的系统,在该系统中我们通过二聚化直接激活caspase-1。在该系统中,caspase-1二聚化诱导了IL-1β的切割和分泌,不需要将caspase-1加工成其p20和p10亚基。此外,直接的caspase-1二聚化可以使IL-1β的caspase-1活化与细胞死亡分开。具体而言,我们在单细胞水平上证明了caspase-1激活后,IL-1β可以从代谢活跃的活细胞中释放出来。此外,我们显示二聚化或内源性的caspase-8也可以在没有典型的炎性体成分的情况下直接将IL-1β切割成其生物活性形式。因此,细胞死亡并非强制性的生物活性IL-1β分泌。

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