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Multiple Cathepsins Promote Pro-IL-1β Synthesis and NLRP3-Mediated IL-1β Activation

机译:多个组织蛋白酶促进Pro-IL-1β的合成和NLRP3介导的IL-1β活化

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摘要

Sterile particles induce robust inflammatory responses that underlie the pathogenesis of diseases like silicosis, gout and atherosclerosis. A key cytokine mediating this response is IL-1β. The generation of bioactive IL-1β by sterile particles is mediated by the NLRP3 inflammasome, although exactly how this occurs is incompletely resolved. Prior studies have found that the cathepsin B inhibitor, Ca074Me, suppresses this response, supporting a model whereby ingested particles disrupt lysosomes and release cathepsin B into the cytosol, somehow activating NLRP3. However, reports that cathepsin B-deficient macrophages have no defect in particle-induced IL-1β generation have questioned cathepsin B’s involvement. Here, we examine the hypothesis that multiple redundant cathepsins (not just cathepsin B) mediate this process by evaluating IL-1β generation in murine macrophages, singly or multiply deficient in cathepsins B, L, C, S and X. Using an activity-based probe, we measure specific cathepsin activity in living cells, documenting compensatory changes in cathepsin-deficient cells, and Ca074Me’s dose-dependent cathepsin inhibition profile is analyzed in parallel with its suppression of particle-induced IL-1β secretion. Also, we evaluate endogenous cathepsin inhibitors, cystatins C and B. Surprisingly, we find that multiple redundant cathepsins, inhibited by Ca074Me and cystatins, promote pro-IL-1β synthesis, and we provide the first evidence that cathepsin X plays a non-redundant role in non-particulate NLRP3 activation. Finally, we find cathepsin inhibitors selectively block particle-induced NLRP3 activation, independently of suppressing pro-IL-1β synthesis. Altogether, we demonstrate that both small molecule and endogenous cathepsin inhibitors suppress particle-induced IL-1β secretion, implicating roles for multiple cathepsins in both pro-IL-1β synthesis and NLRP3 activation.
机译:无菌颗粒诱导强烈的炎症反应,这是矽肺病,痛风和动脉粥样硬化等疾病的发病机制的基础。介导这种反应的关键细胞因子是IL-1β。 NLRP3炎性小体介导了无菌颗粒生物活性IL-1β的产生,尽管这种发生的确切方式尚未完全解决。先前的研究发现,组织蛋白酶B抑制剂Ca074Me抑制了这种反应,从而支持了一种模型,通过该模型摄入的颗粒破坏了溶酶体并将组织蛋白酶B释放到细胞质中,从而激活了NLRP3。但是,有关组织蛋白酶B缺乏的巨噬细胞在颗粒物诱导的IL-1β生成方面没有缺陷的报道质疑组织蛋白酶B的参与。在这里,我们检查了一个假设,即多个冗余组织蛋白酶(不仅仅是组织蛋白酶B)通过评估鼠巨噬细胞中IL-1β的生成而单独或多次缺乏组织蛋白酶B,L,C,S和X来介导这一过程。探针,我们测量活细胞中特定的组织蛋白酶活性,记录组织蛋白酶缺陷细胞的代偿性变化,同时分析Ca074Me的剂量依赖性组织蛋白酶抑制谱,并同时抑制其对颗粒诱导的IL-1β分泌的抑制作用。此外,我们评估了内源性组织蛋白酶抑制剂,胱抑素C和B。令人惊讶的是,我们发现被Ca074Me和胱抑素抑制的多个冗余组织蛋白酶促进了IL-1β的合成,并且我们首次提供了组织蛋白酶X发挥非冗余作用的证据。非颗粒NLRP3激活中的作用。最后,我们发现组织蛋白酶抑制剂有选择地阻断颗粒诱导的NLRP3活化,独立于抑制pro-IL-1β的合成。总之,我们证明小分子和内源性组织蛋白酶抑制剂均抑制颗粒诱导的IL-1β分泌,暗示多个组织蛋白酶在促IL-1β合成和NLRP3激活中的作用。

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