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A Membrane Potential- and Calpain-Dependent Reversal of Caspase-1 Inhibition Regulates Canonical NLRP3 Inflammasome

机译:膜电位和钙蛋白酶依赖性的Caspase-1抑制逆转调节规范的NLRP3炎症小体。

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Summary The NLRP3 inflammasome senses a range of cellular?disturbances, although no consensus exists regarding a common mechanism. Canonical NLRP3 activation is blocked by high extracellular K+, regardless of the activating signal. We report here that canonical NLRP3 activation leads to Ca2+ flux and increased calpain activity. Activated calpain releases a pool of Caspase-1 sequestered by the cytoskeleton to regulate NLRP3 activation. Using electrophysiological recording, we found that resting-state eukaryotic membrane potential (MP) is required for this calpain activity, and depolarization by high extracellular K+ or artificial hyperpolarization results in the inhibition of calpain. Therefore, the MP/Ca2+/calpain/Caspase-1 axis acts as an independent regulatory mechanism for NLRP3 activity. This finding provides mechanistic insight into high K+-mediated inhibition of NLRP3 activation, and it offers an alternative model of NLRP3 inflammasome activation that does not involve K+ efflux.
机译:总结NLRP3炎性小体感觉到了一系列的细胞干扰,尽管对于共同的机制尚无共识。不管激活信号如何,高细胞外K + 都会阻止规范的NLRP3激活。我们在这里报告规范的NLRP3激活导致Ca 2 + 通量并增加钙蛋白酶活性。活化的钙蛋白酶释放了一组被细胞骨架隔离的Caspase-1,以调节NLRP3的活化。使用电生理记录,我们发现该钙蛋白酶活性需要静息状态的真核细胞膜电位(MP),而高细胞外K + 的去极化作用或人工超极化作用会抑制钙蛋白酶。因此,MP / Ca 2 + / calpain / Caspase-1轴是NLRP3活性的独立调节机制。这一发现提供了对高K + 介导的NLRP3激活抑制的机械观察,并且提供了不涉及K + 外排的NLRP3炎性体激活的替代模型。

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