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Gasdermin D 驱动经典炎性体诱导的中性粒细胞细胞焦亡,但对于 NETosis 是可有可无的。

GSDMD drives canonical inflammasome-induced neutrophil pyroptosis and is dispensable for NETosis.

机构信息

Janssen Immunosciences, World Without Disease Accelerator, Pharmaceutical Companies of Johnson & Johnson, Beerse, Belgium.

Department of Internal Medicine and Paediatrics, Ghent University, Ghent, Belgium.

出版信息

EMBO Rep. 2022 Oct 6;23(10):e54277. doi: 10.15252/embr.202154277. Epub 2022 Jul 28.

Abstract

Neutrophils are the most prevalent immune cells in circulation, but the repertoire of canonical inflammasomes in neutrophils and their respective involvement in neutrophil IL-1β secretion and neutrophil cell death remain unclear. Here, we show that neutrophil-targeted expression of the disease-associated gain-of-function Nlrp3 mutant suffices for systemic autoinflammatory disease and tissue pathology in vivo. We confirm the activity of the canonical NLRP3 and NLRC4 inflammasomes in neutrophils, and further show that the NLRP1b, Pyrin and AIM2 inflammasomes also promote maturation and secretion of interleukin (IL)-1β in cultured bone marrow neutrophils. Notably, all tested canonical inflammasomes promote GSDMD cleavage in neutrophils, and canonical inflammasome-induced pyroptosis and secretion of mature IL-1β are blunted in GSDMD-knockout neutrophils. In contrast, GSDMD is dispensable for PMA-induced NETosis. We also show that Salmonella Typhimurium-induced pyroptosis is markedly increased in Nox2/Gp91 -deficient neutrophils that lack NADPH oxidase activity and are defective in PMA-induced NETosis. In conclusion, we establish the canonical inflammasome repertoire in neutrophils and identify differential roles for GSDMD and the NADPH complex in canonical inflammasome-induced neutrophil pyroptosis and mitogen-induced NETosis, respectively.

摘要

中性粒细胞是循环中最常见的免疫细胞,但中性粒细胞中经典炎症小体的组成以及它们各自在中性粒细胞白细胞介素-1β分泌和中性粒细胞死亡中的作用尚不清楚。在这里,我们表明,靶向表达疾病相关的功能获得性 Nlrp3 突变足以在体内引起全身性自身炎症性疾病和组织病理学改变。我们证实了经典 NLRP3 和 NLRC4 炎症小体在中性粒细胞中的活性,进一步表明 NLRP1b、Pyrin 和 AIM2 炎症小体也可促进培养的骨髓中性粒细胞中白细胞介素 (IL)-1β 的成熟和分泌。值得注意的是,所有测试的经典炎症小体均可促进中性粒细胞中 GSDMD 的切割,而 GSDMD 敲除中性粒细胞中经典炎症小体诱导的细胞焦亡和成熟 IL-1β 的分泌会减弱。相比之下,GSDMD 对于 PMA 诱导的 NETosis 是可有可无的。我们还表明,Nox2/Gp91 缺陷型中性粒细胞(缺乏 NADPH 氧化酶活性并且 PMA 诱导的 NETosis 有缺陷)中沙门氏菌 Typhimurium 诱导的细胞焦亡显著增加。总之,我们建立了中性粒细胞中的经典炎症小体组成,并确定 GSDMD 和 NADPH 复合物在经典炎症小体诱导的中性粒细胞细胞焦亡和有丝分裂原诱导的 NETosis 中的作用不同。

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