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Mincle-GSDMD 介导的乙醇诱导肝损伤中肝巨噬细胞释放的白细胞介素-1β 小细胞外囊泡。

Mincle-GSDMD-mediated release of IL-1β small extracellular vesicles from hepatic macrophages in ethanol-induced liver injury.

机构信息

Department of Inflammation and Immunity, Cleveland Clinic, Lerner Research Institute, Cleveland, Ohio, USA.

Department of Gastroenterology and Hepatology, Cleveland Clinic, Cleveland, Ohio, USA.

出版信息

Hepatol Commun. 2023 Apr 26;7(5). doi: 10.1097/HC9.0000000000000114. eCollection 2023 May 1.

Abstract

BACKGROUND

Macrophage-inducible C-type lectin (Mincle) is expressed on hepatic macrophages and senses ethanol (EtOH)-induced danger signals released from dying hepatocytes and promotes IL-1β production. However, it remains unclear what and how EtOH-induced Mincle ligands activate downstream signaling events to mediate IL-1β release and contribute to alcohol-associated liver disease (ALD). In this study, we investigated the association of circulating β-glucosylceramide (β-GluCer), an endogenous Mincle ligand, with severity of ALD and examined the mechanism by which β-GluCer engages Mincle on hepatic macrophages to release IL-1β in the absence of cell death and exacerbates ALD.

METHOD AND RESULTS

Concentrations of β-GluCer were increased in serum of patients with severe AH and correlated with disease severity. Challenge of hepatic macrophages with lipopolysaccharide and β-GluCer induced formation of a Mincle and Gsdmd-dependent secretory complex containing chaperoned full-length gasdermin D (Hsp90-CDC37-NEDD4) with polyubiquitinated pro-IL-1β and components of the Caspase 8-NLRP3 inflammasome loaded as cargo in small extracellular vesicles (sEVs). Gao-binge EtOH exposure to wild-type, but not Mincle-/- and Gsdmd-/-, mice increased release of IL-1β-containing sEVs from liver explant cultures. Myeloid-specific deletion of Gsdmd similarly decreased the formation of sEVs by liver explant cultures and protected mice from EtOH-induced liver injury. sEVs collected from EtOH-fed wild-type, but not Gsdmd-/-, mice promoted injury of cultured hepatocytes and, when injected into wild-type mice, aggravated Gao-binge EtOH-induced liver injury.

CONCLUSION

β-GluCer functions as a danger-associated molecular pattern activating Mincle-dependent gasdermin D-mediated formation and release of IL-1β-containing sEVs, which in turn exacerbate hepatocyte cell death and contribute to the pathogenesis of ALD.

摘要

背景

巨噬细胞诱导型 C 型凝集素(Mincle)表达于肝巨噬细胞上,可识别由死亡肝细胞释放的乙醇(EtOH)诱导的危险信号,并促进 IL-1β的产生。然而,尚不清楚 EtOH 诱导的 Mincle 配体如何激活下游信号事件,以介导 IL-1β的释放并促进与酒精相关的肝病(ALD)。在这项研究中,我们研究了循环β-葡糖脑苷脂(β-GluCer),一种内源性 Mincle 配体,与 ALD 严重程度的相关性,并探讨了β-GluCer 与肝巨噬细胞上的 Mincle 结合,在没有细胞死亡的情况下释放 IL-1β并加重 ALD 的机制。

方法和结果

严重 AH 患者血清中β-GluCer 浓度升高,且与疾病严重程度相关。脂多糖和β-GluCer 刺激肝巨噬细胞,诱导形成一个依赖于 Mincle 和 Gsdmd 的分泌复合物,该复合物包含伴护全长 gasdermin D(Hsp90-CDC37-NEDD4),并与多泛素化的 pro-IL-1β和 Caspase 8-NLRP3 炎性小体的组分一起作为货物装载在小细胞外囊泡(sEVs)中。高剂量乙醇暴露于野生型,但不是 Mincle-/-和 Gsdmd-/-小鼠,增加了来自肝外植体培养物的含有 IL-1β的 sEV 的释放。肝髓系特异性 Gsdmd 缺失同样减少了肝外植体培养物形成的 sEV,并保护了小鼠免受 EtOH 诱导的肝损伤。从 EtOH 喂养的野生型小鼠中收集的 sEVs 可促进培养的肝细胞损伤,而当注射到野生型小鼠中时,可加重高剂量乙醇诱导的肝损伤。

结论

β-GluCer 作为一种危险相关的分子模式,激活依赖于 Mincle 的 gasdermin D 介导的含有 IL-1β的 sEV 的形成和释放,进而加重肝细胞死亡并促进 ALD 的发病机制。

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