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USP18通过稳定STING1促进脂多糖诱导的人肾类器官中的铁死亡。

USP18 promotes ferroptosis in lipopolysaccharide-induced human kidney organoids by stabilizing STING1.

作者信息

Yang Hao, Zhao Lingfei, Kong Weiwei, Liu Shanshan, Zhou Qin, Lang Xiabing, Lan Lan, Wang Yucheng

机构信息

Kidney Disease Center, The First Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou, Zhejiang, China.

出版信息

Cell Biol Toxicol. 2025 Aug 20;41(1):126. doi: 10.1007/s10565-025-10078-8.

Abstract

Sepsis-induced acute kidney injury (SI-AKI) is a severe condition with limited therapeutic options, resulting in poor prognosis. Ferroptosis exacerbates the damage caused by SI-AKI, but the mechanisms regulating ferroptosis, especially those involving ubiquitination regulators, remain poorly understood. Here, we used a lipopolysaccharide (LPS)-induced human kidney organoid (HKO) model to investigate ferroptosis in SI-AKI. RNA sequencing (RNA-seq) analysis of control and LPS-treated HKOs revealed USP18 as the only upregulated ubiquitin-specific protease (USP) in response to LPS. Further investigations showed that depletion of USP18 significantly reduced ferroptosis in LPS-induced HKOs. To explore the mechanism underlying USP18's pro-ferroptotic role, we screened four ferroptosis-related drivers and identified STING1 as the key interacting protein with USP18. Mechanistically, USP18 directly binds to STING1, deubiquitinates it, and prevents its proteasomal degradation in HKOs. Overexpression of STING1 in USP18-deficient HKOs exacerbated ferroptosis, indicating that STING1 is crucial for mediating USP18's ferroptosis-promoting function in LPS-induced HKOs. Together, these findings establish that USP18-STING1 axis plays role in LPS-induced ferroptosis in HKOs, illuminating that targeting USP18-STING1 could provide neoteric therapeutic approach for treating SI-AKI.

摘要

脓毒症诱导的急性肾损伤(SI-AKI)是一种严重疾病,治疗选择有限,预后较差。铁死亡会加剧SI-AKI造成的损伤,但调节铁死亡的机制,尤其是涉及泛素化调节因子的机制,仍知之甚少。在此,我们使用脂多糖(LPS)诱导的人肾类器官(HKO)模型来研究SI-AKI中的铁死亡。对对照和LPS处理的HKO进行RNA测序(RNA-seq)分析,发现USP18是唯一因LPS而上调的泛素特异性蛋白酶(USP)。进一步研究表明,敲除USP18可显著降低LPS诱导的HKO中的铁死亡。为了探究USP18促铁死亡作用的潜在机制,我们筛选了四种与铁死亡相关的驱动因子,并确定STING1是与USP18相互作用的关键蛋白。从机制上讲,USP18直接与STING1结合,使其去泛素化,并防止其在HKO中被蛋白酶体降解。在USP18缺陷的HKO中过表达STING1会加剧铁死亡,这表明STING1对于介导USP18在LPS诱导的HKO中的促铁死亡功能至关重要。总之,这些发现表明USP18-STING1轴在LPS诱导的HKO铁死亡中起作用,这表明靶向USP18-STING1可为治疗SI-AKI提供新的治疗方法。

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