FBXW7-Mediated Downregulation of GPX4 Aggravates Acute Kidney Injury Following Ischemia‒Reperfusion.

IF 4.5 2区 医学 Q2 CELL BIOLOGY Inflammation Pub Date : 2024-08-29 DOI:10.1007/s10753-024-02137-9
Li-Min Zhang, Xiao-Meng Liu, Dong-Wei Guo, Fan Li, Jun Hao, Song Zhao
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Abstract

Acute kidney injury (AKI) is a prevalent and potentially life-threatening complication characterized by a high incidence and mortality. A large number of studies have emphasized the role of ferroptosis in AKI. Moreover, FBXW7, a ubiquitin ligase, has been implicated in acute organ injury. Analysis of the GEO database (GSE98622) revealed increased FBXW7 mRNA levels in the kidney following ischemia‒reperfusion (IR). However, the role of FBXW7 in AKI has not been elucidated. Therefore, this study aimed to investigate the role of FBXW7 in IR-AKI and its underlying mechanisms. Here, we found that IR could induce AKI and increase FBXW7 expression, while the ferroptosis inhibitor Fer-1 alleviated AKI and decreased FBXW7 expression. Furthermore, we treated HK-2 cells with hypoxia for 12 h and reoxygenation for 4 h (H12R4) to simulate IR-AKI and investigated the impact of modulating FBXW7 expression on ferroptosis by employing ferroptosis-related agonists or inhibitors. Our findings revealed that H12R4 induced HK2 ferroptosis and increased the expression of FBXW7. FBXW7 overexpression in control cells exacerbated erastin-induced ferroptosis, and FBXW7 knockdown inhibited ferroptosis in H12R4-treated cells. Mechanistically, we confirmed that FBXW7 can bind to GPX4, a key molecule that inhibits ferroptosis. The half-life of the GPX4 protein decreased after FBXW7 overexpression, GPX4 ubiquitination increased after H12R4, and GPX4 degradation decreased after FBXW7 knockdown. In conclusion, our results indicated that FBXW7 plays an important role in the development of IR-AKI by promoting ferroptosis through the downregulation of GPX4 expression. This study provides new insight into FBXW7 as a potential target for treating AKI.

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FBXW7 介导的 GPX4 下调会加重缺血再灌注后的急性肾损伤。
急性肾损伤(AKI)是一种普遍存在且可能危及生命的并发症,其特点是发病率高、死亡率高。大量研究强调了铁蛋白沉积在 AKI 中的作用。此外,泛素连接酶 FBXW7 也与急性器官损伤有关。对 GEO 数据库(GSE98622)的分析表明,缺血再灌注(IR)后肾脏中的 FBXW7 mRNA 水平升高。然而,FBXW7 在 AKI 中的作用尚未阐明。因此,本研究旨在探讨 FBXW7 在 IR-AKI 中的作用及其内在机制。在本研究中,我们发现 IR 可诱导 AKI 并增加 FBXW7 的表达,而铁变态反应抑制剂 Fer-1 可减轻 AKI 并降低 FBXW7 的表达。此外,我们用缺氧 12 小时、复氧 4 小时(H12R4)处理 HK-2 细胞以模拟 IR-AKI,并通过使用铁氧化相关的激动剂或抑制剂来研究调节 FBXW7 表达对铁氧化的影响。我们的研究结果表明,H12R4能诱导HK2铁凋亡并增加FBXW7的表达。FBXW7 在对照细胞中的过表达加剧了麦拉宁诱导的铁卟啉沉着,而 FBXW7 的敲除抑制了 H12R4 处理细胞中的铁卟啉沉着。从机理上讲,我们证实了FBXW7能与GPX4结合,而GPX4是抑制铁突变的关键分子。FBXW7过表达后,GPX4蛋白的半衰期缩短,H12R4后GPX4泛素化增加,FBXW7敲除后GPX4降解减少。总之,我们的研究结果表明,FBXW7 通过下调 GPX4 的表达促进铁凋亡,从而在 IR-AKI 的发生发展中发挥重要作用。这项研究为FBXW7作为治疗AKI的潜在靶点提供了新的见解。
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来源期刊
Inflammation
Inflammation 医学-免疫学
CiteScore
9.70
自引率
0.00%
发文量
168
审稿时长
3.0 months
期刊介绍: Inflammation publishes the latest international advances in experimental and clinical research on the physiology, biochemistry, cell biology, and pharmacology of inflammation. Contributions include full-length scientific reports, short definitive articles, and papers from meetings and symposia proceedings. The journal''s coverage includes acute and chronic inflammation; mediators of inflammation; mechanisms of tissue injury and cytotoxicity; pharmacology of inflammation; and clinical studies of inflammation and its modification.
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