miR-125b Disrupts Mitochondrial Dynamics via Targeting Mitofusin 1 in Cisplatin-Induced Acute Kidney Injury

IF 3.2 4区 医学 Q1 UROLOGY & NEPHROLOGY Kidney Diseases Pub Date : 2021-11-30 DOI:10.1159/000520140
Yue-ru Zhao, Yue Lang, Mingchao Zhang, S. Liang, Xiaodong Zhu, Zhihong Liu
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引用次数: 6

Abstract

Background: Mitochondria are dynamic organelles whose structure are maintained by continuous fusion and fission. During acute kidney injury (AKI) progression, mitochondrial fission in renal tubular cells was elevated, characterized by mitochondrial fragmentation. It is tightly associated with mitochondrial dysfunction, which has been proven as a critical mechanism responsible for AKI. However, the initiating factor for the disruption of mitochondrial dynamics in AKI was not well understood. Objectives: To explore the molecular mechanisms of mitochondrial disorders and kidney damage. Methods: We established cisplatin-induced AKI model in C57BL/6 mice and proximal tubular cells, and detected the expression of miR-125b by qPCR. Then we delivered miR-125b antagomir after cisplatin treatment in mice via hydrodynamic-based gene transfer technique. Subsequently, we performed luciferase reporter and immunoblotting assays to prove miR-125b could directly modulate mitofusin1 (MFN1) expression. We also tested the role of miR-125b in mitochondrial and renal injury through immunofluorescent staining, qPCR, and immunoblotting assays. Results: miR-125b levels were induced in cisplatin-challenged mice and cultured tubular cells. Anti-miR-125b could effectively alleviate cisplatin-induced mitochondrial fragmentation and kidney injury both in vitro and in vivo. Furthermore, miR-125b could directly regulate MFN1, which is a key regulator of mitochondrial fusion. Our study indicated that miR-125b is upregulated during cisplatin-induced AKI. Inhibition of miR-125b may suppress mitochondrial and renal damage through upregulating MFN1. This study suggests that miR-125b could be a potential therapeutic target in AKI.
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miR-125b通过靶向Mitofusin 1在顺铂诱导的急性肾损伤中破坏线粒体动力学
背景:线粒体是一种动态细胞器,其结构是通过不断的融合和裂变来维持的。在急性肾损伤(AKI)的进展过程中,肾小管细胞的线粒体分裂升高,其特征是线粒体断裂。它与线粒体功能障碍密切相关,线粒体功能障碍已被证明是导致AKI的关键机制。然而,AKI中线粒体动力学破坏的起始因素尚不清楚。目的:探讨线粒体疾病与肾损害的分子机制。方法:在C57BL/6小鼠和近端小管细胞中建立顺铂诱导的AKI模型,采用qPCR检测miR-125b的表达。然后,我们通过基于流体动力学的基因转移技术在顺铂治疗后的小鼠中传递miR-125b拮抗剂。随后,我们进行了荧光素酶报告基因和免疫印迹检测,以证明miR-125b可以直接调节mitofusin1 (MFN1)的表达。我们还通过免疫荧光染色、qPCR和免疫印迹法检测了miR-125b在线粒体和肾损伤中的作用。结果:miR-125b水平在顺铂激发小鼠和培养的小管细胞中被诱导。Anti-miR-125b在体外和体内均能有效缓解顺铂诱导的线粒体断裂和肾损伤。此外,miR-125b可以直接调控MFN1,而MFN1是线粒体融合的关键调节因子。我们的研究表明,miR-125b在顺铂诱导的AKI中上调。抑制miR-125b可能通过上调MFN1抑制线粒体和肾脏损伤。这项研究表明miR-125b可能是AKI的潜在治疗靶点。
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来源期刊
Kidney Diseases
Kidney Diseases UROLOGY & NEPHROLOGY-
CiteScore
6.00
自引率
2.70%
发文量
33
审稿时长
27 weeks
期刊介绍: ''Kidney Diseases'' aims to provide a platform for Asian and Western research to further and support communication and exchange of knowledge. Review articles cover the most recent clinical and basic science relevant to the entire field of nephrological disorders, including glomerular diseases, acute and chronic kidney injury, tubulo-interstitial disease, hypertension and metabolism-related disorders, end-stage renal disease, and genetic kidney disease. Special articles are prepared by two authors, one from East and one from West, which compare genetics, epidemiology, diagnosis methods, and treatment options of a disease.
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