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LRRK2 aggravates kidney injury through promoting MFN2 degradation and abnormal mitochondrial integrity

Mitochondrial dysfunction is one of the key features of acute kidney injury (AKI) and associated fibrosis. Leucine-rich repeat kinase 2 (LRRK2) is highly expressed in kidneys and regulates mitochondrial homeostasis. How it functions in AKI is unclear. Herein we reported that LRRK2 was dramatically d...

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Autores principales: Zhang, Shun, Qian, Subo, Liu, Hailong, Xu, Ding, Xia, Weimin, Duan, Huangqi, Wang, Chen, Yu, Shenggen, Chen, Yingying, Ji, Ping, Wang, Shujun, Cui, Xingang, Wang, Ying, Shen, Haibo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10470420/
https://www.ncbi.nlm.nih.gov/pubmed/37633049
http://dx.doi.org/10.1016/j.redox.2023.102860
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author Zhang, Shun
Qian, Subo
Liu, Hailong
Xu, Ding
Xia, Weimin
Duan, Huangqi
Wang, Chen
Yu, Shenggen
Chen, Yingying
Ji, Ping
Wang, Shujun
Cui, Xingang
Wang, Ying
Shen, Haibo
author_facet Zhang, Shun
Qian, Subo
Liu, Hailong
Xu, Ding
Xia, Weimin
Duan, Huangqi
Wang, Chen
Yu, Shenggen
Chen, Yingying
Ji, Ping
Wang, Shujun
Cui, Xingang
Wang, Ying
Shen, Haibo
author_sort Zhang, Shun
collection PubMed
description Mitochondrial dysfunction is one of the key features of acute kidney injury (AKI) and associated fibrosis. Leucine-rich repeat kinase 2 (LRRK2) is highly expressed in kidneys and regulates mitochondrial homeostasis. How it functions in AKI is unclear. Herein we reported that LRRK2 was dramatically downregulated in AKI kidneys. Lrrk2(−/−) mice exhibited less severity of AKI when compared to wild-type counterparts with less mitochondrial fragmentation and decreased reactive oxygen species (ROS) production in proximal renal tubular cells (PTCs) due to mitofusin 2 (MFN2) accumulation. Overexpression of LRRK2 in human PTC cell lines promoted LRRK2-MKK4/JNK-dependent phosphorylation of MFN2(Ser27) and subsequently ubiquitination-mediated MFN2 degradation, which in turn exaggerated mitochondrial damage upon ischemia/reperfusion (I/R) mimicry treatment. Lrrk2 deficiency also alleviated AKI-to-chronic kidney disease (CKD) transition with less fibrosis. In vivo pretreatment of LRRK2 inhibitors attenuated the severity of AKI as well as CKD, potentiating LRRK2 as a novel target to alleviate AKI and fibrosis.
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spelling pubmed-104704202023-09-01 LRRK2 aggravates kidney injury through promoting MFN2 degradation and abnormal mitochondrial integrity Zhang, Shun Qian, Subo Liu, Hailong Xu, Ding Xia, Weimin Duan, Huangqi Wang, Chen Yu, Shenggen Chen, Yingying Ji, Ping Wang, Shujun Cui, Xingang Wang, Ying Shen, Haibo Redox Biol Research Paper Mitochondrial dysfunction is one of the key features of acute kidney injury (AKI) and associated fibrosis. Leucine-rich repeat kinase 2 (LRRK2) is highly expressed in kidneys and regulates mitochondrial homeostasis. How it functions in AKI is unclear. Herein we reported that LRRK2 was dramatically downregulated in AKI kidneys. Lrrk2(−/−) mice exhibited less severity of AKI when compared to wild-type counterparts with less mitochondrial fragmentation and decreased reactive oxygen species (ROS) production in proximal renal tubular cells (PTCs) due to mitofusin 2 (MFN2) accumulation. Overexpression of LRRK2 in human PTC cell lines promoted LRRK2-MKK4/JNK-dependent phosphorylation of MFN2(Ser27) and subsequently ubiquitination-mediated MFN2 degradation, which in turn exaggerated mitochondrial damage upon ischemia/reperfusion (I/R) mimicry treatment. Lrrk2 deficiency also alleviated AKI-to-chronic kidney disease (CKD) transition with less fibrosis. In vivo pretreatment of LRRK2 inhibitors attenuated the severity of AKI as well as CKD, potentiating LRRK2 as a novel target to alleviate AKI and fibrosis. Elsevier 2023-08-22 /pmc/articles/PMC10470420/ /pubmed/37633049 http://dx.doi.org/10.1016/j.redox.2023.102860 Text en © 2023 Published by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Zhang, Shun
Qian, Subo
Liu, Hailong
Xu, Ding
Xia, Weimin
Duan, Huangqi
Wang, Chen
Yu, Shenggen
Chen, Yingying
Ji, Ping
Wang, Shujun
Cui, Xingang
Wang, Ying
Shen, Haibo
LRRK2 aggravates kidney injury through promoting MFN2 degradation and abnormal mitochondrial integrity
title LRRK2 aggravates kidney injury through promoting MFN2 degradation and abnormal mitochondrial integrity
title_full LRRK2 aggravates kidney injury through promoting MFN2 degradation and abnormal mitochondrial integrity
title_fullStr LRRK2 aggravates kidney injury through promoting MFN2 degradation and abnormal mitochondrial integrity
title_full_unstemmed LRRK2 aggravates kidney injury through promoting MFN2 degradation and abnormal mitochondrial integrity
title_short LRRK2 aggravates kidney injury through promoting MFN2 degradation and abnormal mitochondrial integrity
title_sort lrrk2 aggravates kidney injury through promoting mfn2 degradation and abnormal mitochondrial integrity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10470420/
https://www.ncbi.nlm.nih.gov/pubmed/37633049
http://dx.doi.org/10.1016/j.redox.2023.102860
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