Dock5 Deficiency Promotes Proteinuric Kidney Diseases via Modulating Podocyte Lipid Metabolism

Author:

Qu Hua1ORCID,Liu Xiufei1,Zhu Jiaran1,Xiong Xin1,Li Lu1,He Qingshan1,Wang Yuren1,Yang Guojun2,Zhang Linlin1,Yang Qingwu3,Luo Gang4,Zheng Yi1ORCID,Zheng Hongting1ORCID

Affiliation:

1. Department of Endocrinology Translational Research of Diabetes Key Laboratory of Chongqing Education Commission of China the Second Affiliated Hospital of Army Medical University Chongqing 400037 China

2. Department of Clinical Laboratory the Second Affiliated Hospital of Army Medical University Chongqing 400037 China

3. Department of Neurology the Second Affiliated Hospital of Army Medical University Chongqing 400037 China

4. Department of Orthopedics the Second Affiliated Hospital of Army Medical University Chongqing 400037 China

Abstract

AbstractPodocytes are particularly sensitive to lipid accumulation, which has recently emerged as a crucial pathological process in the progression of proteinuric kidney diseases like diabetic kidney disease and focal segmental glomerulosclerosis. However, the underlying mechanism remains unclear. Here, podocytes predominantly expressed protein dedicator of cytokinesis 5 (Dock5) is screened to be critically related to podocyte lipid lipotoxicity. Its expression is reduced in both proteinuric kidney disease patients and mouse models. Podocyte‐specific deficiency of Dock5 exacerbated podocyte injury and glomeruli pathology in proteinuric kidney disease, which is mainly through modulating fatty acid uptake by the liver X receptor α  (LXRα)/scavenger receptor class B (CD36) signaling pathway. Specifically, Dock5 deficiency enhanced CD36‐mediated fatty acid uptake of podocytes via upregulating LXRα in an m6A‐dependent way. Moreover, the rescue of Dock5 expression ameliorated podocyte injury and proteinuric kidney disease. Thus, the findings suggest that Dock5 deficiency is a critical contributor to podocyte lipotoxicity and may serve as a promising therapeutic target in proteinuric kidney diseases.

Funder

National Science Fund for Distinguished Young Scholars

National Outstanding Youth Science Fund Project of National Natural Science Foundation of China

National Natural Science Foundation of China

Publisher

Wiley

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