KEY POINTS: Glomerular expression of adiponectin receptor 1 (AdipoR1) was lower in people with type 2 diabetes and correlates with podocyte loss. AdipoR1 knockout induced glomerular injury and fibrosis in mice, predominantly in males. AdipoR1 knockdown podocytes showed impaired trafficking of active integrin β1, fibronectin accumulation, impaired adhesion, and increased apoptosis. BACKGROUND: Deficiency of adiponectin and its downstream signaling may contribute to the pathogenesis of kidney injury in type 2 diabetes. Adiponectin activates intracellular signaling using adiponectin receptor 1 (AdipoR1) and adiponectin receptor 2, but the role of adiponectin receptorâmediated signaling in glomerular injury in type 2 diabetes remains unknown. METHODS: The expression of AdipoR1 in the kidneys of people with type 2 diabetes and the expression of podocyte proteins or injury markers in the kidneys of AdipoR1 knockout (AdipoR1-KO) mice and immortalized AdipoR1-deficient human podocytes were investigated by immunohistochemistry and immunoblotting. The functional role of AdipoR1 was studied in AdipoR1-deficient podocytes by performing assays for apoptosis, cytokine secretion, mechanical stress, adhesion, and endocytic trafficking. RESULTS: Glomerular AdipoR1 expression was lower in type 2 diabetes and associated kidney disease, correlating with higher body mass index and podocyte loss. Male AdipoR1-KO mice showed typical signs of early diabetic kidney disease, including albuminuria, glomerular structural abnormalities, and lower expression of central podocyte proteins; females were less affected. Podocyte apoptosis increased in female and male AdipoR1-KO mice, and excessive podocyte loss, potentially due to detachment, was detected in males. AdipoR1 deficiency impaired the yes-associated proteinâmediated mechanoresponse and induced accumulation of the extracellular matrix (ECM) protein fibronectin in the glomeruli in vivo and podocytes in vitro. Functionally, AdipoR1 deficiency impaired endocytosis of the ECM receptor active integrin β1, disturbed focal adhesion turnover, and remodulated podocyte-derived ECM, thereby reducing podocyte adhesion. CONCLUSIONS: AdipoR1 deficiency in mice resulted in the development of kidney injury predominantly in males. Mechanistically, AdipoR1 loss in podocytes impaired endocytosis of active integrin β1, which plausibly compromised focal adhesion dynamics, disturbed fibronectin matrix turnover, and hindered podocyte adhesion.
Integrin Trafficking, Fibronectin Architecture, and Glomerular Injury upon Adiponectin Receptor 1 Depletion.
脂联素受体 1 耗竭后整合素运输、纤连蛋白结构和肾小球损伤
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作者:Lindfors Sonja, Schmotz Constanze, Lewandowski Dominik, Hau Annika, Saikko Leena, Lehtonen Eero, Majaniemi Ville, Karhe Minna, Naams Jette-Britt, Nisen Harry, Tienari Jukka, Saleem Moin A, Pfeil Katharina, Bugger Heiko, Pietiläinen Kirsi H, Mirtti Tuomas, Palczewski Krzysztof, Lehtonen Sanna
| 期刊: | Journal of the American Society of Nephrology | 影响因子: | 9.400 |
| 时间: | 2025 | 起止号: | 2025 May 1; 36(5):825-844 |
| doi: | 10.1681/ASN.0000000611 | 研究方向: | 免疫/内分泌 |
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