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CCDC92 promotes podocyte injury by regulating PA28α/ABCA1/cholesterol efflux axis in type 2 diabetic mice
Fu-Wen Zuo1, Zhi-Yong Liu1, Ming-Wei Wang1
1Department of Pharmacology, School of Basic Medical Sciences, Shandong University, Jinan, 250012, China.
Abstract:
Podocyte lipotoxicity mediated by impaired cellular cholesterol efflux plays a crucial role in the development of diabetic kidney disease (DKD), and the identification of potential therapeutic targets that regulate podocyte cholesterol homeostasis has clinical significance. Coiled-coil domain containing 92 (CCDC92) is a novel molecule related to metabolic disorders and insulin resistance. However, whether the expression level of CCDC92 is changed in kidney parenchymal cells and the role of CCDC92 in podocytes remain unclear. In this study, we found that Ccdc92 was significantly induced in glomeruli from type 2 diabetic mice, especially in podocytes. Importantly, upregulation of Ccdc92 in glomeruli was positively correlated with an increased urine albumin-to-creatinine ratio (UACR) and podocyte loss. Functionally, podocyte-specific deletion of Ccdc92 attenuated proteinuria, glomerular expansion and podocyte injury in mice with DKD. We further demonstrated that Ccdc92 contributed to lipid accumulation by inhibiting cholesterol efflux, finally promoting podocyte injury. Mechanistically, Ccdc92 promoted the degradation of ABCA1 by regulating PA28α-mediated proteasome activity and then reduced cholesterol efflux. Thus, our studies indicate that Ccdc92 contributes to podocyte injury by regulating the PA28α/ABCA1/cholesterol efflux axis in DKD.
Insights
Coiled-coil domain containing 92 (CCDC92) exacerbates diabetic kidney disease by impairing podocyte cholesterol efflux. Targeting CCDC92 may offer a novel therapeutic strategy for diabetic kidney disease.
Area of Science:
- Nephrology
- Metabolic Diseases
- Molecular Biology
Background:
- Podocyte lipotoxicity and impaired cholesterol efflux are key in diabetic kidney disease (DKD).
- Coiled-coil domain containing 92 (CCDC92) is linked to metabolic disorders, but its role in kidney disease is unknown.
Purpose of the Study:
- Investigate CCDC92 expression in diabetic kidneys.
- Elucidate the role of CCDC92 in podocyte injury and DKD pathogenesis.
Main Methods:
- Analysis of Ccdc92 expression in type 2 diabetic mouse models.
- Podocyte-specific Ccdc92 deletion in DKD mice.
- Assessment of proteinuria, glomerular morphology, and podocyte injury.
- Investigation of cholesterol efflux and ABCA1 degradation pathways.
Main Results:
- Ccdc92 was upregulated in glomeruli and podocytes of diabetic mice, correlating with disease severity.
- Podocyte-specific Ccdc92 deletion attenuated DKD-related kidney damage.
- CCDC92 inhibited cholesterol efflux by promoting ABCA1 degradation via the PA28α/proteasome pathway, leading to lipid accumulation and podocyte injury.
Conclusions:
- CCDC92 is a critical mediator of podocyte injury in DKD.
- The PA28α/ABCA1/cholesterol efflux axis regulated by CCDC92 represents a potential therapeutic target for DKD.

