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CCDC92 deficiency ameliorates podocyte lipotoxicity in diabetic kidney disease
Fuwen Zuo1, Youzhao Wang1, Xinlei Xu1
1Department of Pharmacology, School of Basic Medical Sciences, Shandong University, Jinan 250012, China.
Background And Aims:
Podocyte injury is considered as the most important early event contributing to diabetic kidney disease (DKD). Recent findings provide new insights into the roles of lipids and lipid-modulating proteins as key determinants of podocyte function in health and kidney disease. CCDC92, a novel member of coiled-coil domain-containing protein family, was indicated relevant to lipid metabolism, coronary heart disease and type 2 diabetes. However, the expression pattern and role of CCDC92 in the kidney is not clear. This study was designed to elucidate the contribution of CCDC92 in the pathogenesis of DKD.
Methods:
Sections with a pathological diagnosis of different classes of DKD, including subjects with mild DKD (class II, n = 6), subjects with moderate DKD (class III, n = 6) or subjects with severe DKD (class IV, n = 6), and control samples (n = 12) were detected for the expression level of CCDC92 and lipid accumulation. Two types of diabetic mice model (db/db and HFD/STZ) in podocyte-specific Ccdc92 knockout background were generated to clarify the role of CCDC92 in podocyte lipotoxicity.
Results:
The level of CCDC92 was increased in renal biopsies sections from patients with DKD, which was correlated with eGFR and lipid accumulation in glomeruli. In animal studies, CCDC92 were also induced in the kidney from two independent diabetic models, especially in podocytes. Podocyte-specific deletion of Ccdc92 ameliorated podocyte injury and ectopic lipid deposition under diabetic condition. Mechanically, CCDC92 promoted podocyte lipotoxicity, at least in part through ABCA1 signaling-mediated lipid homeostasis.
Conclusion:
Our studies demonstrates that CCDC92 acts as a novel regulator of lipid homeostasis to promote podocyte injury in DKD, suggesting that CCDC92 might be a potential biomarker of podocyte injury in DKD, and targeting CCDC92 may be an effective innovative therapeutic strategy for patients with DKD.
Insights
CCDC92 protein levels increase in diabetic kidney disease (DKD), promoting podocyte injury by disrupting lipid homeostasis. Targeting CCDC92 may offer a new therapeutic strategy for DKD patients.
Area of Science:
- Nephrology
- Metabolic Diseases
- Molecular Biology
Background:
- Diabetic kidney disease (DKD) is characterized by podocyte injury, a critical early event.
- Lipids and lipid-modulating proteins play key roles in podocyte function and kidney disease.
- CCDC92, a protein implicated in lipid metabolism and diabetes, has an unclear role in kidney disease.
Purpose of the Study:
- To investigate the expression pattern of CCDC92 in the kidney.
- To elucidate the role of CCDC92 in the pathogenesis of diabetic kidney disease (DKD).
- To explore CCDC92's contribution to podocyte lipotoxicity in DKD.
Main Methods:
- Analysis of CCDC92 expression and lipid accumulation in human kidney biopsies across DKD severity.
- Generation of podocyte-specific Ccdc92 knockout mouse models (db/db and HFD/STZ).
- Assessment of podocyte injury and lipid deposition in these models.
Main Results:
- CCDC92 levels were elevated in DKD patient kidney biopsies, correlating with reduced eGFR and glomerular lipid accumulation.
- CCDC92 expression was induced in the kidneys of diabetic mouse models, particularly in podocytes.
- Podocyte-specific Ccdc92 deletion attenuated podocyte injury and ectopic lipid deposition in diabetic conditions.
- CCDC92 was found to promote podocyte lipotoxicity, partly via ABCA1 signaling and lipid homeostasis disruption.
Conclusions:
- CCDC92 is a novel regulator of lipid homeostasis that exacerbates podocyte injury in DKD.
- CCDC92 may serve as a potential biomarker for podocyte injury in DKD.
- Targeting CCDC92 presents a promising, innovative therapeutic strategy for DKD management.
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