ArticleRenal failure2025
miR-1225-3p regulates fibrosis in mesangial cells via SMURF2-mediated ubiquitination of ChREBP in diabetic kidney disease.
Article in Renal failure, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed.
- Ubiquitination-Related Diagnostic Biomarkers for Diabetic Nephropathy: Insights From Multiomic Analysis, Drug Docking, and Experimental Validation.FASEB journal : official publication of the Federation of American Societies for Experimental Biology · 2026Article
- Mitochondrial metabolic reprogramming drives diabetic kidney disease progression: cell-specific mechanisms, metabolic memory, and targeted strategies.Molecular medicine (Cambridge, Mass.) · 2026Review
- MicroRNA Regulation in Kidney Interstitial Fibrosis.Epigenomes · 2026Review
- Retinol saturase promotes tubulointerstitial fibrosis in diabetic kidney disease by inhibiting ChREBP ubiquitination via Smurf2 suppression.Frontiers in endocrinology · 2026Article
- Metabolic reprogramming in diabetic complications: mechanisms, pathologies, and molecular evidence from multi-organ studies.Frontiers in immunology · 2026Review
- Polyphyllin II attenuates renal fibrosis in diabetic kidney disease partly through regulation of autophagy and PI3K/AKT/mTOR signaling.Frontiers in pharmacology · 2026Article
- Research progress on the regulation of miRNAs in diabetic kidney disease and osteoporosis.International journal of clinical and experimental pathology · 2026Review
- The diagnostic value and mechanism of miR-127-3p in type 2 diabetes and complications of diabetic nephropathy.Hereditas · 2025Article
- Dysregulation of miR-302a-3p in diabetic nephropathy and its role in inflammatory response.BMC endocrine disorders · 2025Article
- High glucose-induced PLCG1 histone acetylation to promote ferroptosis by LAMP2A/HSPA8 in a diabetic nephropathy model.Frontiers in pharmacology · 2025Article
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9 authors.
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Abstract
backgroundDiabetic kidney disease (DKD), characterized by mesangial fibrosis and renal dysfunction, is a major microvascular complication of diabetes. Studies have shown that miRNAs are closely related to the progression of DKD. Therefore, in this study, we aimed to explore whether miR-1225-3p can regulate Smad ubiquitin regulatory factor 2 (SMURF2)-mediated carbohydrate response element binding protein (ChREBP) ubiquitination through Rho GTPase-activating protein 5 (ARHGAP5) to affect fibrosis in DKD.
methodsDKD mice were established by intraperitoneally injecting streptozocin (STZ), and a DKD cell model was generated by culturing in media supplemented with 25 mmol/L glucose (high glucose, HG). StarBase was used to predict the target binding sites between miR-1225-3p and ARHGAP5, and a dual-luciferase reporter gene assay was used to verify this relationship. Western blotting, RT-qPCR, flow cytometry, immunoprecipitation, ELISAs, HE staining, and Masson staining were used to detect relevant indicators.
resultsARHGAP5 and SMURF2 expression was decreased, but ChREBP was highly expressed in the renal tissue of DKD mice and HG-induced mouse mesangial cells (MMCs). miR-1225-3p could target and regulate the transcription of ARHGAP5, and an association between ARHGAP5 and SMURF2 was revealed. miR-1225-3p facilitated fibrosis and oxidative stress in MCCs by inhibiting ARHGAP5. In addition, SMURF2 promoted the ubiquitination of HA-ChREBP, and miR-1225-3p facilitated fibrosis and oxidative stress by mediating the ARHGAP5/SMURF2-mediated ubiquitination of ChREBP in MCCs. Furthermore, the miR-1225-3p inhibitor inhibited fibrosis and inflammation in the renal tissues of DKD mice.
conclusionmiR-1225-3p facilitates fibrosis and oxidative stress by mediating ARHGAP5/SMURF2-mediated ubiquitination of ChREBP.
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