ArticleThe Journal of pathology2018
Advanced glycation end-products suppress autophagic flux in podocytes by activating mammalian target of rapamycin and inhibiting nuclear translocation of transcription factor EB.
Article in The Journal of pathology, 2018. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 50 papers.
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Who cites it
50 citing papers in PubMed, 88 citations in OpenAlex.
- Liver-to-kidney apolipoprotein J trans-accumulation exacerbates diabetic renal injury by disrupting TFEB-mediated lipid homeostasis.Diabetologia · 2026Article
- Protein glycoxidation in neuropsychiatric disorders-from basic research to clinical practice.Redox biology · 2026Review
- Unveiling lactylation: A novel frontier in the pathogenesis of diabetic nephropathy (Review).International journal of molecular medicine · 2026Review
- REDD1 deficiency alleviates podocyte PANoptosis and restores autophagy in diabetic kidney disease.Molecular medicine (Cambridge, Mass.) · 2026Article
- mTOR pathway: A key player in diabetic nephropathy progression and therapeutic targets.Genes & diseases · 2025Review
- Targeting programmed cell death pathways: emerging therapeutic strategies for diabetic kidney disease.Frontiers in endocrinology · 2025Review
- The Estrogen Receptor-Related Orphan Receptors Regulate Autophagy through TFEB.Molecular pharmacology · 2024Article
- Article
- Protective effect of the tunneling nanotube-TNFAIP2/M-sec system on podocyte autophagy in diabetic nephropathy.Autophagy · 2023Article
- Crosstalk between the mTOR pathway and primary cilia in human diseases.Current topics in developmental biology · 2023Review
- The role of autophagy in the treatment of type II diabetes and its complications: a review.Frontiers in endocrinology · 2023Review
- Regulation of autophagy by natural polyphenols in the treatment of diabetic kidney disease: therapeutic potential and mechanism.Frontiers in endocrinology · 2023Review
- YY1-induced upregulation of LncRNA-ARAP1-AS2 and ARAP1 promotes diabetic kidney fibrosisFrontiers in pharmacology · 2023Article
- Modes of podocyte death in diabetic kidney disease: an update.Journal of nephrology · 2022Review
- Mechanisms of podocyte injury and implications for diabetic nephropathy.Clinical science (London, England : 1979) · 2022Article
- The critical role of dysregulated autophagy in the progression of diabetic kidney disease.Frontiers in pharmacology · 2022Review
- Research progress on the relationship between autophagy and chronic complications of diabetes.Frontiers in physiology · 2022Review
- Recent advances in molecular mechanisms of acute kidney injury in patients with diabetes mellitus.Frontiers in endocrinology · 2022Review
- Activation of Transcription Factor EB Alleviates Tubular Epithelial Cell Injury via Restoring Lysosomal Homeostasis in Diabetic Nephropathy.Oxidative medicine and cellular longevity · 2022Article
- Relationship between lysosomal dyshomeostasis and progression of diabetic kidney disease.Cell death & disease · 2021Review
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Authors and funding
14 authors at 2 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Insufficient autophagy in podocytes is related to podocyte injury in diabetic nephropathy (DN). Advanced glycation end-products (AGEs) are major factors of podocyte injury in DN. However, the role and mechanism of AGEs in autophagic dysfunction remain unknown. We investigated autophagic flux in AGE-stimulated cultured podocytes using multiple assays: western blotting, reverse transcription-quantitative PCR, immunofluorescence staining, and electron microscopy. We also utilized chloroquine and a fluorescent probe to monitor the formation and turnover of autophagosomes. Mice of the db/db strain were used to model diabetes mellitus (DM) with high levels of AGEs. To mimic DM with normal levels of AGEs as a control, we treated db/db mice with pyridoxamine to block AGE formation. AGEs impaired autophagic flux in the cultured podocytes. Compared with db/db mice with normal AGEs but high glucose levels, db/db mice with high AGEs and high glucose levels exhibited lower autophagic activity. Aberrant autophagic flux was related to hyperactive mammalian target of rapamycin (mTOR), a major suppressor of autophagy. Pharmacologic inhibition of mTOR activity restored impaired autophagy. AGEs inhibited the nuclear translocation and activity of the pro-autophagic transcription factor EB (TFEB) and thus suppressed transcription of its several autophagic target genes. Conversely, TFEB overexpression prevented AGE-induced autophagy insufficiency. Attenuating mTOR activity recovered TFEB nuclear translocation under AGE stimulation. Co-immunoprecipitation assays further demonstrated the interaction between mTOR and TFEB in AGE-stimulated podocytes and in glomeruli from db/db mice. In conclusion, AGEs play a crucial part in suppressing podocyte autophagy under DM conditions. AGEs inhibited the formation and turnover of autophagosomes in podocytes by activating mTOR and inhibiting the nuclear translocation of TFEB. © 2018 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of Pathological Society of Great Britain and Ireland.
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