Publication | Open Access
Exosomes derived from hucMSC attenuate renal fibrosis through CK1δ/β-TRCP-mediated YAP degradation
101
Citations
27
References
2020
Year
Ck1δ/β-trcp-mediated Yap DegradationRenal InflammationPathologyCell DeathExtracellular MicrovesiclesBiomedical EngineeringCellular PhysiologyRegenerative MedicineUuo ModelTissue DevelopmentFibroblast Growth FactorMatrix BiologyKidney Tubule RemodelingStem CellsProtein DegradationCell SignalingCollagen DepositionYap UbiquitinationMolecular SignalingMechanobiologyFibrosisProtein FunctionStem Cell TherapiesRenal PathophysiologyCell BiologyUrologyStem Cell ResearchCellular BiochemistryMedicineKidney ResearchExtracellular Matrix
Exosomes from human umbilical cord mesenchymal stem cells (hucMSC-Ex) have been suggested as novel nanomaterials for regenerative medicine. Here we explored the roles of hucMSC-Ex through regulating Yes-associated protein (YAP) in renal injury repair by using rat unilateral ureteral obstruction (UUO) models. Our study identified mechanical stress induced YAP nucleus expression and stimulated collagen deposition and interstitial fibrosis in the kidney. Then, infusion with hucMSC-Ex promoted YAP nuclear cytoplasmic shuttling and ameliorated renal fibrosis in UUO model. Interestingly, hucMSC-Ex delivered casein kinase 1δ (CK1δ) and E3 ubiquitin ligase β-TRCP to boost YAP ubiquitination and degradation. Knockdown of CK1δ and β-TRCP in hucMSC decreased the repairing effects of hucMSC-Ex on renal fibrosis. Our results suggest that hucMSC-Ex attenuates renal fibrosis through CK1δ/β-TRCP inhibited YAP activity, unveiling a new mechanism for the therapeutic effects of hucMSC-Ex on tissue injury and offering a potential approach for renal fibrosis treatment.
| Year | Citations | |
|---|---|---|
Page 1
Page 1