Downregulation of SnoN Expression in Obstructive Nephropathy Is Mediated by an Enhanced Ubiquitin-Dependent Degradation
Open Access
- 1 October 2006
- journal article
- Published by Wolters Kluwer Health in Journal of the American Society of Nephrology
- Vol. 17 (10) , 2781-2791
- https://doi.org/10.1681/asn.2005101055
Abstract
Smad transcriptional co-repressor SnoN acts as an antagonist that tightly controls the trans-activation of TGF-β/Smad target genes. SnoN protein is reduced progressively in the fibrotic kidney after obstructive injury, suggesting that the loss of Smad antagonist is a critical event that leads to an uncontrolled fibrogenic signaling. However, the mechanism underlying SnoN downregulation remains unknown. This study investigated the regulation and mechanism of renal SnoN expression in vivo. Whereas SnoN protein was markedly diminished, its mRNA levels remained relatively constant in the obstructed kidney after ureteral ligation. An increased ubiquitination and proteasome-dependent degradation of SnoN was found in obstructed kidney, compared with sham controls. Smad ubiquitination regulatory factor-2, an E3 ubiquitin ligase, was induced and formed a complex with SnoN in vivo. In vitro, TGF-β1 promoted SnoN protein degradation, which was mediated by ubiquitination and a proteasome-dependent mechanism. SnoN constitutively interacted with another Smad co-repressor, Ski, and they formed ternary complex with Smad2/3 upon TGF-β1 stimulation. However, ectopic expression of Ski did not alter the degradation rate of SnoN. Blockage of SnoN degradation by proteasome inhibitor abolished TGF-β1–mediated α-smooth muscle actin and fibronectin induction, suggesting that SnoN degradation could be necessary for TGF-β1 to exert its fibrogenic action. Furthermore, knockdown of Smad ubiquitination regulatory factor-2 expression by small interfering RNA strategy led to an increase in SnoN abundance and inhibited the TGF-β1–mediated gene transcription. These results indicate that downregulation of SnoN expression in the obstructed kidney is mediated by an enhanced ubiquitin-dependent degradation. Preservation of SnoN by inhibiting its degradation may be a novel strategy for targeting hyperactive Smad signaling in renal fibrotic diseases.Keywords
This publication has 35 references indexed in Scilit:
- Renal fibrosis: New insights into the pathogenesis and therapeuticsKidney International, 2006
- The Ubiquitin-Proteasome Pathway and Its Role in CancerJournal of Clinical Oncology, 2005
- Transcriptional induction of Smurf2 ubiquitin ligase by TGF‐βFEBS Letters, 2005
- A Novel Mechanism by which Hepatocyte Growth Factor Blocks Tubular Epithelial to Mesenchymal TransitionJournal of the American Society of Nephrology, 2005
- Hepatocyte Growth Factor Antagonizes the Profibrotic Action of TGF-β1 in Mesangial Cells by Stabilizing Smad Transcriptional Corepressor TGIFJournal of the American Society of Nephrology, 2004
- Downregulation of Smad Transcriptional Corepressors SnoN and Ski in the Fibrotic KidneyJournal of the American Society of Nephrology, 2003
- Ubiquitin-Dependent Degradation of Smad2 Is Increased in the Glomeruli of Rats with Anti-Thymocyte Serum NephritisThe American Journal of Pathology, 2003
- The Oncoprotein Ski Acts as an Antagonist of Transforming Growth Factor-β Signaling by Suppressing Smad2 PhosphorylationPublished by Elsevier ,2003
- The Anaphase-Promoting Complex Mediates TGF-β Signaling by Targeting SnoN for DestructionMolecular Cell, 2001
- Ski/Sno and TGF-β signalingCytokine & Growth Factor Reviews, 2001