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Updated: Jul 13, 2026

Mouse Model of Acute to Chronic Kidney Disease Transition Induced by Renal Ischemia/Reperfusion Injury
Published on: February 10, 2026
Renal damage in obstructive nephropathy is decreased in Skp2-deficient mice
Sayuri Suzuki1, Hirotaka Fukasawa, Kyoko Kitagawa
1Department of Biochemistry 1, Hamamatsu University School of Medicine, Japan.
Abstract:
Ubiquitin-dependent degradation of the cyclin-dependent kinase inhibitor p27 mediated by SCF-Skp2 ubiquitin ligase is involved in cell cycle regulation. Proliferation of tubular cells is a characteristic feature in obstructed kidneys of unilateral ureteral obstruction. Comparing Skp2(+/+) mice with Skp2(-/-) mice, we investigated the involvement of Skp2, a component of SCF-Skp2 ubiquitin ligase for p27, in the progression of renal lesions in unilateral ureteral obstructed kidneys. mRNA expression of Skp2 was markedly increased in the obstructed kidneys from Skp2(+/+) mice and peaked 3 days after unilateral ureteral obstruction. Renal atrophy, tubular dilatation, tubulointerstitial fibrosis, and increases in alpha-smooth muscle actin expression, the number of tubular cells, and proliferating tubular cells positive for Ki67 were observed in the obstructed kidneys from Skp2(+/+) mice; however, these findings were significantly attenuated in Skp2(-/-) mice. The p27 protein level was increased in the obstructed kidneys but was significantly greater in Skp2(-/-) mice. The number of Ki67-positive p27-negative cells was lower in obstructed kidneys from Skp2(-/-) mice than Skp2(+/+) mice, whereas that of Ki67-negative p27-positive cells was greater in Skp2(-/-) mice. These findings suggest that p27 accumulation, which results from SCF-Skp2 ubiquitin ligase deficiency in Skp2(-/-) mice, is involved in the amelioration of renal damage induced by obstructive nephropathy.
Insights
Skp2 ubiquitin ligase normally degrades p27, a cell cycle regulator. In unilateral ureteral obstruction, lacking Skp2 protected kidneys from damage by increasing p27 levels, suggesting a therapeutic target for kidney injury.
Area of Science:
- Cell Biology
- Nephrology
- Molecular Biology
Background:
- Cell cycle regulation is crucial for kidney function.
- Ubiquitin-dependent degradation of p27 by SCF-Skp2 ligase controls cell proliferation.
- Tubular cell proliferation characterizes obstructed kidneys.
Purpose of the Study:
- To investigate the role of Skp2 in renal lesion progression in unilateral ureteral obstruction.
- To determine if Skp2 deficiency impacts kidney damage and p27 levels.
Main Methods:
- Comparison of Skp2(+/+) and Skp2(-/-) mice subjected to unilateral ureteral obstruction.
- Analysis of renal histology, cell proliferation markers (Ki67), alpha-smooth muscle actin, and p27 protein levels.
Main Results:
- Skp2 mRNA increased in obstructed kidneys of Skp2(+/+) mice.
- Renal atrophy, fibrosis, and tubular cell proliferation were reduced in Skp2(-/-) mice.
- p27 protein levels were elevated in Skp2(-/-) mice, with fewer proliferating p27-negative cells.
Conclusions:
- Skp2 deficiency ameliorates renal damage in obstructive nephropathy.
- p27 accumulation due to SCF-Skp2 deficiency plays a protective role in kidney injury.
- Targeting the Skp2-p27 pathway may offer therapeutic strategies for kidney diseases.
Related Concept Videos
Acute Kidney Injury II: Pathophysiology
Acute Kidney Injury IV: Diagnostic Studies and Prevention

