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Klotho protects against mouse renal fibrosis by inhibiting Wnt signaling
Minoru Satoh1, Hajime Nagasu, Yoshitaka Morita
1Dept. of Nephrology and Hypertension, Kawasaki Medical School, Kurashiki, Okayama Japan. msatoh@med.kawasaki-m.ac.jp
Abstract:
Augmented Wnt signaling has been implicated in many fibrotic diseases including obstructive nephropathy. Soluble form Klotho has been reported to function as a secreted Wnt antagonist. In this study, we tested whether Klotho protein could reduce renal fibrosis by inhibition of Wnt signaling. Transgenic mice that overexpressed Klotho, wild-type mice, and Klotho hetero mutant mice underwent unilateral ureteral obstruction (UUO). In some Klotho hetero mutant mice, Klotho-encoding plasmid was transferred into the skeletal muscle by electroporation. UUO induced activation of Wnt signaling in wild-type but less in Klotho transgenic mice. Enhanced tubulointerstitial fibrosis in wild-type mice was also attenuated in Klotho transgenic mice. In contrast, Wnt signaling and concomitant tubulointerstitial fibrosis were further augmented in Klotho hetero mutant mice after UUO compared with wild-type mice. In Klotho-encoding plasmid-transfected Klotho hetero mutant mice, however, Wnt signaling was markedly reduced accompanied by a decrease in extracellular matrix deposition after UUO. In vitro studies showed that stimulation of Wnt3a induced prolonged cell cycle arrest at G(2)/M phase, with a resultant increase in production of fibrogenic cytokines. Cotreatment with Klotho bypassed the G(2)/M arrest and reduced fibrogenic cytokine production. In conclusion, Klotho is a critical negative regulator of Wnt signaling and a suppressor of renal fibrosis in the obstructed kidney model.
Insights
Klotho protein suppresses kidney fibrosis by inhibiting Wnt signaling. This study shows Klotho reduces renal fibrosis and Wnt activation in obstructive nephropathy models.
Area of Science:
- Nephrology
- Molecular Biology
- Fibrosis Research
Background:
- Augmented Wnt signaling is linked to fibrotic diseases like obstructive nephropathy.
- Soluble Klotho acts as a secreted Wnt antagonist.
Purpose of the Study:
- To investigate if Klotho protein can mitigate renal fibrosis by inhibiting Wnt signaling.
- To explore the therapeutic potential of Klotho in kidney fibrosis.
Main Methods:
- Utilized transgenic mice overexpressing Klotho, wild-type mice, and Klotho hetero mutant mice.
- Induced unilateral ureteral obstruction (UUO) in mice models.
- Administered Klotho-encoding plasmid via electroporation in some mice.
- Conducted in vitro studies with Wnt3a stimulation and Klotho cotreatment.
Main Results:
- UUO activated Wnt signaling and fibrosis in wild-type mice, but less in Klotho transgenic mice.
- Klotho hetero mutant mice showed augmented Wnt signaling and fibrosis post-UUO.
- Klotho-encoding plasmid transfer reduced Wnt signaling and extracellular matrix deposition in mutant mice.
- In vitro, Klotho prevented Wnt3a-induced cell cycle arrest and fibrogenic cytokine production.
Conclusions:
- Klotho is a critical negative regulator of Wnt signaling.
- Klotho acts as a suppressor of renal fibrosis in obstructed kidney models.
- Klotho holds therapeutic promise for treating kidney fibrosis.