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Canonical Wnt inhibitors ameliorate cystogenesis in a mouse ortholog of human ADPKD
Ao Li, Yuchen Xu, Song Fan, Jialin Meng, Xufeng Shen, Qian Xiao, Yuan Li, Li Zhang, Xiansheng Zhang, Guanqing Wu, Chaozhao Liang, Dianqing Wu
Ao Li, Yuchen Xu, Song Fan, Jialin Meng, Xufeng Shen, Qian Xiao, Yuan Li, Li Zhang, Xiansheng Zhang, Guanqing Wu, Chaozhao Liang, Dianqing Wu
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Research Article Genetics Nephrology

Canonical Wnt inhibitors ameliorate cystogenesis in a mouse ortholog of human ADPKD

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Abstract

Autosomal dominant polycystic kidney disease (ADPKD) can be caused by mutations in the PKD1 or PKD2 genes. The PKD1 gene product is a Wnt cell-surface receptor. We previously showed that a lack of the PKD2 gene product, PC2, increases β-catenin signaling in mouse embryonic fibroblasts, kidney renal epithelia, and isolated renal collecting duct cells. However, it remains unclear whether β-catenin signaling plays a role in polycystic kidney disease phenotypes or if a Wnt inhibitor can halt cyst formation in ADPKD disease models. Here, using genetic and pharmacologic approaches, we demonstrated that the elevated β-catenin signaling caused by PC2 deficiency contributes significantly to disease phenotypes in a mouse ortholog of human ADPKD. Pharmacologically inhibiting β-catenin stability or the production of mature Wnt protein, or genetically reducing the expression of Ctnnb1 (which encodes β-catenin), suppressed the formation of renal cysts, improved renal function, and extended survival in ADPKD mice. Our study clearly demonstrates the importance of β-catenin signaling in disease phenotypes associated with Pkd2 mutation. It also describes the effects of two Wnt inhibitors, XAV939 and LGK974, on various Wnt signaling targets as a potential therapeutic modality for ADPKD, for which there is currently no effective therapy.

Authors

Ao Li, Yuchen Xu, Song Fan, Jialin Meng, Xufeng Shen, Qian Xiao, Yuan Li, Li Zhang, Xiansheng Zhang, Guanqing Wu, Chaozhao Liang, Dianqing Wu

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Figure 2

Ctnnb1 allelic reduction ameliorates ADPKD phenotypes in VilCrePkd2f/f mice.

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Ctnnb1 allelic reduction ameliorates ADPKD phenotypes in VilCrePkd2f/f ...
(A) Diagram showing the mating strategy for generating VilCrePkd2f/fCtnnb1+/– mice.(B) Kaplan-Meier survival analysis showed that VilCrePkd2f/fCtnnb1+/– mice had a significantly higher survival rate than VilCrePkd2f/f mice. (C) Representative histology of kidney sections from mice at 1, 2, and 3 months of age. Scale bars: 600 μm. (D and E) Renal cystic index and kidney/body weight ratio. (F and G) Renal function parameters: blood urea nitrogen (BUN) and creatinine (Cr). Data in D–G are presented as mean ± SD (*P < 0.05, **P < 0.01, ***P < 0.001, n = 5, ANOVA). (H and I) The loss of one Ctnnb1 allele did not affect apoptosis of cyst-lining epithelial cells, as assessed by cleaved caspase-3 and TUNEL staining. (J and K) The loss of one Ctnnb1 allele reduced the proliferation of cyst-lining epithelial cells, as detected by PCNA staining. Arrows indicate positive PCNA staining. Data in H–J are presented as mean ± SD (*P < 0.05, **P < 0.01, ***P < 0.001, n = 3, ANOVA). Scale bars: 60 μm.

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