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CTNND1 variants cause familial exudative vitreoretinopathy through the Wnt/cadherin axis

Familial exudative vitreoretinopathy (FEVR) is a hereditary disorder that can cause vision loss. CTNND1 encodes a cellular adhesion protein p120-catenin (p120), which is essential for vascularization with unclear function in postnatal physiological angiogenesis. Here, we applied whole-exome sequenci...

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Autores principales: Yang, Mu, Li, Shujin, Huang, Li, Zhao, Rulian, Dai, Erkuan, Jiang, Xiaoyan, He, Yunqi, Lu, Jinglin, Peng, Li, Liu, Wenjing, Zhang, Zhaotian, Jiang, Dan, Zhang, Yi, Jiang, Zhilin, Yang, Yeming, Zhao, Peiquan, Zhu, Xianjun, Ding, Xiaoyan, Yang, Zhenglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9431724/
https://www.ncbi.nlm.nih.gov/pubmed/35700046
http://dx.doi.org/10.1172/jci.insight.158428
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author Yang, Mu
Li, Shujin
Huang, Li
Zhao, Rulian
Dai, Erkuan
Jiang, Xiaoyan
He, Yunqi
Lu, Jinglin
Peng, Li
Liu, Wenjing
Zhang, Zhaotian
Jiang, Dan
Zhang, Yi
Jiang, Zhilin
Yang, Yeming
Zhao, Peiquan
Zhu, Xianjun
Ding, Xiaoyan
Yang, Zhenglin
author_facet Yang, Mu
Li, Shujin
Huang, Li
Zhao, Rulian
Dai, Erkuan
Jiang, Xiaoyan
He, Yunqi
Lu, Jinglin
Peng, Li
Liu, Wenjing
Zhang, Zhaotian
Jiang, Dan
Zhang, Yi
Jiang, Zhilin
Yang, Yeming
Zhao, Peiquan
Zhu, Xianjun
Ding, Xiaoyan
Yang, Zhenglin
author_sort Yang, Mu
collection PubMed
description Familial exudative vitreoretinopathy (FEVR) is a hereditary disorder that can cause vision loss. CTNND1 encodes a cellular adhesion protein p120-catenin (p120), which is essential for vascularization with unclear function in postnatal physiological angiogenesis. Here, we applied whole-exome sequencing to 140 probands of FEVR families and identified 3 candidate variants in the human CTNND1 gene. We performed inducible deletion of Ctnnd1 in the postnatal mouse endothelial cells (ECs) and observed typical phenotypes of FEVR with reactive gliosis. Using unbiased proteomics analysis combined with experimental approaches, we conclude that p120 is critical for the integrity of adherens junctions (AJs) and that p120 activates Wnt signaling activity by protecting β-catenin from glycogen synthase kinase 3 beta–ubiqutin–guided (Gsk3β-ubiquitin–guided) degradation. Treatment of CTNND1-depleted human retinal microvascular ECs with Gsk3β inhibitors LiCl or CHIR-99021 enhanced cell proliferation. Moreover, LiCl treatment increased vessel density in Ctnnd1-deficient mouse retinas. Variants in CTNND1 caused FEVR by compromising the expression of AJs and Wnt signaling activity. Genetic interactions between p120 and β-catenin or α-catenin revealed by double-heterozygous deletion in mice showed that p120 regulates vascular development through the Wnt/cadherin axis. In conclusion, variants in CTNND1 can cause FEVR through the Wnt/cadherin axis.
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spelling pubmed-94317242022-09-02 CTNND1 variants cause familial exudative vitreoretinopathy through the Wnt/cadherin axis Yang, Mu Li, Shujin Huang, Li Zhao, Rulian Dai, Erkuan Jiang, Xiaoyan He, Yunqi Lu, Jinglin Peng, Li Liu, Wenjing Zhang, Zhaotian Jiang, Dan Zhang, Yi Jiang, Zhilin Yang, Yeming Zhao, Peiquan Zhu, Xianjun Ding, Xiaoyan Yang, Zhenglin JCI Insight Research Article Familial exudative vitreoretinopathy (FEVR) is a hereditary disorder that can cause vision loss. CTNND1 encodes a cellular adhesion protein p120-catenin (p120), which is essential for vascularization with unclear function in postnatal physiological angiogenesis. Here, we applied whole-exome sequencing to 140 probands of FEVR families and identified 3 candidate variants in the human CTNND1 gene. We performed inducible deletion of Ctnnd1 in the postnatal mouse endothelial cells (ECs) and observed typical phenotypes of FEVR with reactive gliosis. Using unbiased proteomics analysis combined with experimental approaches, we conclude that p120 is critical for the integrity of adherens junctions (AJs) and that p120 activates Wnt signaling activity by protecting β-catenin from glycogen synthase kinase 3 beta–ubiqutin–guided (Gsk3β-ubiquitin–guided) degradation. Treatment of CTNND1-depleted human retinal microvascular ECs with Gsk3β inhibitors LiCl or CHIR-99021 enhanced cell proliferation. Moreover, LiCl treatment increased vessel density in Ctnnd1-deficient mouse retinas. Variants in CTNND1 caused FEVR by compromising the expression of AJs and Wnt signaling activity. Genetic interactions between p120 and β-catenin or α-catenin revealed by double-heterozygous deletion in mice showed that p120 regulates vascular development through the Wnt/cadherin axis. In conclusion, variants in CTNND1 can cause FEVR through the Wnt/cadherin axis. American Society for Clinical Investigation 2022-07-22 /pmc/articles/PMC9431724/ /pubmed/35700046 http://dx.doi.org/10.1172/jci.insight.158428 Text en © 2022 Yang et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Yang, Mu
Li, Shujin
Huang, Li
Zhao, Rulian
Dai, Erkuan
Jiang, Xiaoyan
He, Yunqi
Lu, Jinglin
Peng, Li
Liu, Wenjing
Zhang, Zhaotian
Jiang, Dan
Zhang, Yi
Jiang, Zhilin
Yang, Yeming
Zhao, Peiquan
Zhu, Xianjun
Ding, Xiaoyan
Yang, Zhenglin
CTNND1 variants cause familial exudative vitreoretinopathy through the Wnt/cadherin axis
title CTNND1 variants cause familial exudative vitreoretinopathy through the Wnt/cadherin axis
title_full CTNND1 variants cause familial exudative vitreoretinopathy through the Wnt/cadherin axis
title_fullStr CTNND1 variants cause familial exudative vitreoretinopathy through the Wnt/cadherin axis
title_full_unstemmed CTNND1 variants cause familial exudative vitreoretinopathy through the Wnt/cadherin axis
title_short CTNND1 variants cause familial exudative vitreoretinopathy through the Wnt/cadherin axis
title_sort ctnnd1 variants cause familial exudative vitreoretinopathy through the wnt/cadherin axis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9431724/
https://www.ncbi.nlm.nih.gov/pubmed/35700046
http://dx.doi.org/10.1172/jci.insight.158428
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