Cargando…

Disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function

PURPOSE: To examine the developmental pathobiology of the eyelid and the cornea caused by epithelial β-catenin gain-of-function (gof) during mouse embryogenesis. METHODS: Compound mutant mice (Ctnnb1(GOFOSE), gof of β-catenin in the epidermis and the ocular surface epithelium) were generated by time...

Descripción completa

Detalles Bibliográficos
Autores principales: Mizoguchi, Shin, Suzuki, Kentaro, Zhang, Jianhua, Yamanaka, Osamu, Liu, Chia-Yang, Okada, Yuka, Miyajima, Masayasu, Kokado, Masahide, Kao, WinstonWY, Yamada, Gen, Saika, Shizuya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Vision 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4522241/
https://www.ncbi.nlm.nih.gov/pubmed/26283861
_version_ 1782383932966174720
author Mizoguchi, Shin
Suzuki, Kentaro
Zhang, Jianhua
Yamanaka, Osamu
Liu, Chia-Yang
Okada, Yuka
Miyajima, Masayasu
Kokado, Masahide
Kao, WinstonWY
Yamada, Gen
Saika, Shizuya
author_facet Mizoguchi, Shin
Suzuki, Kentaro
Zhang, Jianhua
Yamanaka, Osamu
Liu, Chia-Yang
Okada, Yuka
Miyajima, Masayasu
Kokado, Masahide
Kao, WinstonWY
Yamada, Gen
Saika, Shizuya
author_sort Mizoguchi, Shin
collection PubMed
description PURPOSE: To examine the developmental pathobiology of the eyelid and the cornea caused by epithelial β-catenin gain-of-function (gof) during mouse embryogenesis. METHODS: Compound mutant mice (Ctnnb1(GOFOSE), gof of β-catenin in the epidermis and the ocular surface epithelium) were generated by time-mating keratin 5-promoter-Cre recombinase (Krt5-Cre) and Ctnnb1(fE3/WT) (floxed exon 3 of Ctnnb1) mice. Eyes obtained from wild-type (WT) and mutant embryos at various gestation stages until E18.5 were examined with histology and immunohistochemistry. The ultrastructure of the ocular tissues of the E18.5 embryos was also examined. RESULTS: Expression of the gof-β-catenin mutant protein in the epidermis severely impaired eyelid morphogenesis at E15.5, E17.5, and E18.5. The mutant stroma exhibited impaired keratocyte differentiation with accelerated cell proliferation and reduction in the accumulation of collagen type I. The mutant embryos also showed hyperproliferative nodules in the ocular surface epithelia with anomaly of cornea-type epithelial differentiation and the absence of the epithelial basement membrane. CONCLUSIONS: Expression of the gof-β-catenin mutant protein in basal epithelial cells disrupts eyelid and cornea morphogenesis during mouse embryonic development due to the perturbation of cell proliferation and differentiation of the epithelium and the neural crest-derived mesenchyme.
format Online
Article
Text
id pubmed-4522241
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Molecular Vision
record_format MEDLINE/PubMed
spelling pubmed-45222412015-08-17 Disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function Mizoguchi, Shin Suzuki, Kentaro Zhang, Jianhua Yamanaka, Osamu Liu, Chia-Yang Okada, Yuka Miyajima, Masayasu Kokado, Masahide Kao, WinstonWY Yamada, Gen Saika, Shizuya Mol Vis Research Article PURPOSE: To examine the developmental pathobiology of the eyelid and the cornea caused by epithelial β-catenin gain-of-function (gof) during mouse embryogenesis. METHODS: Compound mutant mice (Ctnnb1(GOFOSE), gof of β-catenin in the epidermis and the ocular surface epithelium) were generated by time-mating keratin 5-promoter-Cre recombinase (Krt5-Cre) and Ctnnb1(fE3/WT) (floxed exon 3 of Ctnnb1) mice. Eyes obtained from wild-type (WT) and mutant embryos at various gestation stages until E18.5 were examined with histology and immunohistochemistry. The ultrastructure of the ocular tissues of the E18.5 embryos was also examined. RESULTS: Expression of the gof-β-catenin mutant protein in the epidermis severely impaired eyelid morphogenesis at E15.5, E17.5, and E18.5. The mutant stroma exhibited impaired keratocyte differentiation with accelerated cell proliferation and reduction in the accumulation of collagen type I. The mutant embryos also showed hyperproliferative nodules in the ocular surface epithelia with anomaly of cornea-type epithelial differentiation and the absence of the epithelial basement membrane. CONCLUSIONS: Expression of the gof-β-catenin mutant protein in basal epithelial cells disrupts eyelid and cornea morphogenesis during mouse embryonic development due to the perturbation of cell proliferation and differentiation of the epithelium and the neural crest-derived mesenchyme. Molecular Vision 2015-07-31 /pmc/articles/PMC4522241/ /pubmed/26283861 Text en Copyright © 2015 Molecular Vision. http://creativecommons.org/licenses/by-nc-nd/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited, used for non-commercial purposes, and is not altered or transformed.
spellingShingle Research Article
Mizoguchi, Shin
Suzuki, Kentaro
Zhang, Jianhua
Yamanaka, Osamu
Liu, Chia-Yang
Okada, Yuka
Miyajima, Masayasu
Kokado, Masahide
Kao, WinstonWY
Yamada, Gen
Saika, Shizuya
Disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function
title Disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function
title_full Disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function
title_fullStr Disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function
title_full_unstemmed Disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function
title_short Disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function
title_sort disruption of eyelid and cornea morphogenesis by epithelial β-catenin gain-of-function
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4522241/
https://www.ncbi.nlm.nih.gov/pubmed/26283861
work_keys_str_mv AT mizoguchishin disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT suzukikentaro disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT zhangjianhua disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT yamanakaosamu disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT liuchiayang disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT okadayuka disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT miyajimamasayasu disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT kokadomasahide disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT kaowinstonwy disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT yamadagen disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction
AT saikashizuya disruptionofeyelidandcorneamorphogenesisbyepithelialbcateningainoffunction