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rad21 Is Involved in Corneal Stroma Development by Regulating Neural Crest Migration

Previously, we identified RAD21(R450C) from a peripheral sclerocornea pedigree. Injection of this rad21 variant mRNA into Xenopus laevis embryos disrupted the organization of corneal stroma fibrils. To understand the mechanisms of RAD21-mediated corneal stroma defects, gene expression and chromosome...

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Autores principales: Zhang, Bi Ning, Liu, Yu, Yang, Qichen, Leung, Pui Ying, Wang, Chengdong, Wong, Thomas Chi Bun, Tham, Clement C., Chan, Sun On, Pang, Chi Pui, Chen, Li Jia, Dekker, Job, Zhao, Hui, Chu, Wai Kit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7594026/
https://www.ncbi.nlm.nih.gov/pubmed/33096935
http://dx.doi.org/10.3390/ijms21207807
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author Zhang, Bi Ning
Liu, Yu
Yang, Qichen
Leung, Pui Ying
Wang, Chengdong
Wong, Thomas Chi Bun
Tham, Clement C.
Chan, Sun On
Pang, Chi Pui
Chen, Li Jia
Dekker, Job
Zhao, Hui
Chu, Wai Kit
author_facet Zhang, Bi Ning
Liu, Yu
Yang, Qichen
Leung, Pui Ying
Wang, Chengdong
Wong, Thomas Chi Bun
Tham, Clement C.
Chan, Sun On
Pang, Chi Pui
Chen, Li Jia
Dekker, Job
Zhao, Hui
Chu, Wai Kit
author_sort Zhang, Bi Ning
collection PubMed
description Previously, we identified RAD21(R450C) from a peripheral sclerocornea pedigree. Injection of this rad21 variant mRNA into Xenopus laevis embryos disrupted the organization of corneal stroma fibrils. To understand the mechanisms of RAD21-mediated corneal stroma defects, gene expression and chromosome conformation analysis were performed using cells from family members affected by peripheral sclerocornea. Both gene expression and chromosome conformation of cell adhesion genes were affected in cells carrying the heterozygous rad21 variant. Since cell migration is essential in early embryonic development and sclerocornea is a congenital disease, we studied neural crest migration during cornea development in X. laevis embryos. In X. laevis embryos injected with rad21 mutant mRNA, neural crest migration was disrupted, and the number of neural crest-derived periocular mesenchymes decreased significantly in the corneal stroma region. Our data indicate that the RAD21(R450C) variant contributes to peripheral sclerocornea by modifying chromosome conformation and gene expression, therefore disturbing neural crest cell migration, which suggests RAD21 plays a key role in corneal stroma development.
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spelling pubmed-75940262020-10-30 rad21 Is Involved in Corneal Stroma Development by Regulating Neural Crest Migration Zhang, Bi Ning Liu, Yu Yang, Qichen Leung, Pui Ying Wang, Chengdong Wong, Thomas Chi Bun Tham, Clement C. Chan, Sun On Pang, Chi Pui Chen, Li Jia Dekker, Job Zhao, Hui Chu, Wai Kit Int J Mol Sci Article Previously, we identified RAD21(R450C) from a peripheral sclerocornea pedigree. Injection of this rad21 variant mRNA into Xenopus laevis embryos disrupted the organization of corneal stroma fibrils. To understand the mechanisms of RAD21-mediated corneal stroma defects, gene expression and chromosome conformation analysis were performed using cells from family members affected by peripheral sclerocornea. Both gene expression and chromosome conformation of cell adhesion genes were affected in cells carrying the heterozygous rad21 variant. Since cell migration is essential in early embryonic development and sclerocornea is a congenital disease, we studied neural crest migration during cornea development in X. laevis embryos. In X. laevis embryos injected with rad21 mutant mRNA, neural crest migration was disrupted, and the number of neural crest-derived periocular mesenchymes decreased significantly in the corneal stroma region. Our data indicate that the RAD21(R450C) variant contributes to peripheral sclerocornea by modifying chromosome conformation and gene expression, therefore disturbing neural crest cell migration, which suggests RAD21 plays a key role in corneal stroma development. MDPI 2020-10-21 /pmc/articles/PMC7594026/ /pubmed/33096935 http://dx.doi.org/10.3390/ijms21207807 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Bi Ning
Liu, Yu
Yang, Qichen
Leung, Pui Ying
Wang, Chengdong
Wong, Thomas Chi Bun
Tham, Clement C.
Chan, Sun On
Pang, Chi Pui
Chen, Li Jia
Dekker, Job
Zhao, Hui
Chu, Wai Kit
rad21 Is Involved in Corneal Stroma Development by Regulating Neural Crest Migration
title rad21 Is Involved in Corneal Stroma Development by Regulating Neural Crest Migration
title_full rad21 Is Involved in Corneal Stroma Development by Regulating Neural Crest Migration
title_fullStr rad21 Is Involved in Corneal Stroma Development by Regulating Neural Crest Migration
title_full_unstemmed rad21 Is Involved in Corneal Stroma Development by Regulating Neural Crest Migration
title_short rad21 Is Involved in Corneal Stroma Development by Regulating Neural Crest Migration
title_sort rad21 is involved in corneal stroma development by regulating neural crest migration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7594026/
https://www.ncbi.nlm.nih.gov/pubmed/33096935
http://dx.doi.org/10.3390/ijms21207807
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