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Loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina

The crumbs cell polarity complex plays a crucial role in apical–basal epithelial polarity, cellular adhesion, and morphogenesis. Homozygous variants in human CRB1 result in autosomal recessive Leber congenital amaurosis (LCA) and retinitis pigmentosa (RP), with no established genotype–phenotype corr...

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Autores principales: Owen, Nicholas, Toms, Maria, Tian, Yuan, Toualbi, Lyes, Richardson, Rose, Young, Rodrigo, Tracey‐White, Dhani, Dhami, Pawan, Beck, Stephan, Moosajee, Mariya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10601974/
https://www.ncbi.nlm.nih.gov/pubmed/36656098
http://dx.doi.org/10.1002/path.6056
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author Owen, Nicholas
Toms, Maria
Tian, Yuan
Toualbi, Lyes
Richardson, Rose
Young, Rodrigo
Tracey‐White, Dhani
Dhami, Pawan
Beck, Stephan
Moosajee, Mariya
author_facet Owen, Nicholas
Toms, Maria
Tian, Yuan
Toualbi, Lyes
Richardson, Rose
Young, Rodrigo
Tracey‐White, Dhani
Dhami, Pawan
Beck, Stephan
Moosajee, Mariya
author_sort Owen, Nicholas
collection PubMed
description The crumbs cell polarity complex plays a crucial role in apical–basal epithelial polarity, cellular adhesion, and morphogenesis. Homozygous variants in human CRB1 result in autosomal recessive Leber congenital amaurosis (LCA) and retinitis pigmentosa (RP), with no established genotype–phenotype correlation. The associated protein complexes have key functions in developmental pathways; however, the underlying disease mechanism remains unclear. Using the oko meduzy ( m289/m289 ) (crb2a ( −/− )) zebrafish, we performed integrative transcriptomic (RNA‐seq data) and methylomic [reduced representation bisulphite sequencing (RRBS)] analysis of whole retina to identify dysregulated genes and pathways. Delayed retinal cell specification was identified in both the crb2a ( −/− ) zebrafish and CRB1 patient‐derived retinal organoids, highlighting the dysfunction of cell cycle modulation and epigenetic transcriptional control. Differential DNA methylation analysis revealed novel hypermethylated pathways involving biological adhesion, Hippo, and transforming growth factor β (TGFβ) signalling. By integrating gene expression with DNA methylation using functional epigenetic modules (FEM), we identified six key modules involving cell cycle control and disturbance of TGFβ, bone morphogenetic protein (BMP), Hippo, and SMAD protein signal transduction pathways, revealing significant interactome hotspots relevant to crb2a function and confirming the epigenetic control of gene regulation in early retinal development, which points to a novel mechanism underlying CRB1‐retinopathies. © 2023 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland.
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spelling pubmed-106019742023-10-27 Loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina Owen, Nicholas Toms, Maria Tian, Yuan Toualbi, Lyes Richardson, Rose Young, Rodrigo Tracey‐White, Dhani Dhami, Pawan Beck, Stephan Moosajee, Mariya J Pathol Original Articles The crumbs cell polarity complex plays a crucial role in apical–basal epithelial polarity, cellular adhesion, and morphogenesis. Homozygous variants in human CRB1 result in autosomal recessive Leber congenital amaurosis (LCA) and retinitis pigmentosa (RP), with no established genotype–phenotype correlation. The associated protein complexes have key functions in developmental pathways; however, the underlying disease mechanism remains unclear. Using the oko meduzy ( m289/m289 ) (crb2a ( −/− )) zebrafish, we performed integrative transcriptomic (RNA‐seq data) and methylomic [reduced representation bisulphite sequencing (RRBS)] analysis of whole retina to identify dysregulated genes and pathways. Delayed retinal cell specification was identified in both the crb2a ( −/− ) zebrafish and CRB1 patient‐derived retinal organoids, highlighting the dysfunction of cell cycle modulation and epigenetic transcriptional control. Differential DNA methylation analysis revealed novel hypermethylated pathways involving biological adhesion, Hippo, and transforming growth factor β (TGFβ) signalling. By integrating gene expression with DNA methylation using functional epigenetic modules (FEM), we identified six key modules involving cell cycle control and disturbance of TGFβ, bone morphogenetic protein (BMP), Hippo, and SMAD protein signal transduction pathways, revealing significant interactome hotspots relevant to crb2a function and confirming the epigenetic control of gene regulation in early retinal development, which points to a novel mechanism underlying CRB1‐retinopathies. © 2023 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland. John Wiley & Sons, Ltd 2023-02-09 2023-04 /pmc/articles/PMC10601974/ /pubmed/36656098 http://dx.doi.org/10.1002/path.6056 Text en © 2023 The Authors. The Journal of Pathology published by John Wiley & Sons Ltd on behalf of The Pathological Society of Great Britain and Ireland. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Owen, Nicholas
Toms, Maria
Tian, Yuan
Toualbi, Lyes
Richardson, Rose
Young, Rodrigo
Tracey‐White, Dhani
Dhami, Pawan
Beck, Stephan
Moosajee, Mariya
Loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina
title Loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina
title_full Loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina
title_fullStr Loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina
title_full_unstemmed Loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina
title_short Loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina
title_sort loss of the crumbs cell polarity complex disrupts epigenetic transcriptional control and cell cycle progression in the developing retina
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10601974/
https://www.ncbi.nlm.nih.gov/pubmed/36656098
http://dx.doi.org/10.1002/path.6056
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