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Mutation of foxl1 Results in Reduced Cartilage Markers in a Zebrafish Model of Otosclerosis

Bone diseases such as otosclerosis (conductive hearing loss) and osteoporosis (low bone mineral density) can result from the abnormal expression of genes that regulate cartilage and bone development. The forkhead box transcription factor FOXL1 has been identified as the causative gene in a family wi...

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Autores principales: Hawkey-Noble, Alexia, Pater, Justin A., Kollipara, Roshni, Fitzgerald, Meriel, Maekawa, Alexandre S., Kovacs, Christopher S., Young, Terry-Lynn, French, Curtis R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9319681/
https://www.ncbi.nlm.nih.gov/pubmed/35885890
http://dx.doi.org/10.3390/genes13071107
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author Hawkey-Noble, Alexia
Pater, Justin A.
Kollipara, Roshni
Fitzgerald, Meriel
Maekawa, Alexandre S.
Kovacs, Christopher S.
Young, Terry-Lynn
French, Curtis R.
author_facet Hawkey-Noble, Alexia
Pater, Justin A.
Kollipara, Roshni
Fitzgerald, Meriel
Maekawa, Alexandre S.
Kovacs, Christopher S.
Young, Terry-Lynn
French, Curtis R.
author_sort Hawkey-Noble, Alexia
collection PubMed
description Bone diseases such as otosclerosis (conductive hearing loss) and osteoporosis (low bone mineral density) can result from the abnormal expression of genes that regulate cartilage and bone development. The forkhead box transcription factor FOXL1 has been identified as the causative gene in a family with autosomal dominant otosclerosis and has been reported as a candidate gene in GWAS meta-analyses for osteoporosis. This potentially indicates a novel role for foxl1 in chondrogenesis, osteogenesis, and bone remodelling. We created a foxl1 mutant zebrafish strain as a model for otosclerosis and osteoporosis and examined jaw bones that are homologous to the mammalian middle ear bones, and mineralization of the axial skeleton. We demonstrate that foxl1 regulates the expression of collagen genes such as collagen type 1 alpha 1a and collagen type 11 alpha 2, and results in a delay in jawbone mineralization, while the axial skeleton remains unchanged. foxl1 may also act with other forkhead genes such as foxc1a, as loss of foxl1 in a foxc1a mutant background increases the severity of jaw calcification phenotypes when compared to each mutant alone. Our zebrafish model demonstrates atypical cartilage formation and mineralization in the zebrafish craniofacial skeleton in foxl1 mutants and demonstrates that aberrant collagen expression may underlie the development of otosclerosis.
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spelling pubmed-93196812022-07-27 Mutation of foxl1 Results in Reduced Cartilage Markers in a Zebrafish Model of Otosclerosis Hawkey-Noble, Alexia Pater, Justin A. Kollipara, Roshni Fitzgerald, Meriel Maekawa, Alexandre S. Kovacs, Christopher S. Young, Terry-Lynn French, Curtis R. Genes (Basel) Article Bone diseases such as otosclerosis (conductive hearing loss) and osteoporosis (low bone mineral density) can result from the abnormal expression of genes that regulate cartilage and bone development. The forkhead box transcription factor FOXL1 has been identified as the causative gene in a family with autosomal dominant otosclerosis and has been reported as a candidate gene in GWAS meta-analyses for osteoporosis. This potentially indicates a novel role for foxl1 in chondrogenesis, osteogenesis, and bone remodelling. We created a foxl1 mutant zebrafish strain as a model for otosclerosis and osteoporosis and examined jaw bones that are homologous to the mammalian middle ear bones, and mineralization of the axial skeleton. We demonstrate that foxl1 regulates the expression of collagen genes such as collagen type 1 alpha 1a and collagen type 11 alpha 2, and results in a delay in jawbone mineralization, while the axial skeleton remains unchanged. foxl1 may also act with other forkhead genes such as foxc1a, as loss of foxl1 in a foxc1a mutant background increases the severity of jaw calcification phenotypes when compared to each mutant alone. Our zebrafish model demonstrates atypical cartilage formation and mineralization in the zebrafish craniofacial skeleton in foxl1 mutants and demonstrates that aberrant collagen expression may underlie the development of otosclerosis. MDPI 2022-06-21 /pmc/articles/PMC9319681/ /pubmed/35885890 http://dx.doi.org/10.3390/genes13071107 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hawkey-Noble, Alexia
Pater, Justin A.
Kollipara, Roshni
Fitzgerald, Meriel
Maekawa, Alexandre S.
Kovacs, Christopher S.
Young, Terry-Lynn
French, Curtis R.
Mutation of foxl1 Results in Reduced Cartilage Markers in a Zebrafish Model of Otosclerosis
title Mutation of foxl1 Results in Reduced Cartilage Markers in a Zebrafish Model of Otosclerosis
title_full Mutation of foxl1 Results in Reduced Cartilage Markers in a Zebrafish Model of Otosclerosis
title_fullStr Mutation of foxl1 Results in Reduced Cartilage Markers in a Zebrafish Model of Otosclerosis
title_full_unstemmed Mutation of foxl1 Results in Reduced Cartilage Markers in a Zebrafish Model of Otosclerosis
title_short Mutation of foxl1 Results in Reduced Cartilage Markers in a Zebrafish Model of Otosclerosis
title_sort mutation of foxl1 results in reduced cartilage markers in a zebrafish model of otosclerosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9319681/
https://www.ncbi.nlm.nih.gov/pubmed/35885890
http://dx.doi.org/10.3390/genes13071107
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