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Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function

Holoprosencephaly is a heterogeneous developmental malformation of the central nervous system characterized by impaired forebrain cleavage, midline facial anomalies and wide phenotypic variation. Indeed, microforms represent the mildest manifestation, associated with facial anomalies but an intact c...

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Autores principales: Seppala, Maisa, Xavier, Guilherme M., Fan, Chen-Ming, Cobourne, Martyn T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4133726/
https://www.ncbi.nlm.nih.gov/pubmed/25063195
http://dx.doi.org/10.1242/bio.20147989
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author Seppala, Maisa
Xavier, Guilherme M.
Fan, Chen-Ming
Cobourne, Martyn T.
author_facet Seppala, Maisa
Xavier, Guilherme M.
Fan, Chen-Ming
Cobourne, Martyn T.
author_sort Seppala, Maisa
collection PubMed
description Holoprosencephaly is a heterogeneous developmental malformation of the central nervous system characterized by impaired forebrain cleavage, midline facial anomalies and wide phenotypic variation. Indeed, microforms represent the mildest manifestation, associated with facial anomalies but an intact central nervous system. In many cases, perturbations in sonic hedgehog signaling are responsible for holoprosencephaly. Here, we have elucidated the contribution of Gas1 and an additional hedgehog co-receptor, Boc during early development of the craniofacial midline, by generating single and compound mutant mice. Significantly, we find Boc has an essential role in the etiology of a unique form of lobar holoprosencephaly that only occurs in conjunction with combined loss of Gas1. Whilst Gas1(−/−) mice have microform holoprosencephaly characterized by a single median maxillary central incisor, cleft palate and pituitary anomalies, Boc(−/−) mice have a normal facial midline. However, Gas1(−/−); Boc(−/−) mutants have lobar holoprosencephaly associated with clefting of the lip, palate and tongue, secondary to reduced sonic hedgehog transduction in the central nervous system and face. Moreover, maxillary incisor development is severely disrupted in these mice, arresting prior to cellular differentiation as a result of apoptosis in the odontogenic epithelium. Thus, Boc and Gas1 retain an essential function in these tooth germs, independent of their role in midline development of the central nervous system and face. Collectively, this phenotype demonstrates both redundancy and individual requirements for Gas1 and Boc during sonic hedgehog transduction in the craniofacial midline and suggests BOC as a potential digenic locus for lobar holoprosencephaly in human populations.
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spelling pubmed-41337262014-09-04 Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function Seppala, Maisa Xavier, Guilherme M. Fan, Chen-Ming Cobourne, Martyn T. Biol Open Research Article Holoprosencephaly is a heterogeneous developmental malformation of the central nervous system characterized by impaired forebrain cleavage, midline facial anomalies and wide phenotypic variation. Indeed, microforms represent the mildest manifestation, associated with facial anomalies but an intact central nervous system. In many cases, perturbations in sonic hedgehog signaling are responsible for holoprosencephaly. Here, we have elucidated the contribution of Gas1 and an additional hedgehog co-receptor, Boc during early development of the craniofacial midline, by generating single and compound mutant mice. Significantly, we find Boc has an essential role in the etiology of a unique form of lobar holoprosencephaly that only occurs in conjunction with combined loss of Gas1. Whilst Gas1(−/−) mice have microform holoprosencephaly characterized by a single median maxillary central incisor, cleft palate and pituitary anomalies, Boc(−/−) mice have a normal facial midline. However, Gas1(−/−); Boc(−/−) mutants have lobar holoprosencephaly associated with clefting of the lip, palate and tongue, secondary to reduced sonic hedgehog transduction in the central nervous system and face. Moreover, maxillary incisor development is severely disrupted in these mice, arresting prior to cellular differentiation as a result of apoptosis in the odontogenic epithelium. Thus, Boc and Gas1 retain an essential function in these tooth germs, independent of their role in midline development of the central nervous system and face. Collectively, this phenotype demonstrates both redundancy and individual requirements for Gas1 and Boc during sonic hedgehog transduction in the craniofacial midline and suggests BOC as a potential digenic locus for lobar holoprosencephaly in human populations. The Company of Biologists 2014-07-25 /pmc/articles/PMC4133726/ /pubmed/25063195 http://dx.doi.org/10.1242/bio.20147989 Text en © 2014. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Seppala, Maisa
Xavier, Guilherme M.
Fan, Chen-Ming
Cobourne, Martyn T.
Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function
title Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function
title_full Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function
title_fullStr Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function
title_full_unstemmed Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function
title_short Boc modifies the spectrum of holoprosencephaly in the absence of Gas1 function
title_sort boc modifies the spectrum of holoprosencephaly in the absence of gas1 function
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4133726/
https://www.ncbi.nlm.nih.gov/pubmed/25063195
http://dx.doi.org/10.1242/bio.20147989
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