Cargando…

Absence of Cardiovascular Manifestations in a Haploinsufficient Tgfbr1 Mouse Model

Loeys-Dietz syndrome (LDS) is an autosomal dominant arterial aneurysm disease belonging to the spectrum of transforming growth factor β (TGFβ)-associated vasculopathies. In its most typical form it is characterized by the presence of hypertelorism, bifid uvula/cleft palate and aortic aneurysm and/or...

Descripción completa

Detalles Bibliográficos
Autores principales: Renard, Marjolijn, Trachet, Bram, Casteleyn, Christophe, Campens, Laurence, Cornillie, Pieter, Callewaert, Bert, Deleye, Steven, Vandeghinste, Bert, van Heijningen, Paula M., Dietz, Harry, De Vos, Filip, Essers, Jeroen, Staelens, Steven, Segers, Patrick, Loeys, Bart, Coucke, Paul, De Paepe, Anne, De Backer, Julie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3933654/
https://www.ncbi.nlm.nih.gov/pubmed/24587008
http://dx.doi.org/10.1371/journal.pone.0089749
_version_ 1782304961467514880
author Renard, Marjolijn
Trachet, Bram
Casteleyn, Christophe
Campens, Laurence
Cornillie, Pieter
Callewaert, Bert
Deleye, Steven
Vandeghinste, Bert
van Heijningen, Paula M.
Dietz, Harry
De Vos, Filip
Essers, Jeroen
Staelens, Steven
Segers, Patrick
Loeys, Bart
Coucke, Paul
De Paepe, Anne
De Backer, Julie
author_facet Renard, Marjolijn
Trachet, Bram
Casteleyn, Christophe
Campens, Laurence
Cornillie, Pieter
Callewaert, Bert
Deleye, Steven
Vandeghinste, Bert
van Heijningen, Paula M.
Dietz, Harry
De Vos, Filip
Essers, Jeroen
Staelens, Steven
Segers, Patrick
Loeys, Bart
Coucke, Paul
De Paepe, Anne
De Backer, Julie
author_sort Renard, Marjolijn
collection PubMed
description Loeys-Dietz syndrome (LDS) is an autosomal dominant arterial aneurysm disease belonging to the spectrum of transforming growth factor β (TGFβ)-associated vasculopathies. In its most typical form it is characterized by the presence of hypertelorism, bifid uvula/cleft palate and aortic aneurysm and/or arterial tortuosity. LDS is caused by heterozygous loss of function mutations in the genes encoding TGFβ receptor 1 and 2 (TGFBR1 and −2), which lead to a paradoxical increase in TGFβ signaling. To address this apparent paradox and to gain more insight into the pathophysiology of aneurysmal disease, we characterized a new Tgfbr1 mouse model carrying a p.Y378* nonsense mutation. Study of the natural history in this model showed that homozygous mutant mice die during embryonic development due to defective vascularization. Heterozygous mutant mice aged 6 and 12 months were morphologically and (immuno)histochemically indistinguishable from wild-type mice. We show that the mutant allele is degraded by nonsense mediated mRNA decay, expected to result in haploinsufficiency of the mutant allele. Since this haploinsufficiency model does not result in cardiovascular malformations, it does not allow further study of the process of aneurysm formation. In addition to providing a comprehensive method for cardiovascular phenotyping in mice, the results of this study confirm that haploinsuffciency is not the underlying genetic mechanism in human LDS.
format Online
Article
Text
id pubmed-3933654
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39336542014-02-25 Absence of Cardiovascular Manifestations in a Haploinsufficient Tgfbr1 Mouse Model Renard, Marjolijn Trachet, Bram Casteleyn, Christophe Campens, Laurence Cornillie, Pieter Callewaert, Bert Deleye, Steven Vandeghinste, Bert van Heijningen, Paula M. Dietz, Harry De Vos, Filip Essers, Jeroen Staelens, Steven Segers, Patrick Loeys, Bart Coucke, Paul De Paepe, Anne De Backer, Julie PLoS One Research Article Loeys-Dietz syndrome (LDS) is an autosomal dominant arterial aneurysm disease belonging to the spectrum of transforming growth factor β (TGFβ)-associated vasculopathies. In its most typical form it is characterized by the presence of hypertelorism, bifid uvula/cleft palate and aortic aneurysm and/or arterial tortuosity. LDS is caused by heterozygous loss of function mutations in the genes encoding TGFβ receptor 1 and 2 (TGFBR1 and −2), which lead to a paradoxical increase in TGFβ signaling. To address this apparent paradox and to gain more insight into the pathophysiology of aneurysmal disease, we characterized a new Tgfbr1 mouse model carrying a p.Y378* nonsense mutation. Study of the natural history in this model showed that homozygous mutant mice die during embryonic development due to defective vascularization. Heterozygous mutant mice aged 6 and 12 months were morphologically and (immuno)histochemically indistinguishable from wild-type mice. We show that the mutant allele is degraded by nonsense mediated mRNA decay, expected to result in haploinsufficiency of the mutant allele. Since this haploinsufficiency model does not result in cardiovascular malformations, it does not allow further study of the process of aneurysm formation. In addition to providing a comprehensive method for cardiovascular phenotyping in mice, the results of this study confirm that haploinsuffciency is not the underlying genetic mechanism in human LDS. Public Library of Science 2014-02-24 /pmc/articles/PMC3933654/ /pubmed/24587008 http://dx.doi.org/10.1371/journal.pone.0089749 Text en © 2014 Renard et al http://creativecommons.org/licenses/by/4.0/ 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 author and source are properly credited.
spellingShingle Research Article
Renard, Marjolijn
Trachet, Bram
Casteleyn, Christophe
Campens, Laurence
Cornillie, Pieter
Callewaert, Bert
Deleye, Steven
Vandeghinste, Bert
van Heijningen, Paula M.
Dietz, Harry
De Vos, Filip
Essers, Jeroen
Staelens, Steven
Segers, Patrick
Loeys, Bart
Coucke, Paul
De Paepe, Anne
De Backer, Julie
Absence of Cardiovascular Manifestations in a Haploinsufficient Tgfbr1 Mouse Model
title Absence of Cardiovascular Manifestations in a Haploinsufficient Tgfbr1 Mouse Model
title_full Absence of Cardiovascular Manifestations in a Haploinsufficient Tgfbr1 Mouse Model
title_fullStr Absence of Cardiovascular Manifestations in a Haploinsufficient Tgfbr1 Mouse Model
title_full_unstemmed Absence of Cardiovascular Manifestations in a Haploinsufficient Tgfbr1 Mouse Model
title_short Absence of Cardiovascular Manifestations in a Haploinsufficient Tgfbr1 Mouse Model
title_sort absence of cardiovascular manifestations in a haploinsufficient tgfbr1 mouse model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3933654/
https://www.ncbi.nlm.nih.gov/pubmed/24587008
http://dx.doi.org/10.1371/journal.pone.0089749
work_keys_str_mv AT renardmarjolijn absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT trachetbram absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT casteleynchristophe absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT campenslaurence absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT cornilliepieter absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT callewaertbert absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT deleyesteven absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT vandeghinstebert absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT vanheijningenpaulam absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT dietzharry absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT devosfilip absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT essersjeroen absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT staelenssteven absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT segerspatrick absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT loeysbart absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT couckepaul absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT depaepeanne absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel
AT debackerjulie absenceofcardiovascularmanifestationsinahaploinsufficienttgfbr1mousemodel