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Hydrocephalus due to multiple ependymal malformations is caused by mutations in the MPDZ gene

Congenital hydrocephalus is considered as either acquired due to haemorrhage, infection or neoplasia or as of developmental nature and is divided into two subgroups, communicating and obstructive. Congenital hydrocephalus is either syndromic or non-syndromic, and in the latter no cause is found in m...

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Autores principales: Saugier-Veber, Pascale, Marguet, Florent, Lecoquierre, François, Adle-Biassette, Homa, Guimiot, Fabien, Cipriani, Sara, Patrier, Sophie, Brasseur-Daudruy, Marie, Goldenberg, Alice, Layet, Valérie, Capri, Yline, Gérard, Marion, Frébourg, Thierry, Laquerrière, Annie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5412059/
https://www.ncbi.nlm.nih.gov/pubmed/28460636
http://dx.doi.org/10.1186/s40478-017-0438-4
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author Saugier-Veber, Pascale
Marguet, Florent
Lecoquierre, François
Adle-Biassette, Homa
Guimiot, Fabien
Cipriani, Sara
Patrier, Sophie
Brasseur-Daudruy, Marie
Goldenberg, Alice
Layet, Valérie
Capri, Yline
Gérard, Marion
Frébourg, Thierry
Laquerrière, Annie
author_facet Saugier-Veber, Pascale
Marguet, Florent
Lecoquierre, François
Adle-Biassette, Homa
Guimiot, Fabien
Cipriani, Sara
Patrier, Sophie
Brasseur-Daudruy, Marie
Goldenberg, Alice
Layet, Valérie
Capri, Yline
Gérard, Marion
Frébourg, Thierry
Laquerrière, Annie
author_sort Saugier-Veber, Pascale
collection PubMed
description Congenital hydrocephalus is considered as either acquired due to haemorrhage, infection or neoplasia or as of developmental nature and is divided into two subgroups, communicating and obstructive. Congenital hydrocephalus is either syndromic or non-syndromic, and in the latter no cause is found in more than half of the patients. In patients with isolated hydrocephalus, L1CAM mutations represent the most common aetiology. More recently, a founder mutation has also been reported in the MPDZ gene in foetuses presenting massive hydrocephalus, but the neuropathology remains unknown. We describe here three novel homozygous null mutations in the MPDZ gene in foetuses whose post-mortem examination has revealed a homogeneous phenotype characterized by multiple ependymal malformations along the aqueduct of Sylvius, the third and fourth ventricles as well as the central canal of the medulla, consisting in multifocal rosettes with immature cell accumulation in the vicinity of ependymal lining early detached from the ventricular zone. MPDZ also named MUPP1 is an essential component of tight junctions which are expressed from early brain development in the choroid plexuses and ependyma. Alterations in the formation of tight junctions within the ependyma very likely account for the lesions observed and highlight for the first time that primary multifocal ependymal malformations of the ventricular system is genetically determined in humans. Therefore, MPDZ sequencing should be performed when neuropathological examination reveals multifocal ependymal rosette formation within the aqueduct of Sylvius, of the third and fourth ventricles and of the central canal of the medulla.
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spelling pubmed-54120592017-05-03 Hydrocephalus due to multiple ependymal malformations is caused by mutations in the MPDZ gene Saugier-Veber, Pascale Marguet, Florent Lecoquierre, François Adle-Biassette, Homa Guimiot, Fabien Cipriani, Sara Patrier, Sophie Brasseur-Daudruy, Marie Goldenberg, Alice Layet, Valérie Capri, Yline Gérard, Marion Frébourg, Thierry Laquerrière, Annie Acta Neuropathol Commun Research Congenital hydrocephalus is considered as either acquired due to haemorrhage, infection or neoplasia or as of developmental nature and is divided into two subgroups, communicating and obstructive. Congenital hydrocephalus is either syndromic or non-syndromic, and in the latter no cause is found in more than half of the patients. In patients with isolated hydrocephalus, L1CAM mutations represent the most common aetiology. More recently, a founder mutation has also been reported in the MPDZ gene in foetuses presenting massive hydrocephalus, but the neuropathology remains unknown. We describe here three novel homozygous null mutations in the MPDZ gene in foetuses whose post-mortem examination has revealed a homogeneous phenotype characterized by multiple ependymal malformations along the aqueduct of Sylvius, the third and fourth ventricles as well as the central canal of the medulla, consisting in multifocal rosettes with immature cell accumulation in the vicinity of ependymal lining early detached from the ventricular zone. MPDZ also named MUPP1 is an essential component of tight junctions which are expressed from early brain development in the choroid plexuses and ependyma. Alterations in the formation of tight junctions within the ependyma very likely account for the lesions observed and highlight for the first time that primary multifocal ependymal malformations of the ventricular system is genetically determined in humans. Therefore, MPDZ sequencing should be performed when neuropathological examination reveals multifocal ependymal rosette formation within the aqueduct of Sylvius, of the third and fourth ventricles and of the central canal of the medulla. BioMed Central 2017-05-01 /pmc/articles/PMC5412059/ /pubmed/28460636 http://dx.doi.org/10.1186/s40478-017-0438-4 Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Saugier-Veber, Pascale
Marguet, Florent
Lecoquierre, François
Adle-Biassette, Homa
Guimiot, Fabien
Cipriani, Sara
Patrier, Sophie
Brasseur-Daudruy, Marie
Goldenberg, Alice
Layet, Valérie
Capri, Yline
Gérard, Marion
Frébourg, Thierry
Laquerrière, Annie
Hydrocephalus due to multiple ependymal malformations is caused by mutations in the MPDZ gene
title Hydrocephalus due to multiple ependymal malformations is caused by mutations in the MPDZ gene
title_full Hydrocephalus due to multiple ependymal malformations is caused by mutations in the MPDZ gene
title_fullStr Hydrocephalus due to multiple ependymal malformations is caused by mutations in the MPDZ gene
title_full_unstemmed Hydrocephalus due to multiple ependymal malformations is caused by mutations in the MPDZ gene
title_short Hydrocephalus due to multiple ependymal malformations is caused by mutations in the MPDZ gene
title_sort hydrocephalus due to multiple ependymal malformations is caused by mutations in the mpdz gene
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5412059/
https://www.ncbi.nlm.nih.gov/pubmed/28460636
http://dx.doi.org/10.1186/s40478-017-0438-4
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