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A new mouse model for the trisomy of the Abcg1–U2af1 region reveals the complexity of the combinatorial genetic code of down syndrome

Mental retardation in Down syndrome (DS), the most frequent trisomy in humans, varies from moderate to severe. Several studies both in human and based on mouse models identified some regions of human chromosome 21 (Hsa21) as linked to cognitive deficits. However, other intervals such as the telomeri...

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Autores principales: Pereira, Patricia Lopes, Magnol, Laetitia, Sahún, Ignasi, Brault, Véronique, Duchon, Arnaud, Prandini, Paola, Gruart, Agnès, Bizot, Jean-Charles, Chadefaux-Vekemans, Bernadette, Deutsch, Samuel, Trovero, Fabrice, Delgado-García, José María, Antonarakis, Stylianos E., Dierssen, Mara, Herault, Yann
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2778371/
https://www.ncbi.nlm.nih.gov/pubmed/19783846
http://dx.doi.org/10.1093/hmg/ddp438
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author Pereira, Patricia Lopes
Magnol, Laetitia
Sahún, Ignasi
Brault, Véronique
Duchon, Arnaud
Prandini, Paola
Gruart, Agnès
Bizot, Jean-Charles
Chadefaux-Vekemans, Bernadette
Deutsch, Samuel
Trovero, Fabrice
Delgado-García, José María
Antonarakis, Stylianos E.
Dierssen, Mara
Herault, Yann
author_facet Pereira, Patricia Lopes
Magnol, Laetitia
Sahún, Ignasi
Brault, Véronique
Duchon, Arnaud
Prandini, Paola
Gruart, Agnès
Bizot, Jean-Charles
Chadefaux-Vekemans, Bernadette
Deutsch, Samuel
Trovero, Fabrice
Delgado-García, José María
Antonarakis, Stylianos E.
Dierssen, Mara
Herault, Yann
author_sort Pereira, Patricia Lopes
collection PubMed
description Mental retardation in Down syndrome (DS), the most frequent trisomy in humans, varies from moderate to severe. Several studies both in human and based on mouse models identified some regions of human chromosome 21 (Hsa21) as linked to cognitive deficits. However, other intervals such as the telomeric region of Hsa21 may contribute to the DS phenotype but their role has not yet been investigated in detail. Here we show that the trisomy of the 12 genes, found in the 0.59 Mb (Abcg1–U2af1) Hsa21 sub-telomeric region, in mice (Ts1Yah) produced defects in novel object recognition, open-field and Y-maze tests, similar to other DS models, but induces an improvement of the hippocampal-dependent spatial memory in the Morris water maze along with enhanced and longer lasting long-term potentiation in vivo in the hippocampus. Overall, we demonstrate the contribution of the Abcg1–U2af1 genetic region to cognitive defect in working and short-term recognition memory in DS models. Increase in copy number of the Abcg1–U2af1 interval leads to an unexpected gain of cognitive function in spatial learning. Expression analysis pinpoints several genes, such as Ndufv3, Wdr4, Pknox1 and Cbs, as candidates whose overexpression in the hippocampus might facilitate learning and memory in Ts1Yah mice. Our work unravels the complexity of combinatorial genetic code modulating different aspect of mental retardation in DS patients. It establishes definitely the contribution of the Abcg1–U2af1 orthologous region to the DS etiology and suggests new modulatory pathways for learning and memory.
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spelling pubmed-27783712009-11-18 A new mouse model for the trisomy of the Abcg1–U2af1 region reveals the complexity of the combinatorial genetic code of down syndrome Pereira, Patricia Lopes Magnol, Laetitia Sahún, Ignasi Brault, Véronique Duchon, Arnaud Prandini, Paola Gruart, Agnès Bizot, Jean-Charles Chadefaux-Vekemans, Bernadette Deutsch, Samuel Trovero, Fabrice Delgado-García, José María Antonarakis, Stylianos E. Dierssen, Mara Herault, Yann Hum Mol Genet Articles Mental retardation in Down syndrome (DS), the most frequent trisomy in humans, varies from moderate to severe. Several studies both in human and based on mouse models identified some regions of human chromosome 21 (Hsa21) as linked to cognitive deficits. However, other intervals such as the telomeric region of Hsa21 may contribute to the DS phenotype but their role has not yet been investigated in detail. Here we show that the trisomy of the 12 genes, found in the 0.59 Mb (Abcg1–U2af1) Hsa21 sub-telomeric region, in mice (Ts1Yah) produced defects in novel object recognition, open-field and Y-maze tests, similar to other DS models, but induces an improvement of the hippocampal-dependent spatial memory in the Morris water maze along with enhanced and longer lasting long-term potentiation in vivo in the hippocampus. Overall, we demonstrate the contribution of the Abcg1–U2af1 genetic region to cognitive defect in working and short-term recognition memory in DS models. Increase in copy number of the Abcg1–U2af1 interval leads to an unexpected gain of cognitive function in spatial learning. Expression analysis pinpoints several genes, such as Ndufv3, Wdr4, Pknox1 and Cbs, as candidates whose overexpression in the hippocampus might facilitate learning and memory in Ts1Yah mice. Our work unravels the complexity of combinatorial genetic code modulating different aspect of mental retardation in DS patients. It establishes definitely the contribution of the Abcg1–U2af1 orthologous region to the DS etiology and suggests new modulatory pathways for learning and memory. Oxford University Press 2009-12-15 2009-09-26 /pmc/articles/PMC2778371/ /pubmed/19783846 http://dx.doi.org/10.1093/hmg/ddp438 Text en © The Author 2009. Published by Oxford University Press http://creativecommons.org/licenses/by-nc/2.0/uk/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Pereira, Patricia Lopes
Magnol, Laetitia
Sahún, Ignasi
Brault, Véronique
Duchon, Arnaud
Prandini, Paola
Gruart, Agnès
Bizot, Jean-Charles
Chadefaux-Vekemans, Bernadette
Deutsch, Samuel
Trovero, Fabrice
Delgado-García, José María
Antonarakis, Stylianos E.
Dierssen, Mara
Herault, Yann
A new mouse model for the trisomy of the Abcg1–U2af1 region reveals the complexity of the combinatorial genetic code of down syndrome
title A new mouse model for the trisomy of the Abcg1–U2af1 region reveals the complexity of the combinatorial genetic code of down syndrome
title_full A new mouse model for the trisomy of the Abcg1–U2af1 region reveals the complexity of the combinatorial genetic code of down syndrome
title_fullStr A new mouse model for the trisomy of the Abcg1–U2af1 region reveals the complexity of the combinatorial genetic code of down syndrome
title_full_unstemmed A new mouse model for the trisomy of the Abcg1–U2af1 region reveals the complexity of the combinatorial genetic code of down syndrome
title_short A new mouse model for the trisomy of the Abcg1–U2af1 region reveals the complexity of the combinatorial genetic code of down syndrome
title_sort new mouse model for the trisomy of the abcg1–u2af1 region reveals the complexity of the combinatorial genetic code of down syndrome
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2778371/
https://www.ncbi.nlm.nih.gov/pubmed/19783846
http://dx.doi.org/10.1093/hmg/ddp438
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