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Dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of MRD7 and Down syndrome

Perturbation of the excitation/inhibition (E/I) balance leads to neurodevelopmental diseases including to autism spectrum disorders, intellectual disability, and epilepsy. Loss-of-function mutations in the DYRK1A gene, located on human chromosome 21 (Hsa21,) lead to an intellectual disability syndro...

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Autores principales: Brault, Véronique, Nguyen, Thu Lan, Flores-Gutiérrez, Javier, Iacono, Giovanni, Birling, Marie-Christine, Lalanne, Valérie, Meziane, Hamid, Manousopoulou, Antigoni, Pavlovic, Guillaume, Lindner, Loïc, Selloum, Mohammed, Sorg, Tania, Yu, Eugene, Garbis, Spiros D., Hérault, Yann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8480849/
https://www.ncbi.nlm.nih.gov/pubmed/34587162
http://dx.doi.org/10.1371/journal.pgen.1009777
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author Brault, Véronique
Nguyen, Thu Lan
Flores-Gutiérrez, Javier
Iacono, Giovanni
Birling, Marie-Christine
Lalanne, Valérie
Meziane, Hamid
Manousopoulou, Antigoni
Pavlovic, Guillaume
Lindner, Loïc
Selloum, Mohammed
Sorg, Tania
Yu, Eugene
Garbis, Spiros D.
Hérault, Yann
author_facet Brault, Véronique
Nguyen, Thu Lan
Flores-Gutiérrez, Javier
Iacono, Giovanni
Birling, Marie-Christine
Lalanne, Valérie
Meziane, Hamid
Manousopoulou, Antigoni
Pavlovic, Guillaume
Lindner, Loïc
Selloum, Mohammed
Sorg, Tania
Yu, Eugene
Garbis, Spiros D.
Hérault, Yann
author_sort Brault, Véronique
collection PubMed
description Perturbation of the excitation/inhibition (E/I) balance leads to neurodevelopmental diseases including to autism spectrum disorders, intellectual disability, and epilepsy. Loss-of-function mutations in the DYRK1A gene, located on human chromosome 21 (Hsa21,) lead to an intellectual disability syndrome associated with microcephaly, epilepsy, and autistic troubles. Overexpression of DYRK1A, on the other hand, has been linked with learning and memory defects observed in people with Down syndrome (DS). Dyrk1a is expressed in both glutamatergic and GABAergic neurons, but its impact on each neuronal population has not yet been elucidated. Here we investigated the impact of Dyrk1a gene copy number variation in glutamatergic neurons using a conditional knockout allele of Dyrk1a crossed with the Tg(Camk2-Cre)4Gsc transgenic mouse. We explored this genetic modification in homozygotes, heterozygotes and combined with the Dp(16Lipi-Zbtb21)1Yey trisomic mouse model to unravel the consequence of Dyrk1a dosage from 0 to 3, to understand its role in normal physiology, and in MRD7 and DS. Overall, Dyrk1a dosage in postnatal glutamatergic neurons did not impact locomotor activity, working memory or epileptic susceptibility, but revealed that Dyrk1a is involved in long-term explicit memory. Molecular analyses pointed at a deregulation of transcriptional activity through immediate early genes and a role of DYRK1A at the glutamatergic post-synapse by deregulating and interacting with key post-synaptic proteins implicated in mechanism leading to long-term enhanced synaptic plasticity. Altogether, our work gives important information to understand the action of DYRK1A inhibitors and have a better therapeutic approach.
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spelling pubmed-84808492021-09-30 Dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of MRD7 and Down syndrome Brault, Véronique Nguyen, Thu Lan Flores-Gutiérrez, Javier Iacono, Giovanni Birling, Marie-Christine Lalanne, Valérie Meziane, Hamid Manousopoulou, Antigoni Pavlovic, Guillaume Lindner, Loïc Selloum, Mohammed Sorg, Tania Yu, Eugene Garbis, Spiros D. Hérault, Yann PLoS Genet Research Article Perturbation of the excitation/inhibition (E/I) balance leads to neurodevelopmental diseases including to autism spectrum disorders, intellectual disability, and epilepsy. Loss-of-function mutations in the DYRK1A gene, located on human chromosome 21 (Hsa21,) lead to an intellectual disability syndrome associated with microcephaly, epilepsy, and autistic troubles. Overexpression of DYRK1A, on the other hand, has been linked with learning and memory defects observed in people with Down syndrome (DS). Dyrk1a is expressed in both glutamatergic and GABAergic neurons, but its impact on each neuronal population has not yet been elucidated. Here we investigated the impact of Dyrk1a gene copy number variation in glutamatergic neurons using a conditional knockout allele of Dyrk1a crossed with the Tg(Camk2-Cre)4Gsc transgenic mouse. We explored this genetic modification in homozygotes, heterozygotes and combined with the Dp(16Lipi-Zbtb21)1Yey trisomic mouse model to unravel the consequence of Dyrk1a dosage from 0 to 3, to understand its role in normal physiology, and in MRD7 and DS. Overall, Dyrk1a dosage in postnatal glutamatergic neurons did not impact locomotor activity, working memory or epileptic susceptibility, but revealed that Dyrk1a is involved in long-term explicit memory. Molecular analyses pointed at a deregulation of transcriptional activity through immediate early genes and a role of DYRK1A at the glutamatergic post-synapse by deregulating and interacting with key post-synaptic proteins implicated in mechanism leading to long-term enhanced synaptic plasticity. Altogether, our work gives important information to understand the action of DYRK1A inhibitors and have a better therapeutic approach. Public Library of Science 2021-09-29 /pmc/articles/PMC8480849/ /pubmed/34587162 http://dx.doi.org/10.1371/journal.pgen.1009777 Text en © 2021 Brault et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Brault, Véronique
Nguyen, Thu Lan
Flores-Gutiérrez, Javier
Iacono, Giovanni
Birling, Marie-Christine
Lalanne, Valérie
Meziane, Hamid
Manousopoulou, Antigoni
Pavlovic, Guillaume
Lindner, Loïc
Selloum, Mohammed
Sorg, Tania
Yu, Eugene
Garbis, Spiros D.
Hérault, Yann
Dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of MRD7 and Down syndrome
title Dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of MRD7 and Down syndrome
title_full Dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of MRD7 and Down syndrome
title_fullStr Dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of MRD7 and Down syndrome
title_full_unstemmed Dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of MRD7 and Down syndrome
title_short Dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of MRD7 and Down syndrome
title_sort dyrk1a gene dosage in glutamatergic neurons has key effects in cognitive deficits observed in mouse models of mrd7 and down syndrome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8480849/
https://www.ncbi.nlm.nih.gov/pubmed/34587162
http://dx.doi.org/10.1371/journal.pgen.1009777
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