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Age‐dependent NMDA receptor function is regulated by the amyloid precursor protein

N‐methyl‐D‐aspartate receptors (NMDARs) are critical for the maturation and plasticity of glutamatergic synapses. In the hippocampus, NMDARs mainly contain GluN2A and/or GluN2B regulatory subunits. The amyloid precursor protein (APP) has emerged as a putative regulator of NMDARs, but the impact of t...

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Autores principales: Rajão‐Saraiva, Joana, Dunot, Jade, Ribera, Aurore, Temido‐Ferreira, Mariana, Coelho, Joana E., König, Svenja, Moreno, Sébastien, Enguita, Francisco J., Willem, Michael, Kins, Stefan, Marie, Hélène, Lopes, Luísa V., Pousinha, Paula A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014064/
https://www.ncbi.nlm.nih.gov/pubmed/36704841
http://dx.doi.org/10.1111/acel.13778
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author Rajão‐Saraiva, Joana
Dunot, Jade
Ribera, Aurore
Temido‐Ferreira, Mariana
Coelho, Joana E.
König, Svenja
Moreno, Sébastien
Enguita, Francisco J.
Willem, Michael
Kins, Stefan
Marie, Hélène
Lopes, Luísa V.
Pousinha, Paula A.
author_facet Rajão‐Saraiva, Joana
Dunot, Jade
Ribera, Aurore
Temido‐Ferreira, Mariana
Coelho, Joana E.
König, Svenja
Moreno, Sébastien
Enguita, Francisco J.
Willem, Michael
Kins, Stefan
Marie, Hélène
Lopes, Luísa V.
Pousinha, Paula A.
author_sort Rajão‐Saraiva, Joana
collection PubMed
description N‐methyl‐D‐aspartate receptors (NMDARs) are critical for the maturation and plasticity of glutamatergic synapses. In the hippocampus, NMDARs mainly contain GluN2A and/or GluN2B regulatory subunits. The amyloid precursor protein (APP) has emerged as a putative regulator of NMDARs, but the impact of this interaction to their function is largely unknown. By combining patch‐clamp electrophysiology and molecular approaches, we unravel a dual mechanism by which APP controls GluN2B‐NMDARs, depending on the life stage. We show that APP is highly abundant specifically at the postnatal postsynapse. It interacts with GluN2B‐NMDARs, controlling its synaptic content and mediated currents, both in infant mice and primary neuronal cultures. Upon aging, the APP amyloidogenic‐derived C‐terminal fragments, rather than APP full‐length, contribute to aberrant GluN2B‐NMDAR currents. Accordingly, we found that the APP processing is increased upon aging, both in mice and human brain. Interfering with stability or production of the APP intracellular domain normalized the GluN2B‐NMDARs currents. While the first mechanism might be essential for synaptic maturation during development, the latter could contribute to age‐related synaptic impairments.
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spelling pubmed-100140642023-03-15 Age‐dependent NMDA receptor function is regulated by the amyloid precursor protein Rajão‐Saraiva, Joana Dunot, Jade Ribera, Aurore Temido‐Ferreira, Mariana Coelho, Joana E. König, Svenja Moreno, Sébastien Enguita, Francisco J. Willem, Michael Kins, Stefan Marie, Hélène Lopes, Luísa V. Pousinha, Paula A. Aging Cell Research Articles N‐methyl‐D‐aspartate receptors (NMDARs) are critical for the maturation and plasticity of glutamatergic synapses. In the hippocampus, NMDARs mainly contain GluN2A and/or GluN2B regulatory subunits. The amyloid precursor protein (APP) has emerged as a putative regulator of NMDARs, but the impact of this interaction to their function is largely unknown. By combining patch‐clamp electrophysiology and molecular approaches, we unravel a dual mechanism by which APP controls GluN2B‐NMDARs, depending on the life stage. We show that APP is highly abundant specifically at the postnatal postsynapse. It interacts with GluN2B‐NMDARs, controlling its synaptic content and mediated currents, both in infant mice and primary neuronal cultures. Upon aging, the APP amyloidogenic‐derived C‐terminal fragments, rather than APP full‐length, contribute to aberrant GluN2B‐NMDAR currents. Accordingly, we found that the APP processing is increased upon aging, both in mice and human brain. Interfering with stability or production of the APP intracellular domain normalized the GluN2B‐NMDARs currents. While the first mechanism might be essential for synaptic maturation during development, the latter could contribute to age‐related synaptic impairments. John Wiley and Sons Inc. 2023-01-26 /pmc/articles/PMC10014064/ /pubmed/36704841 http://dx.doi.org/10.1111/acel.13778 Text en © 2023 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Rajão‐Saraiva, Joana
Dunot, Jade
Ribera, Aurore
Temido‐Ferreira, Mariana
Coelho, Joana E.
König, Svenja
Moreno, Sébastien
Enguita, Francisco J.
Willem, Michael
Kins, Stefan
Marie, Hélène
Lopes, Luísa V.
Pousinha, Paula A.
Age‐dependent NMDA receptor function is regulated by the amyloid precursor protein
title Age‐dependent NMDA receptor function is regulated by the amyloid precursor protein
title_full Age‐dependent NMDA receptor function is regulated by the amyloid precursor protein
title_fullStr Age‐dependent NMDA receptor function is regulated by the amyloid precursor protein
title_full_unstemmed Age‐dependent NMDA receptor function is regulated by the amyloid precursor protein
title_short Age‐dependent NMDA receptor function is regulated by the amyloid precursor protein
title_sort age‐dependent nmda receptor function is regulated by the amyloid precursor protein
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10014064/
https://www.ncbi.nlm.nih.gov/pubmed/36704841
http://dx.doi.org/10.1111/acel.13778
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