Cargando…

PSD95 Suppresses Dendritic Arbor Development in Mature Hippocampal Neurons by Occluding the Clustering of NR2B-NMDA Receptors

Considerable evidence indicates that the NMDA receptor (NMDAR) subunits NR2A and NR2B are critical mediators of synaptic plasticity and dendritogenesis; however, how they differentially regulate these processes is unclear. Here we investigate the roles of the NR2A and NR2B subunits, and of their sca...

Descripción completa

Detalles Bibliográficos
Autores principales: Bustos, Fernando J., Varela-Nallar, Lorena, Campos, Matias, Henriquez, Berta, Phillips, Marnie, Opazo, Carlos, Aguayo, Luis G., Montecino, Martin, Constantine-Paton, Martha, Inestrosa, Nibaldo C., van Zundert, Brigitte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3976375/
https://www.ncbi.nlm.nih.gov/pubmed/24705401
http://dx.doi.org/10.1371/journal.pone.0094037
_version_ 1782310284869763072
author Bustos, Fernando J.
Varela-Nallar, Lorena
Campos, Matias
Henriquez, Berta
Phillips, Marnie
Opazo, Carlos
Aguayo, Luis G.
Montecino, Martin
Constantine-Paton, Martha
Inestrosa, Nibaldo C.
van Zundert, Brigitte
author_facet Bustos, Fernando J.
Varela-Nallar, Lorena
Campos, Matias
Henriquez, Berta
Phillips, Marnie
Opazo, Carlos
Aguayo, Luis G.
Montecino, Martin
Constantine-Paton, Martha
Inestrosa, Nibaldo C.
van Zundert, Brigitte
author_sort Bustos, Fernando J.
collection PubMed
description Considerable evidence indicates that the NMDA receptor (NMDAR) subunits NR2A and NR2B are critical mediators of synaptic plasticity and dendritogenesis; however, how they differentially regulate these processes is unclear. Here we investigate the roles of the NR2A and NR2B subunits, and of their scaffolding proteins PSD-95 and SAP102, in remodeling the dendritic architecture of developing hippocampal neurons (2–25 DIV). Analysis of the dendritic architecture and the temporal and spatial expression patterns of the NMDARs and anchoring proteins in immature cultures revealed a strong positive correlation between synaptic expression of the NR2B subunit and dendritogenesis. With maturation, the pruning of dendritic branches was paralleled by a strong reduction in overall and synaptic expression of NR2B, and a significant elevation in synaptic expression of NR2A and PSD95. Using constructs that alter the synaptic composition, we found that either over-expression of NR2B or knock-down of PSD95 by shRNA-PSD95 augmented dendritogenesis in immature neurons. Reactivation of dendritogenesis could also be achieved in mature cultured neurons, but required both manipulations simultaneously, and was accompanied by increased dendritic clustering of NR2B. Our results indicate that the developmental increase in synaptic expression of PSD95 obstructs the synaptic clustering of NR2B-NMDARs, and thereby restricts reactivation of dendritic branching. Experiments with shRNA-PSD95 and chimeric NR2A/NR2B constructs further revealed that C-terminus of the NR2B subunit (tail) was sufficient to induce robust dendritic branching in mature hippocampal neurons, and suggest that the NR2B tail is important in recruiting calcium-dependent signaling proteins and scaffolding proteins necessary for dendritogenesis.
format Online
Article
Text
id pubmed-3976375
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-39763752014-04-08 PSD95 Suppresses Dendritic Arbor Development in Mature Hippocampal Neurons by Occluding the Clustering of NR2B-NMDA Receptors Bustos, Fernando J. Varela-Nallar, Lorena Campos, Matias Henriquez, Berta Phillips, Marnie Opazo, Carlos Aguayo, Luis G. Montecino, Martin Constantine-Paton, Martha Inestrosa, Nibaldo C. van Zundert, Brigitte PLoS One Research Article Considerable evidence indicates that the NMDA receptor (NMDAR) subunits NR2A and NR2B are critical mediators of synaptic plasticity and dendritogenesis; however, how they differentially regulate these processes is unclear. Here we investigate the roles of the NR2A and NR2B subunits, and of their scaffolding proteins PSD-95 and SAP102, in remodeling the dendritic architecture of developing hippocampal neurons (2–25 DIV). Analysis of the dendritic architecture and the temporal and spatial expression patterns of the NMDARs and anchoring proteins in immature cultures revealed a strong positive correlation between synaptic expression of the NR2B subunit and dendritogenesis. With maturation, the pruning of dendritic branches was paralleled by a strong reduction in overall and synaptic expression of NR2B, and a significant elevation in synaptic expression of NR2A and PSD95. Using constructs that alter the synaptic composition, we found that either over-expression of NR2B or knock-down of PSD95 by shRNA-PSD95 augmented dendritogenesis in immature neurons. Reactivation of dendritogenesis could also be achieved in mature cultured neurons, but required both manipulations simultaneously, and was accompanied by increased dendritic clustering of NR2B. Our results indicate that the developmental increase in synaptic expression of PSD95 obstructs the synaptic clustering of NR2B-NMDARs, and thereby restricts reactivation of dendritic branching. Experiments with shRNA-PSD95 and chimeric NR2A/NR2B constructs further revealed that C-terminus of the NR2B subunit (tail) was sufficient to induce robust dendritic branching in mature hippocampal neurons, and suggest that the NR2B tail is important in recruiting calcium-dependent signaling proteins and scaffolding proteins necessary for dendritogenesis. Public Library of Science 2014-04-04 /pmc/articles/PMC3976375/ /pubmed/24705401 http://dx.doi.org/10.1371/journal.pone.0094037 Text en © 2014 Bustos 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
Bustos, Fernando J.
Varela-Nallar, Lorena
Campos, Matias
Henriquez, Berta
Phillips, Marnie
Opazo, Carlos
Aguayo, Luis G.
Montecino, Martin
Constantine-Paton, Martha
Inestrosa, Nibaldo C.
van Zundert, Brigitte
PSD95 Suppresses Dendritic Arbor Development in Mature Hippocampal Neurons by Occluding the Clustering of NR2B-NMDA Receptors
title PSD95 Suppresses Dendritic Arbor Development in Mature Hippocampal Neurons by Occluding the Clustering of NR2B-NMDA Receptors
title_full PSD95 Suppresses Dendritic Arbor Development in Mature Hippocampal Neurons by Occluding the Clustering of NR2B-NMDA Receptors
title_fullStr PSD95 Suppresses Dendritic Arbor Development in Mature Hippocampal Neurons by Occluding the Clustering of NR2B-NMDA Receptors
title_full_unstemmed PSD95 Suppresses Dendritic Arbor Development in Mature Hippocampal Neurons by Occluding the Clustering of NR2B-NMDA Receptors
title_short PSD95 Suppresses Dendritic Arbor Development in Mature Hippocampal Neurons by Occluding the Clustering of NR2B-NMDA Receptors
title_sort psd95 suppresses dendritic arbor development in mature hippocampal neurons by occluding the clustering of nr2b-nmda receptors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3976375/
https://www.ncbi.nlm.nih.gov/pubmed/24705401
http://dx.doi.org/10.1371/journal.pone.0094037
work_keys_str_mv AT bustosfernandoj psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT varelanallarlorena psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT camposmatias psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT henriquezberta psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT phillipsmarnie psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT opazocarlos psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT aguayoluisg psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT montecinomartin psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT constantinepatonmartha psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT inestrosanibaldoc psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors
AT vanzundertbrigitte psd95suppressesdendriticarbordevelopmentinmaturehippocampalneuronsbyoccludingtheclusteringofnr2bnmdareceptors