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Genetic Deletion of NP1 Prevents Hypoxic‐Ischemic Neuronal Death Via Reducing AMPA Receptor Synaptic Localization in Hippocampal Neurons

BACKGROUND: Trafficking of α‐amino‐3‐hydroxy‐5‐methyl‐4‐isoxazole propionic acid receptors (AMPARs) to excitatory synapses is critical to their synaptic functions. Previously, we have shown induction of neuronal pentraxin 1 (NP1) and its colocalization with AMPAR subunit GluR1 in hypoxic‐ischemic (H...

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Autores principales: Rahim, Md Al, Hossain, Mir Ahamed
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3603251/
https://www.ncbi.nlm.nih.gov/pubmed/23525449
http://dx.doi.org/10.1161/JAHA.112.006098
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author Rahim, Md Al
Hossain, Mir Ahamed
author_facet Rahim, Md Al
Hossain, Mir Ahamed
author_sort Rahim, Md Al
collection PubMed
description BACKGROUND: Trafficking of α‐amino‐3‐hydroxy‐5‐methyl‐4‐isoxazole propionic acid receptors (AMPARs) to excitatory synapses is critical to their synaptic functions. Previously, we have shown induction of neuronal pentraxin 1 (NP1) and its colocalization with AMPAR subunit GluR1 in hypoxic‐ischemic (HI) brain injury. However, the role of NP1 in mediating GluR1 surface expression, trafficking, and clustering at synapses in HI neuronal death is unclear. METHODS AND RESULTS: Primary hippocampal neurons, isolated from wild‐type (WT) and NP1‐knockout (C57BL/6 background) mice at DIV 12 to 14 were exposed to 2 to 8 hours of oxygen glucose deprivation (OGD)—in vitro conditions that mimic human stroke. OGD exposure resulted in time‐dependent induction of NP1 (∼4‐fold), enhanced redistribution of AMAP GluR1 receptors at excitatory synapses, and increased neuronal death. We observed a significant increase in surface and synaptic GluR1 clusters that colocalized with PSD‐95 on dendrites with a simultaneous decrease in internalized GluR1. Surface cross‐linking with BS(3) showed enhanced membrane insertions of GluR1, and increased phosphorylation at Ser‐845 further supported enhanced surface availability of GluR1 after OGD. NP1 protein colocalized with GluR1 and PSD‐95, and OGD significantly increased their synaptic coclustering. Most strikingly, the genetic deletion of NP1 resulted in decreases in surface GluR1 cluster density, synaptic localization, phospho‐GluR1 (Ser‐845) levels, and neuronal death after OGD compared with WT neurons. AMPA (50 μmol/L) induced NP1 and significant cell death in WT but not in NP1−/− neurons. CONCLUSIONS: Our results indicate that NP1 plays a key role in synaptic clustering of GluR1, suggesting that targeting NP1 might be a practical approach to preventing ischemic brain damage.
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spelling pubmed-36032512013-03-27 Genetic Deletion of NP1 Prevents Hypoxic‐Ischemic Neuronal Death Via Reducing AMPA Receptor Synaptic Localization in Hippocampal Neurons Rahim, Md Al Hossain, Mir Ahamed J Am Heart Assoc Original Research BACKGROUND: Trafficking of α‐amino‐3‐hydroxy‐5‐methyl‐4‐isoxazole propionic acid receptors (AMPARs) to excitatory synapses is critical to their synaptic functions. Previously, we have shown induction of neuronal pentraxin 1 (NP1) and its colocalization with AMPAR subunit GluR1 in hypoxic‐ischemic (HI) brain injury. However, the role of NP1 in mediating GluR1 surface expression, trafficking, and clustering at synapses in HI neuronal death is unclear. METHODS AND RESULTS: Primary hippocampal neurons, isolated from wild‐type (WT) and NP1‐knockout (C57BL/6 background) mice at DIV 12 to 14 were exposed to 2 to 8 hours of oxygen glucose deprivation (OGD)—in vitro conditions that mimic human stroke. OGD exposure resulted in time‐dependent induction of NP1 (∼4‐fold), enhanced redistribution of AMAP GluR1 receptors at excitatory synapses, and increased neuronal death. We observed a significant increase in surface and synaptic GluR1 clusters that colocalized with PSD‐95 on dendrites with a simultaneous decrease in internalized GluR1. Surface cross‐linking with BS(3) showed enhanced membrane insertions of GluR1, and increased phosphorylation at Ser‐845 further supported enhanced surface availability of GluR1 after OGD. NP1 protein colocalized with GluR1 and PSD‐95, and OGD significantly increased their synaptic coclustering. Most strikingly, the genetic deletion of NP1 resulted in decreases in surface GluR1 cluster density, synaptic localization, phospho‐GluR1 (Ser‐845) levels, and neuronal death after OGD compared with WT neurons. AMPA (50 μmol/L) induced NP1 and significant cell death in WT but not in NP1−/− neurons. CONCLUSIONS: Our results indicate that NP1 plays a key role in synaptic clustering of GluR1, suggesting that targeting NP1 might be a practical approach to preventing ischemic brain damage. Blackwell Publishing Ltd 2013-02-22 /pmc/articles/PMC3603251/ /pubmed/23525449 http://dx.doi.org/10.1161/JAHA.112.006098 Text en © 2013 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley-Blackwell. http://creativecommons.org/licenses/by/2.5/ This is an Open Access article under the terms of the Creative Commons Attribution Noncommercial License, which permits use, distribution, and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Rahim, Md Al
Hossain, Mir Ahamed
Genetic Deletion of NP1 Prevents Hypoxic‐Ischemic Neuronal Death Via Reducing AMPA Receptor Synaptic Localization in Hippocampal Neurons
title Genetic Deletion of NP1 Prevents Hypoxic‐Ischemic Neuronal Death Via Reducing AMPA Receptor Synaptic Localization in Hippocampal Neurons
title_full Genetic Deletion of NP1 Prevents Hypoxic‐Ischemic Neuronal Death Via Reducing AMPA Receptor Synaptic Localization in Hippocampal Neurons
title_fullStr Genetic Deletion of NP1 Prevents Hypoxic‐Ischemic Neuronal Death Via Reducing AMPA Receptor Synaptic Localization in Hippocampal Neurons
title_full_unstemmed Genetic Deletion of NP1 Prevents Hypoxic‐Ischemic Neuronal Death Via Reducing AMPA Receptor Synaptic Localization in Hippocampal Neurons
title_short Genetic Deletion of NP1 Prevents Hypoxic‐Ischemic Neuronal Death Via Reducing AMPA Receptor Synaptic Localization in Hippocampal Neurons
title_sort genetic deletion of np1 prevents hypoxic‐ischemic neuronal death via reducing ampa receptor synaptic localization in hippocampal neurons
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3603251/
https://www.ncbi.nlm.nih.gov/pubmed/23525449
http://dx.doi.org/10.1161/JAHA.112.006098
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