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Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C‐terminal palmitoylation‐deficient mice

BACKGROUND: AMPA receptors predominantly mediate fast excitatory synaptic transmission in the mammalian brain. Post‐translational protein S‐palmitoylation of AMPA receptor GluA subunits at their C‐termini reversibly controls the receptors trafficking to and from excitatory glutamatergic synapses. Ex...

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Autores principales: Itoh, Masayuki, Okuno, Hiroyuki, Yamada, Daisuke, Yamashita, Mariko, Abe, Manabu, Natsume, Rie, Kaizuka, Toshie, Sakimura, Kenji, Hoshino, Mikio, Mishina, Masayoshi, Wada, Keiji, Sekiguchi, Masayuki, Hayashi, Takashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7292270/
https://www.ncbi.nlm.nih.gov/pubmed/30536651
http://dx.doi.org/10.1002/npr2.12044
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author Itoh, Masayuki
Okuno, Hiroyuki
Yamada, Daisuke
Yamashita, Mariko
Abe, Manabu
Natsume, Rie
Kaizuka, Toshie
Sakimura, Kenji
Hoshino, Mikio
Mishina, Masayoshi
Wada, Keiji
Sekiguchi, Masayuki
Hayashi, Takashi
author_facet Itoh, Masayuki
Okuno, Hiroyuki
Yamada, Daisuke
Yamashita, Mariko
Abe, Manabu
Natsume, Rie
Kaizuka, Toshie
Sakimura, Kenji
Hoshino, Mikio
Mishina, Masayoshi
Wada, Keiji
Sekiguchi, Masayuki
Hayashi, Takashi
author_sort Itoh, Masayuki
collection PubMed
description BACKGROUND: AMPA receptors predominantly mediate fast excitatory synaptic transmission in the mammalian brain. Post‐translational protein S‐palmitoylation of AMPA receptor GluA subunits at their C‐termini reversibly controls the receptors trafficking to and from excitatory glutamatergic synapses. Excitatory inputs to neurons induce the expression of immediate early genes (IEGs), including Arc, with particular spatial patterns. In the hippocampal dentate gyrus, Arc is mainly expressed in the upper (dorsal) blade at the basal state. GluA1 C‐terminal palmitoylation‐deficient (GluA1C811S) mice showed enhanced seizure susceptibility and disturbed synaptic plasticity without impaired gross anatomy or basal synaptic transmission. These mutant mice also exhibited an increased expression of IEG products, c‐Fos and Arc proteins, in the hippocampus and cerebral cortex. In this report, we further analyzed excitability and Arc expression pattern in the dentate gyrus of GluA1C811S mice. METHODS AND RESULTS: Electrophysiological analysis of granule neurons to measure the evoked excitatory postsynaptic current/evoked inhibitory postsynaptic current ratio revealed that excitatory/inhibitory (E/I) balance was normal in GluA1C811S mice. In contrast, immunohistochemical staining showed an abnormal distribution of Arc‐positive cells between upper and lower (ventral) blades of the dentate gyrus in these mutant mice. These data suggest that deficiency of GluA1 palmitoylation causes perturbed neuronal inputs from the entorhinal cortex to the dentate gyrus, which potentially underlies the excessive excitability in response to seizure‐inducing stimulation. CONCLUSION: Our findings conclude that an appropriate regulation of Arc expression in the dentate gyrus, ensured by AMPA receptor palmitoylation, may be critical for stabilizing hippocampal neural circuits and may suppress excess excitation.
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spelling pubmed-72922702020-12-08 Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C‐terminal palmitoylation‐deficient mice Itoh, Masayuki Okuno, Hiroyuki Yamada, Daisuke Yamashita, Mariko Abe, Manabu Natsume, Rie Kaizuka, Toshie Sakimura, Kenji Hoshino, Mikio Mishina, Masayoshi Wada, Keiji Sekiguchi, Masayuki Hayashi, Takashi Neuropsychopharmacol Rep Micro Reports BACKGROUND: AMPA receptors predominantly mediate fast excitatory synaptic transmission in the mammalian brain. Post‐translational protein S‐palmitoylation of AMPA receptor GluA subunits at their C‐termini reversibly controls the receptors trafficking to and from excitatory glutamatergic synapses. Excitatory inputs to neurons induce the expression of immediate early genes (IEGs), including Arc, with particular spatial patterns. In the hippocampal dentate gyrus, Arc is mainly expressed in the upper (dorsal) blade at the basal state. GluA1 C‐terminal palmitoylation‐deficient (GluA1C811S) mice showed enhanced seizure susceptibility and disturbed synaptic plasticity without impaired gross anatomy or basal synaptic transmission. These mutant mice also exhibited an increased expression of IEG products, c‐Fos and Arc proteins, in the hippocampus and cerebral cortex. In this report, we further analyzed excitability and Arc expression pattern in the dentate gyrus of GluA1C811S mice. METHODS AND RESULTS: Electrophysiological analysis of granule neurons to measure the evoked excitatory postsynaptic current/evoked inhibitory postsynaptic current ratio revealed that excitatory/inhibitory (E/I) balance was normal in GluA1C811S mice. In contrast, immunohistochemical staining showed an abnormal distribution of Arc‐positive cells between upper and lower (ventral) blades of the dentate gyrus in these mutant mice. These data suggest that deficiency of GluA1 palmitoylation causes perturbed neuronal inputs from the entorhinal cortex to the dentate gyrus, which potentially underlies the excessive excitability in response to seizure‐inducing stimulation. CONCLUSION: Our findings conclude that an appropriate regulation of Arc expression in the dentate gyrus, ensured by AMPA receptor palmitoylation, may be critical for stabilizing hippocampal neural circuits and may suppress excess excitation. John Wiley and Sons Inc. 2018-12-07 /pmc/articles/PMC7292270/ /pubmed/30536651 http://dx.doi.org/10.1002/npr2.12044 Text en © 2018 The Authors. Neuropsychopharmacology Reports published by John Wiley & Sons Australia, Ltd on behalf of The Japanese Society of Neuropsychopharmacology This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Micro Reports
Itoh, Masayuki
Okuno, Hiroyuki
Yamada, Daisuke
Yamashita, Mariko
Abe, Manabu
Natsume, Rie
Kaizuka, Toshie
Sakimura, Kenji
Hoshino, Mikio
Mishina, Masayoshi
Wada, Keiji
Sekiguchi, Masayuki
Hayashi, Takashi
Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C‐terminal palmitoylation‐deficient mice
title Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C‐terminal palmitoylation‐deficient mice
title_full Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C‐terminal palmitoylation‐deficient mice
title_fullStr Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C‐terminal palmitoylation‐deficient mice
title_full_unstemmed Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C‐terminal palmitoylation‐deficient mice
title_short Perturbed expression pattern of the immediate early gene Arc in the dentate gyrus of GluA1 C‐terminal palmitoylation‐deficient mice
title_sort perturbed expression pattern of the immediate early gene arc in the dentate gyrus of glua1 c‐terminal palmitoylation‐deficient mice
topic Micro Reports
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7292270/
https://www.ncbi.nlm.nih.gov/pubmed/30536651
http://dx.doi.org/10.1002/npr2.12044
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