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Identification of a Novel Signaling Pathway and Its Relevance for GluA1 Recycling

We previously showed that the serum- and glucocorticoid-inducible kinase 3 (SGK3) increases the AMPA-type glutamate receptor GluA1 protein in the plasma membrane. The activation of AMPA receptors by NMDA-type glutamate receptors eventually leads to postsynaptic neuronal plasticity. Here, we show tha...

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Autores principales: Seebohm, Guiscard, Neumann, Sebastian, Theiss, Carsten, Novkovic, Tanja, Hill, Elaine V., Tavaré, Jeremy M., Lang, Florian, Hollmann, Michael, Manahan-Vaughan, Denise, Strutz-Seebohm, Nathalie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3309939/
https://www.ncbi.nlm.nih.gov/pubmed/22470488
http://dx.doi.org/10.1371/journal.pone.0033889
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author Seebohm, Guiscard
Neumann, Sebastian
Theiss, Carsten
Novkovic, Tanja
Hill, Elaine V.
Tavaré, Jeremy M.
Lang, Florian
Hollmann, Michael
Manahan-Vaughan, Denise
Strutz-Seebohm, Nathalie
author_facet Seebohm, Guiscard
Neumann, Sebastian
Theiss, Carsten
Novkovic, Tanja
Hill, Elaine V.
Tavaré, Jeremy M.
Lang, Florian
Hollmann, Michael
Manahan-Vaughan, Denise
Strutz-Seebohm, Nathalie
author_sort Seebohm, Guiscard
collection PubMed
description We previously showed that the serum- and glucocorticoid-inducible kinase 3 (SGK3) increases the AMPA-type glutamate receptor GluA1 protein in the plasma membrane. The activation of AMPA receptors by NMDA-type glutamate receptors eventually leads to postsynaptic neuronal plasticity. Here, we show that SGK3 mRNA is upregulated in the hippocampus of new-born wild type Wistar rats after NMDA receptor activation. We further demonstrate in the Xenopus oocyte expression system that delivery of GluA1 protein to the plasma membrane depends on the small GTPase RAB11. This RAB-dependent GluA1 trafficking requires phosphorylation and activation of phosphoinositol-3-phosphate-5-kinase (PIKfyve) and the generation of PI(3,5)P(2). In line with this mechanism we could show PIKfyve mRNA expression in the hippocampus of wild type C57/BL6 mice and phosphorylation of PIKfyve by SGK3. Incubation of hippocampal slices with the PIKfyve inhibitor YM201636 revealed reduced CA1 basal synaptic activity. Furthermore, treatment of primary hippocampal neurons with YM201636 altered the GluA1 expression pattern towards reduced synaptic expression of GluA1. Our findings demonstrate for the first time an involvement of PIKfyve and PI(3,5)P(2) in NMDA receptor-triggered synaptic GluA1 trafficking. This new regulatory pathway of GluA1 may contribute to synaptic plasticity and memory.
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spelling pubmed-33099392012-04-02 Identification of a Novel Signaling Pathway and Its Relevance for GluA1 Recycling Seebohm, Guiscard Neumann, Sebastian Theiss, Carsten Novkovic, Tanja Hill, Elaine V. Tavaré, Jeremy M. Lang, Florian Hollmann, Michael Manahan-Vaughan, Denise Strutz-Seebohm, Nathalie PLoS One Research Article We previously showed that the serum- and glucocorticoid-inducible kinase 3 (SGK3) increases the AMPA-type glutamate receptor GluA1 protein in the plasma membrane. The activation of AMPA receptors by NMDA-type glutamate receptors eventually leads to postsynaptic neuronal plasticity. Here, we show that SGK3 mRNA is upregulated in the hippocampus of new-born wild type Wistar rats after NMDA receptor activation. We further demonstrate in the Xenopus oocyte expression system that delivery of GluA1 protein to the plasma membrane depends on the small GTPase RAB11. This RAB-dependent GluA1 trafficking requires phosphorylation and activation of phosphoinositol-3-phosphate-5-kinase (PIKfyve) and the generation of PI(3,5)P(2). In line with this mechanism we could show PIKfyve mRNA expression in the hippocampus of wild type C57/BL6 mice and phosphorylation of PIKfyve by SGK3. Incubation of hippocampal slices with the PIKfyve inhibitor YM201636 revealed reduced CA1 basal synaptic activity. Furthermore, treatment of primary hippocampal neurons with YM201636 altered the GluA1 expression pattern towards reduced synaptic expression of GluA1. Our findings demonstrate for the first time an involvement of PIKfyve and PI(3,5)P(2) in NMDA receptor-triggered synaptic GluA1 trafficking. This new regulatory pathway of GluA1 may contribute to synaptic plasticity and memory. Public Library of Science 2012-03-21 /pmc/articles/PMC3309939/ /pubmed/22470488 http://dx.doi.org/10.1371/journal.pone.0033889 Text en Seebohm 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
Seebohm, Guiscard
Neumann, Sebastian
Theiss, Carsten
Novkovic, Tanja
Hill, Elaine V.
Tavaré, Jeremy M.
Lang, Florian
Hollmann, Michael
Manahan-Vaughan, Denise
Strutz-Seebohm, Nathalie
Identification of a Novel Signaling Pathway and Its Relevance for GluA1 Recycling
title Identification of a Novel Signaling Pathway and Its Relevance for GluA1 Recycling
title_full Identification of a Novel Signaling Pathway and Its Relevance for GluA1 Recycling
title_fullStr Identification of a Novel Signaling Pathway and Its Relevance for GluA1 Recycling
title_full_unstemmed Identification of a Novel Signaling Pathway and Its Relevance for GluA1 Recycling
title_short Identification of a Novel Signaling Pathway and Its Relevance for GluA1 Recycling
title_sort identification of a novel signaling pathway and its relevance for glua1 recycling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3309939/
https://www.ncbi.nlm.nih.gov/pubmed/22470488
http://dx.doi.org/10.1371/journal.pone.0033889
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