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The siRNA-mediated knockdown of GluN3A in 46C-derived neural stem cells affects mRNA expression levels of neural genes, including known iGluR interactors

For years, GluN3A was solely considered to be a dominant-negative modulator of NMDARs, since its incorporation into receptors alters hallmark features of conventional NMDARs composed of GluN1/GluN2 subunits. Only recently, increasing evidence has accumulated that GluN3A plays a more diversified role...

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Autores principales: Pachernegg, Svenja, Eilebrecht, Sebastian, Eilebrecht, Elke, Schöneborn, Hendrik, Neumann, Sebastian, Benecke, Arndt G., Hollmann, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5811004/
https://www.ncbi.nlm.nih.gov/pubmed/29438442
http://dx.doi.org/10.1371/journal.pone.0192242
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author Pachernegg, Svenja
Eilebrecht, Sebastian
Eilebrecht, Elke
Schöneborn, Hendrik
Neumann, Sebastian
Benecke, Arndt G.
Hollmann, Michael
author_facet Pachernegg, Svenja
Eilebrecht, Sebastian
Eilebrecht, Elke
Schöneborn, Hendrik
Neumann, Sebastian
Benecke, Arndt G.
Hollmann, Michael
author_sort Pachernegg, Svenja
collection PubMed
description For years, GluN3A was solely considered to be a dominant-negative modulator of NMDARs, since its incorporation into receptors alters hallmark features of conventional NMDARs composed of GluN1/GluN2 subunits. Only recently, increasing evidence has accumulated that GluN3A plays a more diversified role. It is considered to be critically involved in the maturation of glutamatergic synapses, and it might act as a molecular brake to prevent premature synaptic strengthening. Its expression pattern supports a putative role during neural development, since GluN3A is predominantly expressed in early pre- and postnatal stages. In this study, we used RNA interference to efficiently knock down GluN3A in 46C-derived neural stem cells (NSCs) both at the mRNA and at the protein level. Global gene expression profiling upon GluN3A knockdown revealed significantly altered expression of a multitude of neural genes, including genes encoding small GTPases, retinal proteins, and cytoskeletal proteins, some of which have been previously shown to interact with GluN3A or other iGluR subunits. Canonical pathway enrichment studies point at important roles of GluN3A affecting key cellular pathways involved in cell growth, proliferation, motility, and survival, such as the mTOR pathway. This study for the first time provides insights into transcriptome changes upon the specific knockdown of an NMDAR subunit in NSCs, which may help to identify additional functions and downstream pathways of GluN3A and GluN3A-containing NMDARs.
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spelling pubmed-58110042018-02-28 The siRNA-mediated knockdown of GluN3A in 46C-derived neural stem cells affects mRNA expression levels of neural genes, including known iGluR interactors Pachernegg, Svenja Eilebrecht, Sebastian Eilebrecht, Elke Schöneborn, Hendrik Neumann, Sebastian Benecke, Arndt G. Hollmann, Michael PLoS One Research Article For years, GluN3A was solely considered to be a dominant-negative modulator of NMDARs, since its incorporation into receptors alters hallmark features of conventional NMDARs composed of GluN1/GluN2 subunits. Only recently, increasing evidence has accumulated that GluN3A plays a more diversified role. It is considered to be critically involved in the maturation of glutamatergic synapses, and it might act as a molecular brake to prevent premature synaptic strengthening. Its expression pattern supports a putative role during neural development, since GluN3A is predominantly expressed in early pre- and postnatal stages. In this study, we used RNA interference to efficiently knock down GluN3A in 46C-derived neural stem cells (NSCs) both at the mRNA and at the protein level. Global gene expression profiling upon GluN3A knockdown revealed significantly altered expression of a multitude of neural genes, including genes encoding small GTPases, retinal proteins, and cytoskeletal proteins, some of which have been previously shown to interact with GluN3A or other iGluR subunits. Canonical pathway enrichment studies point at important roles of GluN3A affecting key cellular pathways involved in cell growth, proliferation, motility, and survival, such as the mTOR pathway. This study for the first time provides insights into transcriptome changes upon the specific knockdown of an NMDAR subunit in NSCs, which may help to identify additional functions and downstream pathways of GluN3A and GluN3A-containing NMDARs. Public Library of Science 2018-02-13 /pmc/articles/PMC5811004/ /pubmed/29438442 http://dx.doi.org/10.1371/journal.pone.0192242 Text en © 2018 Pachernegg 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Pachernegg, Svenja
Eilebrecht, Sebastian
Eilebrecht, Elke
Schöneborn, Hendrik
Neumann, Sebastian
Benecke, Arndt G.
Hollmann, Michael
The siRNA-mediated knockdown of GluN3A in 46C-derived neural stem cells affects mRNA expression levels of neural genes, including known iGluR interactors
title The siRNA-mediated knockdown of GluN3A in 46C-derived neural stem cells affects mRNA expression levels of neural genes, including known iGluR interactors
title_full The siRNA-mediated knockdown of GluN3A in 46C-derived neural stem cells affects mRNA expression levels of neural genes, including known iGluR interactors
title_fullStr The siRNA-mediated knockdown of GluN3A in 46C-derived neural stem cells affects mRNA expression levels of neural genes, including known iGluR interactors
title_full_unstemmed The siRNA-mediated knockdown of GluN3A in 46C-derived neural stem cells affects mRNA expression levels of neural genes, including known iGluR interactors
title_short The siRNA-mediated knockdown of GluN3A in 46C-derived neural stem cells affects mRNA expression levels of neural genes, including known iGluR interactors
title_sort sirna-mediated knockdown of glun3a in 46c-derived neural stem cells affects mrna expression levels of neural genes, including known iglur interactors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5811004/
https://www.ncbi.nlm.nih.gov/pubmed/29438442
http://dx.doi.org/10.1371/journal.pone.0192242
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