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Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics

Recent studies have indicated that the serotonin receptor subtype 7 (5-HT7R) plays a crucial role in shaping neuronal morphology during embryonic and early postnatal life. Here we show that pharmacological stimulation of 5-HT7R using a highly selective agonist, LP-211, enhances neurite outgrowth in...

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Autores principales: Speranza, Luisa, Giuliano, Teresa, Volpicelli, Floriana, De Stefano, M. Egle, Lombardi, Loredana, Chambery, Angela, Lacivita, Enza, Leopoldo, Marcello, Bellenchi, Gian C., di Porzio, Umberto, Crispino, Marianna, Perrone-Capano, Carla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4356071/
https://www.ncbi.nlm.nih.gov/pubmed/25814944
http://dx.doi.org/10.3389/fnbeh.2015.00062
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author Speranza, Luisa
Giuliano, Teresa
Volpicelli, Floriana
De Stefano, M. Egle
Lombardi, Loredana
Chambery, Angela
Lacivita, Enza
Leopoldo, Marcello
Bellenchi, Gian C.
di Porzio, Umberto
Crispino, Marianna
Perrone-Capano, Carla
author_facet Speranza, Luisa
Giuliano, Teresa
Volpicelli, Floriana
De Stefano, M. Egle
Lombardi, Loredana
Chambery, Angela
Lacivita, Enza
Leopoldo, Marcello
Bellenchi, Gian C.
di Porzio, Umberto
Crispino, Marianna
Perrone-Capano, Carla
author_sort Speranza, Luisa
collection PubMed
description Recent studies have indicated that the serotonin receptor subtype 7 (5-HT7R) plays a crucial role in shaping neuronal morphology during embryonic and early postnatal life. Here we show that pharmacological stimulation of 5-HT7R using a highly selective agonist, LP-211, enhances neurite outgrowth in neuronal primary cultures from the cortex, hippocampus and striatal complex of embryonic mouse brain, through multiple signal transduction pathways. All these signaling systems, involving mTOR, the Rho GTPase Cdc42, Cdk5, and ERK, are known to converge on the reorganization of cytoskeletal proteins that subserve neurite outgrowth. Indeed, our data indicate that neurite elongation stimulated by 5-HT7R is modulated by drugs affecting actin polymerization. In addition, we show, by 2D Western blot analyses, that treatment of neuronal cultures with LP-211 alters the expression profile of cofilin, an actin binding protein involved in microfilaments dynamics. Furthermore, by using microfluidic chambers that physically separate axons from the soma and dendrites, we demonstrate that agonist-dependent activation of 5-HT7R stimulates axonal elongation. Our results identify for the first time several signal transduction pathways, activated by stimulation of 5-HT7R, that converge to promote cytoskeleton reorganization and consequent modulation of axonal elongation. Therefore, the activation of 5-HT7R might represent one of the key elements regulating CNS connectivity and plasticity during development.
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spelling pubmed-43560712015-03-26 Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics Speranza, Luisa Giuliano, Teresa Volpicelli, Floriana De Stefano, M. Egle Lombardi, Loredana Chambery, Angela Lacivita, Enza Leopoldo, Marcello Bellenchi, Gian C. di Porzio, Umberto Crispino, Marianna Perrone-Capano, Carla Front Behav Neurosci Neuroscience Recent studies have indicated that the serotonin receptor subtype 7 (5-HT7R) plays a crucial role in shaping neuronal morphology during embryonic and early postnatal life. Here we show that pharmacological stimulation of 5-HT7R using a highly selective agonist, LP-211, enhances neurite outgrowth in neuronal primary cultures from the cortex, hippocampus and striatal complex of embryonic mouse brain, through multiple signal transduction pathways. All these signaling systems, involving mTOR, the Rho GTPase Cdc42, Cdk5, and ERK, are known to converge on the reorganization of cytoskeletal proteins that subserve neurite outgrowth. Indeed, our data indicate that neurite elongation stimulated by 5-HT7R is modulated by drugs affecting actin polymerization. In addition, we show, by 2D Western blot analyses, that treatment of neuronal cultures with LP-211 alters the expression profile of cofilin, an actin binding protein involved in microfilaments dynamics. Furthermore, by using microfluidic chambers that physically separate axons from the soma and dendrites, we demonstrate that agonist-dependent activation of 5-HT7R stimulates axonal elongation. Our results identify for the first time several signal transduction pathways, activated by stimulation of 5-HT7R, that converge to promote cytoskeleton reorganization and consequent modulation of axonal elongation. Therefore, the activation of 5-HT7R might represent one of the key elements regulating CNS connectivity and plasticity during development. Frontiers Media S.A. 2015-03-11 /pmc/articles/PMC4356071/ /pubmed/25814944 http://dx.doi.org/10.3389/fnbeh.2015.00062 Text en Copyright © 2015 Speranza, Giuliano, Volpicelli, De Stefano, Lombardi, Chambery, Lacivita, Leopoldo, Bellenchi, di Porzio, Crispino and Perrone-Capano. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Speranza, Luisa
Giuliano, Teresa
Volpicelli, Floriana
De Stefano, M. Egle
Lombardi, Loredana
Chambery, Angela
Lacivita, Enza
Leopoldo, Marcello
Bellenchi, Gian C.
di Porzio, Umberto
Crispino, Marianna
Perrone-Capano, Carla
Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics
title Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics
title_full Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics
title_fullStr Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics
title_full_unstemmed Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics
title_short Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics
title_sort activation of 5-ht7 receptor stimulates neurite elongation through mtor, cdc42 and actin filaments dynamics
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4356071/
https://www.ncbi.nlm.nih.gov/pubmed/25814944
http://dx.doi.org/10.3389/fnbeh.2015.00062
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