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

Overview of attention for article published in Frontiers in Behavioral Neuroscience, March 2015
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Title
Activation of 5-HT7 receptor stimulates neurite elongation through mTOR, Cdc42 and actin filaments dynamics
Published in
Frontiers in Behavioral Neuroscience, March 2015
DOI 10.3389/fnbeh.2015.00062
Pubmed ID
Authors

Luisa Speranza, Teresa Giuliano, Floriana Volpicelli, M. Egle De Stefano, Loredana Lombardi, Angela Chambery, Enza Lacivita, Marcello Leopoldo, Gian C. Bellenchi, Umberto di Porzio, Marianna Crispino, Carla Perrone-Capano

Abstract

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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Mendeley readers

The data shown below were compiled from readership statistics for 49 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 49 100%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 8 16%
Researcher 8 16%
Student > Ph. D. Student 8 16%
Student > Doctoral Student 5 10%
Other 3 6%
Other 6 12%
Unknown 11 22%
Readers by discipline Count As %
Neuroscience 10 20%
Agricultural and Biological Sciences 7 14%
Biochemistry, Genetics and Molecular Biology 5 10%
Medicine and Dentistry 5 10%
Pharmacology, Toxicology and Pharmaceutical Science 3 6%
Other 5 10%
Unknown 14 29%