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Eps8 Regulates Axonal Filopodia in Hippocampal Neurons in Response to Brain-Derived Neurotrophic Factor (BDNF)

The regulation of filopodia plays a crucial role during neuronal development and synaptogenesis. Axonal filopodia, which are known to originate presynaptic specializations, are regulated in response to neurotrophic factors. The structural components of filopodia are actin filaments, whose dynamics a...

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Autores principales: Menna, Elisabetta, Disanza, Andrea, Cagnoli, Cinzia, Schenk, Ursula, Gelsomino, Giuliana, Frittoli, Emanuela, Hertzog, Maud, Offenhauser, Nina, Sawallisch, Corinna, Kreienkamp, Hans-Jürgen, Gertler, Frank B., Di Fiore, Pier Paolo, Scita, Giorgio, Matteoli, Michela
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2696597/
https://www.ncbi.nlm.nih.gov/pubmed/19564905
http://dx.doi.org/10.1371/journal.pbio.1000138
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author Menna, Elisabetta
Disanza, Andrea
Cagnoli, Cinzia
Schenk, Ursula
Gelsomino, Giuliana
Frittoli, Emanuela
Hertzog, Maud
Offenhauser, Nina
Sawallisch, Corinna
Kreienkamp, Hans-Jürgen
Gertler, Frank B.
Di Fiore, Pier Paolo
Scita, Giorgio
Matteoli, Michela
author_facet Menna, Elisabetta
Disanza, Andrea
Cagnoli, Cinzia
Schenk, Ursula
Gelsomino, Giuliana
Frittoli, Emanuela
Hertzog, Maud
Offenhauser, Nina
Sawallisch, Corinna
Kreienkamp, Hans-Jürgen
Gertler, Frank B.
Di Fiore, Pier Paolo
Scita, Giorgio
Matteoli, Michela
author_sort Menna, Elisabetta
collection PubMed
description The regulation of filopodia plays a crucial role during neuronal development and synaptogenesis. Axonal filopodia, which are known to originate presynaptic specializations, are regulated in response to neurotrophic factors. The structural components of filopodia are actin filaments, whose dynamics and organization are controlled by ensembles of actin-binding proteins. How neurotrophic factors regulate these latter proteins remains, however, poorly defined. Here, using a combination of mouse genetic, biochemical, and cell biological assays, we show that genetic removal of Eps8, an actin-binding and regulatory protein enriched in the growth cones and developing processes of neurons, significantly augments the number and density of vasodilator-stimulated phosphoprotein (VASP)-dependent axonal filopodia. The reintroduction of Eps8 wild type (WT), but not an Eps8 capping-defective mutant, into primary hippocampal neurons restored axonal filopodia to WT levels. We further show that the actin barbed-end capping activity of Eps8 is inhibited by brain-derived neurotrophic factor (BDNF) treatment through MAPK-dependent phosphorylation of Eps8 residues S624 and T628. Additionally, an Eps8 mutant, impaired in the MAPK target sites (S624A/T628A), displays increased association to actin-rich structures, is resistant to BDNF-mediated release from microfilaments, and inhibits BDNF-induced filopodia. The opposite is observed for a phosphomimetic Eps8 (S624E/T628E) mutant. Thus, collectively, our data identify Eps8 as a critical capping protein in the regulation of axonal filopodia and delineate a molecular pathway by which BDNF, through MAPK-dependent phosphorylation of Eps8, stimulates axonal filopodia formation, a process with crucial impacts on neuronal development and synapse formation.
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spelling pubmed-26965972009-06-30 Eps8 Regulates Axonal Filopodia in Hippocampal Neurons in Response to Brain-Derived Neurotrophic Factor (BDNF) Menna, Elisabetta Disanza, Andrea Cagnoli, Cinzia Schenk, Ursula Gelsomino, Giuliana Frittoli, Emanuela Hertzog, Maud Offenhauser, Nina Sawallisch, Corinna Kreienkamp, Hans-Jürgen Gertler, Frank B. Di Fiore, Pier Paolo Scita, Giorgio Matteoli, Michela PLoS Biol Research Article The regulation of filopodia plays a crucial role during neuronal development and synaptogenesis. Axonal filopodia, which are known to originate presynaptic specializations, are regulated in response to neurotrophic factors. The structural components of filopodia are actin filaments, whose dynamics and organization are controlled by ensembles of actin-binding proteins. How neurotrophic factors regulate these latter proteins remains, however, poorly defined. Here, using a combination of mouse genetic, biochemical, and cell biological assays, we show that genetic removal of Eps8, an actin-binding and regulatory protein enriched in the growth cones and developing processes of neurons, significantly augments the number and density of vasodilator-stimulated phosphoprotein (VASP)-dependent axonal filopodia. The reintroduction of Eps8 wild type (WT), but not an Eps8 capping-defective mutant, into primary hippocampal neurons restored axonal filopodia to WT levels. We further show that the actin barbed-end capping activity of Eps8 is inhibited by brain-derived neurotrophic factor (BDNF) treatment through MAPK-dependent phosphorylation of Eps8 residues S624 and T628. Additionally, an Eps8 mutant, impaired in the MAPK target sites (S624A/T628A), displays increased association to actin-rich structures, is resistant to BDNF-mediated release from microfilaments, and inhibits BDNF-induced filopodia. The opposite is observed for a phosphomimetic Eps8 (S624E/T628E) mutant. Thus, collectively, our data identify Eps8 as a critical capping protein in the regulation of axonal filopodia and delineate a molecular pathway by which BDNF, through MAPK-dependent phosphorylation of Eps8, stimulates axonal filopodia formation, a process with crucial impacts on neuronal development and synapse formation. Public Library of Science 2009-06-30 /pmc/articles/PMC2696597/ /pubmed/19564905 http://dx.doi.org/10.1371/journal.pbio.1000138 Text en Menna 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
Menna, Elisabetta
Disanza, Andrea
Cagnoli, Cinzia
Schenk, Ursula
Gelsomino, Giuliana
Frittoli, Emanuela
Hertzog, Maud
Offenhauser, Nina
Sawallisch, Corinna
Kreienkamp, Hans-Jürgen
Gertler, Frank B.
Di Fiore, Pier Paolo
Scita, Giorgio
Matteoli, Michela
Eps8 Regulates Axonal Filopodia in Hippocampal Neurons in Response to Brain-Derived Neurotrophic Factor (BDNF)
title Eps8 Regulates Axonal Filopodia in Hippocampal Neurons in Response to Brain-Derived Neurotrophic Factor (BDNF)
title_full Eps8 Regulates Axonal Filopodia in Hippocampal Neurons in Response to Brain-Derived Neurotrophic Factor (BDNF)
title_fullStr Eps8 Regulates Axonal Filopodia in Hippocampal Neurons in Response to Brain-Derived Neurotrophic Factor (BDNF)
title_full_unstemmed Eps8 Regulates Axonal Filopodia in Hippocampal Neurons in Response to Brain-Derived Neurotrophic Factor (BDNF)
title_short Eps8 Regulates Axonal Filopodia in Hippocampal Neurons in Response to Brain-Derived Neurotrophic Factor (BDNF)
title_sort eps8 regulates axonal filopodia in hippocampal neurons in response to brain-derived neurotrophic factor (bdnf)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2696597/
https://www.ncbi.nlm.nih.gov/pubmed/19564905
http://dx.doi.org/10.1371/journal.pbio.1000138
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