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Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1‐integrin

Control of synapse number and function in the developing central nervous system is critical to the formation of neural circuits. Astrocytes play a key role in this process by releasing factors that promote the formation of excitatory synapses. Astrocyte‐secreted thrombospondins (TSPs) induce the for...

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Autores principales: Fossati, Giuliana, Pozzi, Davide, Canzi, Alice, Mirabella, Filippo, Valentino, Sonia, Morini, Raffaella, Ghirardini, Elsa, Filipello, Fabia, Moretti, Milena, Gotti, Cecilia, Annis, Douglas S, Mosher, Deane F, Garlanda, Cecilia, Bottazzi, Barbara, Taraboletti, Giulia, Mantovani, Alberto, Matteoli, Michela, Menna, Elisabetta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315291/
https://www.ncbi.nlm.nih.gov/pubmed/30396995
http://dx.doi.org/10.15252/embj.201899529
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author Fossati, Giuliana
Pozzi, Davide
Canzi, Alice
Mirabella, Filippo
Valentino, Sonia
Morini, Raffaella
Ghirardini, Elsa
Filipello, Fabia
Moretti, Milena
Gotti, Cecilia
Annis, Douglas S
Mosher, Deane F
Garlanda, Cecilia
Bottazzi, Barbara
Taraboletti, Giulia
Mantovani, Alberto
Matteoli, Michela
Menna, Elisabetta
author_facet Fossati, Giuliana
Pozzi, Davide
Canzi, Alice
Mirabella, Filippo
Valentino, Sonia
Morini, Raffaella
Ghirardini, Elsa
Filipello, Fabia
Moretti, Milena
Gotti, Cecilia
Annis, Douglas S
Mosher, Deane F
Garlanda, Cecilia
Bottazzi, Barbara
Taraboletti, Giulia
Mantovani, Alberto
Matteoli, Michela
Menna, Elisabetta
author_sort Fossati, Giuliana
collection PubMed
description Control of synapse number and function in the developing central nervous system is critical to the formation of neural circuits. Astrocytes play a key role in this process by releasing factors that promote the formation of excitatory synapses. Astrocyte‐secreted thrombospondins (TSPs) induce the formation of structural synapses, which however remain post‐synaptically silent, suggesting that completion of early synaptogenesis may require a two‐step mechanism. Here, we show that the humoral innate immune molecule Pentraxin 3 (PTX3) is expressed in the developing rodent brain. PTX3 plays a key role in promoting functionally‐active CNS synapses, by increasing the surface levels and synaptic clustering of AMPA glutamate receptors. This process involves tumor necrosis factor‐induced protein 6 (TSG6), remodeling of the perineuronal network, and a β1‐integrin/ERK pathway. Furthermore, PTX3 activity is regulated by TSP1, which directly interacts with the N‐terminal region of PTX3. These data unveil a fundamental role of PTX3 in promoting the first wave of synaptogenesis, and show that interplay of TSP1 and PTX3 sets the proper balance between synaptic growth and synapse function in the developing brain.
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spelling pubmed-63152912019-01-08 Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1‐integrin Fossati, Giuliana Pozzi, Davide Canzi, Alice Mirabella, Filippo Valentino, Sonia Morini, Raffaella Ghirardini, Elsa Filipello, Fabia Moretti, Milena Gotti, Cecilia Annis, Douglas S Mosher, Deane F Garlanda, Cecilia Bottazzi, Barbara Taraboletti, Giulia Mantovani, Alberto Matteoli, Michela Menna, Elisabetta EMBO J Articles Control of synapse number and function in the developing central nervous system is critical to the formation of neural circuits. Astrocytes play a key role in this process by releasing factors that promote the formation of excitatory synapses. Astrocyte‐secreted thrombospondins (TSPs) induce the formation of structural synapses, which however remain post‐synaptically silent, suggesting that completion of early synaptogenesis may require a two‐step mechanism. Here, we show that the humoral innate immune molecule Pentraxin 3 (PTX3) is expressed in the developing rodent brain. PTX3 plays a key role in promoting functionally‐active CNS synapses, by increasing the surface levels and synaptic clustering of AMPA glutamate receptors. This process involves tumor necrosis factor‐induced protein 6 (TSG6), remodeling of the perineuronal network, and a β1‐integrin/ERK pathway. Furthermore, PTX3 activity is regulated by TSP1, which directly interacts with the N‐terminal region of PTX3. These data unveil a fundamental role of PTX3 in promoting the first wave of synaptogenesis, and show that interplay of TSP1 and PTX3 sets the proper balance between synaptic growth and synapse function in the developing brain. John Wiley and Sons Inc. 2018-11-05 2019-01-03 /pmc/articles/PMC6315291/ /pubmed/30396995 http://dx.doi.org/10.15252/embj.201899529 Text en © 2018 The Authors. Published under the terms of the CC BY NC ND 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Fossati, Giuliana
Pozzi, Davide
Canzi, Alice
Mirabella, Filippo
Valentino, Sonia
Morini, Raffaella
Ghirardini, Elsa
Filipello, Fabia
Moretti, Milena
Gotti, Cecilia
Annis, Douglas S
Mosher, Deane F
Garlanda, Cecilia
Bottazzi, Barbara
Taraboletti, Giulia
Mantovani, Alberto
Matteoli, Michela
Menna, Elisabetta
Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1‐integrin
title Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1‐integrin
title_full Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1‐integrin
title_fullStr Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1‐integrin
title_full_unstemmed Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1‐integrin
title_short Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1‐integrin
title_sort pentraxin 3 regulates synaptic function by inducing ampa receptor clustering via ecm remodeling and β1‐integrin
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315291/
https://www.ncbi.nlm.nih.gov/pubmed/30396995
http://dx.doi.org/10.15252/embj.201899529
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