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Disruption of ArhGAP15 results in hyperactive Rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits

During brain development, the small GTPases Rac1/Rac3 play key roles in neuronal migration, neuritogenesis, synaptic formation and plasticity, via control of actin cytoskeleton dynamic. Their activity is positively and negatively regulated by GEFs and GAPs molecules, respectively. However their in v...

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Autores principales: Zamboni, Valentina, Armentano, Maria, Sarò, Gabriella, Ciraolo, Elisa, Ghigo, Alessandra, Germena, Giulia, Umbach, Alessandro, Valnegri, Pamela, Passafaro, Maria, Carabelli, Valentina, Gavello, Daniela, Bianchi, Veronica, D’Adamo, Patrizia, de Curtis, Ivan, El-Assawi, Nadia, Mauro, Alessandro, Priano, Lorenzo, Ferri, Nicola, Hirsch, Emilio, Merlo, Giorgio R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5054378/
https://www.ncbi.nlm.nih.gov/pubmed/27713499
http://dx.doi.org/10.1038/srep34877
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author Zamboni, Valentina
Armentano, Maria
Sarò, Gabriella
Ciraolo, Elisa
Ghigo, Alessandra
Germena, Giulia
Umbach, Alessandro
Valnegri, Pamela
Passafaro, Maria
Carabelli, Valentina
Gavello, Daniela
Bianchi, Veronica
D’Adamo, Patrizia
de Curtis, Ivan
El-Assawi, Nadia
Mauro, Alessandro
Priano, Lorenzo
Ferri, Nicola
Hirsch, Emilio
Merlo, Giorgio R.
author_facet Zamboni, Valentina
Armentano, Maria
Sarò, Gabriella
Ciraolo, Elisa
Ghigo, Alessandra
Germena, Giulia
Umbach, Alessandro
Valnegri, Pamela
Passafaro, Maria
Carabelli, Valentina
Gavello, Daniela
Bianchi, Veronica
D’Adamo, Patrizia
de Curtis, Ivan
El-Assawi, Nadia
Mauro, Alessandro
Priano, Lorenzo
Ferri, Nicola
Hirsch, Emilio
Merlo, Giorgio R.
author_sort Zamboni, Valentina
collection PubMed
description During brain development, the small GTPases Rac1/Rac3 play key roles in neuronal migration, neuritogenesis, synaptic formation and plasticity, via control of actin cytoskeleton dynamic. Their activity is positively and negatively regulated by GEFs and GAPs molecules, respectively. However their in vivo roles are poorly known. The ArhGAP15 gene, coding for a Rac-specific GAP protein, is expressed in both excitatory and inhibitory neurons of the adult hippocampus, and its loss results in the hyperactivation of Rac1/Rac3. In the CA3 and dentate gyrus (DG) regions of the ArhGAP15 mutant hippocampus the CR+, PV+ and SST+ inhibitory neurons are reduced in number, due to reduced efficiency and directionality of their migration, while pyramidal neurons are unaffected. Loss of ArhGAP15 alters neuritogenesis and the balance between excitatory and inhibitory synapses, with a net functional result consisting in increased spike frequency and bursts, accompanied by poor synchronization. Thus, the loss of ArhGAP15 mainly impacts on interneuron-dependent inhibition. Adult ArhGAP15(−/−) mice showed defective hippocampus-dependent functions such as working and associative memories. These findings indicate that a normal architecture and function of hippocampal inhibitory neurons is essential for higher hippocampal functions, and is exquisitely sensitive to ArhGAP15-dependent modulation of Rac1/Rac3.
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spelling pubmed-50543782016-10-19 Disruption of ArhGAP15 results in hyperactive Rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits Zamboni, Valentina Armentano, Maria Sarò, Gabriella Ciraolo, Elisa Ghigo, Alessandra Germena, Giulia Umbach, Alessandro Valnegri, Pamela Passafaro, Maria Carabelli, Valentina Gavello, Daniela Bianchi, Veronica D’Adamo, Patrizia de Curtis, Ivan El-Assawi, Nadia Mauro, Alessandro Priano, Lorenzo Ferri, Nicola Hirsch, Emilio Merlo, Giorgio R. Sci Rep Article During brain development, the small GTPases Rac1/Rac3 play key roles in neuronal migration, neuritogenesis, synaptic formation and plasticity, via control of actin cytoskeleton dynamic. Their activity is positively and negatively regulated by GEFs and GAPs molecules, respectively. However their in vivo roles are poorly known. The ArhGAP15 gene, coding for a Rac-specific GAP protein, is expressed in both excitatory and inhibitory neurons of the adult hippocampus, and its loss results in the hyperactivation of Rac1/Rac3. In the CA3 and dentate gyrus (DG) regions of the ArhGAP15 mutant hippocampus the CR+, PV+ and SST+ inhibitory neurons are reduced in number, due to reduced efficiency and directionality of their migration, while pyramidal neurons are unaffected. Loss of ArhGAP15 alters neuritogenesis and the balance between excitatory and inhibitory synapses, with a net functional result consisting in increased spike frequency and bursts, accompanied by poor synchronization. Thus, the loss of ArhGAP15 mainly impacts on interneuron-dependent inhibition. Adult ArhGAP15(−/−) mice showed defective hippocampus-dependent functions such as working and associative memories. These findings indicate that a normal architecture and function of hippocampal inhibitory neurons is essential for higher hippocampal functions, and is exquisitely sensitive to ArhGAP15-dependent modulation of Rac1/Rac3. Nature Publishing Group 2016-10-07 /pmc/articles/PMC5054378/ /pubmed/27713499 http://dx.doi.org/10.1038/srep34877 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Zamboni, Valentina
Armentano, Maria
Sarò, Gabriella
Ciraolo, Elisa
Ghigo, Alessandra
Germena, Giulia
Umbach, Alessandro
Valnegri, Pamela
Passafaro, Maria
Carabelli, Valentina
Gavello, Daniela
Bianchi, Veronica
D’Adamo, Patrizia
de Curtis, Ivan
El-Assawi, Nadia
Mauro, Alessandro
Priano, Lorenzo
Ferri, Nicola
Hirsch, Emilio
Merlo, Giorgio R.
Disruption of ArhGAP15 results in hyperactive Rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits
title Disruption of ArhGAP15 results in hyperactive Rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits
title_full Disruption of ArhGAP15 results in hyperactive Rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits
title_fullStr Disruption of ArhGAP15 results in hyperactive Rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits
title_full_unstemmed Disruption of ArhGAP15 results in hyperactive Rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits
title_short Disruption of ArhGAP15 results in hyperactive Rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits
title_sort disruption of arhgap15 results in hyperactive rac1, affects the architecture and function of hippocampal inhibitory neurons and causes cognitive deficits
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5054378/
https://www.ncbi.nlm.nih.gov/pubmed/27713499
http://dx.doi.org/10.1038/srep34877
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