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Loss of Either Rac1 or Rac3 GTPase Differentially Affects the Behavior of Mutant Mice and the Development of Functional GABAergic Networks.
Pennucci, Roberta; Talpo, Francesca; Astro, Veronica; Montinaro, Valentina; Morè, Lorenzo; Cursi, Marco; Castoldi, Valerio; Chiaretti, Sara; Bianchi, Veronica; Marenna, Silvia; Cambiaghi, Marco; Tonoli, Diletta; Leocani, Letizia; Biella, Gerardo; D'Adamo, Patrizia; de Curtis, Ivan.
Afiliação
  • Pennucci R; Cell Adhesion Unit, Division of Neuroscience.
  • Talpo F; Department of Biology and Biotechnology "L. Spallanzani", University of Pavia, Italy.
  • Astro V; Cell Adhesion Unit, Division of Neuroscience.
  • Montinaro V; Cell Adhesion Unit, Division of Neuroscience.
  • Morè L; Molecular Genetics of Mental Retardation Unit, Division of Neuroscience, IRCSS San Raffaele Scientific Institute, Milano, Italy.
  • Cursi M; Experimental Neurophysiology Unit, INSPE-Institute of Experimental Neurology, Division of Neuroscience, IRCSS San Raffaele Scientific Institute and San Raffaele University, Milano 20132, Italy.
  • Castoldi V; Experimental Neurophysiology Unit, INSPE-Institute of Experimental Neurology, Division of Neuroscience, IRCSS San Raffaele Scientific Institute and San Raffaele University, Milano 20132, Italy.
  • Chiaretti S; Cell Adhesion Unit, Division of Neuroscience.
  • Bianchi V; Molecular Genetics of Mental Retardation Unit, Division of Neuroscience, IRCSS San Raffaele Scientific Institute, Milano, Italy.
  • Marenna S; Experimental Neurophysiology Unit, INSPE-Institute of Experimental Neurology, Division of Neuroscience, IRCSS San Raffaele Scientific Institute and San Raffaele University, Milano 20132, Italy.
  • Cambiaghi M; Experimental Neurophysiology Unit, INSPE-Institute of Experimental Neurology, Division of Neuroscience, IRCSS San Raffaele Scientific Institute and San Raffaele University, Milano 20132, Italy.
  • Tonoli D; Cell Adhesion Unit, Division of Neuroscience.
  • Leocani L; Experimental Neurophysiology Unit, INSPE-Institute of Experimental Neurology, Division of Neuroscience, IRCSS San Raffaele Scientific Institute and San Raffaele University, Milano 20132, Italy.
  • Biella G; Department of Biology and Biotechnology "L. Spallanzani", University of Pavia, Italy.
  • D'Adamo P; Molecular Genetics of Mental Retardation Unit, Division of Neuroscience, IRCSS San Raffaele Scientific Institute, Milano, Italy.
  • de Curtis I; Cell Adhesion Unit, Division of Neuroscience.
Cereb Cortex ; 26(2): 873-890, 2016 Feb.
Article em En | MEDLINE | ID: mdl-26582364
Rac GTPases regulate the development of cortical/hippocampal GABAergic interneurons by affecting the early development and migration of GABAergic precursors. We have addressed the function of Rac1 and Rac3 proteins during the late maturation of hippocampal interneurons. We observed specific phenotypic differences between conditional Rac1 and full Rac3 knockout mice. Rac1 deletion caused greater generalized hyperactivity and cognitive impairment compared with Rac3 deletion. This phenotype matched with a more evident functional impairment of the inhibitory circuits in Rac1 mutants, showing higher excitability and reduced spontaneous inhibitory currents in the CA hippocampal pyramidal neurons. Morphological analysis confirmed a differential modification of the inhibitory circuits: deletion of either Rac caused a similar reduction of parvalbumin-positive inhibitory terminals in the pyramidal layer. Intriguingly, cannabinoid receptor-1-positive terminals were strongly increased only in the CA1 of Rac1-depleted mice. This increase may underlie the stronger electrophysiological defects in this mutant. Accordingly, incubation with an antagonist for cannabinoid receptors partially rescued the reduction of spontaneous inhibitory currents in the pyramidal cells of Rac1 mutants. Our results show that Rac1 and Rac3 have independent roles in the formation of GABAergic circuits, as highlighted by the differential effects of their deletion on the late maturation of specific populations of interneurons.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Comportamento Animal / Proteínas rac de Ligação ao GTP / Proteínas rac1 de Ligação ao GTP / Neurônios GABAérgicos / Hipocampo / Rede Nervosa Limite: Animals Idioma: En Ano de publicação: 2016 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Comportamento Animal / Proteínas rac de Ligação ao GTP / Proteínas rac1 de Ligação ao GTP / Neurônios GABAérgicos / Hipocampo / Rede Nervosa Limite: Animals Idioma: En Ano de publicação: 2016 Tipo de documento: Article