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Lack of Cdkl5 Disrupts the Organization of Excitatory and Inhibitory Synapses and Parvalbumin Interneurons in the Primary Visual Cortex

Cyclin-dependent kinase-like 5 (CDKL5) mutations are found in severe neurodevelopmental disorders, including the Hanefeld variant of Rett syndrome (RTT; CDKL5 disorder). CDKL5 loss-of-function murine models recapitulate pathological signs of the human disease, such as visual attention deficits and r...

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Autores principales: Pizzo, Riccardo, Gurgone, Antonia, Castroflorio, Enrico, Amendola, Elena, Gross, Cornelius, Sassoè-Pognetto, Marco, Giustetto, Maurizio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5124713/
https://www.ncbi.nlm.nih.gov/pubmed/27965538
http://dx.doi.org/10.3389/fncel.2016.00261
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author Pizzo, Riccardo
Gurgone, Antonia
Castroflorio, Enrico
Amendola, Elena
Gross, Cornelius
Sassoè-Pognetto, Marco
Giustetto, Maurizio
author_facet Pizzo, Riccardo
Gurgone, Antonia
Castroflorio, Enrico
Amendola, Elena
Gross, Cornelius
Sassoè-Pognetto, Marco
Giustetto, Maurizio
author_sort Pizzo, Riccardo
collection PubMed
description Cyclin-dependent kinase-like 5 (CDKL5) mutations are found in severe neurodevelopmental disorders, including the Hanefeld variant of Rett syndrome (RTT; CDKL5 disorder). CDKL5 loss-of-function murine models recapitulate pathological signs of the human disease, such as visual attention deficits and reduced visual acuity. Here we investigated the cellular and synaptic substrates of visual defects by studying the organization of the primary visual cortex (V1) of Cdkl5(−/y) mice. We found a severe reduction of c-Fos expression in V1 of Cdkl5(−/y) mutants, suggesting circuit hypoactivity. Glutamatergic presynaptic structures were increased, but postsynaptic PSD-95 and Homer were significantly downregulated in CDKL5 mutants. Interneurons expressing parvalbumin, but not other types of interneuron, had a higher density in mutant V1, and were hyperconnected with pyramidal neurons. Finally, the developmental trajectory of pavalbumin-containing cells was also affected in Cdkl5(−/y) mice, as revealed by fainter appearance perineuronal nets at the closure of the critical period (CP). The present data reveal an overall disruption of V1 cellular and synaptic organization that may cause a shift in the excitation/inhibition balance likely to underlie the visual deficits characteristic of CDKL5 disorder. Moreover, ablation of CDKL5 is likely to tamper with the mechanisms underlying experience-dependent refinement of cortical circuits during the CP of development.
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spelling pubmed-51247132016-12-13 Lack of Cdkl5 Disrupts the Organization of Excitatory and Inhibitory Synapses and Parvalbumin Interneurons in the Primary Visual Cortex Pizzo, Riccardo Gurgone, Antonia Castroflorio, Enrico Amendola, Elena Gross, Cornelius Sassoè-Pognetto, Marco Giustetto, Maurizio Front Cell Neurosci Neuroscience Cyclin-dependent kinase-like 5 (CDKL5) mutations are found in severe neurodevelopmental disorders, including the Hanefeld variant of Rett syndrome (RTT; CDKL5 disorder). CDKL5 loss-of-function murine models recapitulate pathological signs of the human disease, such as visual attention deficits and reduced visual acuity. Here we investigated the cellular and synaptic substrates of visual defects by studying the organization of the primary visual cortex (V1) of Cdkl5(−/y) mice. We found a severe reduction of c-Fos expression in V1 of Cdkl5(−/y) mutants, suggesting circuit hypoactivity. Glutamatergic presynaptic structures were increased, but postsynaptic PSD-95 and Homer were significantly downregulated in CDKL5 mutants. Interneurons expressing parvalbumin, but not other types of interneuron, had a higher density in mutant V1, and were hyperconnected with pyramidal neurons. Finally, the developmental trajectory of pavalbumin-containing cells was also affected in Cdkl5(−/y) mice, as revealed by fainter appearance perineuronal nets at the closure of the critical period (CP). The present data reveal an overall disruption of V1 cellular and synaptic organization that may cause a shift in the excitation/inhibition balance likely to underlie the visual deficits characteristic of CDKL5 disorder. Moreover, ablation of CDKL5 is likely to tamper with the mechanisms underlying experience-dependent refinement of cortical circuits during the CP of development. Frontiers Media S.A. 2016-11-28 /pmc/articles/PMC5124713/ /pubmed/27965538 http://dx.doi.org/10.3389/fncel.2016.00261 Text en Copyright © 2016 Pizzo, Gurgone, Castroflorio, Amendola, Gross, Sassoè-Pognetto and Giustetto. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution and reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Pizzo, Riccardo
Gurgone, Antonia
Castroflorio, Enrico
Amendola, Elena
Gross, Cornelius
Sassoè-Pognetto, Marco
Giustetto, Maurizio
Lack of Cdkl5 Disrupts the Organization of Excitatory and Inhibitory Synapses and Parvalbumin Interneurons in the Primary Visual Cortex
title Lack of Cdkl5 Disrupts the Organization of Excitatory and Inhibitory Synapses and Parvalbumin Interneurons in the Primary Visual Cortex
title_full Lack of Cdkl5 Disrupts the Organization of Excitatory and Inhibitory Synapses and Parvalbumin Interneurons in the Primary Visual Cortex
title_fullStr Lack of Cdkl5 Disrupts the Organization of Excitatory and Inhibitory Synapses and Parvalbumin Interneurons in the Primary Visual Cortex
title_full_unstemmed Lack of Cdkl5 Disrupts the Organization of Excitatory and Inhibitory Synapses and Parvalbumin Interneurons in the Primary Visual Cortex
title_short Lack of Cdkl5 Disrupts the Organization of Excitatory and Inhibitory Synapses and Parvalbumin Interneurons in the Primary Visual Cortex
title_sort lack of cdkl5 disrupts the organization of excitatory and inhibitory synapses and parvalbumin interneurons in the primary visual cortex
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5124713/
https://www.ncbi.nlm.nih.gov/pubmed/27965538
http://dx.doi.org/10.3389/fncel.2016.00261
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