Cargando…

Critical Period Inhibition of NKCC1 Rectifies Synapse Plasticity in the Somatosensory cortex and Restores Adult Tactile Response Maps in Fragile X Mice

Sensory perturbations in visual, auditory and tactile perception are core problems in Fragile X Syndrome (FXS). In the Fmr1 knockout mouse model of FXS, the maturation of synapses and circuits during critical period (CP) development in the somatosensory cortex is delayed, but it is unclear how this...

Descripción completa

Detalles Bibliográficos
Autores principales: He, Qionger, Arroyo, Erica D, Smukowski, Samuel N, Xu, Jian, Piochon, Claire, Savas, Jeffrey N, Portera-Cailliau, Carlos, Contractor, Anis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6204122/
https://www.ncbi.nlm.nih.gov/pubmed/29703945
http://dx.doi.org/10.1038/s41380-018-0048-y
_version_ 1783365993961095168
author He, Qionger
Arroyo, Erica D
Smukowski, Samuel N
Xu, Jian
Piochon, Claire
Savas, Jeffrey N
Portera-Cailliau, Carlos
Contractor, Anis
author_facet He, Qionger
Arroyo, Erica D
Smukowski, Samuel N
Xu, Jian
Piochon, Claire
Savas, Jeffrey N
Portera-Cailliau, Carlos
Contractor, Anis
author_sort He, Qionger
collection PubMed
description Sensory perturbations in visual, auditory and tactile perception are core problems in Fragile X Syndrome (FXS). In the Fmr1 knockout mouse model of FXS, the maturation of synapses and circuits during critical period (CP) development in the somatosensory cortex is delayed, but it is unclear how this contributes to altered tactile sensory processing in the mature CNS. Here we demonstrate that inhibiting the juvenile chloride co-transporter NKCC1, which contributes to altered chloride homeostasis in developing cortical neurons of FXS mice, rectifies the chloride imbalance in layer IV somatosensory cortex neurons and corrects the development of thalamocortical excitatory synapses during the CP. Comparison of protein abundances demonstrated that NKCC1 inhibition during early development caused a broad remodeling of the proteome in the barrel cortex. In addition, the abnormally large size of whisker-evoked cortical maps in adult Fmr1 knockout mice was corrected by rectifying the chloride imbalance during the early CP. These data demonstrate that correcting the disrupted driving force through GABA(A) receptors during the CP in cortical neurons restores their synaptic development, has an unexpectedly large effect on differentially expressed proteins, and produces a long-lasting correction of somatosensory circuit function in FXS mice.
format Online
Article
Text
id pubmed-6204122
institution National Center for Biotechnology Information
language English
publishDate 2018
record_format MEDLINE/PubMed
spelling pubmed-62041222019-10-26 Critical Period Inhibition of NKCC1 Rectifies Synapse Plasticity in the Somatosensory cortex and Restores Adult Tactile Response Maps in Fragile X Mice He, Qionger Arroyo, Erica D Smukowski, Samuel N Xu, Jian Piochon, Claire Savas, Jeffrey N Portera-Cailliau, Carlos Contractor, Anis Mol Psychiatry Article Sensory perturbations in visual, auditory and tactile perception are core problems in Fragile X Syndrome (FXS). In the Fmr1 knockout mouse model of FXS, the maturation of synapses and circuits during critical period (CP) development in the somatosensory cortex is delayed, but it is unclear how this contributes to altered tactile sensory processing in the mature CNS. Here we demonstrate that inhibiting the juvenile chloride co-transporter NKCC1, which contributes to altered chloride homeostasis in developing cortical neurons of FXS mice, rectifies the chloride imbalance in layer IV somatosensory cortex neurons and corrects the development of thalamocortical excitatory synapses during the CP. Comparison of protein abundances demonstrated that NKCC1 inhibition during early development caused a broad remodeling of the proteome in the barrel cortex. In addition, the abnormally large size of whisker-evoked cortical maps in adult Fmr1 knockout mice was corrected by rectifying the chloride imbalance during the early CP. These data demonstrate that correcting the disrupted driving force through GABA(A) receptors during the CP in cortical neurons restores their synaptic development, has an unexpectedly large effect on differentially expressed proteins, and produces a long-lasting correction of somatosensory circuit function in FXS mice. 2018-04-27 2019-11 /pmc/articles/PMC6204122/ /pubmed/29703945 http://dx.doi.org/10.1038/s41380-018-0048-y Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
He, Qionger
Arroyo, Erica D
Smukowski, Samuel N
Xu, Jian
Piochon, Claire
Savas, Jeffrey N
Portera-Cailliau, Carlos
Contractor, Anis
Critical Period Inhibition of NKCC1 Rectifies Synapse Plasticity in the Somatosensory cortex and Restores Adult Tactile Response Maps in Fragile X Mice
title Critical Period Inhibition of NKCC1 Rectifies Synapse Plasticity in the Somatosensory cortex and Restores Adult Tactile Response Maps in Fragile X Mice
title_full Critical Period Inhibition of NKCC1 Rectifies Synapse Plasticity in the Somatosensory cortex and Restores Adult Tactile Response Maps in Fragile X Mice
title_fullStr Critical Period Inhibition of NKCC1 Rectifies Synapse Plasticity in the Somatosensory cortex and Restores Adult Tactile Response Maps in Fragile X Mice
title_full_unstemmed Critical Period Inhibition of NKCC1 Rectifies Synapse Plasticity in the Somatosensory cortex and Restores Adult Tactile Response Maps in Fragile X Mice
title_short Critical Period Inhibition of NKCC1 Rectifies Synapse Plasticity in the Somatosensory cortex and Restores Adult Tactile Response Maps in Fragile X Mice
title_sort critical period inhibition of nkcc1 rectifies synapse plasticity in the somatosensory cortex and restores adult tactile response maps in fragile x mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6204122/
https://www.ncbi.nlm.nih.gov/pubmed/29703945
http://dx.doi.org/10.1038/s41380-018-0048-y
work_keys_str_mv AT heqionger criticalperiodinhibitionofnkcc1rectifiessynapseplasticityinthesomatosensorycortexandrestoresadulttactileresponsemapsinfragilexmice
AT arroyoericad criticalperiodinhibitionofnkcc1rectifiessynapseplasticityinthesomatosensorycortexandrestoresadulttactileresponsemapsinfragilexmice
AT smukowskisamueln criticalperiodinhibitionofnkcc1rectifiessynapseplasticityinthesomatosensorycortexandrestoresadulttactileresponsemapsinfragilexmice
AT xujian criticalperiodinhibitionofnkcc1rectifiessynapseplasticityinthesomatosensorycortexandrestoresadulttactileresponsemapsinfragilexmice
AT piochonclaire criticalperiodinhibitionofnkcc1rectifiessynapseplasticityinthesomatosensorycortexandrestoresadulttactileresponsemapsinfragilexmice
AT savasjeffreyn criticalperiodinhibitionofnkcc1rectifiessynapseplasticityinthesomatosensorycortexandrestoresadulttactileresponsemapsinfragilexmice
AT porteracailliaucarlos criticalperiodinhibitionofnkcc1rectifiessynapseplasticityinthesomatosensorycortexandrestoresadulttactileresponsemapsinfragilexmice
AT contractoranis criticalperiodinhibitionofnkcc1rectifiessynapseplasticityinthesomatosensorycortexandrestoresadulttactileresponsemapsinfragilexmice