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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.
Affiliation
  • He Q; Department of Physiology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
  • Arroyo ED; Departments of Neurology and Neurobiology, David Geffen School of Medicine at UCLA, Los Angeles, CA, 90095, USA.
  • Smukowski SN; Department of Neurology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
  • Xu J; Department of Physiology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
  • Piochon C; Department of Physiology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
  • Savas JN; Department of Neurology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
  • Portera-Cailliau C; Departments of Neurology and Neurobiology, David Geffen School of Medicine at UCLA, Los Angeles, CA, 90095, USA.
  • Contractor A; Department of Physiology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA. a-contractor@northwestern.edu.
Mol Psychiatry ; 24(11): 1732-1747, 2019 11.
Article in En | MEDLINE | ID: mdl-29703945
ABSTRACT
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 GABAA 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.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Fragile X Mental Retardation Protein / Solute Carrier Family 12, Member 2 / Fragile X Syndrome Limits: Animals Language: En Journal: Mol Psychiatry Journal subject: BIOLOGIA MOLECULAR / PSIQUIATRIA Year: 2019 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Fragile X Mental Retardation Protein / Solute Carrier Family 12, Member 2 / Fragile X Syndrome Limits: Animals Language: En Journal: Mol Psychiatry Journal subject: BIOLOGIA MOLECULAR / PSIQUIATRIA Year: 2019 Document type: Article Affiliation country:
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