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Cell Rep ; 23(2): 555-567, 2018 Apr 10.
Article in English | MEDLINE | ID: mdl-29642012

ABSTRACT

Resilience and vulnerability to neuropsychiatric disorders are linked to molecular changes underlying excitability that are still poorly understood. Here, we identify glycogen-synthase kinase 3ß (GSK3ß) and voltage-gated Na+ channel Nav1.6 as regulators of neuroplasticity induced by environmentally enriched (EC) or isolated (IC) conditions-models for resilience and vulnerability. Transcriptomic studies in the nucleus accumbens from EC and IC rats predicted low levels of GSK3ß and SCN8A mRNA as a protective phenotype associated with reduced excitability in medium spiny neurons (MSNs). In vivo genetic manipulations demonstrate that GSK3ß and Nav1.6 are molecular determinants of MSN excitability and that silencing of GSK3ß prevents maladaptive plasticity of IC MSNs. In vitro studies reveal direct interaction of GSK3ß with Nav1.6 and phosphorylation at Nav1.6T1936 by GSK3ß. A GSK3ß-Nav1.6T1936 competing peptide reduces MSNs excitability in IC, but not EC rats. These results identify GSK3ß regulation of Nav1.6 as a biosignature of MSNs maladaptive plasticity.


Subject(s)
Glycogen Synthase Kinase 3 beta/metabolism , Neuronal Plasticity/physiology , Neurons/metabolism , Physical Conditioning, Animal , Social Isolation , Animals , Evoked Potentials , Glycogen Synthase Kinase 3 beta/antagonists & inhibitors , Glycogen Synthase Kinase 3 beta/genetics , HEK293 Cells , Humans , Male , NAV1.6 Voltage-Gated Sodium Channel/chemistry , NAV1.6 Voltage-Gated Sodium Channel/genetics , NAV1.6 Voltage-Gated Sodium Channel/metabolism , Patch-Clamp Techniques , Phosphopeptides/analysis , Protein Binding , RNA Interference , RNA, Small Interfering/metabolism , Rats , Rats, Sprague-Dawley , Transcriptome
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