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Homeostatic Intrinsic Plasticity Is Functionally Altered in Fmr1 KO Cortical Neurons.
Bülow, Pernille; Murphy, T J; Bassell, Gary J; Wenner, Peter.
  • Bülow P; Department of Physiology, Emory University School of Medicine, Atlanta, GA, USA; Department of Cell Biology, Emory University School of Medicine, Atlanta, GA, USA.
  • Murphy TJ; Department of Pharmacology, Emory University School of Medicine, Atlanta, GA, USA.
  • Bassell GJ; Department of Cell Biology, Emory University School of Medicine, Atlanta, GA, USA. Electronic address: gary.bassell@emory.edu.
  • Wenner P; Department of Physiology, Emory University School of Medicine, Atlanta, GA, USA. Electronic address: pwenner@emory.edu.
Cell Rep ; 26(6): 1378-1388.e3, 2019 02 05.
Article en En | MEDLINE | ID: mdl-30726724
ABSTRACT
Cortical hyperexcitability is a hallmark of fragile X syndrome (FXS). In the Fmr1 knockout (KO) mouse model of FXS, cortical hyperexcitability is linked to sensory hypersensitivity and seizure susceptibility. It remains unclear why homeostatic mechanisms fail to prevent such activity. Homeostatic intrinsic plasticity (HIP) adjusts membrane excitability through regulation of ion channels to maintain activity levels following activity perturbation. Despite the critical role of HIP in the maturation of excitability, it has not been examined in FXS. Here, we demonstrate that HIP does not operate normally in a disease model, FXS. HIP was either lost or exaggerated in two distinct neuronal populations from Fmr1 KO cortical cultures. In addition, we have identified a mechanism for homeostatic intrinsic plasticity. Compromising HIP function during development could leave cortical neurons in the FXS nervous system vulnerable to hyperexcitability.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Corteza Cerebral / Proteína de la Discapacidad Intelectual del Síndrome del Cromosoma X Frágil / Síndrome del Cromosoma X Frágil / Plasticidad Neuronal Límite: Animals Idioma: En Año: 2019 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Corteza Cerebral / Proteína de la Discapacidad Intelectual del Síndrome del Cromosoma X Frágil / Síndrome del Cromosoma X Frágil / Plasticidad Neuronal Límite: Animals Idioma: En Año: 2019 Tipo del documento: Article