Hypnotic treatment reverses NREM sleep disruption and EEG desynchronization in a mouse model of Fragile X syndrome to rescue memory consolidation deficits

Author:

Martinez Jessy D.,Wilson Lydia G.,Brancaleone William P.,Peterson Kathryn G.,Popke Donald S.,Garzon Valentina Caicedo,Perez Tremble Roxanne E.,Donnelly Marcus J.,Mendez Ortega Stephany L.,Torres Daniel,Shaver James J.,Clawson Brittany C.,Jiang Sha,Yang Zhongying,Aton Sara J.

Abstract

AbstractFragile X syndrome (FXS) is a highly-prevalent genetic cause of intellectual disability, associated with disrupted cognition and sleep abnormalities. Sleep loss itself negatively impacts cognitive function, yet the contribution of sleep loss to impaired cognition in FXS is vastly understudied. One untested possibility is that disrupted cognition in FXS is exacerbated by abnormal sleep. We hypothesized that restoration of sleep-dependent mechanisms could improve functions such as memory consolidation in FXS. We examined whether administration of ML297, a hypnotic drug acting on G-protein-activated inward-rectifying potassium channels, could restore sleep phenotypes and improve disrupted memory consolidation inFmr1-/ymice. Using 24-h polysomnographic recordings, we found thatFmr1-/ymice exhibit reduced non-rapid eye movement (NREM) sleep and fragmented NREM sleep architecture, alterations in NREM EEG spectral power (including reductions in sleep spindles), and reduced EEG coherence between cortical areas. These alterations were reversed in the hours following ML297 administration. Hypnotic treatment following contextual fear or spatial learning also ameliorated disrupted memory consolidation inFmr1-/ymice. Hippocampal activation patterns during memory recall was altered inFmr1-/ymice, reflecting an altered balance of activity among principal neurons vs. parvalbumin-expressing (PV+) interneurons. This phenotype was partially reversed by post-learning ML297 administration. These studies suggest that sleep disruption could have a major impact on neurophysiological and behavioral phenotypes in FXS, and that hypnotic therapy may significantly improve disrupted cognition in this disorder.

Publisher

Cold Spring Harbor Laboratory

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