4.7 Article

Cnksr2 Loss in Mice Leads to Increased Neural Activity and Behavioral Phenotypes of Epilepsy-Aphasia Syndrome

Journal

JOURNAL OF NEUROSCIENCE
Volume 41, Issue 46, Pages 9633-9649

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.0650-21.2021

Keywords

aphasia; Cnksr2; EEG; epilepsy; HiUGE; proteomics

Categories

Funding

  1. National Institute of Mental Health [MH111684]
  2. National Institute of Neurological Disorders and Stroke Grant [NS097717]

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Study on Cnksr2 KO mice confirmed that the loss of CNKSR2 leads to Epilepsy Aphasia Syndromes (EAS), and highlighted the important roles of Cnksr2 in synaptic organization and neuronal network activity.
Epilepsy Aphasia Syndromes (EAS) are a spectrum of childhood epileptic, cognitive, and language disorders of unknown etiology. CNKSR2 is a strong X-linked candidate gene implicated in EAS; however, there have been no studies of genetic models to dissect how its absence may lead to EAS. Here we develop a novel Cnksr2 KO mouse line and show that male mice exhibit increased neural activity and have spontaneous electrographic seizures. Cnksr2 KO mice also display significantly increased anxiety, impaired learning and memory, and a progressive and dramatic loss of ultrasonic vocalizations. We find that Cnksr2 is expressed in cortical, striatal, and cerebellar regions and is localized at both excitatory and inhibitory postsynapses. Proteomics analysis reveals Cnksr2 anchors key binding partners at synapses, and its loss results in significant alterations of the synaptic proteome, including proteins implicated in epilepsy disorders. Our results validate that loss of CNKSR2 leads to EAS and highlights the roles of Cnksr2 in synaptic organization and neuronal network activity.

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