Abstract
AbstractIn this study we tested the hypothesis that pharmacological modulation of glutamatergic neurotransmission could rescue behavioral deficits exhibited by mice carrying a specific mutation in the Iqsec2 gene. The IQSEC2 protein plays a key role in glutamatergic synapses and mutations in the IQSEC2 gene are a frequent cause of neurodevelopmental disorders. We have recently reported on the molecular pathophysiology of one such mutation A350V and demonstrated that this mutation downregulates AMPA type glutamatergic receptors (AMPAR) in A350V mice. Here we sought to identify behavioral deficits in A350V mice and hypothesized that we could rescue these deficits by PF-4778574, a positive AMPAR modulator. Using a battery of social behavioral tasks, we found that A350V Iqsec2 mice exhibit specific deficits in sex preference and emotional state preference behaviors as well as in vocalizations when encountering a female mouse. The social discrimination deficits, but not the impaired vocalization, were rescued with a single dose of PF-4778574. We conclude that social behavior deficits associated with the A350V Iqsec2 mutation may be rescued by enhancing AMPAR mediated synaptic transmission.
Funder
Israel Science Foundation
Ministry of Science, Technology and Space
Human Frontier Science Program
Publisher
Springer Science and Business Media LLC
Subject
Biological Psychiatry,Cellular and Molecular Neuroscience,Psychiatry and Mental health
Reference45 articles.
1. Shoubridge, C., Harvey, R. J. & Dudding-Byth, T. IQSEC2 mutation update and review of the female-specific phenotype spectrum including intellectual disability and epilepsy. Hum. Mutat. 40, 5–24 (2019).
2. Shoubridge, C. et al. Mutations in the guanine nucleotide exchange factor gene IQSEC2 cause nonsyndromic intellectual disability. Nat. Genet. 42, 486–488 (2010).
3. Zipper, R. et al. Developmental progression of intellectual disability, autism, and epilepsy in a child with an IQSEC2 gene mutation. Clin. Case Rep. 5, 1639–1643 (2017).
4. Rogers, E. J. et al. An IQSEC2 mutation associated with intellectual disability and autism results in decreased surface AMPA receptors. Front Mol. Neurosci. 12, 43 (2019).
5. Levy N. S., Umanah G. K. E., Rogers E. J., Jada R., Lache O., Levy A. P. IQSEC2-associated intellectual disability and autism. Int. J. Mol. Sci. 20, 3038 (2019).
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