Literature DB >> 35212623

Corticohippocampal circuit dysfunction in a mouse model of Dravet syndrome.

Joanna Mattis1, Ala Somarowthu2, Kevin M Goff3, Evan Jiang2, Jina Yom4, Nathaniel Sotuyo3, Laura M Mcgarry2, Huijie Feng2, Keisuke Kaneko2, Ethan M Goldberg1,2,5.   

Abstract

Dravet syndrome (DS) is a neurodevelopmental disorder due to pathogenic variants in SCN1A encoding the Nav1.1 sodium channel subunit, characterized by treatment-resistant epilepsy, temperature-sensitive seizures, developmental delay/intellectual disability with features of autism spectrum disorder, and increased risk of sudden death. Convergent data suggest hippocampal dentate gyrus (DG) pathology in DS (Scn1a+/-) mice. We performed two-photon calcium imaging in brain slice to uncover a profound dysfunction of filtering of perforant path input by DG in young adult Scn1a+/- mice. This was not due to dysfunction of DG parvalbumin inhibitory interneurons (PV-INs), which were only mildly impaired at this timepoint; however, we identified enhanced excitatory input to granule cells, suggesting that circuit dysfunction is due to excessive excitation rather than impaired inhibition. We confirmed that both optogenetic stimulation of entorhinal cortex and selective chemogenetic inhibition of DG PV-INs lowered seizure threshold in vivo in young adult Scn1a+/- mice. Optogenetic activation of PV-INs, on the other hand, normalized evoked responses in granule cells in vitro. These results establish the corticohippocampal circuit as a key locus of pathology in Scn1a+/- mice and suggest that PV-INs retain powerful inhibitory function and may be harnessed as a potential therapeutic approach toward seizure modulation.
© 2022, Mattis et al.

Entities:  

Keywords:  Dravet syndrome; Nav1.1; SCN1A; dentate gyrus; gabaergic interneurons; genetics; genomics; mouse; neuroscience

Mesh:

Substances:

Year:  2022        PMID: 35212623      PMCID: PMC8920506          DOI: 10.7554/eLife.69293

Source DB:  PubMed          Journal:  Elife        ISSN: 2050-084X            Impact factor:   8.140


  83 in total

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4.  Temperature- and age-dependent seizures in a mouse model of severe myoclonic epilepsy in infancy.

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5.  Electroclinical features of a family with simple febrile seizures and temporal lobe epilepsy associated with SCN1A loss-of-function mutation.

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Journal:  Epilepsia       Date:  2007-06-12       Impact factor: 5.864

6.  Nav1.1 localizes to axons of parvalbumin-positive inhibitory interneurons: a circuit basis for epileptic seizures in mice carrying an Scn1a gene mutation.

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8.  A Comparison of Different Slicing Planes in Preservation of Major Hippocampal Pathway Fibers in the Mouse.

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Review 9.  Voltage-Dependent Calcium Channels, Calcium Binding Proteins, and Their Interaction in the Pathological Process of Epilepsy.

Authors:  Jie-Hua Xu; Feng-Ru Tang
Journal:  Int J Mol Sci       Date:  2018-09-12       Impact factor: 5.923

10.  A deleterious Nav1.1 mutation selectively impairs telencephalic inhibitory neurons derived from Dravet Syndrome patients.

Authors:  Yishan Sun; Sergiu P Paşca; Thomas Portmann; Carleton Goold; Kathleen A Worringer; Wendy Guan; Karen C Chan; Hui Gai; Daniel Vogt; Ying-Jiun J Chen; Rong Mao; Karrie Chan; John Lr Rubenstein; Daniel V Madison; Joachim Hallmayer; Wendy M Froehlich-Santino; Jonathan A Bernstein; Ricardo E Dolmetsch
Journal:  Elife       Date:  2016-07-26       Impact factor: 8.140

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  4 in total

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2.  Synaptic Integration in CA1 Pyramidal Neurons Is Intact despite Deficits in GABAergic Transmission in the Scn1a Haploinsufficiency Mouse Model of Dravet Syndrome.

Authors:  Jessica Hotard Chancey; MacKenzie Allen Howard
Journal:  eNeuro       Date:  2022-05-17

3.  Developmentally regulated impairment of parvalbumin interneuron synaptic transmission in an experimental model of Dravet syndrome.

Authors:  Keisuke Kaneko; Christopher B Currin; Kevin M Goff; Eric R Wengert; Ala Somarowthu; Tim P Vogels; Ethan M Goldberg
Journal:  Cell Rep       Date:  2022-03-29       Impact factor: 9.423

4.  GABA tonic currents and glial cells are altered during epileptogenesis in a mouse model of Dravet syndrome.

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  4 in total

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