Epilepsy and intellectual disability linked protein Shrm4 interaction with GABABRs shapes inhibitory neurotransmission

2017 · Jonathan Zapata, Edoardo Moretto, Saad Hannan, Luca Murru, Anna Longatti, Davide Mazza, Lorena Benedetti, Matteo Fossati, Christopher Heise, Luisa Ponzoni, Pamela Valnegri, Daniela Braida, Mariaelvina Sala, Maura Francolini, Jeffrey Hildebrand, Vera Kalscheuer, Francesca Fanelli, Carlo Sala, Bernhard Bettler, Silvia Bassani, Trevor Smart, Maria Passafaro · Nature Communications

Abstract

Abstract Shrm4, a protein expressed only in polarized tissues, is encoded by theKIAA1202gene, whose mutations have been linked to epilepsy and intellectual disability. However, a physiological role for Shrm4 in the brain is yet to be established. Here, we report that Shrm4 is localized to synapses where it regulates dendritic spine morphology and interacts with the C terminus of GABABreceptors (GABABRs) to control their cell surface expression and intracellular trafficking via a dynein-dependent mechanism. Knockdown of Shrm4 in rat severely impairs GABABR activity causing increased anxiety-like behaviour and susceptibility to seizures. Moreover, Shrm4 influences hippocampal excitability by modulating tonic inhibition in dentate gyrus granule cells, in a process involving crosstalk between GABABRs and extrasynaptic δ-subunit-containing GABAARs. Our data highlights a role for Shrm4 in synaptogenesis and in maintaining GABABR-mediated inhibition, perturbation of which may be responsible for the involvement of Shrm4 in cognitive disorders and epilepsy.

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Publication Details

Journal
Nature Communications
Volume
8
Issue
1
Publisher
Springer Science and Business Media LLC
ISSN
2041-1723