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Publication : TRESK channel contributes to depolarization-induced shunting inhibition and modulates epileptic seizures.

First Author  Huang W Year  2021
Journal  Cell Rep Volume  36
Issue  3 Pages  109404
PubMed ID  34289346 Mgi Jnum  J:329126
Mgi Id  MGI:6876903 Doi  10.1016/j.celrep.2021.109404
Citation  Huang W, et al. (2021) TRESK channel contributes to depolarization-induced shunting inhibition and modulates epileptic seizures. Cell Rep 36(3):109404
abstractText  Glutamatergic and GABAergic synaptic transmission controls excitation and inhibition of postsynaptic neurons, whereas activity of ion channels modulates neuronal intrinsic excitability. However, it is unclear how excessive neuronal excitation affects intrinsic inhibition to regain homeostatic stability under physiological or pathophysiological conditions. Here, we report that a seizure-like sustained depolarization can induce short-term inhibition of hippocampal CA3 neurons via a mechanism of membrane shunting. This depolarization-induced shunting inhibition (DShI) mediates a non-synaptic, but neuronal intrinsic, short-term plasticity that is able to suppress action potential generation and postsynaptic responses by activated ionotropic receptors. We demonstrate that the TRESK channel significantly contributes to DShI. Disruption of DShI by genetic knockout of TRESK exacerbates the sensitivity and severity of epileptic seizures of mice, whereas overexpression of TRESK attenuates seizures. In summary, these results uncover a type of homeostatic intrinsic plasticity and its underlying mechanism. TRESK might represent a therapeutic target for antiepileptic drugs.
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