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Regulation of the voltage-dependent sodium channel NaV1.1 by AKT1

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Arribas Blázquez, Marina & Piniella, Dolores & Olivos Oré, Luis A. & Bartolomé Martín, David & Leite, Cristiana & Giménez, Cecilio & Artalejo, Antonio R. & Zafra, Francisco (2021-10 ) .Regulation of the voltage-dependent sodium channel NaV1.1 by AKT1.

ISO 690

Arribas Blázquez, Marina & Piniella, Dolores & Olivos Oré, Luis A. & Bartolomé Martín, David & Leite, Cristiana & Giménez, Cecilio & Artalejo, Antonio R. & Zafra, Francisco. 2021-10 .Regulation of the voltage-dependent sodium channel NaV1.1 by AKT1.

https://hdl.handle.net/20.500.12080/45297
dc.contributor.author Arribas Blázquez, Marina
dc.contributor.author Piniella, Dolores
dc.contributor.author Olivos Oré, Luis A.
dc.contributor.author Bartolomé Martín, David
dc.contributor.author Leite, Cristiana
dc.contributor.author Giménez, Cecilio
dc.contributor.author Artalejo, Antonio R.
dc.contributor.author Zafra, Francisco
dc.date.accessioned 2025-01-27T11:02:13Z
dc.date.available 2025-01-27T11:02:13Z
dc.date.created 2021-10
dc.date.issued 2021-10
dc.identifier.uri https://hdl.handle.net/20.500.12080/45297
dc.description.abstract The voltage-sensitive sodium channel NaV1.1 plays a critical role in regulating excitability of GABAergic neurons and mutations in the corresponding gene are associated to Dravet syndrome and other forms of epilepsy. The activity of this channel is regulated by several protein kinases. To identify novel regulatory kinases we screened a library of activated kinases and we found that AKT1 was able to directly phosphorylate NaV1.1. In vitro kinase assays revealed that the phosphorylation site was located in the C-terminal part of the large intracellular loop connecting domains I and II of NaV1.1, a region that is known to be targeted by other kinases like PKA and PKC. Electrophysiological recordings revealed that activated AKT1 strongly reduced peak Na+ currents and displaced the inactivation curve to more negative potentials in HEK-293 cell stably expressing NaV1.1. These alterations in current amplitude and steady-state inactivation were mimicked by SC79, a specific activator of AKT1, and largely reverted by triciribine, a selective inhibitor. Neurons expressing endogenous NaV1.1 in primary cultures were identified by expressing a fluorescent protein under the NaV1.1 promoter. There, we also observed a strong decrease in the current amplitude after addition of SC79, but small effects on the inactivation parameters. Altogether, we propose a novel mechanism that might regulate the excitability of neural networks in response to AKT1, a kinase that plays a pivotal role under physiological and pathological conditions, including epileptogenesis. es_ES
dc.format application/pdf es_ES
dc.language eng es_ES
dc.relation.ispartof Neuropharmacology es_ES
dc.rights CC-BY es_ES
dc.rights.uri http://creativecommons.org/licenses/by/4.0/deed.es es_ES
dc.source Neuropharmacology es_ES
dc.title Regulation of the voltage-dependent sodium channel NaV1.1 by AKT1 es_ES
dc.type info:eu-repo/semantics/article es_ES
dc.rights.accessrights info:eu-repo/semantics/openAccess es_ES
dc.identifier.location N/A es_ES


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