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An SCN1B Variant Affects Both Cardiac-Type (NaV1.5) and Brain-Type (NaV1.1) Sodium Currents and Contributes to Complex Concomitant Brain and Cardiac Disorders

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dc.contributor Universitat de Vic - Universitat Central de Catalunya. Facultat de Medicina
dc.contributor Centro de Investigación Biomédica en Red de Enfermedades Cardiovasculares (CIBERCV)
dc.contributor Universitat de Girona
dc.contributor.author Martinez Moreno, Rebecca
dc.contributor.author Selga, Elisabet
dc.contributor.author Riuró, Helena
dc.contributor.author Carreras, David
dc.contributor.author Parnes, Mered
dc.contributor.author Srinivasan, Chandra
dc.contributor.author Wangler, Michael F.
dc.contributor.author Pérez, Guillermo J.
dc.contributor.author Scornik, Fabiana S.
dc.contributor.author Brugada, Ramon
dc.date.accessioned 2024-07-09T06:40:18Z
dc.date.available 2024-07-09T06:40:18Z
dc.date.created 2020
dc.date.issued 2020
dc.identifier.citation Martinez-Moreno, R., Selga, E., Riuró, H., Carreras, D., Parnes, M., Srinivasan, C.,... Brugada, R. (2020). An SCN1B Variant Affects Both Cardiac-Type (NaV1.5) and Brain-Type (NaV1.1) Sodium Currents and Contributes to Complex Concomitant Brain and Cardiac Disorders. Frontiers in cell and developmental biology, 8. https://doi.org/10.3389/fcell.2020.528742 es
dc.identifier.issn 2296-634X
dc.identifier.uri http://hdl.handle.net/10854/8077
dc.description.abstract Voltage-gated sodium (NaV) channels are transmembrane proteins that initiate and propagate neuronal and cardiac action potentials. NaV channel b subunits have been widely studied due to their modulatory role. Mice null for Scn1b, which encodes NaV b1 and b1b subunits, have defects in neuronal development and excitability, spontaneous generalized seizures, cardiac arrhythmias, and early mortality. A mutation in exon 3 of SCN1B, c.308A>T leading to b1_p.D103V and b1b_p.D103V, was previously found in a patient with a history of proarrhythmic conditions with progressive atrial standstill as well as cognitive and motor deficits accompanying structural brain abnormalities. We investigated whether b1 or b1b subunits carrying this mutation affect NaV1.5 and/or NaV1.1 currents using a whole cell patch-clamp technique in tsA201 cells. We observed a decrease in sodium current density in cells co-expressing NaV1.5 or NaV1.1 and b1D103V compared to b1WT. Interestingly, b1bD103V did not affect NaV1.1 sodium current density but induced a positive shift in the voltage dependence of inactivation and a faster recovery from inactivation compared to b1bWT. The b1bD103V isoform did not affect NaV1.5 current properties. Although the SCN1B_c.308A>T mutation may not be the sole cause of the patient’s symptoms, we observed a clear loss of function in both cardiac and brain sodium channels. Our results suggest that the mutant b1 and b1b subunits play a fundamental role in the observed electrical dysfunction. es
dc.format application/pdf es
dc.format.extent 17 p. es
dc.language.iso eng es
dc.publisher Frontiers es
dc.rights Aquest document està subjecte a aquesta llicència Creative Commons es
dc.rights.uri https://creativecommons.org/licenses/by/4.0/deed.ca es
dc.subject.other Arrítmia es
dc.subject.other hiperexcitabilitat cerebral es
dc.title An SCN1B Variant Affects Both Cardiac-Type (NaV1.5) and Brain-Type (NaV1.1) Sodium Currents and Contributes to Complex Concomitant Brain and Cardiac Disorders es
dc.type info:eu-repo/semantics/article es
dc.identifier.doi https://doi.org/10.3389/fcell.2020.528742
dc.rights.accessRights info:eu-repo/semantics/openAccess es
dc.type.version info:eu-repo/publishedVersion es
dc.indexacio Indexat a WOS/JCR es
dc.indexacio Indexat a SCOPUS es

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