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Characterization of the novel heterozygous SCN5A genetic variant Y739D associated with Brugada syndrome

Genetic variants in SCN5A gene were identified in patients with various arrhythmogenic conditions including Brugada syndrome. Despite significant progress of last decades in studying the molecular mechanism of arrhythmia-associated SCN5A mutations, the understanding of relationship between genetics,...

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Autores principales: Zaytseva, Anastasia K., Kiselev, Artem M., Boitsov, Alexander S., Fomicheva, Yulia V., Pavlov, Georgii S., Zhorov, Boris S., Kostareva, Anna A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8920867/
https://www.ncbi.nlm.nih.gov/pubmed/35300108
http://dx.doi.org/10.1016/j.bbrep.2022.101249
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author Zaytseva, Anastasia K.
Kiselev, Artem M.
Boitsov, Alexander S.
Fomicheva, Yulia V.
Pavlov, Georgii S.
Zhorov, Boris S.
Kostareva, Anna A.
author_facet Zaytseva, Anastasia K.
Kiselev, Artem M.
Boitsov, Alexander S.
Fomicheva, Yulia V.
Pavlov, Georgii S.
Zhorov, Boris S.
Kostareva, Anna A.
author_sort Zaytseva, Anastasia K.
collection PubMed
description Genetic variants in SCN5A gene were identified in patients with various arrhythmogenic conditions including Brugada syndrome. Despite significant progress of last decades in studying the molecular mechanism of arrhythmia-associated SCN5A mutations, the understanding of relationship between genetics, electrophysiological consequences and clinical phenotype is lacking. We have found a novel genetic variant Y739D in the SCN5A-encoded sodium channel Na(v)1.5 of a male patient with Brugada syndrome (BrS). The objective of the study was to characterize the biophysical properties of Na(v)1.5-Y739D and provide possible explanation of the phenotype observed in the patient. The WT and Y739D channels were heterologously expressed in the HEK-293T cells and the whole-cell sodium currents were recorded. Substitution Y739D reduced the sodium current density by 47 ± 2% at −20 mV, positively shifted voltage-dependent activation, accelerated both fast and slow inactivation, and decelerated recovery from the slow inactivation. The Y739D loss-of-function phenotype likely causes the BrS manifestation. In the hNa(v)1.5 homology models, which are based on the cryo-EM structure of rat Na(v)1.5 channel, Y739 in the extracellular loop IIS1-S2 forms H-bonds with K1381 and E1435 and pi-cation contacts with K1397 (all in loop IIIS5-P1). In contrast, Y739D accepts H-bonds from K1397 and Y1434. Substantially different contacts of Y739 and Y739D with loop IIIS5-P1 would differently transmit allosteric signals from VSD-II to the fast-inactivation gate at the N-end of helix IIIS5 and slow-inactivation gate at the C-end of helix IIIP1. This may underlie the atomic mechanism of the Y739D channel dysfunction.
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spelling pubmed-89208672022-03-16 Characterization of the novel heterozygous SCN5A genetic variant Y739D associated with Brugada syndrome Zaytseva, Anastasia K. Kiselev, Artem M. Boitsov, Alexander S. Fomicheva, Yulia V. Pavlov, Georgii S. Zhorov, Boris S. Kostareva, Anna A. Biochem Biophys Rep Research Article Genetic variants in SCN5A gene were identified in patients with various arrhythmogenic conditions including Brugada syndrome. Despite significant progress of last decades in studying the molecular mechanism of arrhythmia-associated SCN5A mutations, the understanding of relationship between genetics, electrophysiological consequences and clinical phenotype is lacking. We have found a novel genetic variant Y739D in the SCN5A-encoded sodium channel Na(v)1.5 of a male patient with Brugada syndrome (BrS). The objective of the study was to characterize the biophysical properties of Na(v)1.5-Y739D and provide possible explanation of the phenotype observed in the patient. The WT and Y739D channels were heterologously expressed in the HEK-293T cells and the whole-cell sodium currents were recorded. Substitution Y739D reduced the sodium current density by 47 ± 2% at −20 mV, positively shifted voltage-dependent activation, accelerated both fast and slow inactivation, and decelerated recovery from the slow inactivation. The Y739D loss-of-function phenotype likely causes the BrS manifestation. In the hNa(v)1.5 homology models, which are based on the cryo-EM structure of rat Na(v)1.5 channel, Y739 in the extracellular loop IIS1-S2 forms H-bonds with K1381 and E1435 and pi-cation contacts with K1397 (all in loop IIIS5-P1). In contrast, Y739D accepts H-bonds from K1397 and Y1434. Substantially different contacts of Y739 and Y739D with loop IIIS5-P1 would differently transmit allosteric signals from VSD-II to the fast-inactivation gate at the N-end of helix IIIS5 and slow-inactivation gate at the C-end of helix IIIP1. This may underlie the atomic mechanism of the Y739D channel dysfunction. Elsevier 2022-03-11 /pmc/articles/PMC8920867/ /pubmed/35300108 http://dx.doi.org/10.1016/j.bbrep.2022.101249 Text en © 2022 Published by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Zaytseva, Anastasia K.
Kiselev, Artem M.
Boitsov, Alexander S.
Fomicheva, Yulia V.
Pavlov, Georgii S.
Zhorov, Boris S.
Kostareva, Anna A.
Characterization of the novel heterozygous SCN5A genetic variant Y739D associated with Brugada syndrome
title Characterization of the novel heterozygous SCN5A genetic variant Y739D associated with Brugada syndrome
title_full Characterization of the novel heterozygous SCN5A genetic variant Y739D associated with Brugada syndrome
title_fullStr Characterization of the novel heterozygous SCN5A genetic variant Y739D associated with Brugada syndrome
title_full_unstemmed Characterization of the novel heterozygous SCN5A genetic variant Y739D associated with Brugada syndrome
title_short Characterization of the novel heterozygous SCN5A genetic variant Y739D associated with Brugada syndrome
title_sort characterization of the novel heterozygous scn5a genetic variant y739d associated with brugada syndrome
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8920867/
https://www.ncbi.nlm.nih.gov/pubmed/35300108
http://dx.doi.org/10.1016/j.bbrep.2022.101249
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