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SCN5A variant R222Q generated abnormal changes in cardiac sodium current and action potentials in murine myocytes and Purkinje cells.

Authors :
Daniel, Laura L.
Yang, Tao
Kroncke, Brett
Hall, Lynn
Stroud, Dina
Roden, Dan M.
Source :
Heart Rhythm; Nov2019, Vol. 16 Issue 11, p1676-1685, 10p
Publication Year :
2019

Abstract

<bold>Background: </bold>The cardiac sodium channel (SCN5A) mutation R222Q neutralizes a positive charge in the domain I voltage sensor. Mutation carriers display very frequent ectopy and dilated cardiomyopathy.<bold>Objectives: </bold>To describe the effect of SCN5A R222Q on murine myocyte and Purkinje fiber electrophysiology, and identify underlying mechanisms.<bold>Methods: </bold>We generated mice carrying humanized wild-type (H) and mutant (RQ) SCN5A channels. We characterized whole-heart and isolated ventricular and Purkinje myocyte properties.<bold>Results: </bold>RQ/RQ mice were not viable. INa from RQ/H ventricular myocytes displayed increased "window current" and hyperpolarizing shifts in both inactivation and activation compared to H/H, as previously reported in heterologous expression systems. Surprisingly, action potentials were markedly abbreviated in RQ/H myocytes (action potential durations at 90% repolarization: 12.6 ± 1.3 ms vs 29.1 ± 1.0 ms in H/H, P < .01, n = 10 each). We identified a large [K+]o-dependent outward gating pore current in RQ/H but not H/H myocytes, and decreasing [K+]o elicited early afterdepolarizations (EADs) and triggered activity in isolated myocytes and ectopic beats in whole hearts. Further, RQ/H Purkinje cells displayed striking, consistent low-voltage EADs. In vivo, however, RQ/H mice displayed little ectopy and contractile function was normal.<bold>Conclusion: </bold>While SCN5A R222Q increases plateau inward sodium current, action potentials were unexpectedly shortened, likely reflecting an outward gating-pore current. Low extracellular potassium increased this pore current, and was arrhythmogenic in vitro and ex vivo. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
15475271
Volume :
16
Issue :
11
Database :
Supplemental Index
Journal :
Heart Rhythm
Publication Type :
Academic Journal
Accession number :
139251266
Full Text :
https://doi.org/10.1016/j.hrthm.2019.05.017