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Biophysical characterization of a new SCN5A mutation S1333Y in a SIDS infant linked to long QT syndrome

Authors :
Béatrice Kugener
Gilles Millat
Hai Huang
Claire Rodriguez-Lafrasse
Robert Rousson
Mohamed Chahine
Philippe Chevalier
Source :
FEBS letters. 583(5)
Publication Year :
2009

Abstract

Various entities and genetic etiologies, including inherited long QT syndrome type 3 (LQT3), contribute to sudden infant death syndrome (SIDS). The goal of our research was to biophysically characterize a new SCN5A mutation (S1333Y) in a SIDS infant. S1333Y channels showed the gain of Na+ channel function characteristic of LQT3, including a persistent inward Na+ current and an enhanced window current that was generated by a −8mV shift in activation and a +7mV shift in inactivation. The correlation between the biophysical data and arrhythmia susceptibility suggested that the SIDS was secondary to the LQT3-associated S1333Y mutation.

Details

ISSN :
18733468
Volume :
583
Issue :
5
Database :
OpenAIRE
Journal :
FEBS letters
Accession number :
edsair.doi.dedup.....4247a8728043bb4fd50f4beb2eab8d84