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Mexiletine rescues a mixed biophysical phenotype of the cardiac sodium channel arising from the SCN5A mutation,N406K,found in LQT3 patients
Authors:Rou-Mu Hu  David J. Tester  Ryan Li  Tianyu Sun  Blaise Z. Peterson  Michael J. Ackerman
Affiliation:1. Heart Center &2. Beijing Key Laboratory of Hypertension, Beijing Chaoyang Hospital, Capital Medical University, Beijing, China;3. Division of Cardiovascular Medicine, Department of Medicine, University of Wisconsin, Madison, Wisconsin, USA;4. Departments of Medicine, Pediatrics, and Molecular Pharmacology and Experimental Therapeutics, Mayo Clinic, Rochester, MN, USA;5. Departments of Pediatrics, and Cellular &6. Molecular Physiology, Pennsylvania State University College of Medicine, Hershey, PA, USA
Abstract:Introduction: Individual mutations in the SCN5A-encoding cardiac sodium channel α-subunit usually cause a single cardiac arrhythmia disorder, some cause mixed biophysical or clinical phenotypes. Here we report an infant, female patient harboring a N406K mutation in SCN5A with a marked and mixed biophysical phenotype and assess pathogenic mechanisms. Methods and Results: A patient suffered from recurrent seizures during sleep and torsades de pointes with a QTc of 530 ms. Mutational analysis identified a N406K mutation in SCN5A. The mutation was engineered by site-directed mutagenesis and heterologously expressed in HEK293 cells. After 48 hours incubation with and without mexiletine, macroscopic voltage-gated sodium current (INa) was measured with standard whole-cell patch clamp techniques. SCN5A-N406K elicited both a significantly decreased peak INa and a significantly increased late INa compared to wide-type (WT) channels. Furthermore, mexiletine both restored the decreased peak INa of the mutant channel and inhibited the increased late INa of the mutant channel. Conclusion: SCN5A-N406K channel displays both “gain-of-function” in late INa and “loss-of-function” in peak INa density contributing to a mixed biophysical phenotype. Moreover, our finding may provide the first example that mexiletine exerts a dual rescue of both “gain-of-function” and “loss-of-function” of the mutant sodium channel.
Keywords:Mexiletine  mixed phenotype  mutation  SCN5A  sodium channel
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