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(Circulation Research. 1996;78:916-924.)
© 1996 American Heart Association, Inc.


Articles

Multiple Mechanisms of Na+ Channel– Linked Long-QT Syndrome

Robert Dumaine, Qing Wang, Mark T. Keating, Hali A. Hartmann, Peter J. Schwartz, Arthur M. Brown, Glenn E. Kirsch

From the Rammelkamp Center for Research (R.D., A.M.B., G.E.K.), MetroHealth Campus, Case Western Reserve University, Cleveland, Ohio; the Howard Hughes Medical Institute (Q.W., M.T.K.), University of Utah Health Sciences Center, Salt Lake City; the Department of Molecular Physiology and Biophysics (H.A.H.), Baylor College of Medicine, Houston, Tex; and the Department of Cardiology (P.J.S.), University of Pavia (Italy).

Correspondence to Dr G.E. Kirsch, MetroHealth Medical Center, Rammelkamp Bldg R327, 2500 MetroHealth Dr, Cleveland, OH 44106. E-mail gkirsch@mhnet.mhmc.org.

Abstract Inheritable long-QT syndrome (LQTS) is a disease in which delayed ventricular repolarization leads to cardiac arrhythmias and the possibility of sudden death. In the chromosome 3–linked disease, one mutation of the cardiac Na+ channel gene results in a deletion of residues 1505 to 1507 ({Delta}KPQ), and two mutations result in substitutions (N1325S and R1644H). We compared all three mutant-channel phenotypes by heterologous expression in Xenopus oocytes. Each produced a late phase of inactivation-resistant, mexiletine- and tetrodotoxin-sensitive whole-cell currents, but the underlying mechanisms were different at the single-channel level. N1325S and R1644H showed dispersed reopenings after the initial transient, whereas {Delta}KPQ showed both dispersed reopenings and long-lasting bursts. Thus, two distinct biophysical defects underlie the in vitro phenotype of persistent current in Na+ channel–linked LQTS, and the additive effects of both are responsible for making the {Delta}KPQ phenotype the most severe.


Key Words: human heart • cardiac arrhythmia • Romano-Ward syndrome • site-directed mutagenesis • Na+ channels




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Temperature dependence of early and late currents in human cardiac wild-type and long Q-T Delta KPQ Na+ channels
Am J Physiol Heart Circ Physiol, December 1, 1998; 275(6): H2016 - H2024.
[Abstract] [Full Text] [PDF]


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CirculationHome page
B. J. Maron, J. H. Moller, C. E. Seidman, G. M. Vincent, H. C. Dietz, A. J. Moss, J. A. Towbin, H. M. Sondheimer, R. E. Pyeritz, G. McGee, et al.
Impact of Laboratory Molecular Diagnosis on Contemporary Diagnostic Criteria for Genetically Transmitted Cardiovascular Diseases: Hypertrophic Cardiomyopathy, Long-QT Syndrome, and Marfan Syndrome : A Statement for Healthcare Professionals From the Councils on Clinical Cardiology, Cardiovascular Disease in the Young, and Basic Science, American Heart Association
Circulation, October 6, 1998; 98(14): 1460 - 1471.
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Circ. Res.Home page
R. H. An, X. L. Wang, B. Kerem, J. Benhorin, A. Medina, M. Goldmit, and R. S. Kass
Novel LQT-3 Mutation Affects Na+ Channel Activity Through Interactions Between {alpha}- and ß1-Subunits
Circ. Res., July 27, 1998; 83(2): 141 - 146.
[Abstract] [Full Text] [PDF]


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Proc. Natl. Acad. Sci. USAHome page
S. D. Dib-Hajj, L. Tyrrell, J. A. Black, and S. G. Waxman
NaN, a novel voltage-gated Na channel, is expressed preferentially in peripheral sensory neurons and down-regulated after axotomy
PNAS, July 21, 1998; 95(15): 8963 - 8968.
[Abstract] [Full Text] [PDF]


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Am. J. Physiol. Heart Circ. Physiol.Home page
R. Chandra, C. F. Starmer, and A. O. Grant
Multiple effects of KPQ deletion mutation on gating of human cardiac Na+ channels expressed in mammalian cells
Am J Physiol Heart Circ Physiol, May 1, 1998; 274(5): H1643 - H1654.
[Abstract] [Full Text] [PDF]


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CirculationHome page
H. Li, Q. Chen, A. J. Moss, J. Robinson, V. Goytia, J. C. Perry, G. M. Vincent, S. G. Priori, M. H. Lehmann, S. W. Denfield, et al.
New Mutations in the KVLQT1 Potassium Channel That Cause Long-QT Syndrome
Circulation, April 7, 1998; 97(13): 1264 - 1269.
[Abstract] [Full Text] [PDF]


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Cardiovasc ResHome page
S. Nattel
Experimental evidence for proarrhythmic mechanisms of antiarrhythmic drugs
Cardiovasc Res, March 1, 1998; 37(3): 567 - 577.
[Abstract] [Full Text] [PDF]


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CirculationHome page
N. G. Kambouris, H. B. Nuss, D. C. Johns, G. F. Tomaselli, E. Marban, and J. R. Balser
Phenotypic Characterization of a Novel Long-QT Syndrome Mutation (R1623Q) in the Cardiac Sodium Channel
Circulation, February 24, 1998; 97(7): 640 - 644.
[Abstract] [Full Text] [PDF]


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Am. J. Physiol. Heart Circ. Physiol.Home page
R. Dumaine and G. E. Kirsch
Mechanism of lidocaine block of late current in long Q-T mutant Na+ channels
Am J Physiol Heart Circ Physiol, February 1, 1998; 274(2): H477 - H487.
[Abstract] [Full Text] [PDF]


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NEJMHome page
M. J. Ackerman and D. E. Clapham
Ion Channels -- Basic Science and Clinical Disease
N. Engl. J. Med., May 29, 1997; 336(22): 1575 - 1586.
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JGPHome page
S. Kellenberger, J. W. West, W. A. Catterall, and T. Scheuer
Molecular Analysis of Potential Hinge Residues in the Inactivation Gate of Brain Type IIA Na+ Channels
J. Gen. Physiol., May 1, 1997; 109(5): 607 - 617.
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Proc. Natl. Acad. Sci. USAHome page
D. W. Wang, K. Yazawa, A. L. George Jr., and P. B. Bennett
Characterization of human cardiac Na+ channel mutations in the congenital long QT syndrome
PNAS, November 12, 1996; 93(23): 13200 - 13205.
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CirculationHome page
D. M. Roden, R. Lazzara, M. Rosen, P. J. Schwartz, J. Towbin, and G. M. Vincent
Multiple Mechanisms in the Long-QT Syndrome: Current Knowledge, Gaps, and Future Directions
Circulation, October 15, 1996; 94(8): 1996 - 2012.
[Abstract] [Full Text]


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Circ. Res.Home page
S. G. Priori, C. Napolitano, F. Cantu, A. M. Brown, and P. J. Schwartz
Differential Response to Na+ Channel Blockade, ß-Adrenergic Stimulation, and Rapid Pacing in a Cellular Model Mimicking the SCN5A and HERG Defects Present in the Long-QT Syndrome
Circ. Res., June 1, 1996; 78(6): 1009 - 1015.
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J. Biol. Chem.Home page
C.-j. Liu, S. D. Dib-Hajj, and S. G. Waxman
Fibroblast Growth Factor Homologous Factor 1B Binds to the C Terminus of the Tetrodotoxin-resistant Sodium Channel rNav1.9a (NaN)
J. Biol. Chem., May 25, 2001; 276(22): 18925 - 18933.
[Abstract] [Full Text] [PDF]


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Circ. Res.Home page
H. Abriel, C. Cabo, X. H. T. Wehrens, I. Rivolta, H. K. Motoike, M. Memmi, C. Napolitano, S. G. Priori, and R. S. Kass
Novel Arrhythmogenic Mechanism Revealed by a Long-QT Syndrome Mutation in the Cardiac Na+ Channel
Circ. Res., April 13, 2001; 88(7): 740 - 745.
[Abstract] [Full Text] [PDF]


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CirculationHome page
C. E. Clancy and Y. Rudy
Na+ Channel Mutation That Causes Both Brugada and Long-QT Syndrome Phenotypes: A Simulation Study of Mechanism
Circulation, March 12, 2002; 105(10): 1208 - 1213.
[Abstract] [Full Text] [PDF]