Lidocaine blocks maintained inward current and slows recovery from inactivation of delta KPQ-encoded mutant Na+ channels associated with LQT-3.
Long QT syndrome (LQT-3)
Lidocaine vs Drug-free mutant channels
Block of maintained inward current and slowing of recovery from inactivation
In transiently transfected mammalian cells we have identified pharmacological consequences of a naturally occurring deletion mutation, delta KPQ, of the human heart Na+ channel alpha subunit that previously has been linked to one form of the long QT syndrome, an inherited heart disease. Our results show that the Class IB antiarrhythmic agent lidocaine blocks maintained inward current through and slows recovery from inactivation of delta KPQ-encoded Na+ channels. Block is greater for maintained than for peak current. Because incomplete inactivation of mutant Na+ channels is now thought to underlie the prolonged ventricular action potential, which is the phenotype of this disease, and we find that the delta KPQ mutation speeds the recovery from inactivation of drug-free mutant channels, our results provide evidence, for the first time, that clinically relevant dysfunctional properties of an ion channel can be selectively targeted on the basis of the molecular properties conferred on the channel by an inherited genetic disorder.
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Ri Hi An
University of Rochester
R. Bangalore
Bangalore Medical College and Research Institute
Spencer Rosero
Rochester Institute of Technology
Circulation Research
University of Rochester
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An et al. (Mon,) conducted a other in Long QT syndrome (LQT-3). Lidocaine vs. Drug-free mutant channels was evaluated on Block of maintained inward current and slowing of recovery from inactivation. Lidocaine blocks maintained inward current and slows recovery from inactivation of delta KPQ-encoded mutant Na+ channels associated with LQT-3.
synapsesocial.com/papers/6a229558d60c1884c1d2a7cf — DOI: https://doi.org/10.1161/01.res.79.1.103