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May 6, 2008Journal of Clinical Investigation216 citationsOpen Access

Mechanisms of cardiac arrhythmias and sudden death in transgenic rabbits with long QT syndrome

MBMichael BrunnerXPXuwen PengGLGong Xin Liu

Structured PICO

P
Population
Transgenic rabbits expressing pore mutants of human genes KCNQ1 (KvLQT1-Y315S) and KCNH2 (HERG-G628S) in the heart
I
Intervention
Expression of mutant human genes KCNQ1 and KCNH2
O
Outcome
Electrophysiological characteristics (QT intervals, action potential durations, IKs and IKr currents), incidence of sudden cardiac death, and spatial dispersion of repolarizationsurrogate

In transgenic rabbit models of Long QT syndrome, elimination of one repolarizing current leads to downregulation of the reciprocal current, increasing spatial dispersion of repolarization and risk of sudden cardiac death.

Abstract

Long QT syndrome (LQTS) is a heritable disease associated with ECG QT interval prolongation, ventricular tachycardia, and sudden cardiac death in young patients. Among genotyped individuals, mutations in genes encoding repolarizing K+ channels (LQT1:KCNQ1; LQT2:KCNH2) are present in approximately 90% of affected individuals. Expression of pore mutants of the human genes KCNQ1 (KvLQT1-Y315S) and KCNH2 (HERG-G628S) in the rabbit heart produced transgenic rabbits with a long QT phenotype. Prolongations of QT intervals and action potential durations were due to the elimination of IKs and IKr currents in cardiomyocytes. LQT2 rabbits showed a high incidence of spontaneous sudden cardiac death (>50% at 1 year) due to polymorphic ventricular tachycardia. Optical mapping revealed increased spatial dispersion of repolarization underlying the arrhythmias. Both transgenes caused downregulation of the remaining complementary IKr and IKs without affecting the steady state levels of the native polypeptides. Thus, the elimination of 1 repolarizing current was associated with downregulation of the reciprocal repolarizing current rather than with the compensatory upregulation observed previously in LQTS mouse models. This suggests that mutant KvLQT1 and HERG interacted with the reciprocal wild-type alpha subunits of rabbit ERG and KvLQT1, respectively. These results have implications for understanding the nature and heterogeneity of cardiac arrhythmias and sudden cardiac death.

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Cite This Study

Brunner et al. (2008) studied this question.

synapsesocial.com/papers/69f2cb67be8e9f1f31c57920https://doi.org/10.1172/jci33578
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