In Vivo Cardiac Gene Transfer of Kv4.3 Abrogates the Hypertrophic Response in Rats After Aortic Stenosis
- 30 November 2004
- journal article
- Published by Wolters Kluwer Health in Circulation
- Vol. 110 (22) , 3435-3443
- https://doi.org/10.1161/01.cir.0000148176.33730.3f
Abstract
Background— Prolongation of the action potential duration (APD) and decreased transient outward K + current ( I to ) have been consistently observed in cardiac hypertrophy. The relation between electrical remodeling and cardiac hypertrophy in vivo is unknown. Methods and Results— We studied rat hearts subjected to pressure overload by surgical ascending aortic stenosis (AS) and simultaneously infected these hearts with an adenovirus carrying either the Kv4.3 gene ( Ad.Kv4.3 ) or the β-galactosidase gene ( Ad.β-gal ). I to density was reduced and APD 50 was prolonged ( P P Ad.β-gal developed cardiac hypertrophy compared with sham rats, as assessed by cellular capacitance and heart weight–body weight ratio. Associated with the development of cardiac hypertrophy, the expression of calcineurin and its downstream transcription factor nuclear factor of activated T cells (NFAT) c1 was persistently increased by 47% and 36%, respectively ( P Ad.β-gal compared with sham myocytes. In vivo gene transfer of Kv4.3 in AS rats was shown to increase Kv4.3 expression, increase I to density, and shorten APD 50 by 1.6-fold, 5.3-fold, and 3.6-fold, respectively ( P Ad.Kv4.3 showed significant reductions in calcineurin and NFAT expression. ( P Conclusions— Downregulation of I to , APD prolongation, and cardiac hypertrophy occur early after AS, and in vivo gene transfer of Kv4.3 can restore these electrical parameters and abrogate the hypertrophic response via the calcineurin pathway.Keywords
This publication has 22 references indexed in Scilit:
- Inhibition of Calcineurin and Sarcolemmal Ca 2+ Influx Protects Cardiac Morphology and Ventricular Function in K v 4.2N Transgenic MiceCirculation, 2002
- Evidence for Calcineurin-mediated Regulation of SERCA 2a Activity in Human MyocardiumJournal of Molecular and Cellular Cardiology, 2002
- Alterations in action potential profile enhance excitation‐contraction coupling in rat cardiac myocytesThe Journal of Physiology, 2001
- Cytoplasmic Signaling Pathways That Regulate Cardiac HypertrophyAnnual Review of Physiology, 2001
- Regional alterations of repolarizing K+ currents among the left ventricular free wall of rats with ascending aortic stenosisThe Journal of Physiology, 2001
- Early Down‐Regulation of K+ Channel Genes and Currents in the Postinfarction HeartJournal of Cardiovascular Electrophysiology, 2000
- Relationship between transient outward K+ current and Ca2+ influx in rat cardiac myocytes of endo‐ and epicardial originThe Journal of Physiology, 1999
- Relationship between K+ channel down‐regulation and [Ca2+]i in rat ventricular myocytes following myocardial infarctionThe Journal of Physiology, 1999
- The Effects of Antihypertensive Therapy on Left Ventricular Mass in Elderly PatientsNew England Journal of Medicine, 1990
- Cardiac energetics in short and long term hypertrophy induced by aortic coarctationCardiovascular Research, 1981