Molecular Basis of Downregulation of G-Protein–Coupled Inward Rectifying K+Current (IK,ACh) in Chronic Human Atrial Fibrillation
Open Access
- 20 November 2001
- journal article
- other
- Published by Wolters Kluwer Health in Circulation
- Vol. 104 (21) , 2551-2557
- https://doi.org/10.1161/hc4601.099466
Abstract
Background Clinical and experimental evidence suggest that the parasympathetic nervous system is involved in the pathogenesis of atrial fibrillation (AF). However, it is unclear whether changes in G-protein-coupled inward rectifying K+current (IK,ACh) contribute to chronic AF. Methods and Results In the present study, we used electrophysiological recordings and competitive reverse-transcription polymerase chain reaction to study changes inIK,AChand the level of theIK,AChGIRK4 subunit in isolated human atrial myocytes and the atrial tissue of 39 patients with sinus rhythm and 24 patients with chronic AF. The density ofIK,AChwas ≈50% smaller in myocytes from patients with AF compared with those in sinus rhythm, and this was accompanied by decreased levels of GIRK4 mRNA. The current density of the inward rectifying K+current (IK1) was 2-fold larger during AF than in sinus rhythm, in correspondence with an increase in Kir2.1 mRNA. The largerIK1in AF is consistent with more negative membrane potentials in right atrial trabeculae from AF patients. Moreover, action potential duration was reduced in AF, and the action potential shortening produced by muscarinic receptor stimulation was attenuated, indicating that the changes ofIK1andIK,AChwere functionally relevant. Conclusions Chronic human AF induces transcriptionally mediated upregulation ofIK1but downregulation ofIK,AChand attenuates the muscarinic receptor–mediated shortening of atrial action potentials. This suggests that atrial myocytes adapt to a chronically high rate by downregulatingIK,AChto counteract the shortening of the atrial effective refractory period due to electrical remodeling.Keywords
This publication has 9 references indexed in Scilit:
- Ionic mechanisms of electrical remodeling in human atrial fibrillationPublished by Oxford University Press (OUP) ,1999
- G Protein Regulation of Potassium Ion ChannelsPharmacological Reviews, 1998
- Role of atrial electrophysiology and autonomic nervous system in patients with supraventricular tachycardia and paroxysmal atrial fibrillationJournal of the American College of Cardiology, 1998
- Cardiac muscarinic receptors decrease with age. In vitro and in vivo studies.Journal of Clinical Investigation, 1998
- Abnormal Heart Rate Regulation in GIRK4 Knockout MiceNeuron, 1998
- Association of a human G-protein β3 subunit variant with hypertensionNature Genetics, 1998
- The G-protein-gated atrial K+ channel IKAch is a heteromultimer of two inwardly rectifying K+-channel proteinsNature, 1995
- Depressed transient outward and calcium currents in dilated human atriaCardiovascular Research, 1994
- Nonuniform Distribution of Vagal Effects on the Atrial Refractory PeriodAmerican Journal of Physiology-Legacy Content, 1958