Defective Regulation of Interdomain Interactions Within the Ryanodine Receptor Plays a Key Role in the Pathogenesis of Heart Failure
- 28 June 2005
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation
- Vol. 111 (25) , 3400-3410
- https://doi.org/10.1161/circulationaha.104.507921
Abstract
Background— According to our hypothesis, 2 domains within the ryanodine receptor (RyR) of sarcoplasmic reticulum (SR) (N-terminal [0 to 600] and central [2000 to 2500] domains), where many mutations have been found in patients with polymorphic ventricular tachycardia, interact with each other as a regulatory switch for channel gating. Here, we investigated whether the defective FKBP12.6-mediated stabilization of RyR in heart failure is produced by an abnormal interdomain interaction. Methods and Results— SR vesicles were isolated from dog left ventricular muscles, and then the RyR moiety of the SR was fluorescently labeled with methylcoumarin acetate (MCA) using DPc10, a synthetic peptide corresponding to Gly2460-Pro2495 of RyR (one of the mutable domains in polymorphic ventricular tachycardia), as a site-directing carrier; the carrier was removed from the RyR after MCA labeling. Addition of DPc10 induced an unzipped state of the interacting N-terminal and central domains, as evidenced by an increase in the accessibility of the RyR-bound MCA fluorescence to a large fluorescence quencher. Domain unzipping resulted in Ca2+ leak through the RyR and facilitated cAMP-dependent hyperphosphorylation of RyR and FKBP12.6 dissociation from RyR. When DPc10 was introduced into the isolated myocytes, the magnitude of intracellular Ca2+ transient decreased, and its decay time was prolonged. In the SR isolated from pacing-induced dog failing hearts, the domain unzipping has already occurred, together with FKBP12.6 dissociation and Ca2+ leak. Conclusions— The specific domain interaction within the RyR regulates the channel gating property, and the defectiveness in the mode of the interdomain interaction seems to be the initial critical step of the pathogenesis of heart failure.Keywords
This publication has 17 references indexed in Scilit:
- Protection from Cardiac Arrhythmia Through Ryanodine Receptor-Stabilizing Protein Calstabin2Science, 2004
- Modulation of excitation–contraction coupling by isoproterenol in cardiomyocytes with controlled SR Ca2+ load and Ca2+ current triggerThe Journal of Physiology, 2004
- β-Blockers Restore Calcium Release Channel Function and Improve Cardiac Muscle Performance in Human Heart FailureCirculation, 2003
- Protein Kinase A Phosphorylation of the Cardiac Calcium Release Channel (Ryanodine Receptor) in Normal and Failing HeartsJournal of Biological Chemistry, 2003
- Peptide Probe Study of the Critical Regulatory Domain of the Cardiac Ryanodine ReceptorBiochemical and Biophysical Research Communications, 2002
- Spectroscopic Monitoring of Local Conformational Changes during the Intramolecular Domain−Domain Interaction of the Ryanodine ReceptorBiochemistry, 2002
- Ryanodine Receptors/Calcium Release channels in Heart Failure and Sudden Cardiac DeathJournal of Molecular and Cellular Cardiology, 2001
- Altered interaction of FKBP12.6 with ryanodine receptor as a cause of abnormal Ca2+ release in heart failureCardiovascular Research, 2000
- PKA Phosphorylation Dissociates FKBP12.6 from the Calcium Release Channel (Ryanodine Receptor): Defective Regulation in Failing HeartsPublished by Elsevier ,2000
- Characterization of cyclic 3′:5′-AMP-dependent protein kinase in sarcoplasmic reticulum and cytosol of canine myocardiumBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1982