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December 5, 2001Journal of Cellular Physiology206 citations

Involvement of the cardiac ryanodine receptor/calcium release channel in catecholaminergic polymorphic ventricular tachycardia

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AMAndrew R. MarksSPSilvia G. PrioriMMMirella Memmi

Key Result

Eleven RyR2 missense mutations linked to catecholaminergic polymorphic ventricular tachycardia and ARVD2 cluster into 3 regions homologous to RyR1 mutation regions.

Key Points

  • This research aims to understand how RyR2 mutations contribute to catecholaminergic polymorphic ventricular tachycardia and associated sudden cardiac death.
  • Reviewed eleven RyR2 missense mutations linked to cardiac diseases
  • Examined the role of PKA in RyR2 activation and its impact on calcium release
  • Analyzed the relationship between SR calcium leak and arrhythmia triggers under sympathetic stimulation
  • Identified that RyR2 mutations cluster in three regions similar to those in MH/CCD, affecting calcium release mechanisms
  • Demonstrated that PKA hyperphosphorylation leads to increased calcium leak in heart failure conditions
  • Found that calcium leak during diastole can initiate fatal arrhythmias like ventricular tachycardia.

PICO

P
Population
Catecholaminergic polymorphic ventricular tachycardia and Arrhythmogenic right ventricular dysplasia type 2

Abstract

The cardiac ryanodine receptor (RyR2), the major calcium release channel on the sarcoplasmic reticulum (SR) in cardiomyocytes, has recently been shown to be involved in at least two forms of sudden cardiac death (SCD): (1) Catecholaminergic polymorphic ventricular tachycardia (CPVT) or familial polymorphic VT (FPVT); and (2) Arrhythmogenic right ventricular dysplasia type 2 (ARVD2). Eleven RyR2 missense mutations have been linked to these diseases. All eleven RyR2 mutations cluster into 3 regions of RyR2 that are homologous to the three malignant hyperthermia (MH)/central core disease (CCD) mutation regions of the skeletal muscle ryanodine receptor/calcium release channel RyR1. MH/CCD RyR1 mutations have been shown to alter calcium-induced calcium release. Sympathetic nervous system stimulation leads to phosphorylation of RyR2 by protein kinase A (PKA). PKA phosphorylation of RyR2 activates the channel. In conditions associated with high rates of SCD such as heart failure RyR2 is PKA hyperphosphorylated resulting in "leaky" channels. SR calcium leak during diastole can generate "delayed after depolarizations" that can trigger fatal cardiac arrhythmias (e.g., VT). We propose that RyR2 mutations linked to genetic forms of catecholaminergic-induced SCD may alter the regulation of the channel resulting in increased SR calcium leak during sympathetic stimulation.

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Cite This Study

Marks et al. (2001) conducted a review in Catecholaminergic polymorphic ventricular tachycardia and Arrhythmogenic right ventricular dysplasia type 2. Eleven RyR2 missense mutations linked to catecholaminergic polymorphic ventricular tachycardia and ARVD2 cluster into 3 regions homologous to RyR1 mutation regions.

synapsesocial.com/papers/6a1b4df06e13c4b6f1abb3c1https://doi.org/10.1002/jcp.10031
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