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Updated: Jul 25, 2025

Functional Characterization of Endogenously Expressed Human RYR1 Variants
Published on: June 9, 2021
RYR2-ryanodinopathies: from calcium overload to calcium deficiency
Christian Steinberg1, Thomas M Roston2, Christian van der Werf3
1Institut universitaire de cardiologie et pneumologie de Québec, Laval University, 2725, Chemin Ste-Foy, Quebec G1V 4G5, Canada.
Abstract:
The sarcoplasmatic reticulum (SR) cardiac ryanodine receptor/calcium release channel RyR2 is an essential regulator of cardiac excitation-contraction coupling and intracellular calcium homeostasis. Mutations of the RYR2 are the cause of rare, potentially lethal inherited arrhythmia disorders. Catecholaminergic polymorphic ventricular tachycardia (CPVT) was first described more than 20 years ago and is the most common and most extensively studied cardiac ryanodinopathy. Over time, other distinct inherited arrhythmia syndromes have been related to abnormal RyR2 function. In addition to CPVT, there are at least two other distinct RYR2-ryanodinopathies that differ mechanistically and phenotypically from CPVT: RYR2 exon-3 deletion syndrome and the recently identified calcium release deficiency syndrome (CRDS). The pathophysiology of the different cardiac ryanodinopathies is characterized by complex mechanisms resulting in excessive spontaneous SR calcium release or SR calcium release deficiency. While the vast majority of CPVT cases are related to gain-of-function variants of the RyR2 protein, the recently identified CRDS is linked to RyR2 loss-of-function variants. The increasing number of these cardiac 'ryanodinopathies' reflects the complexity of RYR2-related cardiogenetic disorders and represents an ongoing challenge for clinicians. This state-of-the-art review summarizes our contemporary understanding of RYR2-related inherited arrhythmia disorders and provides a systematic and comprehensive description of the distinct cardiac ryanodinopathies discussing clinical aspects and molecular insights. Accurate identification of the underlying type of cardiac ryanodinopathy is essential for the clinical management of affected patients and their families.
Insights
Mutations in the cardiac ryanodine receptor RyR2 cause inherited arrhythmia disorders like CPVT and CRDS. Understanding these distinct RYR2-ryanodinopathies is crucial for effective clinical management.
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Electrophysiology
Background:
- The cardiac ryanodine receptor RyR2 regulates calcium release essential for heart function.
- RYR2 mutations cause inherited arrhythmia disorders, including catecholaminergic polymorphic ventricular tachycardia (CPVT).
- Distinct RYR2-related disorders, such as RYR2 exon-3 deletion syndrome and calcium release deficiency syndrome (CRDS), have emerged.
Purpose of the Study:
- To provide a comprehensive review of RYR2-related inherited arrhythmia disorders.
- To systematically describe distinct cardiac ryanodinopathies, including CPVT, RYR2 exon-3 deletion syndrome, and CRDS.
- To discuss the clinical aspects and molecular insights of these complex cardiogenetic disorders.
Main Methods:
- Literature review of RYR2-related inherited arrhythmia disorders.
- Systematic analysis of clinical presentations and molecular mechanisms.
- Synthesis of current knowledge on cardiac ryanodinopathies.
Main Results:
- Cardiac ryanodinopathies result from complex mechanisms causing abnormal SR calcium release.
- CPVT is typically associated with RyR2 gain-of-function variants.
- CRDS is linked to RyR2 loss-of-function variants, differing mechanistically from CPVT.
Conclusions:
- Accurate identification of specific cardiac ryanodinopathies is vital for patient management.
- The growing number of RYR2-related disorders highlights their complexity and clinical challenges.
- This review offers a contemporary understanding of RYR2-related inherited arrhythmias for clinicians.
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