Key result
Hereditary cardiomyopathies and arrhythmias share genetic roots driving pro-arrhythmic ion and structural changes.
Why the study?
Neither the causal role of cardiac arrhythmia genes in cardiomyopathies nor the causal role of cardiomyopathy genes in arrhythmias is well established, despite evidence of a shared genetic etiology.
This review highlights the complex interplay between genetic variants, ion current modifications, and structural changes in the pathogenesis of arrhythmias in hereditary cardiomyopathies.
May aid arrhythmia risk assessment in hereditary cardiomyopathies; leaves open targeted interventions pending prospective validation.
Cardiac arrhythmias are common, often the first, and sometimes the life-threatening manifestations of hereditary cardiomyopathies. Pathogenic variants in several genes known to cause hereditary cardiac arrhythmias have also been identified in the sporadic cases and small families with cardiomyopathies. These findings suggest a shared genetic aetiology of a subset of hereditary cardiomyopathies and cardiac arrhythmias. The concept of a shared genetic aetiology is in accord with the complex and exquisite interplays that exist between the ion currents and cardiac mechanical function. However, neither the causal role of cardiac arrhythmias genes in cardiomyopathies is well established nor the causal role of cardiomyopathy genes in arrhythmias. On the contrary, secondary changes in ion currents, such as post-translational modifications, are common and contributors to the pathogenesis of arrhythmias in cardiomyopathies through altering biophysical and functional properties of the ion channels. Moreover, structural changes, such as cardiac hypertrophy, dilatation, and fibrosis provide a pro-arrhythmic substrate in hereditary cardiomyopathies. Genetic basis and molecular biology of cardiac arrhythmias in hereditary cardiomyopathies are discussed.
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Marian et al. (2020) conducted a review in Hereditary cardiomyopathies and cardiac arrhythmias. Hereditary cardiomyopathies and cardiac arrhythmias share a complex genetic etiology, with secondary ion current modifications and structural changes providing a pro-arrhythmic substrate.
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