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Somatic mutations in the connexin 40 gene (GJA5) in atrial fibrillation
Michael H Gollob1, Douglas L Jones, Andrew D Krahn
1Arrhythmia Research Laboratory and Division of Cardiology, Department of Medicine, University of Ottawa Heart Institute, Ottawa, Canada. mgollob@ottawaheart.ca
Insights
Genetic mutations in GJA5, encoding connexin 40, may cause atrial fibrillation. These mutations, found in heart tissue, can impair electrical coupling, suggesting a genetic basis for this common arrhythmia.
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
Background:
- Atrial fibrillation (AF) is a prevalent cardiac arrhythmia linked to significant cardiovascular morbidity, especially stroke.
- Connexin 40 (encoded by GJA5) is crucial for atrial electrical activation.
- Idiopathic AF may stem from genetic factors affecting atrial function.
Purpose of the Study:
- To investigate the genetic basis of idiopathic atrial fibrillation.
- To identify mutations in the GJA5 gene and assess their functional impact.
Main Methods:
- Sequencing of the GJA5 gene in cardiac tissue and lymphocytes from 15 idiopathic AF patients.
- Functional assessment of identified GJA5 mutations in a gap-junction-deficient cell line.
Main Results:
- Four novel heterozygous missense GJA5 mutations were identified in 4 patients.
- Three mutations showed somatic origin (cardiac tissue only), one had germ-line origin.
- Mutant proteins exhibited impaired transport or reduced electrical coupling.
Conclusions:
- GJA5 mutations may predispose individuals to idiopathic atrial fibrillation by disrupting gap-junction function.
- This suggests a genetic etiology for some idiopathic conditions, with mutations potentially localized to affected tissues.
Background:
Atrial fibrillation is the most common type of cardiac arrhythmia and a leading cause of cardiovascular morbidity, particularly stroke. The cardiac gap-junction protein connexin 40 is expressed selectively in atrial myocytes and mediates the coordinated electrical activation of the atria. We hypothesized that idiopathic atrial fibrillation has a genetic basis and that tissue-specific mutations in GJA5, the gene encoding connexin 40, may predispose the atria to fibrillation.
Methods:
We sequenced GJA5 from genomic DNA isolated from resected cardiac tissue and peripheral lymphocytes from 15 patients with idiopathic atrial fibrillation. Identified GJA5 mutations were transfected into a gap-junction-deficient cell line to assess their functional effects on protein transport and intercellular electrical coupling.
Results:
Four novel heterozygous missense mutations were identified in 4 of the 15 patients. In three patients, the mutations were found in the cardiac-tissue specimens but not in the lymphocytes, indicating a somatic source of the genetic defects. In the fourth patient, the sequence variant was detected in both cardiac tissue and lymphocytes, suggesting a germ-line origin. Analysis of the expression of mutant proteins revealed impaired intracellular transport or reduced intercellular electrical coupling.
Conclusions:
Mutations in GJA5 may predispose patients to idiopathic atrial fibrillation by impairing gap-junction assembly or electrical coupling. Our data suggest that common diseases traditionally considered to be idiopathic may have a genetic basis, with mutations confined to the diseased tissue.
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