Genetic interpretation and clinical translation of minor genes related to Brugada syndrome |
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Authors: | Oscar Campuzano,Georgia Sarquella‐Brugada,Anna Fernandez‐Falgueras,Sergi Cesar,Monica Coll,Jesus Mates,Elena Arbelo,Alexandra Perez‐Serra,Bernat del Olmo,Paloma Jord ,Victoria Fiol,Anna Iglesias,Marta Puigmul ,Laura Lopez,Ferran Pico,Josep Brugada,Ramon Brugada |
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Affiliation: | Oscar Campuzano,Georgia Sarquella‐Brugada,Anna Fernandez‐Falgueras,Sergi Cesar,Monica Coll,Jesus Mates,Elena Arbelo,Alexandra Perez‐Serra,Bernat del Olmo,Paloma Jordá,Victoria Fiol,Anna Iglesias,Marta Puigmulé,Laura Lopez,Ferran Pico,Josep Brugada,Ramon Brugada |
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Abstract: | Brugada syndrome (BrS) is an inherited arrhythmogenic disease associated with sudden cardiac death. The main gene is SCN5A. Additional variants in 42 other genes have been reported as deleterious, although these variants have not yet received comprehensive pathogenic analysis. Our aim was to clarify the role of all currently reported variants in minor genes associated with BrS. We performed a comprehensive analysis according to the American College of Medical Genetics and Genomics guidelines of published clinical and basic data on all genes (other than SCN5A) related to BrS. Our results identified 133 rare variants potentially associated with BrS. After applying current recommendations, only six variants (4.51%) show a conclusive pathogenic role. All definitively pathogenic variants were located in four genes encoding sodium channels or related proteins: SLMAP, SEMA3A, SCNN1A, and SCN2B. In total, 33.83% of variants in 19 additional genes were potentially pathogenic. Beyond SCN5A, we conclude definitive pathogenic variants associated with BrS in four minor genes. The current list of genes associated with BrS, therefore, should include SCN5A, SLMAP, SEMA3A, SCNN1A, and SCN2B. Comprehensive genetic interpretation and careful clinical translation should be done for all variants currently classified as potentially deleterious for BrS. |
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Keywords: | arrhythmia Brugada syndrome genetics pathogenicity sudden cardiac death |
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