Publication: Clinical characteristics and determinants of the phenotype in TMEM43 arrhythmogenic right ventricular cardiomyopathy type 5.
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Date
2020-02-13
Authors
Dominguez, Fernando
Zorio, Esther
Jimenez-Jaimez, Juan
Salguero-Bodes, Rafael
Zwart, Robert
Gonzalez-Lopez, Esther
Molina, Pilar
Bermúdez-Jiménez, Francisco
Delgado, Juan F
Braza-Boïls, Aitana
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Abstract
Arrhythmogenic right ventricular cardiomyopathy type V (ARVC-5) is the most aggressive heterozygous form of ARVC. It is predominantly caused by a fully penetrant mutation (p.S358L) in the nondesmosomal gene TMEM43-endemic to Newfoundland, Canada. To date, all familial cases reported worldwide share a common ancestral haplotype. It is unknown whether the p.S358L mutation by itself causes ARVC-5 or whether the disease is influenced by genetic or environmental factors. The purpose of this study was to examine the phenotype, clinical course, and the impact of exercise on patients with p.S358L ARVC-5 without the Newfoundland genetic background. We studied 62 affected individuals and 73 noncarriers from 3 TMEM43-p.S358L Spanish families. The impact of physical activity on the phenotype was also evaluated. Haplotype analysis revealed that the 3 Spanish families were unrelated to patients with ARVC-5 with the Newfoundland genetic background. Two families shared 10 microsatellite markers in a 4.9 cM region surrounding TMEM43; the third family had a distinct haplotype. The affected individuals showed a 38.7% incidence of sudden cardiac death, which was higher in men. Left ventricular involvement was common, with 40% of mutation carriers showing a left ventricular ejection fraction of ARVC-5 is associated with a high risk of sudden cardiac death and characteristic clinical and electrocardiographic features irrespective of geographical origin and genetic background. Our data suggest that, as in desmosomal ARVC, vigorous physical activity could aggravate the phenotype of TMEM43 mutation carriers.
Description
MeSH Terms
Adult
Arrhythmogenic Right Ventricular Dysplasia
DNA
DNA Mutational Analysis
Electrocardiography
Female
Humans
Male
Membrane Proteins
Mutation, Missense
Pedigree
Phenotype
Stroke Volume
Ventricular Function, Left
Arrhythmogenic Right Ventricular Dysplasia
DNA
DNA Mutational Analysis
Electrocardiography
Female
Humans
Male
Membrane Proteins
Mutation, Missense
Pedigree
Phenotype
Stroke Volume
Ventricular Function, Left
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CIE Terms
Keywords
Arrhythmia, Arrhythmogenic right ventricular cardiomyopathy, Exercise, Genetics, TMEM43






