Why the study?
The study was conducted to explore the relationship between TRPM4 mutation and the pathogenesis of atrioventricular block.
Identification of a novel TRPM4 mutation expands the genetic spectrum of atrioventricular block and may aid in genetic testing.
Supports TRPM4 testing in familial AVB; leaves open causal validation before clinical adoption.
Atrioventricular block (AVB) is a leading cause of sudden cardiac death, and most of AVB cases are presented as autosomal dominant. The electrocardiogram of AVB patients presents an abnormal progressive cardiac conduction disorder between atria and ventricles. Transient receptor potential melastatin 4 ( TRPM4 ) is a nonselective Ca 2+ ‐activated cation channel gene defined as a novel disease‐causing gene of AVB. So far, 47 mutations of TRPM4 have been recorded in Human Gene Mutation Database. The aim of this study was to explore the relationship between TRPM4 mutation and pathogenesis of AVB. We investigated a Chinese family with AVB by whole‐exome sequencing. An arrhythmia‐related gene filtering strategy was used to analyze the disease‐causing mutations. Three different bioinformatics programs were used to predict the effects of the mutation result. A novel mutation of TRPM4 was identified (c.2455C>T/p.R819C) and cosegregated in the affected family members. The three bioinformatics programs predicted that the novel mutation may lead to damage. Our study will contribute to expand the spectrum of TRPM4 mutations and supply accurate genetic testing information for further research and the clinical therapy of AVB.
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Dong et al. (2021) studied this question.
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