Key result
TRPM4 mutations account for ~6% of Brugada syndrome cases and cause diverse channel expression anomalies.
Observational (n=248)
Yes
TRPM4 mutations account for approximately 6% of Brugada syndrome cases lacking SCN5A mutations, leading to diverse effects on channel expression that may reduce sodium channel availability.
Extends BrS genetic heterogeneity beyond SCN5A; leaves open TRPM4 pathogenicity and screening utility.
Brugada syndrome (BrS) is a condition defined by ST-segment alteration in right precordial leads and a risk of sudden death. Because BrS is often associated with right bundle branch block and the TRPM4 gene is involved in conduction blocks, we screened TRPM4 for anomalies in BrS cases. The DNA of 248 BrS cases with no SCN5A mutations were screened for TRPM4 mutations. Among this cohort, 20 patients had 11 TRPM4 mutations. Two mutations were previously associated with cardiac conduction blocks and 9 were new mutations (5 absent from ~14'000 control alleles and 4 statistically more prevalent in this BrS cohort than in control alleles). In addition to Brugada, three patients had a bifascicular block and 2 had a complete right bundle branch block. Functional and biochemical studies of 4 selected mutants revealed that these mutations resulted in either a decreased expression (p.Pro779Arg and p.Lys914X) or an increased expression (p.Thr873Ile and p.Leu1075Pro) of TRPM4 channel. TRPM4 mutations account for about 6% of BrS. Consequences of these mutations are diverse on channel electrophysiological and cellular expression. Because of its effect on the resting membrane potential, reduction or increase of TRPM4 channel function may both reduce the availability of sodium channel and thus lead to BrS.
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Liu et al. (2013) conducted an observational in Brugada syndrome (n=248). TRPM4 mutations vs. Control alleles was evaluated on Prevalence of TRPM4 mutations. TRPM4 mutations account for approximately 6% of Brugada syndrome cases and result in diverse functional anomalies, including both decreased and increased channel expression.
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