Human Mutation · 2011 · 166 citations · 16 references
Cardiac MuscleHeart FailureGeneticsGenetic EpidemiologyPathologyMolecular GeneticsTrpm4 MutationsCellular PhysiologyCardiac Conductance DisturbancesClinical GeneticsTrpm4 GeneMutational SpectrumPublic HealthCardiologyMonogenic DisordersNeurogeneticsCardiomyopathyMolecular PhysiologyInherited Metabolic DiseaseIon ChannelsCell BiologyMolecular MedicineCardiac PathologyChannelopathiesSignal TransductionTrpm4 Gene VariationsGenetic DisorderPhysiologyElectrophysiologyCardiovascular PhysiologyMedicineCardiovascular GeneticsArrhythmia
Very recently, mutations in the TRPM4 gene have been identified in four pedigrees as the cause of an autosomal dominant form of cardiac conduction disease. To determine the role of TRPM4 gene variations, the relative frequency of TRPM4 mutations and associated phenotypes was assessed in a cohort of 160 unrelated patients with various types of inherited cardiac arrhythmic syndro-mes. In eight probands with atrioventricular block or right bundle branch block—five familial cases and three spora-dic cases—a total of six novel and two published TRPM4 mutations were identified. In patients with sinus node dysfunction, Brugada syndrome, or long-QT syndrome, no mutations were found. The novel mutations include six amino acid substitutions and appeared randomly distributed through predicted TRPM4 protein. In addition, eight polymorphic sites including two in-frame deletions were found. Mutations separated from polymorphisms by absence in control individuals and familial cosegregation in some families. In summary, TRPM4 gene mutations appear to play a major role in cardiac conduction disease but not for other related syndromes so far. The phenotypes are variable and clearly suggestive of additional factors modulating the disease phenotype in some patients. Hum Mutat 33:109–117, 2012. © 2011 Wiley Periodicals, Inc.
16
Cardiac conduction defects associate with mutations in SCN5A
Jean‐Jacques Schott, Connie Alshinawi, Florence Kyndt et al. · Nature Genetics · 1999 · 629 citations
Hiroshi Watanabe, Tamara T. Koopmann, Solena Le Scouarnec et al. · Journal of Clinical Investigation · 2008 · 432 citations · Full text
Cardiac Muscle, Channelopathies, Ventricular Fibrillation +15
A sodium-channel mutation causes isolated cardiac conduction disease
Hanno L. Tan, Margreet Th.E. Bink‐Boelkens, Connie R. Bezzina et al. · Nature · 2001 · 395 citations