Literature DB >> 19606473

The genetic basis of Brugada syndrome: a mutation update.

Paula L Hedley1, Poul Jørgensen, Sarah Schlamowitz, Johanna Moolman-Smook, Jørgen K Kanters, Valerie A Corfield, Michael Christiansen.   

Abstract

Brugada syndrome (BrS) is a condition characterized by a distinct ST-segment elevation in the right precordial leads of the electrocardiogram and, clinically, by an increased risk of cardiac arrhythmia and sudden death. The condition predominantly exhibits an autosomal dominant pattern of inheritance with an average prevalence of 5:10,000 worldwide. Currently, more than 100 mutations in seven genes have been associated with BrS. Loss-of-function mutations in SCN5A, which encodes the alpha-subunit of the Na(v)1.5 sodium ion channel conducting the depolarizing I(Na) current, causes 15-20% of BrS cases. A few mutations have been described in GPD1L, which encodes glycerol-3-phosphate dehydrogenase-1 like protein; CACNA1C, which encodes the alpha-subunit of the Ca(v)1.2 ion channel conducting the depolarizing I(L,Ca) current; CACNB2, which encodes the stimulating beta2-subunit of the Ca(v)1.2 ion channel; SCN1B and SCN3B, which, in the heart, encodes beta-subunits of the Na(v)1.5 sodium ion channel, and KCNE3, which encodes the ancillary inhibitory beta-subunit of several potassium channels including the Kv4.3 ion channel conducting the repolarizing potassium I(to) current. BrS exhibits variable expressivity, reduced penetrance, and "mixed phenotypes," where families contain members with BrS as well as long QT syndrome, atrial fibrillation, short QT syndrome, conduction disease, or structural heart disease, have also been described.

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Year:  2009        PMID: 19606473     DOI: 10.1002/humu.21066

Source DB:  PubMed          Journal:  Hum Mutat        ISSN: 1059-7794            Impact factor:   4.878


  55 in total

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Review 4.  Cardiac ion channels.

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5.  Differential Expression and Remodeling of Transient Outward Potassium Currents in Human Left Ventricles.

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6.  Next generation sequencing in cardiovascular diseases.

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7.  Fibroblast growth factor homologous factors modulate cardiac calcium channels.

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Review 8.  QT Prolongation and Malignant Arrhythmia: How Serious a Problem?

Authors:  Christos-Konstantinos Antoniou; Polychronis Dilaveris; Panagiota Manolakou; Spyridon Galanakos; Nikolaos Magkas; Konstantinos Gatzoulis; Dimitrios Tousoulis
Journal:  Eur Cardiol       Date:  2017-12

9.  Risk stratification in young patients with channelopathies.

Authors:  N Sreeram; U Trieschmann; M Khalil; M Emmel
Journal:  Indian Pacing Electrophysiol J       Date:  2010-06-05

10.  Atrial arrhythmogenicity in aged Scn5a+/DeltaKPQ mice modeling long QT type 3 syndrome and its relationship to Na+ channel expression and cardiac conduction.

Authors:  Laila Guzadhur; Sarah M Pearcey; Rudolf M Duehmke; Kamalan Jeevaratnam; Anja F Hohmann; Yanmin Zhang; Andrew A Grace; Ming Lei; Christopher L-H Huang
Journal:  Pflugers Arch       Date:  2010-06-16       Impact factor: 3.657

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