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October 1, 2003Journal of Clinical Investigation480 citationsOpen Access

Congenital sick sinus syndrome caused by recessive mutations in the cardiac sodium channel gene (SCN5A)

DBD. Woodrow BensonDWDao Wen WangMDMacaira Dyment

Structured PICO

Do mutations in the SCN5A gene cause congenital sick sinus syndrome in pediatric patients?

P
Population
10 pediatric patients from 7 families diagnosed with congenital sick sinus syndrome (SSS) during the first decade of life
I
Intervention
Genetic screening of the SCN5A gene and biophysical characterization of identified mutants
O
Outcome
Presence of SCN5A mutations and their biophysical effects on sodium channel functionsurrogate

Recessive mutations in the SCN5A gene can cause congenital sick sinus syndrome by impairing cardiac sodium channel function.

Abstract

Sick sinus syndrome (SSS) describes an arrhythmia phenotype attributed to sinus node dysfunction and diagnosed by electrocardiographic demonstration of sinus bradycardia or sinus arrest. Although frequently associated with underlying heart disease and seen most often in the elderly, SSS may occur in the fetus, infant, and child without apparent cause. In this setting, SSS is presumed to be congenital. Based on prior associations with disorders of cardiac rhythm and conduction, we screened the alpha subunit of the cardiac sodium channel (SCN5A) as a candidate gene in ten pediatric patients from seven families who were diagnosed with congenital SSS during the first decade of life. Probands from three kindreds exhibited compound heterozygosity for six distinct SCN5A alleles, including two mutations previously associated with dominant disorders of cardiac excitability. Biophysical characterization of the mutants using heterologously expressed recombinant human heart sodium channels demonstrate loss of function or significant impairments in channel gating (inactivation) that predict reduced myocardial excitability. Our findings reveal a molecular basis for some forms of congenital SSS and define a recessive disorder of a human heart voltage-gated sodium channel.

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Cite This Study

Benson et al. (2003) studied this question.

synapsesocial.com/papers/69f2cb20be8e9f1f31c57802https://doi.org/10.1172/jci18062
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