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June 1, 2004Journal of Biological Chemistry229 citationsOpen Access

Functional Characterization of a Trafficking-defective HCN4 Mutation, D553N, Associated with Cardiac Arrhythmia

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KUKazuo UedaKNKazufumi NakamuraTHTakeharu Hayashi

Key Result

The HCN4 D553N mutation caused reduced membranous expression and decreased If currents due to a dominant-negative trafficking defect, linking it to sinus nodal dysfunction and QT prolongation.

Structured PICO

P
Population
Patients with sinus node dysfunction and other arrhythmias were screened for HCN4 mutations, identifying one patient with the D553N mutation for in vitro functional analysis.
E
Exposure
Genetic screening for HCN4 mutations and in vitro functional characterization of the D553N mutation.
O
Outcome
Functional consequences of the D553N mutation on membranous expression and If currents.surrogate

The loss of function of HCN4 due to the D553N mutation is associated with sinus nodal dysfunction and may underlie clinical features of QT prolongation and polymorphic ventricular tachycardia.

Abstract

Hyperpolarization-activated cyclic nucleotide-gated channel 4 gene HCN4 is a pacemaker channel that plays a key role in automaticity of sinus node in the heart, and an HCN4 mutation was reported in a patient with sinus node dysfunction. Expression of HCN4 in the heart is, however, not confined to the sinus node cells but is found in other tissues, including cells of the conduction system. On the other hand, mutations in another cardiac ion channel gene, SCN5A, also cause sinus node dysfunction as well as other cardiac arrhythmias, including long QT syndrome, Brugada syndrome, idiopathic ventricular fibrillation, and progressive cardiac conduction disturbance. These observations imply that HCN4 abnormalities may be involved in the pathogenesis of various arrhythmias, similar to the SCN5A mutations. In this study, we analyzed patients suffering from sinus node dysfunction, progressive cardiac conduction disease, and idiopathic ventricular fibrillation for mutations in HCN4. A missense mutation, D553N, was found in a patient with sinus node dysfunction who showed recurrent syncope, QT prolongation in electrocardiogram, and polymorphic ventricular tachycardia, torsade de pointes. In vitro functional study of the D553N mutation showed a reduced membranous expression associated with decreased If currents because of a trafficking defect of the HCN4 channel in a dominant-negative manner. These data suggest that the loss of function of HCN4 is associated with sinus nodal dysfunction and that a consequence of pacemaker channel abnormality might underlie clinical features of QT prolongation and polymorphic ventricular tachycardia developed under certain conditions.

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Cite This Study

Ueda et al. (2004) studied Sinus node dysfunction, progressive cardiac conduction disease, and idiopathic ventricular fibrillation. HCN4 D553N mutation was evaluated on In vitro functional expression and If currents. The HCN4 D553N mutation caused reduced membranous expression and decreased If currents due to a dominant-negative trafficking defect, linking it to sinus nodal dysfunction and QT prolongation.

synapsesocial.com/papers/6a557d4f0db8f4832a8e0d3fhttps://doi.org/10.1074/jbc.m311953200
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