4.7 Article

Identification of a novel loss-of-function calcium channel gene mutation in short QT syndrome (SQTS6)

期刊

EUROPEAN HEART JOURNAL
卷 32, 期 9, 页码 1077-1088

出版社

OXFORD UNIV PRESS
DOI: 10.1093/eurheartj/ehr076

关键词

Arrhythmia; Short QT syndrome; Novel gene mutation; Sudden cardiac death

资金

  1. Swiss National Science Foundation [33CM30-124112/1, 310030_120707]
  2. University of Bern
  3. Foundation for Cardiovascular Research, Zurich, Switzerland
  4. Zurich Center of Integrated Human Physiology
  5. NHLBI of the National Institutes of Health [HL47678]
  6. New York State and Florida Free and Accepted Masons
  7. Swiss National Science Foundation (SNF) [310030_120707] Funding Source: Swiss National Science Foundation (SNF)

向作者/读者索取更多资源

Aims Short QT syndrome (SQTS) is a genetically determined ion-channel disorder, which may cause malignant tachyarrhythmias and sudden cardiac death. Thus far, mutations in five different genes encoding potassium and calcium channel subunits have been reported. We present, for the first time, a novel loss-of-function mutation coding for an L-type calcium channel subunit. Methods and results The electrocardiogram of the affected member of a single family revealed a QT interval of 317 ms (QTc 329 ms) with tall, narrow, and symmetrical T-waves. Invasive electrophysiological testing showed short ventricular refractory periods and increased vulnerability to induce ventricular fibrillation. DNA screening of the patient identified no mutation in previously known SQTS genes; however, a new variant at a heterozygous state was identified in the CACNA2D1 gene (nucleotide c.2264G>C; amino acid p.Ser755Thr), coding for the Ca-v alpha(2)delta-1 subunit of the L-type calcium channel. The pathogenic role of the p.Ser755Thr variant of the CACNA2D1 gene was analysed by using co-expression of the two other L-type calcium channel subunits, Ca(v)1.2 alpha 1 and Ca-v beta(2b), in HEK-293 cells. Barium currents (I-Ba) were recorded in these cells under voltage-clamp conditions using the whole-cell configuration. Co-expression of the p.Ser755Thr Ca-v alpha(2)delta-1 subunit strongly reduced the I-Ba by more than 70% when compared with the co-expression of the wild-type (WT) variant. Protein expression of the three subunits was verified by performing western blots of total lysates and cell membrane fractions of HEK-293 cells. The p.Ser755Thr variant of the Cava2d-1 subunit was expressed at a similar level compared with the WT subunit in both fractions. Since the mutant Cava2d-1 subunit did not modify the expression of the pore-forming subunit of the L-type calcium channel, Cav1.2a1, it suggests that single channel biophysical properties of the L-type channel are altered by this variant. Conclusion In the present study, we report the first pathogenic mutation in the CACNA2D1 gene in humans, which causes a new variant of SQTS. It remains to be determined whether mutations in this gene lead to other manifestations of the J-wave syndrome.

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