Brugada syndrome is a rare cardiac arrhythmia disorder, causally related to SCN5A mutations in around 20% of cases. Through a genome-wide association study of 312 individuals with Brugada syndrome and 1,115 controls, we detected 2 significant association signals at the SCN10A locus (rs10428132) and near the HEY2 gene (rs9388451). Independent replication confirmed both signals (meta-analyses: rs10428132, P = 1.0 × 10 -68; rs9388451, P = 5.1 × 10 -17) and identified one additional signal in SCN5A (at 3p21; rs11708996, P = 1.0 × 10 -14). The cumulative effect of the three loci on disease susceptibility was unexpectedly large (P trend = 6.1 × 10 -81). The association signals at SCN5A-SCN10A demonstrate that genetic polymorphisms modulating cardiac conduction can also influence susceptibility to cardiac arrhythmia. The implication of association with HEY2, supported by new evidence that Hey2 regulates cardiac electrical activity, shows that Brugada syndrome may originate from altered transcriptional programming during cardiac development. Altogether, our findings indicate that common genetic variation can have a strong impact on the predisposition to rare diseases.

Common variants at SCN5A-SCN10A and HEY2 are associated with Brugada syndrome, a rare disease with high risk of sudden cardiac death.

SCHWARTZ, PETER;CROTTI, LIA;DAGRADI, FEDERICA;TORCHIO, MARGHERITA;
2013-01-01

Abstract

Brugada syndrome is a rare cardiac arrhythmia disorder, causally related to SCN5A mutations in around 20% of cases. Through a genome-wide association study of 312 individuals with Brugada syndrome and 1,115 controls, we detected 2 significant association signals at the SCN10A locus (rs10428132) and near the HEY2 gene (rs9388451). Independent replication confirmed both signals (meta-analyses: rs10428132, P = 1.0 × 10 -68; rs9388451, P = 5.1 × 10 -17) and identified one additional signal in SCN5A (at 3p21; rs11708996, P = 1.0 × 10 -14). The cumulative effect of the three loci on disease susceptibility was unexpectedly large (P trend = 6.1 × 10 -81). The association signals at SCN5A-SCN10A demonstrate that genetic polymorphisms modulating cardiac conduction can also influence susceptibility to cardiac arrhythmia. The implication of association with HEY2, supported by new evidence that Hey2 regulates cardiac electrical activity, shows that Brugada syndrome may originate from altered transcriptional programming during cardiac development. Altogether, our findings indicate that common genetic variation can have a strong impact on the predisposition to rare diseases.
2013
Cardiovascular & Hematology Research covers all levels of investigation into the normal and pathogenic functions of the heart, vasculature, and soluble blood components. Cell biology of vascular tissue and formed elements of blood, biochemical regulation of thrombosis, therapeutic strategies for treatment of cardiac and vascular diseases are also considered. Resources on hematologic oncology are excluded and are placed in the Oncogenesis & Cancer Research category.
Esperti anonimi
Inglese
Internazionale
STAMPA
45
9
1044
1049
GENOME-WIDE ASSOCIATION, QT INTERVAL DURATION, ATRIAL GENE-EXPRESSION, ST-SEGMENT ELEVATION, BUNDLE-BRANCH BLOCK, VENTRICULAR-FIBRILLATION, CONDUCTION SYSTEM, QRS DURATION, PR INTERVAL, HEART-RATE
65
info:eu-repo/semantics/article
262
Bezzina, C. R.; Barc, J.; Mizusawa, Y.; Remme, C. A.; Gourraud, J. B.; Simonet, F.; Verkerk, A. O.; Schwartz, Peter; Crotti, Lia; Dagradi, Federica; G...espandi
1 Contributo su Rivista::1.1 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/896244
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