4.7 Article

GSTM3 variant is a novel genetic modifier in Brugada syndrome, a disease with risk of sudden cardiac death

期刊

EBIOMEDICINE
卷 57, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.ebiom.2020.102843

关键词

Inherited cardiac arrhythmia; Genetics; Sudden cardiac death; Brugada syndrome

资金

  1. National Taiwan University Hospital [NTUH 106S3469, NTUH 105-012, UN 103-018, UN104-001]
  2. Ministry of Science and Technology [NSC 101-2314-B-002-168-MY2, NSC 103-2314-B-002-148, MOST 104-2314-B-002-193-MY3, MOST 106-2314-B-002-047-MY3, MOST 106-2314-B-002-20 6, MOST 107-2314-B-002-009, MOST 107-2314-B-002 -007, MOST 108-2314-B-002 -007, MOST 107-2314-B-002-261-MY3]
  3. Taiwan Health Foundation
  4. National Taiwan University [NTU CESRP-10R70602A5, NTU ERP10R80600, GTZ300]
  5. National Institutes of Health, U.S.A. [HL47678, HL138103, HL152201]
  6. W.W. Smith Charitable Trust [H1802]
  7. Martha and Wistar Morris Fund, U.S.A
  8. Fondo Ateneoper la Ricerca, Italy [2016-ATE-0292]

向作者/读者索取更多资源

Background: Brugada syndrome (BrS) is a rare inherited disease causing sudden cardiac death (SCD). Copy number variants (CNVs) can contribute to disease susceptibility, but their role in Brugada syndrome (BrS) is unknown. We aimed to identify a CNV associated with BrS and elucidated its clinical implications. Methods: We enrolled 335 unrelated BrS patients from 2000 to 2018 in the Taiwanese population. Microarray and exome sequencing were used for discovery phase whereas Sanger sequencing was used for the validation phase. HEK cells and zebrafish were used to characterize the function of the CNV variant. Findings: A copy number deletion of GSTM3 (chr1:109737011-109737301, hg38) containing the eighth exon and the transcription stop codon was observed in 23.9% of BrS patients versus 0.8% of 15,829 controls in Taiwan Biobank (P < 0.001), and 0% in gnomAD. Co-segregation analysis showed that the co-segregation rate was 20%. Patch clamp experiments showed that in an oxidative stress environment, GSTM3 down-regulation leads to a significant decrease of cardiac sodium channel current amplitude. Ventricular arrhythmia incidence was significantly greater in gstm3 knockout zebrafish at baseline and after flecainide, but was reduced after quinidine, consistent with clinical observations. BrS patients carrying the GSTM3 deletion had higher rates of sudden cardiac arrest and syncope compared to those without (OR: 3.18 (1.77-5.74), P<0.001; OR: 1.76 (1.02-3.05), P = 0.04, respectively). Interpretation: This GSTM3 deletion is frequently observed in BrS patients and is associated with reduced I-Na, pointing to this as a novel potential genetic modifier/risk predictor for the development of the electrocardiographic and arrhythmic manifestations of BrS.

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