Rare Variant in MRC2 Associated With Familial Supraventricular Tachycardia and Wolff-Parkinson-White Syndrome

Author:

Potter Adam S.123ORCID,Miyake Christina Y.245ORCID,Gonzaga-Jauregui Claudia67ORCID,Aguilar-Sanchez Yuriana24ORCID,Hulsurkar Mohit M.24ORCID,Lahiri Satadru K.24ORCID,Moreira Lucia M.8ORCID,Mehta Neelam8,Azamian Mahshid S.5ORCID,Lupski James R.6910ORCID,Reilly Svetlana8ORCID,Lalani Seema R.610ORCID,Wehrens Xander H.T.245

Affiliation:

1. The Ohio State University Wexner Medical Center, Davis Heart and Lung Research Institute, Columbus, OH (A.S.P.).

2. Cardiovascular Research Institute (A.S.P., C.Y.M., Y.A.-S., M.M.H., S.K.L., X.H.T.W.)

3. Division of Cardiology, University of Texas Medical Branch, Galveston (A.S.P.).

4. Department of Integrative Physiology (C.Y.M., Y.A.-S., M.M.H., S.K.L., X.H.T.W.)

5. Department of Pediatrics, Section of Pediatric Cardiology, Texas Children’s Hospital, Houston (C.Y.M., M.S.A., X.H.T.W.).

6. Department of Molecular and Human Genetics (C.G.-J., J.R.L., S.R.L.)

7. International Laboratory for Human Genome Research, Laboratorio Internacional de Investigación sobre el Genoma Humano, Universidad Nacional Autónoma de México, Juriquilla, Querétaro (C.G.-J.).

8. University of Oxford, Cardiovascular Medicine, Radcliffe Department of Medicine, United Kingdom (L.M.M., N.M., S.R.).

9. Human Genome Sequencing Center, Baylor College of Medicine, Houston, TX (J.R.L.).

10. Texas Children’s Hospital, Houston (J.R.L., S.R.L.).

Abstract

BACKGROUND: Accessory pathways are a common cause of supraventricular tachycardia (SVT) and can lead to sudden cardiac death in otherwise healthy children and adults when associated with Wolff-Parkinson-White syndrome. The goal of this study was to identify genetic variants within a large family with structurally normal hearts affected by SVT and Wolff-Parkinson-White syndrome and determine causality of the gene deficit in a corresponding mouse model. METHODS: Whole exome sequencing performed on 2 distant members of a 3-generation family in which multiple members were affected by SVT or Wolff-Parkinson-White pattern (preexcitation) on ECG identified MRC2 as a candidate gene. Serial electrocardiograms, intracardiac electrophysiology studies, echocardiography, optical mapping studies, and histology were performed on both Mrc2 mutant and WT (wild-type) mice. RESULTS: A rare HET (heterozygous) missense variant c.2969A>G;p.Glu990Gly (E990G) in MRC2 was identified as the leading candidate gene variant segregating with the cardiac phenotype following an autosomal-dominant Mendelian trait segregation pattern with variable expressivity. In vivo electrophysiology studies revealed reentrant SVT in E990G mice. Optical mapping studies in E990G mice demonstrated abnormal retrograde conduction, suggesting the presence of an accessory pathway. Histological analysis of E990G mouse hearts showed a disordered ECM (extracellular matrix) in the annulus fibrosus. Finally, Mrc2 knockdown in human cardiac fibroblasts enhanced accelerated cell migration. CONCLUSIONS: This study identified a rare nonsynonymous variant in the MRC2 gene in individuals with familial reentrant SVT, Wolff-Parkinson-White ECG pattern, and structurally normal hearts. Furthermore, Mrc2 knock-in mice revealed an increased incidence of reentrant SVT and bypass tract formation in the setting of preserved cardiac structure and function.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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