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Aortic dissection in a young male with persistent ductus arteriosus and a novel variant in MYLK
Maria Bejerholm Boelman1, Thomas van Overeem Hansen1,2, Matthias Nybro Smith1
1Department of Clinical Genetics, Rigshospitalet, Copenhagen, Denmark.
Insights
Genetic variants in the MYLK gene can cause thoracic aortic aneurysm and dissection (TAAD) and may also lead to persistent ductus arteriosus (PDA). This study identifies a novel MYLK variant associated with both conditions, expanding the known disease spectrum.
Area of Science:
- Cardiovascular Genetics
- Smooth Muscle Cell Biology
- Aortic and Congenital Heart Diseases
Background:
- Pathogenic variants in genes regulating smooth muscle cells (SMC) are linked to congenital heart disease and thoracic aortic aneurysm and dissection (TAAD).
- MYLK gene variants are primarily associated with TAAD, but emerging evidence suggests a role in SMC contraction beyond the aorta.
Abstract:
Pathogenic variants in several genes involved in the function or regulation of smooth muscle cells (SMC) are known to predispose to congenital heart disease and thoracic aortic aneurysm and dissection (TAAD). Variants in MYLK are primarily known to predispose to TAAD, but a growing body of evidence points toward MYLK also playing an essential role in the regulation of SMC contraction outside the aorta. In this case report, we present a patient with co-occurrence of persistent ductus arteriosus (PDA) and thoracic aortic dissection. Genetic analyses revealed a novel splice acceptor variant (c.3986-1G > A) in MYLK, which segregated with disease in the family. RNA-analyses on fibroblasts showed that the variant induced skipping of exon 24, which resulted in an in-frame deletion of 101 amino acids. These findings suggest that MYLK-associated disease could include a broader phenotypic spectrum than isolated TAAD, including PDA and obstructive pulmonary disease. Genetic analyses could be considered in families with TAAD and PDA or obstructive pulmonary disease.
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