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Novel Autosomal Recessive Splice-Altering Variant in PRKD1 Is Associated with Congenital Heart Disease
Salam Massadeh1,2,3, Maha Albeladi1,2, Nour Albesher1,2
1Developmental Medicine Department, King Abdullah International Medical Research Center, King Saud Bin Abdulaziz University for Health Sciences, King Abdulaziz Medical City, Ministry of National Guard- Health Affairs (MNG-HA), Riyadh 11481, Saudi Arabia.
Insights
A novel PRKD1 gene variant was identified in a Saudi family with congenital heart defects (CHDs). This autosomal recessive mutation provides new insights into the genetic causes of CHDs.
Area of Science:
- Genetics
- Cardiology
- Molecular Biology
Background:
- Congenital heart defects (CHDs) are the most common birth defects globally, with increasing incidence.
- The genetic underpinnings of CHDs are not fully understood, necessitating further research into causative mutations.
Observation:
- A consanguineous Saudi family presented with three daughters affected by CHDs.
- Whole exome sequencing (WES) was employed to identify the genetic basis of the observed CHDs.
Findings:
- A novel splice-altering variant (c.265-1G>T) in the PRKD1 gene was found to be homozygous in all affected individuals.
- This PRKD1 variant was associated with Pulmonary Stenosis, Truncus Arteriosis, and Atrial Septal Defect.
- The inheritance pattern suggests autosomal recessive transmission with possible gender limitation, contrasting with previously identified dominant PRKD1 variants.
Implications:
- This study identifies the second autosomal recessive PRKD1 variant linked to CHDs, expanding the known genotype-phenotype associations.
- The findings highlight the role of both dominant and recessive PRKD1 mutations in the etiology of CHDs.
- This research offers novel insights into the genetic heterogeneity of congenital heart defects.
Abstract:
Congenital heart defects (CHDs) are the most common types of birth defects, and global incidence of CHDs is on the rise. Despite the prevalence of CHDs, the genetic determinants of the defects are still in the process of being identified. Herein, we report a consanguineous Saudi family with three CHD affected daughters. We used whole exome sequencing (WES) to investigate the genetic cause of CHDs in the affected daughters. We found that all affected individuals were homozygous for a novel splice-altering variant (NM_001330069.1: c.265-1G>T) of PRKD1, which encodes a calcium/calmodulin-dependent protein kinase in the heart. The homozygous variant was found in the affected patients with Pulmonary Stenosis (PS), Truncus Arteriosis (TA), and Atrial Septal Defect (ASD). Based on the family's pedigree, the variant acts in an autosomal recessive manner, which makes it the second autosomal recessive variant of PRKD1 to be identified with a link to CHDs, while all other previously described variants act dominantly. Interestingly, the father of the affected daughters was also homozygous for the variant, though he was asymptomatic of CHDs himself. Since both of his sisters had CHDs as well, this raises the possibility that the novel PRKD1 variant may undergo autosomal recessive inheritance mode with gender limitation. This finding confirms that CHD can be associated with both dominant and recessive mutations of the PRKD1 gene, and it provides a new insight to genotype-phenotype association between PRKD1 and CHDs. To our knowledge, this is the first report of this specific PRKD1 mutation associated with CHDs.
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