Chromosome 1q21.1 contiguous gene deletion is associated with congenital heart disease
Jesse Christiansen1, John D Dyck, Basil G Elyas
1Department of Medical Genetics, University of Alberta Edmonton, Alberta, Canada.
Insights
A 1q21.1 multigene deletion involving ACPL1, connexin40 (Cx40), and Cx50 genes is linked to congenital heart disease (CHD). This deletion specifically presents as aortic arch obstruction in affected individuals.
Area of Science:
- Genetics
- Cardiology
- Developmental Biology
Background:
- Congenital heart disease (CHD) is the most common birth defect.
- Reduced connexin40 (Cx40) expression is linked to atrial fibrillation.
- Cx40 deletion in mice causes structural heart abnormalities.
Purpose of the Study:
- To investigate if altered copy number of the Cx40 gene (GJA5) is associated with cardiac phenotypes in humans.
- To screen CHD cases for deletions or duplications of the Cx40 gene.
- To determine the association of a 1q21.1 multigene deletion with congenital heart defects.
Main Methods:
- Screened 505 unrelated CHD cases for Cx40 gene deletions/duplications using real-time quantitative PCR.
- Determined dosage of Cx40 flanking genes (ACPL1, Cx50) in positive cases.
- Genotyped parents and controls to confirm deletion inheritance and prevalence.
Main Results:
- Identified 3 CHD cases with deletions on chromosome 1q21.1 spanning ACPL1, Cx40, and Cx50 genes.
- Observed absence of heterozygosity over a 1.5- to 3-Mb region in all 3 index cases.
- Found that one parent of an affected child carried the deletion, and 520 controls were negative for this deletion.
Conclusions:
- The 1q21.1 multigene deletion is associated with congenital heart defects.
- Aortic arch obstruction is a prominent feature in individuals with this deletion.
- This deletion represents a novel genetic factor contributing to CHD.
Abstract:
Congenital heart disease (CHD), comprising structural or functional abnormalities present at birth, is the most common birth defect in humans. Reduced expression of connexin40 (Cx40) has been found in association with atrial fibrillation, and deletion of Cx40 in a mouse model causes various structural heart abnormalities in 18% of heterozygotes. We screened 505 unrelated CHD cases for deletions or duplications of the Cx40 gene (GJA5) by real-time quantitative PCR, in order to determine whether altered copy number of this gene may be associated with a cardiac phenotype in humans. Dosage of Cx40 flanking genes (ACPL1 and Cx50 gene, GJA8) was determined by real-time PCR for all apparent positive cases. In total, 3 cases were found to carry deletions on chromosome 1q21.1 spanning ACPL1, Cx40, and Cx50 genes. Absence of heterozygosity was observed in all 3 index cases over a 1.5- to 3-Mb region. Samples from the parents of two cases were obtained, and microsatellites across 1q21.1 were genotyped. One of the apparently unaffected parents was found to carry this deletion. All 3 index cases presented with obstruction of the aortic arch as the common structural cardiac malformation, and had no consistent dysmorphic features. Genotyping of 520 unrelated normal controls for this deletion was negative. We hypothesize that this 1q21.1 multigene deletion is associated with a range of cardiac defects, with anomalies of the aortic arch being a particular feature.
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