Whole exome sequencing identifies de novo mutations in GATA6 associated with congenital diaphragmatic hernia
Lan Yu1, James T Bennett, Julia Wynn
1Division of Molecular Genetics, Department of Pediatrics, Columbia University Medical Center, New York, New York, USA.
Insights
Genetic mutations in GATA6 are linked to congenital diaphragmatic hernia (CDH), a serious birth defect. This research identifies GATA6 as a key gene in diaphragm and pericardium development, expanding our understanding of CDH causes.
Area of Science:
- Genetics
- Developmental Biology
- Medical Genetics
Background:
- Congenital diaphragmatic hernia (CDH) is a significant birth defect affecting 1 in 3000 newborns, characterized by abdominal organs protruding through an incomplete diaphragm.
- While genetic factors are suspected, the precise causes of most CDH cases remain unidentified.
Observation:
- Whole exome sequencing was performed on two families with CDH and congenital heart disease.
- Mutations in the GATA6 gene were identified in both families, implicating it in the etiology of these conditions.
Findings:
- A de novo missense mutation (p.R456C) was found in a sporadic CDH patient with tetralogy of Fallot.
- A nonsense mutation (p.G238*) in GATA6 was identified in siblings with CDH and ventricular septal defect, inherited from a mother with a milder phenotype due to somatic mosaicism.
- Further sequencing in 378 CDH patients revealed an additional de novo mutation (p.V358Cfs34*).
Implications:
- This study establishes GATA6 as a crucial gene in the development of the diaphragm and pericardium, in addition to its known roles in heart and pancreas development.
- The findings highlight the contribution of de novo GATA6 mutations to the pathogenesis of CDH, a common and complex congenital anomaly.
Background:
Congenital diaphragmatic hernia (CDH) is a common birth defect affecting 1 in 3000 births. It is characterised by herniation of abdominal viscera through an incompletely formed diaphragm. Although chromosomal anomalies and mutations in several genes have been implicated, the cause for most patients is unknown.
Methods:
We used whole exome sequencing in two families with CDH and congenital heart disease, and identified mutations in GATA6 in both.
Results:
In the first family, we identified a de novo missense mutation (c.1366C>T, p.R456C) in a sporadic CDH patient with tetralogy of Fallot. In the second, a nonsense mutation (c.712G>T, p.G238*) was identified in two siblings with CDH and a large ventricular septal defect. The G238* mutation was inherited from their mother, who was clinically affected with congenital absence of the pericardium, patent ductus arteriosus and intestinal malrotation. Deep sequencing of blood and saliva-derived DNA from the mother suggested somatic mosaicism as an explanation for her milder phenotype, with only approximately 15% mutant alleles. To determine the frequency of GATA6 mutations in CDH, we sequenced the gene in 378 patients with CDH. We identified one additional de novo mutation (c.1071delG, p.V358Cfs34*).
Conclusions:
Mutations in GATA6 have been previously associated with pancreatic agenesis and congenital heart disease. We conclude that, in addition to the heart and the pancreas, GATA6 is involved in development of two additional organs, the diaphragm and the pericardium. In addition, we have shown that de novo mutations can contribute to the development of CDH, a common birth defect.
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