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Novel GATA6 mutations associated with congenital ventricular septal defect or tetralogy of fallot
Juan Wang1, Xue-Jiao Luo, Yuan-Feng Xin
1Department of Cardiovascular Medicine, East Hospital, Tongji University School of Medicine, Shanghai, China.
Insights
Genetic mutations in the GATA6 gene are linked to congenital heart disease (CHD). Novel GATA6 mutations were identified in families with CHD, impacting protein function and offering insights for future treatments.
Area of Science:
- Genetics
- Developmental Biology
- Cardiology
Background:
- Congenital heart disease (CHD) is a leading cause of infant mortality and developmental malformation.
- Genetic factors are implicated in CHD pathogenesis, but the molecular basis remains largely unknown.
- GATA6, a transcription factor vital for cardiogenesis, is a potential candidate gene for CHD.
Purpose of the Study:
- To investigate the role of GATA6 gene mutations in the development of congenital heart disease.
- To identify novel GATA6 mutations in patients with CHD and analyze their functional impact.
Main Methods:
- Sequencing of the GATA6 coding region in 380 unrelated CHD patients.
- Genotyping of family relatives and 200 unrelated controls.
- Functional characterization of identified mutations using a luciferase reporter assay.
Main Results:
- Two novel heterozygous GATA6 mutations (p.D404Y and p.E460X) were identified in families with ventricular septal defect and tetralogy of Fallot.
- These mutations co-segregated with CHD in affected families and were absent in controls.
- Mutated GATA6 proteins exhibited significantly reduced transactivational activity compared to wild-type.
Conclusions:
- Novel GATA6 mutations contribute to the molecular mechanisms underlying congenital heart disease.
- These findings may inform early prophylaxis and personalized treatment strategies for CHD.
- GATA6 mutations represent a significant genetic factor in a subset of CHD cases.
Abstract:
Congenital heart disease (CHD) is the most common form of developmental malformation and is the leading noninfectious cause of infant mortality. Emerging evidence indicates that genetic defects are involved in the pathogenesis of CHD. Nevertheless, CHD is genetically heterogeneous, and the molecular basis for CHD in a majority of patients remains unknown. In this study, the whole coding region of GATA6, a gene encoding a zinc-finger transcription factor crucial for normal cardiogenesis, was sequenced in 380 unrelated patients with CHD. The relatives of the index patients harboring the identified mutations and 200 unrelated control individuals were subsequently genotyped. The functional effect of the mutations was characterized using a luciferase reporter assay system. As a result, two novel heterozygous GATA6 mutations, p.D404Y and p.E460X, were identified in two families with ventricular septal defect and tetralogy of Fallot, respectively. The mutations co-segregated with CHD in the families with complete penetrance, and were absent in 400 control chromosomes. Functional analysis demonstrated that the mutated GATA6 proteins were associated with significantly decreased transactivational activity in comparison with their wild-type counterpart. These findings provide novel insight into the molecular mechanism implicated in CHD, suggesting potential implications for the early prophylaxis and personalized treatment of CHD.
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