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Published on: August 15, 2019
A HAND2 Loss-of-Function Mutation Causes Familial Ventricular Septal Defect and Pulmonary Stenosis
Yu-Min Sun1, Jun Wang2, Xing-Biao Qiu3
1Department of Cardiology, Jing'an District Central Hospital, 200040 Shanghai, China.
Insights
A novel HAND2 gene mutation, p.S65I, is linked to congenital heart disease (CHD) in a large family. This loss-of-function mutation disrupts cardiovascular development and interactions with other key cardiac factors.
Area of Science:
- Genetics
- Developmental Biology
- Cardiovascular Research
Background:
- Congenital heart disease (CHD) is a common birth defect and a leading cause of neonatal mortality.
- Genetic factors are increasingly recognized in CHD pathogenesis, but determinants remain largely unknown.
- The HAND2 gene is crucial for cardiovascular development.
Purpose of the Study:
- To investigate the role of HAND2 mutations in congenital heart disease.
- To identify genetic variants associated with CHD in affected individuals and families.
Main Methods:
- Sequencing of the HAND2 gene in 192 unrelated patients with CHD.
- Pedigree analysis to track mutation inheritance within a family.
- Functional assays (dual-luciferase reporter assay) to assess HAND2 activity.
- Exclusion screening in 300 healthy individuals.
Main Results:
- A novel heterozygous HAND2 mutation (p.S65I) was identified in a patient with ventricular septal defect (VSD).
- The p.S65I mutation segregated with CHD in a large family, affecting multiple relatives with VSD, pulmonary stenosis (PS), and double outlet right ventricle (DORV).
- Functional studies revealed diminished HAND2 transcriptional activity and abolished synergistic activation with GATA4 and NKX2.5.
Conclusions:
- The HAND2 loss-of-function mutation p.S65I contributes to human CHD.
- HAND2 likely influences CHD development through interactions with other cardiac transcription factors like GATA4 and NKX2.5.
Abstract:
Congenital heart disease (CHD) is the most common developmental abnormality, and is the leading noninfectious cause of mortality in neonates. Increasing evidence demonstrates that genetic defects play an important role in the pathogenesis of CHD. However, CHD exhibits substantial heterogeneity, and the genetic determinants for CHD remain unknown in the overwhelming majority of cases. In the current study, the coding exons and flanking introns of the HAND2 gene, which encodes a basic helix-loop-helix transcription factor essential for normal cardiovascular development, were sequenced in 192 unrelated patients with CHD, and a novel heterozygous mutation, p.S65I, was identified in a patient with congenital ventricular septal defect (VSD). Genetic analysis of the index patient's pedigree revealed that the mutation was present in all seven affected family members available, but absent in the 13 unaffected family members examined. Besides, in addition to VSD, five of the proband's close relatives also had pulmonary stenosis (PS), and the proband's son also had double outlet right ventricle (DORV). The missense mutation, which altered an evolutionarily conserved amino acid, was absent in 300 unrelated, ethnically matched healthy individuals. Biological analyses using a dual-luciferase reporter assay system showed that the mutant HAND2 was associated with significantly diminished transcriptional activity. Furthermore, the mutation abolished the synergistic activation between HAND2 and GATA4, as well as NKX2.5-two other cardiac core transcriptional factors that have been causally linked to CHD. These findings indicate that HAND2 loss-of-function mutation contributes to human CHD, perhaps via its interaction with GATA4 and NKX2.5.
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