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Published on: August 8, 2022
GATA5 loss-of-function mutation in familial dilated cardiomyopathy
Xian-Ling Zhang1, Neng Dai1, Kai Tang1
1Department of Cardiology, Shanghai Tenth People's Hospital, Tongji University School of Medicine, Shanghai 200072, P.R. China.
Insights
A novel GATA5 gene mutation, p.G240D, is linked to dilated cardiomyopathy (DCM), a common heart muscle disease. This discovery offers new insights into DCM
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Genetic Basis of Heart Disease
Background:
- Dilated cardiomyopathy (DCM) is a primary myocardial disease and a leading cause of heart failure and transplantation.
- Idiopathic DCM has a strong genetic component, yet many genetic causes remain unidentified.
- GATA5, a transcription factor crucial for cardiovascular development, is a potential candidate gene for DCM.
Purpose of the Study:
- To investigate the role of the GATA5 gene in the genetic etiology of idiopathic DCM.
- To identify novel mutations in GATA5 associated with DCM.
- To functionally characterize the identified GATA5 variants.
Main Methods:
- Sequencing of GATA5 coding exons and flanking introns in 130 unrelated idiopathic DCM patients.
- Genotyping of GATA5 in affected family members and 200 healthy controls.
- Functional analysis of mutant GATA5 using a dual-luciferase reporter assay.
Main Results:
- A novel heterozygous GATA5 mutation (p.G240D) was identified in a family with autosomal dominant DCM.
- The p.G240D mutation co-segregated with DCM in the family and was absent in controls.
- Functional assays demonstrated significantly reduced transcriptional activity of the mutant GATA5 protein.
Conclusions:
- This study provides the first evidence linking GATA5 mutations to DCM.
- The identified mutation impairs GATA5 transcriptional function, contributing to DCM pathogenesis.
- GATA5 may represent a novel molecular target for DCM diagnosis and treatment.
Abstract:
Dilated cardiomyopathy (DCM), the most common form of primary myocardial disease, is an important cause of sudden cardiac death and heart failure and is the leading indication for heart transplantation in children and adults worldwide. Recent studies have revealed a strong genetic basis for idiopathic DCM, with many distinct genes causally implicated. Nevertheless, DCM is a genetically heterogeneous disorder and the genetic determinants underlying DCM in a substantial proportion of patients remain unclear. In this study, the whole coding exons and flanking introns of the GATA binding protein 5 (GATA5) gene, which codes for a zinc-finger transcription factor essential for cardiovascular development and structural remodeling, were sequenced in 130 unrelated patients with idiopathic DCM. The available relatives of the index patient carrying an identified mutation and 200 unrelated ethnically matched healthy individuals used as the controls were genotyped for GATA5. The functional characteristics of the mutant GATA5 were analyzed in contrast to its wild-type counterpart by using a dual-luciferase reporter assay system. As a result, a novel heterozygous GATA5 mutation, p.G240D, was identified in a family with DCM inherited in an autosomal dominant pattern, which co-segregated with DCM in the family with complete penetrance. The missense mutation was absent in 400 reference chromosomes and the altered amino acid was completely conserved evolutionarily across species. Functional analyses revealed that the GATA5 mutant was associated with significantly diminished transcriptional activity. This study firstly links GATA5 mutation to DCM, which provides novel insight into the molecular mechanisms of DCM, suggesting a potential molecular target for the prenatal prophylaxis and allele-specific treatment of DCM.
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