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Published on: August 15, 2019
Prevalence and spectrum of PITX2c mutations associated with congenital heart disease
Juan Wang1, Yuan-Feng Xin, Wen-Jun Xu
11 Department of Cardiovascular Medicine, East Hospital, Tongji University School of Medicine , Shanghai, China .
Insights
Novel mutations in the PITX2c gene were identified in patients with congenital heart disease (CHD). These genetic defects impact PITX2c protein function, offering new insights into CHD pathogenesis and potential treatments.
Area of Science:
- Genetics
- Developmental Biology
- Cardiovascular Research
Background:
- Congenital heart disease (CHD) is a prevalent birth defect and a primary noninfectious cause of infant mortality.
- Genetic factors are implicated in CHD, but the underlying genetic defects remain largely unknown due to the disease's heterogeneity.
Purpose of the Study:
- To investigate the role of the PITX2c gene in the pathogenesis of congenital heart disease (CHD).
- To identify novel genetic mutations in PITX2c associated with CHD in a patient cohort.
Main Methods:
- Sequencing of the PITX2c gene's coding region and splice junctions in 382 unrelated patients with CHD.
- In silico analysis (MutationTaster) and cross-species protein alignment to assess mutation pathogenicity and conservation.
- Functional assays to evaluate the transactivational activity of mutated PITX2c proteins.
Main Results:
- Two novel heterozygous mutations, p.W147X and p.N153D, were identified in two unrelated patients with CHD.
- These mutations were absent in 400 control chromosomes and predicted to be disease-causing.
- Mutated PITX2c proteins exhibited significantly reduced transactivational activity compared to wild-type.
Conclusions:
- The study identifies novel PITX2c mutations associated with CHD, highlighting its role in cardiovascular development.
- Findings provide insights into the molecular mechanisms of CHD and suggest potential targets for antenatal prophylaxis and allele-specific therapies.
Abstract:
Congenital heart disease (CHD) is the most common form of birth defect and is the leading noninfectious cause of infant death. A growing body of evidence demonstrates that genetic risk factors are involved in the pathogenesis of CHD. However, CHD is a genetically heterogeneous disease and the genetic defects underlying CHD in an overwhelming majority of patients remain unclear. In this study, the whole coding region and splice junction sites of the PITX2c gene, which encodes variant 3 of paired-like homeodomain transcription factor 2 crucial for normal cardiovascular morphogenesis, were sequenced in 382 unrelated patients with CHD, and 2 novel heterozygous mutations, p.W147X and p.N153D, were identified in 2 unrelated patients with CHD, respectively, including a 1-year-old male patient with double outlet right ventricle in combination with ventricular septal defect and a 4-year-old female patient with ventricular septal defect. The mutations were absent in 400 control chromosomes and were both predicted to be disease-causing by MutationTaster. Multiple alignments of PITX2c proteins across species displayed that the altered amino acids were completely conserved evolutionarily. Functional analysis revealed that the mutated PITX2c proteins were associated with a significantly reduced transactivational activity compared with their wild-type counterpart. These findings provide a novel insight into the molecular mechanisms implicated in CHD, suggesting potential implications for the antenatal prophylaxis and allele-specific treatment of CHD.
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