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Transcription factor MEF2A mutations in patients with coronary artery disease
M R Krishna Bhagavatula1, Chun Fan, Gong-Qing Shen
1Department of Molecular Cardiology, Lerner Research Institute, The Cleveland Clinic Foundation, Cleveland, OH 44195, USA.
Insights
Mutations in the MEF2A gene are linked to coronary artery disease (CAD) and myocardial infarction (MI). These genetic variations reduce MEF2A
Area of Science:
- Genetics
- Cardiovascular Disease
- Molecular Biology
Background:
- Coronary artery disease (CAD) and myocardial infarction (MI) are leading causes of death globally.
- The transcription factor MEF2A, highly expressed in coronary artery endothelium, plays a role in cardiovascular health.
- Previous research identified a dominant-negative MEF2A mutation co-segregating with CAD/MI in a family.
Purpose of the Study:
- To investigate the prevalence and functional impact of MEF2A mutations in patients with CAD/MI.
- To identify novel mutations in MEF2A associated with CAD/MI.
Main Methods:
- Screening of MEF2A gene in 207 independent CAD/MI patients and 191 angiographically normal controls.
- Utilized single-strand conformation polymorphism and DNA sequencing analyses.
- Assessed the functional impact of identified mutations on MEF2A transcriptional activity.
Main Results:
- Identified three novel mutations in MEF2A exon 7 (N263S, P279L, G283D) in 1.93% of CAD/MI patients.
- No mutations were found in the control group.
- These mutations significantly reduced MEF2A transcriptional activity, acting via a loss-of-function mechanism, and were associated with less severe CAD.
Conclusions:
- CAD/MI can arise from a spectrum of MEF2A transcriptional dysfunctions, including loss-of-function and dominant-negative suppression.
- A notable percentage of CAD/MI patients may carry MEF2A mutations.
- Further studies are needed to define the precise prevalence of MEF2A mutations in the CAD/MI population.
Abstract:
Coronary artery disease (CAD), including its most serious complication myocardial infraction (MI), is the leading cause of death in the US and developed countries. We recently discovered that a seven-amino acid deletion in MEF2A, a transcription factor with a high level of expression in the endothelium of coronary arteries, co-segregates with CAD/MI in one family, and it suppresses transcription activation activity of MEF2A by a dominant-negative mechanism. In this study, we used single-strand conformation polymorphism and DNA sequence analyses to identify mutations in MEF2A in 207 independent CAD/MI patients and 191 controls with normal angiograms. We identified three novel mutations in exon 7 of MEF2A in four of 207 CAD/MI patients (1.93%). No mutations were detected in the 191 controls. The mutations identified here include N263S identified in two independent CAD patients, P279L in one patient and his father with the diagnosis of CAD and G283D in one patient. These mutations are clustered within or close to the major transcriptional activation domain of MEF2A. They significantly reduce the transcriptional activation activity of MEF2A and act by a loss-of-function mechanism. The gene carriers with loss-of-function mutations appear to be associated with less severe CAD. These results suggest that CAD/MI can result from a spectrum of MEF2A transcription dysfunctions ranging from loss-of-function to dominant-negative suppression and that a significant percent of the CAD/MI population (1.93%) may carry mutations in MEF2A, although further definition of the prevalence of MEF2A mutations is warranted.
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