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PHACTR1 and APOC1 genetic variants are associated with multi-vessel coronary artery disease
Cynthia Al Hageh1, Siobhán O'Sullivan2, Andreas Henschel3
1Department of Public Health and Epidemiology, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates.
Insights
Genetic variants influence severe coronary artery disease (CAD) risk. PHACTR1 rs9349379*G increases risk, while APOC1/APOE rs445925*T offers protection, especially in older adults.
Area of Science:
- Cardiovascular Genetics
- Genomics
- Molecular Medicine
Background:
- Severe coronary artery disease (CAD) involves significant arterial narrowing, leading to critical complications.
- Understanding the genetic underpinnings of severe and multivessel CAD is crucial for risk stratification.
Purpose of the Study:
- To investigate genetic determinants associated with severe and multivessel coronary artery disease.
- To identify specific genetic variants influencing CAD presentation and progression.
Main Methods:
- Genotyping of 159 Single Nucleotide Polymorphisms (SNPs) in 1,900 severe CAD patients and 1,056 controls.
- Replication of genetic associations using the UK Biobank cohort (N=29,970).
Main Results:
- Identified 14 genetic associations with severe CAD, 7 also linked to multivessel disease.
- PHACTR1 SNP (rs9349379*G) associated with early-onset severe/multivessel CAD (age ≤65).
- APOC1/APOE SNP (rs445925*T) associated with reduced susceptibility in older adults (age >65).
Conclusions:
- Replicated findings confirm PHACTR1 rs9349379*G variant increases risk for severe/multivessel CAD.
- APOC1/APOE rs445925*T variant demonstrates a protective effect against severe CAD.
- Genetic profiling can enhance understanding of CAD heterogeneity and inform personalized management strategies.
Background:
Severe coronary artery disease (CAD) represents an advanced arterial narrowing, often associated with critical complications like myocardial infarction and angina. This study aimed to comprehensively investigate determinants of severe and multi-vessel CAD manifestations.
Methods:
One thousand nine hundred patients with severe and multivessel CAD (stenosis > 70%) were recruited along with 1,056 controls without stenosis. Associations using a genotyping panel comprising 159 Single Nucleotide Polymorphisms (SNPs) previously implicated in CAD pathogenesis were examined and these associations were replicated using the UK Biobank cohort (N = 29,970).
Results:
The investigation identified 14 genetic associations with severe CAD, of which 7 were also associated with multivessel disease. Notably, PHACTR1 SNP (rs9349379*G) showed a higher association with severe and multivessel CAD in individuals aged ≤ 65, indicating a higher risk of early disease onset. Conversely, the APOC1/APOE SNP (rs445925*T) is associated with reduced susceptibility to severe CAD and multivessel disease in individuals aged over 65, indicating a persistent negative association.
Conclusions:
Following replication of the associations in the large UK Biobank dataset, it was found that patients carrying the rs9349379*G variant in the PHACTR1 gene are at risk of developing severe or multivessel disease. Conversely, the rs445925*T variant in APOC1/APOE is associated with reduced susceptibility to severe CAD and multivessel disease, highlighting the significance of this genetic variant in these specific CAD presentations. This study contributes to a better understanding of CAD heterogeneity, paving the way for tailored management strategies based on genetic profiles.
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