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Published on: August 9, 2024
Circulating Chemerin Levels, but not the RARRES2 Polymorphisms, Predict the Long-Term Outcome of Angiographically
Leay Kiaw Er1,2, Lung-An Hsu3, Jyh-Ming Jimmy Juang4,5
1The Division of Endocrinology and Metabolism, Department of Internal Medicine, Taipei Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, New Taipei City 23142, Taiwan. leay29010@gmail.com.
Insights
Genetic variations in RARRES2 influence chemerin levels. High chemerin and CRP levels, not RARRES2 genotypes, predict poor coronary artery disease outcomes.
Area of Science:
- Genetics
- Cardiovascular Disease
- Metabolic Syndrome
Background:
- Chemerin, an adipokine, is linked to metabolic, inflammatory, and atherosclerotic diseases.
- Understanding the genetic basis of chemerin levels is crucial for disease management.
Purpose of the Study:
- To identify genetic determinants of chemerin levels using genome-wide association study (GWAS).
- To investigate the association of RARRES2 gene polymorphisms and circulating chemerin with coronary artery disease (CAD) long-term outcomes.
Main Methods:
- Genome-wide association study (GWAS) in 2197 participants from Taiwan Biobank.
- Long-term outcome analysis in 481 patients with confirmed CAD.
Main Results:
- A genome-wide significant locus for chemerin levels was identified at RARRES2 rs3735167 (p = 2.35 × 10⁻²¹).
- High chemerin levels correlated with obesity, diabetes, hypertension, smoking, and elevated CRP.
- High chemerin and CRP levels, but not RARRES2 polymorphisms, were associated with reduced survival and increased cardiovascular events in CAD patients.
Conclusions:
- rs3735167 is the primary RARRES2 polymorphism affecting chemerin levels in Taiwanese individuals.
- Circulating chemerin levels, particularly when combined with CRP, serve as a significant predictor of long-term CAD outcomes, independent of RARRES2 genotype.
Abstract:
Chemerin, a novel adipokine, has been associated with metabolic, inflammatory, and atherosclerotic diseases. We aimed to determine the genetic basis of chemerin levels by conducting a genome-wide association study (GWAS) and to investigate the role of RARRES2 polymorphisms and circulating chemerin levels in the long-term outcome of coronary artery disease (CAD). A total of 2197 participants from the Taiwan Biobank (TWB) were recruited for the GWAS analysis, and 481 patients with angiographically confirmed CAD were enrolled for long-term outcome analysis. One locus of genome-wide significance with a single independent association signal was identified in the GWAS for chemerin levels with the peak association at the RARRES2 gene promoter region polymorphism rs3735167 (p = 2.35 × 10-21). In the CAD population, borderline significance was noted between RARRES2 polymorphisms and chemerin levels, whereas high chemerin levels were associated with obesity, female sex, diabetes mellitus, hypertension, current smoking, high platelet and leukocyte counts, anemia, impaired renal function, high C-reactive protein (CRP) levels, and multi-vessel disease. Kaplan⁻Meier survival curves indicated that the patients with high chemerin and CRP levels, but not those with RARRES2 polymorphisms, had a lower survival rate and higher combined cerebral and cardiovascular event rates. Combined chemerin and CRP levels further revealed a stepwise increase in poor clinical outcomes from low- to high-risk subgroups. In conclusion, rs3735167 is the lead RARRES2 polymorphism for chemerin levels in Taiwanese. Chemerin levels, but not the rs3735167 genotypes, predicted the long-term outcome of CAD, especially when combined with CRP levels.
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