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Updated: Jul 8, 2025

A Method to Study the C924T Polymorphism of the Thromboxane A2 Receptor Gene
Published on: April 1, 2019
Investigation of genomic and transcriptomic risk factors in clopidogrel response in African Americans
Guang Yang1, Cristina Alarcon1, Catherine Chanfreau2
1Department of Pharmacology, Center for Pharmacogenomics, Fienberg School of Medicine, Northwestern University, Chicago IL.
Insights
Genetic variants in THSD7A and LAIR1 are linked to clopidogrel resistance in African Americans, impacting treatment effectiveness. These findings highlight potential new biomarkers beyond CYP2C19 for personalized anti-platelet therapy.
Area of Science:
- Pharmacogenomics
- Cardiovascular Genetics
- Molecular Biology
Background:
- Clopidogrel resistance is a significant issue, particularly in African Americans, leading to adverse cardiovascular events.
- Identifying genetic biomarkers for clopidogrel resistance is crucial for optimizing anti-platelet therapy in this population.
Approach:
- A genome-wide association study (GWAS) was conducted in African Americans to identify genetic variants associated with high on-treatment platelet reactivity (HTPR).
- Validation was performed in an independent cohort (Million Veteran's Program) and through in vitro functional assays.
- Differential gene expression (DGE) analysis and gene knockdown experiments were used to explore the role of candidate genes.
Key Points:
- rs7807369 in THSD7A was significantly associated with increased HTPR risk.
- Higher THSD7A expression correlated with HTPR, supported by in vitro data.
- Decreased LAIR1 expression was associated with HTPR, with evidence suggesting its inhibitory role in the Glycoprotein VI pathway.
- CYP2C19 variants did not show an association with clopidogrel response in this cohort.
Conclusions:
- Genetic variants outside of CYP2C19, specifically in THSD7A and LAIR1, play a significant role in clopidogrel response in African Americans.
- These findings suggest novel therapeutic targets and biomarkers for predicting and managing clopidogrel resistance.
- Personalized anti-platelet strategies may be improved by considering these newly identified genetic factors.
Abstract:
Clopidogrel, an anti-platelet drug, used to prevent thrombosis after percutaneous coronary intervention. Clopidogrel resistance results in recurring ischemic episodes, with African Americans suffering disproportionately. The aim of this study was to identify biomarkers of clopidogrel resistance in African American patients. We conducted a genome-wide association study, including local ancestry adjustment, in 141 African Americans on clopidogrel to identify associations with high on-treatment platelet reactivity (HTPR). We validated genome-wide and suggestive hits in an independent cohort of African American clopidogrel patients (N = 823) from the Million Veteran's Program (MVP) along with in vitro functional follow up. We performed differential gene expression (DGE) analysis in whole blood with functional follow-up in MEG-01 cells. We identified rs7807369, within thrombospondin 7A (THSD7A), as significantly associated with increasing risk of HTPR (p = 4.56 × 10-9). Higher THSD7A expression was associated with HTPR in an independent gene expression cohort of clopidogrel treated patients (p = 0.004) and supported by increased gene expression on THSD7A in primary human endothelial cells carrying the risk haplotype. Two SNPs (rs1149515 and rs191786) were validated in the MVP cohort. DGE analysis identified an association with decreased LAIR1 expression to HTPR. LAIR1 knockdown in a MEG-01 cells resulted in increased expression of SYK and AKT1, suggesting an inhibitory role of LAIR1 in the Glycoprotein VI pathway. Notably, the CYP2C19 variants showed no association with clopidogrel response in the discovery or MVP cohorts. In summary, these finding suggest that other variants outside of CYP2C19 star alleles play an important role in clopidogrel response in African Americans.
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