Influence of GAS5/MicroRNA-223-3p/P2Y12 Axis on Clopidogrel Response in Coronary Artery Disease

Yan-Ling Liu1,2, Xiao-Lei Hu1,2, Pei-Yuan Song1,2

  • 1Department of Clinical Pharmacology Xiangya HospitalCentral South University Changsha Hunan China.

Insights

The GAS5 rs55829688 polymorphism may influence clopidogrel response in coronary artery disease (CAD) patients with CYP2C19 poor metabolizer genotypes. GAS5 regulates P2Y12 expression and clopidogrel response via competition with miR-223-3p.

Area of Science:

  • Pharmacogenomics
  • Molecular Biology
  • Cardiovascular Medicine

Background:

  • Dual antiplatelet therapy (DAPT) with aspirin and P2Y12 inhibitors like clopidogrel is standard for coronary artery disease (CAD).
  • Clopidogrel resistance occurs in some patients, influenced by genetic factors.
  • The role of GAS5 (growth arrest-specific 5) and its rs55829688 polymorphism in clopidogrel response requires investigation.

Purpose of the Study:

  • To investigate the impact of the GAS5 rs55829688 polymorphism on clopidogrel response in CAD patients.
  • To elucidate the regulatory mechanism of GAS5 on P2Y12 expression and clopidogrel response through microRNA-223-3p (miR-223-3p).

Main Methods:

  • Genotyping of GAS5 rs55829688 polymorphism in 444 CAD patients undergoing DAPT.
  • Measurement of platelet reactivity index, GAS5, and miR-223-3p expression.
  • In vitro assays including dual-luciferase reporter assay and loss/gain-of-function experiments in HEK 293T and MEG-01 cells.

Main Results:

  • rs55829688 CC homozygotes showed decreased platelet reactivity in CYP2C19 poor metabolizers.
  • Platelet GAS5 expression positively correlated with platelet reactivity and P2Y12 mRNA.
  • Platelet miR-223-3p expression negatively correlated with platelet reactivity and GAS5 expression.

Conclusions:

  • GAS5 rs55829688 polymorphism may affect clopidogrel response in CAD patients with CYP2C19 poor metabolizer genotypes.
  • GAS5 acts as a competing endogenous RNA for miR-223-3p, regulating P2Y12 expression and clopidogrel response.

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