Related Experiment Video
Updated: Sep 15, 2025

Targeted Next-generation Sequencing and Bioinformatics Pipeline to Evaluate Genetic Determinants of Constitutional Disease
Published on: April 4, 2018
Coronary Artery Disease Risk Variant rs6903956 Links to Endothelial Dysfunction via PHACTR1 Regulation
Kai Yi Tay1, Hannah Su-Ann Wee1, Nhi Nguyen1
1Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore.
Insights
Genetic variants like rs6903956 influence coronary artery disease (CAD) risk by affecting endothelial cell function. The
Area of Science:
- Cardiovascular Genetics
- Molecular Biology
- Endothelial Cell Biology
Background:
- Ischemic heart disease, including coronary artery disease (CAD), is a major global health concern.
- The single nucleotide polymorphism rs6903956 (chromosome 6p24.1) is linked to CAD susceptibility in East Asian populations.
- The precise functional mechanisms of rs6903956 in CAD pathogenesis remain largely unknown.
Purpose of the Study:
- To elucidate the mechanistic role of rs6903956 in CAD pathogenesis, focusing on endothelial cell dysfunction.
- To investigate how the rs6903956 risk allele impacts gene expression and endothelial cell inflammatory responses.
Main Methods:
- Cohort studies to associate rs6903956 with blood pressure and endothelial responsiveness (flow-mediated dilation).
- Single-base editing in patient-derived induced pluripotent stem cell-endothelial cells and expression quantitative trait loci analysis.
- In silico modeling (AlphaFold 3), functional assays (promoter activity), and assessment of inflammatory markers (ICAM-1) and monocyte adhesion.
Main Results:
- The rs6903956 'A' risk allele is associated with altered blood pressure phenotypes and reduced endothelial responsiveness.
- The 'A' allele demonstrates cis-acting regulatory effects on PHACTR1 and EDN1 expression, with enhanced binding to HOXA4/MEIS1 transcription factors.
- rs6903956 'A' allele increases PHACTR1 promoter activity, leading to elevated ICAM-1 expression and monocyte adhesion in endothelial cells under pathological flow.
Conclusions:
- rs6903956 influences PHACTR1 expression through HOX-MEIS cooperative binding, modulating endothelial cell function.
- Allele-specific regulation of PHACTR1 by rs6903956 contributes to endothelial dysfunction and increased CAD susceptibility.
- These findings provide mechanistic insights into genetic determinants of cardiovascular disease and suggest potential therapeutic targets.
Abstract:
Ischemic heart disease, particularly coronary artery disease (CAD), remain leading causes of mortality worldwide. The single nucleotide polymorphism rs6903956 on chromosome 6p24.1 has been identified as a susceptibility locus for CAD in East Asian populations through genome-wide association studies. However, its functional role has not been fully elucidated. This study investigates the mechanistic basis of rs6903956 and its contribution to CAD pathogenesis, focusing on endothelial cell dysfunction. We first conducted cohort studies, revealing an association between the rs6903956 'A' risk allele and blood pressure phenotypes, along with impaired endothelial responsiveness indicated by reduced flow-mediated dilation. Single-base editing of induced pluripotent stem cell-derived endothelial cells obtained from patients with CAD and expression quantitative trait loci analysis highlighted a cisacting impact of the 'A' allele on PHACTR1 and EDN1 expression, suggesting allele-specific regulatory effects. Using in silico modeling by AlphaFold 3 platform, the 'A' allele exhibited enhanced binding affinity for HOXA4 and MEIS1 transcription factors, forming a stable ternary complex that promoted transcriptional activation of PHACTR1. Functional assays demonstrated the enhancer role of rs6903956 'A' in PHACTR1 promoter activity, supporting its locus-specific regulatory function in endothelial cells. Under pathological flow conditions, endothelial cells harboring the 'A' allele display elevated ICAM-1 expression and increased monocyte adhesion compared to the 'G' allele, indicating allele-specific endothelial inflammatory activation. These findings propose a model in which rs6903956 influences PHACTR1 expression via HOX-MEIS cooperative binding, thereby modulating endothelial function and contributing to CAD susceptibility. This study provides mechanistic insights into the role of rs6903956 in endothelial dysfunction and CAD, informing potential therapeutic targets arising from genetic determinants in cardiovascular pathogenesis.
More Related Videos
Related Concept Videos
Coronary Artery Disease I: Introduction
Coronary Artery Disease II: Pathophysiology
Atherosclerosis I: Introduction
Coronary Artery Disease IV: Preventive Measures
Coronary Artery Disease III: Clinical Manifestations
Atherosclerosis III: Management

