Related Experiment Video
Updated: Nov 19, 2025

Mapping Alzheimer's Disease Variants to Their Target Genes Using Computational Analysis of Chromatin Configuration
Published on: January 9, 2020
Genome-wide analysis identifies novel susceptibility loci for myocardial infarction
Jaana A Hartiala1, Yi Han1,2, Qiong Jia1,2
1Department of Preventive Medicine, Keck School of Medicine, University of Southern California, 2250 Alcazar Street, CSC202, Los Angeles, CA 90033, USA.
Insights
Genetic factors distinct from coronary atherosclerosis influence myocardial infarction (MI) risk. A genome-wide study identified novel MI-associated regions, implicating SLC44A3 in vulnerable plaque development.
Area of Science:
- Genetics
- Cardiovascular Medicine
- Molecular Biology
Background:
- Coronary artery disease (CAD) underlies most myocardial infarctions (MI), but not all CAD patients experience MI.
- Genetic factors contributing to atherosclerosis may differ from those predisposing to vulnerable plaques and thrombus formation.
Purpose of the Study:
- To identify genetic factors distinguishing MI risk from general coronary atherosclerosis.
- To investigate the role of specific genetic loci, including SLC44A3, in MI pathophysiology.
Main Methods:
- Genome-wide association study (GWAS) in UK Biobank, meta-analysis with CARDIoGRAMplusC4D data.
- Replication analyses in Biobank Japan and angiography cohorts.
- Functional studies including gene expression and cell migration assays.
Main Results:
- Eight novel MI-associated genomic regions were identified.
- Six loci showed stronger association with MI than with CAD alone.
- The SLC44A3 locus on chromosome 1p21.3 was specifically associated with MI, not atherosclerosis, and its expression increased in ischemic conditions and with inflammation.
Conclusions:
- Large-scale genetic analysis identified novel determinants of MI.
- The SLC44A3 gene is implicated in the pathophysiology of vulnerable plaques, contributing to MI risk beyond atherosclerosis.
Aims:
While most patients with myocardial infarction (MI) have underlying coronary atherosclerosis, not all patients with coronary artery disease (CAD) develop MI. We sought to address the hypothesis that some of the genetic factors which establish atherosclerosis may be distinct from those that predispose to vulnerable plaques and thrombus formation.
Methods And Results:
We carried out a genome-wide association study for MI in the UK Biobank (n∼472 000), followed by a meta-analysis with summary statistics from the CARDIoGRAMplusC4D Consortium (n∼167 000). Multiple independent replication analyses and functional approaches were used to prioritize loci and evaluate positional candidate genes. Eight novel regions were identified for MI at the genome wide significance level, of which effect sizes at six loci were more robust for MI than for CAD without the presence of MI. Confirmatory evidence for association of a locus on chromosome 1p21.3 harbouring choline-like transporter 3 (SLC44A3) with MI in the context of CAD, but not with coronary atherosclerosis itself, was obtained in Biobank Japan (n∼165 000) and 16 independent angiography-based cohorts (n∼27 000). Follow-up analyses did not reveal association of the SLC44A3 locus with CAD risk factors, biomarkers of coagulation, other thrombotic diseases, or plasma levels of a broad array of metabolites, including choline, trimethylamine N-oxide, and betaine. However, aortic expression of SLC44A3 was increased in carriers of the MI risk allele at chromosome 1p21.3, increased in ischaemic (vs. non-diseased) coronary arteries, up-regulated in human aortic endothelial cells treated with interleukin-1β (vs. vehicle), and associated with smooth muscle cell migration in vitro.
Conclusions:
A large-scale analysis comprising ∼831 000 subjects revealed novel genetic determinants of MI and implicated SLC44A3 in the pathophysiology of vulnerable plaques.
More Related Videos
Related Concept Videos
Genome-wide Association Studies-GWAS
GWAS does not require the identification of the target gene involved in...
Single Nucleotide Polymorphisms-SNPs

