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Updated: Jul 6, 2025

Author Spotlight: Integrated Multi-Omics Analysis for Unveiling Multicellular Immune Signatures in Clinical Heart Attack Cohorts
Published on: September 20, 2024
Proteogenomic Data Integration Reveals CXCL10 as a Potentially Downstream Causal Mediator for IL-6 Signaling on
Savvina Prapiadou1,2,3, Luka Živković4, Barbara Thorand5
1University of Patras School of Medicine, Greece (S.P.).
Background:
Genetic and experimental studies support a causal involvement of IL-6 (interleukin-6) signaling in atheroprogression. Although trials targeting IL-6 signaling are underway, any benefits must be balanced against an impaired host immune response. Dissecting the mechanisms that mediate the effects of IL-6 signaling on atherosclerosis could offer insights about novel drug targets with more specific effects.
Methods:
Leveraging data from 522 681 individuals, we constructed a genetic instrument of 26 variants in the gene encoding the IL-6R (IL-6 receptor) that proxied for pharmacological IL-6R inhibition. Using Mendelian randomization, we assessed its effects on 3281 plasma proteins quantified with an aptamer-based assay in the INTERVAL cohort (n=3301). Using mediation Mendelian randomization, we explored proteomic mediators of the effects of genetically proxied IL-6 signaling on coronary artery disease, large artery atherosclerotic stroke, and peripheral artery disease. For significant mediators, we tested associations of their circulating levels with incident cardiovascular events in a population-based study (n=1704) and explored the histological, transcriptomic, and cellular phenotypes correlated with their expression levels in samples from human atherosclerotic lesions.
Results:
We found significant effects of genetically proxied IL-6 signaling on 70 circulating proteins involved in cytokine production/regulation and immune cell recruitment/differentiation, which correlated with the proteomic effects of pharmacological IL-6R inhibition in a clinical trial. Among the 70 significant proteins, genetically proxied circulating levels of CXCL10 (C-X-C motif chemokine ligand 10) were associated with risk of coronary artery disease, large artery atherosclerotic stroke, and peripheral artery disease, with up to 67% of the effects of genetically downregulated IL-6 signaling on these end points mediated by decreases in CXCL10. Higher midlife circulating CXCL10 levels were associated with a larger number of cardiovascular events over 20 years, whereas higher CXCL10 expression in human atherosclerotic lesions correlated with a larger lipid core and a transcriptomic profile reflecting immune cell infiltration, adaptive immune system activation, and cytokine signaling.
Conclusions:
Integrating multiomics data, we found a proteomic signature of IL-6 signaling activation and mediators of its effects on cardiovascular disease. Our analyses suggest the interferon-γ-inducible chemokine CXCL10 to be a potentially causal mediator for atherosclerosis in 3 vascular compartments and, as such, could serve as a promising drug target for atheroprotection.
Insights
Interleukin-6 (IL-6) signaling drives atherosclerosis. Targeting this pathway may offer new atheroprotection strategies, with CXCL10 identified as a key mediator.
Area of Science:
- Cardiovascular Research
- Immunology
- Genetics
Background:
- Interleukin-6 (IL-6) signaling is implicated in atherosclerosis development.
- Targeting IL-6 may improve cardiovascular health but could impair immune response.
- Understanding IL-6's mechanisms in atherosclerosis can reveal specific drug targets.
Purpose of the Study:
- To investigate the proteomic mediators of IL-6 signaling in atherosclerosis.
- To explore the causal role of identified mediators in cardiovascular diseases.
- To assess potential therapeutic targets for atherosclerosis.
Main Methods:
- Utilized Mendelian randomization with a genetic instrument for IL-6 receptor (IL-6R) inhibition.
- Assessed effects on 3281 plasma proteins in the INTERVAL cohort.
- Employed mediation Mendelian randomization to link IL-6 signaling, proteins, and cardiovascular diseases (atherosclerosis, stroke, peripheral artery disease).
Main Results:
- Identified 70 circulating proteins affected by IL-6 signaling, including CXCL10 (C-X-C motif chemokine ligand 10).
- Genetically proxied CXCL10 levels were associated with increased risk of coronary artery disease, stroke, and peripheral artery disease.
- Higher CXCL10 levels correlated with larger atherosclerotic lesion lipid cores and immune cell infiltration.
Conclusions:
- IL-6 signaling influences atherosclerosis through specific proteomic mediators.
- CXCL10 is a potential causal mediator of atherosclerosis across multiple vascular beds.
- CXCL10 represents a promising drug target for atheroprotection.
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