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Protein Identification for Stroke Progression via Mendelian Randomization in Million Veteran Program and UK Biobank
Andrew R Elmore1,2, Nimish Adhikari3,4, April E Hartley1,2
1NIHR Bristol Biomedical Research Centre, University Hospitals Bristol and Weston NHS Foundation Trust and University of Bristol, United Kingdom (A.R.E., A.E.H., G.H., K.T., T.R.G., G.D.S., L.P.).
Insights
Individuals who experienced a stroke face higher cardiovascular risks. This study identified two proteins, CCL27 and TNFRSF14, linked to inflammation and subsequent cardiovascular events, offering potential therapeutic targets.
Area of Science:
- Genetics
- Cardiovascular Medicine
- Molecular Biology
Background:
- Stroke survivors have an increased risk of subsequent cardiovascular events.
- Identifying genetic and molecular factors is crucial for improving prognosis after stroke.
Purpose of the Study:
- To identify genetic and molecular risk factors for major adverse cardiovascular events (MACE) and arterial ischemic stroke (AIS) after an initial stroke.
- To investigate the causal effect of plasma protein abundances on MACE using Mendelian randomization.
Main Methods:
- Genome-wide association studies (GWAS) were conducted on large cohorts (Million Veteran Program and UK Biobank).
- Mendelian randomization analysis was used to assess the effect of 1463 plasma proteins on MACE.
- Protein quantitative trait loci (pQTL) were utilized to link genetic variants to protein levels.
Main Results:
- Two genetic variants were significantly associated with subsequent cardiovascular events.
- rs76472767 near RNF220 was associated with subsequent AIS.
- rs13294166 near LINC01492 was associated with subsequent MACE.
- CCL27 and TNFRSF14 were identified as proteins influencing MACE post-stroke, implicated in inflammation.
Conclusions:
- Two proteins, CCL27 and TNFRSF14, appear to influence MACE after incident AIS.
- Inflammation is suggested as a key factor in subsequent MACE.
- These findings highlight potential novel therapeutic targets for post-stroke cardiovascular events.
Background:
Individuals who have experienced a stroke, or transient ischemic attack, face a heightened risk of future cardiovascular events. Identification of genetic and molecular risk factors for subsequent cardiovascular outcomes may identify effective therapeutic targets to improve prognosis after an incident stroke.
Methods:
We performed genome-wide association studies for subsequent major adverse cardiovascular events (MACE; ncases=51 929; ncontrols=39 980) and subsequent arterial ischemic stroke (AIS; ncases=45 120; ncontrols=46 789) after the first incident stroke within the Million Veteran Program and UK Biobank. We then used genetic variants associated with proteins (protein quantitative trait loci) to determine the effect of 1463 plasma protein abundances on subsequent MACE using Mendelian randomization.
Results:
Two variants were significantly associated with subsequent cardiovascular events: rs76472767 near gene RNF220 (odds ratio, 0.75 [95% CI, 0.64-0.85]; P=3.69×10-8) with subsequent AIS and rs13294166 near gene LINC01492 (odds ratio, 1.52 [95% CI, 1.37-1.67]; P=3.77×10-8) with subsequent MACE. Using Mendelian randomization, we identified 2 proteins with an effect on subsequent MACE after a stroke: CCL27 ([C-C motif chemokine 27], effect odds ratio, 0.77 [95% CI, 0.66-0.88]; adjusted P=0.05) and TNFRSF14 ([tumor necrosis factor receptor superfamily member 14], effect odds ratio, 1.42 [95% CI, 1.24-1.60]; adjusted P=0.006). These proteins are not associated with incident AIS and are implicated to have a role in inflammation.
Conclusions:
We found evidence that 2 proteins with little effect on incident stroke appear to influence subsequent MACE after incident AIS. These associations suggest that inflammation is a contributing factor to subsequent MACE outcomes after incident AIS and highlights potential novel targets.
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