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J. I. Rotter

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Open access Aug 2026

Apolipoprotein B-containing lipoproteins: distinct roles in atherosclerosis revealed by plasma proteomic profiling.

BACKGROUND AND AIMS All apolipoprotein B-containing lipoproteins are established causal factors for coronary artery disease (CAD). This study aimed to identify robust proteomic signatures of low-density lipoprotein (LDL), triglyceride-rich lipoproteins (TRL), and lipoprotein(a) [Lp(a)] and to evaluate whether these signatures illuminate biological processes underlying differences in per-particle atherogenicity. METHODS Plasma proteins associated with LDL, TRL, and Lp(a) concentrations were identified using multivariable-adjusted regression across 2918 proteins in a primary prevention cohort based on UK Biobank (n=35,269), and findings were corroborated using one-sample Mendelian randomization. Proteins consistently identified by both approaches were summarized into lipoprotein-specific multi-protein scores and associated with incident CAD (n=1599 events) using Cox regression. High-dimensional mediation analysis quantified the proportion of lipoprotein-associated CAD risk explained by proteomic alterations. Findings were replicated in the Multi-Ethnic Study of Atherosclerosis (n=5915). RESULTS Requiring concordance between observational and Mendelian randomization analyses (both Bonferroni-adjusted P<0.05), 30 proteins were identified as associated with LDL, 471 with TRL, and 53 with Lp(a). The TRL and Lp(a) signatures were distinct from the LDL signature yet overlapped substantially with each other (36 shared proteins), with common enrichment in inflammatory pathways. After adjustment for potential confounders and measured lipoprotein concentrations, the multi-protein scores for TRL (hazard ratio per 1-SD [HRSD], 1.16; 95% confidence interval [95%CI]: 1.08-1.24) and Lp(a) (HRSD, 1.09; 95%CI: 1.03-1.15), but not LDL (HRSD, 0.95; 95%CI: 0.89-1.02), were associated with incident CAD. Mediation analysis was consistent with immune activation and vascular remodeling markers mediating TRL-associated CAD risk (proportion mediated, 62%) and, in part, Lp(a)-associated risk (14%). CONCLUSIONS Beyond arterial lipid deposition, TRL and Lp(a) converge on inflammatory and vascular remodeling pathways that, under the assumptions of observational mediation analysis, may explain their excess per-particle atherogenicity compared with LDL.

J. Morze, E. Björnson, Michael Y. Mi et al. · 0 citations
Open access Jul 2026

Cross-cohort analysis of expression and splicing quantitative trait loci in TOPMed.

Most genetic variants associated with complex traits are hypothesized to regulate gene expression. To understand the genetics underlying gene expression variability, we characterized 14,324 RNA-sequencing samples from the Trans-Omics for Precision Medicine program and performed expression and splicing quantitative trait locus (e/sQTL) analyses in six tissues and cell types, including whole blood (n = 6454) and lung (n = 1291). We detected tens of thousands of secondary cis-e/sQTLs, showing that secondary cis-e/sQTL discovery remains unsaturated. We fine-mapped UK Biobank-derived genome-wide association study (GWAS) signals from 164 traits and identified e/sQTL colocalizations for 10,611 GWAS signals, including 7096 that colocalize with secondary e/sQTLs. Our results suggest that even larger e/sQTL analyses will uncover additional secondary e/sQTLs, further benefiting GWAS interpretation.

Peter Orchard, T. Blackwell, L. Kachuri et al. · 0 citations
Open access Aug 2026

Stress-Related Methylation Risk Scores Predict Coronary Heart Disease

This study supports methylation risk scores as novel biomarkers of stress-related CHD and uncovers epigenetic regulation in monocytes as a potential underlying mechanism of stress-related CHD, highlighting biological pathways linking stress and disease and may promote personalized interventions in high-risk populations.

Sofia Benavides, Hazel Milla, Helena Palma-Gudiel et al. · 0 citations

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