Key result
Genome-wide association analysis of 179 plasma lipid species identified 495 genome-trait associations in 56 genetic loci, including 8 novel loci, highlighting the power of multivariate genetic analysis.
Why the study?
The study was conducted to discover new lipid-associated genetic variants and to understand the link between specific lipid species and cardiometabolic disorders.
Observational (n=7,174)
Multivariate genome-wide association analysis of the plasma lipidome identified 495 genetic associations in 56 loci, including 8 novel loci, providing new insights into the genetic links between lipid species and cardiometabolic diseases.
Broadens lipid genetic architecture; leaves open clinical utility of novel loci for cardiometabolic risk prediction.
The human plasma lipidome captures risk for cardiometabolic diseases. To discover new lipid-associated variants and understand the link between lipid species and cardiometabolic disorders, we perform univariate and multivariate genome-wide analyses of 179 lipid species in 7174 Finnish individuals. We fine-map the associated loci, prioritize genes, and examine their disease links in 377,277 FinnGen participants. We identify 495 genome-trait associations in 56 genetic loci including 8 novel loci, with a considerable boost provided by the multivariate analysis. For 26 loci, fine-mapping identifies variants with a high causal probability, including 14 coding variants indicating likely causal genes. A phenome-wide analysis across 953 disease endpoints reveals disease associations for 40 lipid loci. For 11 coronary artery disease risk variants, we detect strong associations with lipid species. Our study demonstrates the power of multivariate genetic analysis in correlated lipidomics data and reveals genetic links between diseases and lipid species beyond the standard lipids.
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Ottensmann et al. (2023) conducted an observational in Plasma lipidome (n=7,174). Genetic variants was evaluated on Genome-trait associations with lipid species. Genome-wide association analysis of 179 plasma lipid species identified 495 genome-trait associations in 56 genetic loci, including 8 novel loci, highlighting the power of multivariate genetic analysis.
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