Language

English

Publication Date

11-6-2025

Journal

American Journal of Human Genetics

DOI

10.1016/j.ajhg.2025.08.022

PMID

40972578

PMCID

PMC12487844

PubMedCentral® Posted Date

9-18-2025

PubMedCentral® Full Text Version

Post-print

Abstract

Circulating metabolite levels partly reflect the state of human health and diseases and can be impacted by genetic determinants. Hundreds of loci associated with circulating metabolites have been identified; however, most findings focus on predominantly European ancestry or single-study analyses. Leveraging the rich metabolomics resources generated by the National Heart, Lung, and Blood Institute (NHLBI) Trans-Omics for Precision Medicine (TOPMed) Program, we harmonized and accessibly cataloged 1,729 circulating metabolites among 25,058 ancestrally diverse samples. From our comparison of multiple methods, we provided a set of reasonable strategies for outlier and imputation handling to process metabolite data and show that inverse normalization by study and half-minimum imputation provide mostly similar results for pooled or meta-analysis. Following the practical analysis framework, we further performed a genome-wide association analysis on 1,135 selected metabolites using whole-genome sequencing data from 16,359 individuals passing the quality-control filters and discovered 1,775 independent loci associated with 667 metabolites. Among 160 unreported locus-metabolite pairs, we identified associations with loci locating within previously implicated metabolite-associated genes, as well as associations with loci locating in genes such as GAB3 and VSIG4 (located on the X chromosome) that may play a role in metabolic regulation. In the sex-stratified analysis, we revealed 85 independent locus-metabolite pairs with evidence of sexual dimorphism, which were located in well-known metabolic genes such as FADS2, D2HGDH, SUGP1, and UGT2B17, strongly supporting the importance of exploring sex difference in the human metabolome. Taken together, our study depicted the genetic contribution to circulating metabolite levels, providing additional insight into the understanding of human health.

Keywords

Humans, Precision Medicine, Genome-Wide Association Study, Female, National Heart, Lung, and Blood Institute (U.S.), Male, Metabolomics, United States, Metabolome, Polymorphism, Single Nucleotide, TOPMed, circulating metabolites, metabolite catalog, inverse normal transformation, half-minimum imputation, multiple studies analysis, GWAS, metQTLs, sex-stratified analysis

Published Open-Access

yes

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