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A Multiomic Approach Integrating Genomic and Metabolomic Data Highlights Colorectal Cancer Pathways.

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Journal of proteome research 📖 저널 OA 35.6% 2023: 0/1 OA 2024: 2/4 OA 2025: 6/24 OA 2026: 13/30 OA 2023~2026 2026 Vol.25(2) p. 578-588
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Iliou A, Chekmeneva E, Pinto RC, Koukouzeli FE, Ntounias Y, Georgakopoulou K, Pouliou M, Agelopoulos M, Tsilidis KK, Gunter MJ, Elliott P, Griffin JL, Dehghan A, Klinakis A, Mikros E, Tzoulaki I

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Numerous genetic variants have been identified by genome-wide association studies as being associated with colorectal cancer (CRC) risk.

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APA Iliou A, Chekmeneva E, et al. (2026). A Multiomic Approach Integrating Genomic and Metabolomic Data Highlights Colorectal Cancer Pathways.. Journal of proteome research, 25(2), 578-588. https://doi.org/10.1021/acs.jproteome.5c00459
MLA Iliou A, et al.. "A Multiomic Approach Integrating Genomic and Metabolomic Data Highlights Colorectal Cancer Pathways.." Journal of proteome research, vol. 25, no. 2, 2026, pp. 578-588.
PMID 41603468 ↗

Abstract

Numerous genetic variants have been identified by genome-wide association studies as being associated with colorectal cancer (CRC) risk. Metabolome-wide association analysis was performed for 187 CRC-associated genetic variants using genomic data and untargeted H nuclear magnetic resonance urine metabolomics from 1951 Airwave Health Monitoring Study participants. We identified statistically significant associations between seven CRC single-nucleotide polymorphisms (SNPs) and urinary metabolites. This included SNPs within or close to with sucrose ( = 1.2 × 10), with amino acids ( = 6.9 × 10 with tyrosine, = 9.9 × 10 with leucine), and and with gut microbial metabolites ( = 1.6 × 10 and = 4.4 × 10). The most significant correlation was followed by functional experiments in Caco-2 colon cancer cells. CRISPR-mediated knockout of a 48-nt intronic region containing rs10411210 in colon cancer cells compromised cell growth. RNA sequencing was performed in the two sets of clones (3 edited and 3 unedited) followed by pathway enrichment, and gene ontology analysis depicted extensive deregulation of genes (448 up- and 195 downregulated) involved in cell division and several metabolic processes. Overall, these findings demonstrate that integrating genetic and metabolomic data highlights the importance of the intronic locus in CRC potentially through metabolic processes affecting excretion of dietary and other metabolites.

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