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izvor podataka: crosbi

A multi-layer functional genomic analysis to understand noncoding genetic variation in lipids (CROSBI ID 317828)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

(Million Vet Program ; Global Lipids Genetics Consortium) Ramdas, Shweta ; Judd, Jonathan ; Graham, Sarah E. ; Kanoni, Stavroula ; Wang, Yuxuan ; Surakka, Ida ; ... ; Kolčić, Ivana ; … ; Polašek, Ozren et al. A multi-layer functional genomic analysis to understand noncoding genetic variation in lipids // American journal of human genetics, 109 (2022), 8; 1366-1387. doi: 10.1016/j.ajhg.2022.06.012

Podaci o odgovornosti

Ramdas, Shweta ; Judd, Jonathan ; Graham, Sarah E. ; Kanoni, Stavroula ; Wang, Yuxuan ; Surakka, Ida ; ... ; Kolčić, Ivana ; … ; Polašek, Ozren ; [et al.]

Million Vet Program ; Global Lipids Genetics Consortium

engleski

A multi-layer functional genomic analysis to understand noncoding genetic variation in lipids

A major challenge of genome-wide association studies (GWASs) is to translate phenotypic associations into biological insights. Here, we integrate a large GWAS on blood lipids involving 1.6 million individuals from five ancestries with a wide array of functional genomic datasets to discover regulatory mechanisms underlying lipid associations. We first prioritize lipid-associated genes with expression quantitative trait locus (eQTL) colocalizations and then add chromatin interaction data to narrow the search for functional genes. Polygenic enrichment analysis across 697 annotations from a host of tissues and cell types confirms the central role of the liver in lipid levels and highlights the selective enrichment of adipose-specific chromatin marks in high-density lipoprotein cholesterol and triglycerides. Overlapping transcription factor (TF) binding sites with lipid-associated loci identifies TFs relevant in lipid biology. In addition, we present an integrative framework to prioritize causal variants at GWAS loci, producing a comprehensive list of candidate causal genes and variants with multiple layers of functional evidence. We highlight two of the prioritized genes, CREBRF and RRBP1, which show convergent evidence across functional datasets supporting their roles in lipid biology.

INTEGRATIVE ANALYSIS ; WIDE ASSOCIATION ; 3D GENOME ; VARIANTS ; CHOLESTEROL ; ANNOTATION ; OBESITY ; COMMON ; LOCI ; EXPRESSION

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Podaci o izdanju

109 (8)

2022.

1366-1387

objavljeno

0002-9297

1537-6605

10.1016/j.ajhg.2022.06.012

Povezanost rada

Temeljne medicinske znanosti

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