rs3768321
▶GWAS Catalog Trait Associations (74)
Genome-wide significant associations (p < 5×10⁻⁸) from the NHGRI-EBI GWAS Catalog.
GWAS Catalog Trait Associations (74)
Genome-wide significant associations (p < 5×10⁻⁸) from the NHGRI-EBI GWAS Catalog.
high density lipoprotein cholesterol measurement
Graham SE et al. “The power of genetic diversity in genome-wide association studies of lipids.” Nature 600(7890):675-679 (2021)
Allele T
OR 0.04
p 2.0e-81
N 1,320,016
Large GWAS
European
Verma A et al. “Diversity and scale: Genetic architecture of 2068 traits in the VA Million Veteran Program.” Science (new York, N.y.) 385(6706):eadj1182 (2024)
Allele T
OR 0.08
p 6.0e-50
N 578,125
Major Consortium StudyLarge GWAS
multi-ancestry
Zoodsma M et al. “A genetic map of human metabolism across the allele frequency spectrum.” Nature Genetics 57(10):2445-2455 (2025)
Allele T
OR 0.04
p 6.0e-57
N 450,015
Large GWAS
multi-ancestry
Richardson TG et al. “Evaluating the relationship between circulating lipoprotein lipids and apolipoproteins with risk of coronary heart disease: A multivariable Mendelian randomisation analysis.” Plos Medicine 17(3):e1003062 (2020)
Allele T
OR 0.05
p 1.0e-79
N 403,943
Large GWAS
European
Klarin D et al. “Genetics of blood lipids among ~300,000 multi-ethnic participants of the Million Veteran Program.” Nature Genetics 50(11):1514-1523 (2018)
Allele T
OR 0.05
p 1.0e-36
N 297,626
Major Consortium StudyLarge GWAS
multi-ancestry
Richardson TG et al. “Characterising metabolomic signatures of lipid-modifying therapies through drug target mendelian randomisation.” Plos Biology 20(2):e3001547 (2022)
Allele T
OR 0.04
p 5.0e-18
N 115,082
Large GWAS
European
Davyson E et al. “Metabolomic Investigation of Major Depressive Disorder Identifies a Potentially Causal Association With Polyunsaturated Fatty Acids.” Biological Psychiatry 94(8):630-639 (2023)
Allele T
OR 0.04
p 2.0e-12
N 88,329
Large GWAS
European
cholesteryl esters in HDL measurement
Zoodsma M et al. “A genetic map of human metabolism across the allele frequency spectrum.” Nature Genetics 57(10):2445-2455 (2025)
Allele T
OR 0.04
p 5.0e-74
N 450,015
Large GWAS
multi-ancestry
hematocrit
Loya H et al. “A scalable variational inference approach for increased mixed-model association power.” Nature Genetics 57(2):461-468 (2025)
Allele T
OR 0.04
p 1.0e-73
N 394,642
Large GWAS
European
phospholipids:total lipids ratio
Zoodsma M et al. “A genetic map of human metabolism across the allele frequency spectrum.” Nature Genetics 57(10):2445-2455 (2025)
Allele T
OR 0.04
p 8.0e-72
N 450,015
Large GWAS
multi-ancestry
Davyson E et al. “Metabolomic Investigation of Major Depressive Disorder Identifies a Potentially Causal Association With Polyunsaturated Fatty Acids.” Biological Psychiatry 94(8):630-639 (2023)
Allele T
OR 0.04
p 1.0e-14
N 88,329
Large GWAS
European
HDL cholesterol change measurement
Zoodsma M et al. “A genetic map of human metabolism across the allele frequency spectrum.” Nature Genetics 57(10):2445-2455 (2025)
Allele T
OR 0.04
p 2.0e-69
N 450,015
Large GWAS
multi-ancestry
apolipoprotein A 1 measurement
Richardson TG et al. “Evaluating the relationship between circulating lipoprotein lipids and apolipoproteins with risk of coronary heart disease: A multivariable Mendelian randomisation analysis.” Plos Medicine 17(3):e1003062 (2020)
Allele G
OR 0.04
p 6.0e-66
N 393,193
Large GWAS
European
Zoodsma M et al. “A genetic map of human metabolism across the allele frequency spectrum.” Nature Genetics 57(10):2445-2455 (2025)
Allele G
OR 0.04
p 6.0e-53
N 450,015
Large GWAS
multi-ancestry
Loya H et al. “A scalable variational inference approach for increased mixed-model association power.” Nature Genetics 57(2):461-468 (2025)
Allele G
OR 0.04
p 5.0e-58
N 394,642
Large GWAS
European
Richardson TG et al. “Characterising metabolomic signatures of lipid-modifying therapies through drug target mendelian randomisation.” Plos Biology 20(2):e3001547 (2022)
Allele G
OR 0.04
p 8.0e-17
N 115,082
Large GWAS
European
Davyson E et al. “Metabolomic Investigation of Major Depressive Disorder Identifies a Potentially Causal Association With Polyunsaturated Fatty Acids.” Biological Psychiatry 94(8):630-639 (2023)
Allele G
OR 0.04
p 3.0e-13
N 88,329
Large GWAS
European
type 2 diabetes mellitus
Suzuki K et al. “Genetic drivers of heterogeneity in type 2 diabetes pathophysiology.” Nature 627(8003):347-357 (2024)
Allele T
OR —
p 5.0e-62
N 2,535,601
Large GWAS
multi-ancestry
Elashi AA et al. “Genome-wide association study and trans-ethnic meta-analysis identify novel susceptibility loci for type 2 diabetes mellitus.” Bmc Medical Genomics 17(1):115 (2024)
Allele T
OR 0.07
p 1.0e-27
N 6,710,881
Meta-analysisLarge GWAS
multi-ancestry
Mahajan A et al. “Fine-mapping type 2 diabetes loci to single-variant resolution using high-density imputation and islet-specific epigenome maps.” Nature Genetics 50(11):1505-1513 (2018)
Allele T
OR 1.09
p 3.0e-26
N 898,130
Large GWAS
European
Huerta-Chagoya A et al. “Rare variant analyses in 51,256 type 2 diabetes cases and 370,487 controls reveal the pathogenicity spectrum of monogenic diabetes genes.” Nature Genetics 56(11):2370-2379 (2024)
Allele T
OR 0.09
p 3.0e-18
N 421,743
Large GWAS
multi-ancestry
Cook JP et al. “Multi-ethnic genome-wide association study identifies novel locus for type 2 diabetes susceptibility.” European Journal of Human Genetics : Ejhg 24(8):1175-80 (2016)
Allele T
OR 1.13
p 2.0e-9
N 71,604
Large GWAS
multi-ancestry
Bonàs-Guarch S et al. “Re-analysis of public genetic data reveals a rare X-chromosomal variant associated with type 2 diabetes.” Nature Communications 9(1):321 (2018)
Allele T
OR 1.12
p 9.0e-9
N 70,127
Large GWAS
European
mean corpuscular hemoglobin concentration
Chen MH et al. “Trans-ethnic and Ancestry-Specific Blood-Cell Genetics in 746,667 Individuals from 5 Global Populations.” Cell 182(5):1198-1213.e14 (2020)
Allele T
OR —
p 4.0e-53
N 630,125
Large GWAS
multi-ancestry
Verma A et al. “Diversity and scale: Genetic architecture of 2068 traits in the VA Million Veteran Program.” Science (new York, N.y.) 385(6706):eadj1182 (2024)
Allele T
OR 0.04
p 2.0e-20
N 583,883
Major Consortium StudyLarge GWAS
multi-ancestry
Sakaue S et al. “A cross-population atlas of genetic associations for 220 human phenotypes.” Nature Genetics 53(10):1415-1424 (2021)
Allele T
OR 0.02
p 2.0e-12
N 485,950
Large GWAS
multi-ancestry
Vuckovic D et al. “The Polygenic and Monogenic Basis of Blood Traits and Diseases.” Cell 182(5):1214-1231.e11 (2020)
Allele T
OR 0.03
p 3.0e-20
N 408,112
Large GWAS
European
Loya H et al. “A scalable variational inference approach for increased mixed-model association power.” Nature Genetics 57(2):461-468 (2025)
Allele T
OR 0.02
p 9.0e-13
N 394,642
Large GWAS
European
total lipids in HDL measurement
Zoodsma M et al. “A genetic map of human metabolism across the allele frequency spectrum.” Nature Genetics 57(10):2445-2455 (2025)
Allele T
OR 0.03
p 1.0e-51
N 450,015
Large GWAS
multi-ancestry
Davyson E et al. “Metabolomic Investigation of Major Depressive Disorder Identifies a Potentially Causal Association With Polyunsaturated Fatty Acids.” Biological Psychiatry 94(8):630-639 (2023)
Allele T
OR 0.04
p 2.0e-12
N 88,329
Large GWAS
European
concentration of medium HDL particles measurement
Zoodsma M et al. “A genetic map of human metabolism across the allele frequency spectrum.” Nature Genetics 57(10):2445-2455 (2025)
Allele T
OR 0.03
p 2.0e-50
N 450,015
Large GWAS
multi-ancestry
This variant is in our database but has no known associations or PRS memberships yet.
Gene information from NCBI Gene. Variant classifications from ClinVar.
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