rs4782568
▶GWAS Catalog Trait Associations (49)
Genome-wide significant associations (p < 5×10⁻⁸) from the NHGRI-EBI GWAS Catalog.
GWAS Catalog Trait Associations (49)
Genome-wide significant associations (p < 5×10⁻⁸) from the NHGRI-EBI GWAS Catalog.
serum alanine aminotransferase amount
Jee YH et al. “Genome-wide association studies in a large Korean cohort identify quantitative trait loci for 36 traits and illuminate their genetic architectures.” Nature Communications 16(1):4935 (2025)
Allele C
OR 0.02
p 2.0e-44
N 928,679
Large GWAS
multi-ancestry
Ghouse J et al. “Integrative common and rare variant analyses provide insights into the genetic architecture of liver cirrhosis.” Nature Genetics 56(5):827-837 (2024)
Allele C
OR 0.00
p 1.0e-32
N 1,010,710
Large GWAS
European
Sakaue S et al. “A cross-population atlas of genetic associations for 220 human phenotypes.” Nature Genetics 53(10):1415-1424 (2021)
Allele C
OR 0.02
p 6.0e-26
N 494,681
Large GWAS
multi-ancestry
Pazoki R et al. “Genetic analysis in European ancestry individuals identifies 517 loci associated with liver enzymes.” Nature Communications 12(1):2579 (2021)
Allele C
OR 0.00
p 5.0e-30
N 437,267
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 C
OR 0.03
p 1.0e-37
N 406,783
Major Consortium StudyLarge GWAS
European
Chen VL et al. “Genome-wide association study of serum liver enzymes implicates diverse metabolic and liver pathology.” Nature Communications 12(1):816 (2021)
Allele C
OR 9.06
p 1.0e-19
N 390,812
Large GWAS
multi-ancestry
Vujkovic M et al. “A multiancestry genome-wide association study of unexplained chronic ALT elevation as a proxy for nonalcoholic fatty liver disease with histological and radiological validation.” Nature Genetics 54(6):761-771 (2022)
Allele C
OR 0.06
p 9.0e-21
N 218,595
Large GWAS
multi-ancestry
alkaline phosphatase measurement
Pazoki R et al. “Genetic analysis in European ancestry individuals identifies 517 loci associated with liver enzymes.” Nature Communications 12(1):2579 (2021)
Allele C
OR 0.00
p 1.0e-36
N 437,438
Large GWAS
European
Sakaue S et al. “A cross-population atlas of genetic associations for 220 human phenotypes.” Nature Genetics 53(10):1415-1424 (2021)
Allele C
OR 0.02
p 7.0e-28
N 463,178
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 C
OR 0.02
p 2.0e-32
N 394,642
Large GWAS
European
Chen VL et al. “Genome-wide association study of serum liver enzymes implicates diverse metabolic and liver pathology.” Nature Communications 12(1):816 (2021)
Allele C
OR 10.20
p 1.0e-24
N 390,964
Large GWAS
multi-ancestry
IGF-1 measurement
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 0.02
p 2.0e-33
N 394,642
Large GWAS
European
low density lipoprotein cholesterol measurement
Klimentidis YC et al. “Phenotypic and Genetic Characterization of Lower LDL Cholesterol and Increased Type 2 Diabetes Risk in the UK Biobank.” Diabetes 69(10):2194-2205 (2020)
Allele C
OR 0.02
p 1.0e-24
N 431,167
Major Consortium StudyLarge 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 C
OR 0.02
p 2.0e-14
N 578,944
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 C
OR 0.01
p 2.0e-11
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 C
OR 0.02
p 6.0e-15
N 440,546
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 C
OR 0.02
p 2.0e-17
N 394,642
Large GWAS
European
oxytocin-neurophysin 1 measurement
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 0.05
p 5.0e-21
N 47,745
Large GWAS
European
serum albumin amount
Jee YH et al. “Genome-wide association studies in a large Korean cohort identify quantitative trait loci for 36 traits and illuminate their genetic architectures.” Nature Communications 16(1):4935 (2025)
Allele C
OR 0.02
p 4.0e-20
N 928,679
Large 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 C
OR 0.02
p 3.0e-13
N 450,015
Large 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 C
OR 0.02
p 3.0e-12
N 435,807
Large GWAS
multi-ancestry
Sinnott-Armstrong N et al. “Genetics of 35 blood and urine biomarkers in the UK Biobank.” Nature Genetics 53(2):185-194 (2021)
Allele C
OR 0.02
p 3.0e-12
N 325,292
Major Consortium StudyLarge GWAS
multi-ancestry
apolipoprotein B 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 C
OR 0.02
p 5.0e-18
N 439,214
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 C
OR 0.01
p 3.0e-11
N 450,015
Large GWAS
multi-ancestry
testosterone measurement
Venkatesh SS et al. “Genome-wide analyses identify 25 infertility loci and relationships with reproductive traits across the allele frequency spectrum.” Nature Genetics 57(5):1107-1118 (2025)
Allele G
OR 0.02
p 8.0e-18
N 235,096
Large GWAS
European
Ruth KS et al. “Using human genetics to understand the disease impacts of testosterone in men and women.” Nature Medicine 26(2):252-258 (2020)
Allele G
OR 0.02
p 8.0e-17
N 194,453
Large GWAS
European
Harrison S et al. “Testosterone and socioeconomic position: Mendelian randomization in 306,248 men and women in UK Biobank.” Science Advances 7(31) (2021)
Allele G
OR 0.11
p 2.0e-9
N 148,248
Major Consortium StudyLarge GWAS
European
omega-3 polyunsaturated fatty acid measurement
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 0.02
p 3.0e-16
N 450,015
Large GWAS
multi-ancestry
glycoprotein measurement
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 0.02
p 4.0e-16
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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