rs72656010
▶GWAS Catalog Trait Associations (11)
Genome-wide significant associations (p < 5×10⁻⁸) from the NHGRI-EBI GWAS Catalog.
GWAS Catalog Trait Associations (11)
Genome-wide significant associations (p < 5×10⁻⁸) from the NHGRI-EBI GWAS Catalog.
appendicular lean mass
Pei YF et al. “The genetic architecture of appendicular lean mass characterized by association analysis in the UK Biobank study.” Communications Biology 3(1):608 (2020)
Allele T
OR 0.07
p 7.0e-126
N 450,243
Major Consortium StudyLarge GWAS
European
Hernandez Cordero AI et al. “Genome-wide Associations Reveal Human-Mouse Genetic Convergence and Modifiers of Myogenesis, CPNE1 and STC2.” American Journal of Human Genetics 105(6):1222-1236 (2019)
Allele T
OR 0.08
p 2.0e-9
N 85,750
Large GWAS
European
body weight
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 T
OR 0.05
p 5.0e-86
N 928,679
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 0.06
p 3.0e-25
N 609,198
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 0.04
p 2.0e-41
N 525,535
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 T
OR 0.03
p 2.0e-32
N 394,642
Large GWAS
European
whole body water mass
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 0.03
p 2.0e-80
N 394,642
Large GWAS
European
health trait
Schoeler T et al. “Combining cross-sectional and longitudinal genomic approaches to identify determinants of cognitive and physical decline.” Nature Communications 16(1):4524 (2025)
Allele T
OR 0.03
p 2.0e-71
N 405,979
Large GWAS
European
base metabolic rate measurement
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 0.03
p 2.0e-69
N 394,642
Large GWAS
European
hip circumference
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 5.0e-15
N 394,642
Large GWAS
European
heel bone mineral density
Morris JA et al. “An atlas of genetic influences on osteoporosis in humans and mice.” Nature Genetics 51(2):258-266 (2019)
Allele T
OR 0.02
p 9.0e-14
N 426,824
Large GWAS
European
birth weight
Warrington NM et al. “Maternal and fetal genetic effects on birth weight and their relevance to cardio-metabolic risk factors.” Nature Genetics 51(5):804-814 (2019)
Allele T
OR 0.03
p 1.0e-13
N 321,223
Large GWAS
multi-ancestry
monocyte count
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 1.0e-12
N 394,642
Large GWAS
European
neck of femur size
Tobias JH et al. “Femoral neck width genetic risk score is a novel independent risk factor for hip fractures.” Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research 39(3):241-251 (2024)
Allele T
OR 0.06
p 1.0e-9
N 38,150
Large GWAS
European
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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