rs11031006
This is a intergenic variant variant in the ARL14EP-DT gene.
▶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.
level of follitropin subunit beta in blood
Loya H et al. “A scalable variational inference approach for increased mixed-model association power.” Nature Genetics 57(2):461-468 (2025)
Allele A
OR 0.13
p 1.0e-85
N 47,745
Large GWAS
European
menstrual cycle attribute
Laisk T et al. “Large-scale meta-analysis highlights the hypothalamic-pituitary-gonadal axis in the genetic regulation of menstrual cycle length.” Human Molecular Genetics 27(24):4323-4332 (2018)
Allele A
OR 0.16
p 4.0e-36
N 44,871
Meta-analysisLarge GWAS
European
follicle stimulating hormone measurement
Pietzner M et al. “Mapping the proteo-genomic convergence of human diseases.” Science (new York, N.y.) 374(6569):eabj1541 (2021)
Allele A
OR 0.17
p 7.0e-31
N 10,708
Large GWAS
European
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 A
OR 0.21
p 4.0e-15
N 6,095
Large GWAS
European
uterine fibroid
Kim J et al. “Genome-wide meta-analysis identifies novel risk loci for uterine fibroids within and across multiple ancestry groups.” Nature Communications 16(1):2273 (2025)
Allele A
OR 0.09
p 1.0e-21
N 709,132
Meta-analysisLarge GWAS
multi-ancestry
Gallagher CS et al. “Genome-wide association and epidemiological analyses reveal common genetic origins between uterine leiomyomata and endometriosis.” Nature Communications 10(1):4857 (2019)
Allele A
OR 1.10
p 6.0e-15
N 244,324
Large GWAS
European
age at first birth measurement, uterine fibroid
Xiao C et al. “Genetic contribution of reproductive traits to risk of uterine leiomyomata: a large-scale, genome-wide, cross-trait analysis.” American Journal of Obstetrics and Gynecology 230(4):438.e1-438.e15 (2024)
Allele A
OR —
p 9.0e-21
N 721,737
Large GWAS
European
Luteinizing hormone level
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 A
OR 0.09
p 1.0e-18
N 41,650
Large GWAS
European
Hayes MG et al. “Genome-wide association of polycystic ovary syndrome implicates alterations in gonadotropin secretion in European ancestry populations.” Nature Communications 6:7502 (2015)
Allele A
OR 3.19
p 3.0e-16
N 645
Small GWAS
European
Uterine leiomyoma
Sliz E et al. “Evidence of a causal effect of genetic tendency to gain muscle mass on uterine leiomyomata.” Nature Communications 14(1):542 (2023)
Allele A
OR 0.92
p 1.0e-15
N 367,903
Large GWAS
European
age at menopause
Day FR et al. “Large-scale genomic analyses link reproductive aging to hypothalamic signaling, breast cancer susceptibility and BRCA1-mediated DNA repair.” Nature Genetics 47(11):1294-1303 (2015)
Allele G
OR 0.22
p 9.0e-14
N 69,626
Large GWAS
European
Menorrhagia
Gallagher CS et al. “Genome-wide association and epidemiological analyses reveal common genetic origins between uterine leiomyomata and endometriosis.” Nature Communications 10(1):4857 (2019)
Allele G
OR 1.19
p 2.0e-13
N 220,759
Large GWAS
European
positive regulation of ovulation
Mbarek H et al. “Identification of Common Genetic Variants Influencing Spontaneous Dizygotic Twinning and Female Fertility.” American Journal of Human Genetics 98(5):898-908 (2016)
Allele G
OR 1.14
p 1.0e-10
N 14,933
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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