rs61751862
This is a protein-altering variant in the DBP gene.
▶GWAS Catalog Trait Associations (14)
Genome-wide significant associations (p < 5×10⁻⁸) from the NHGRI-EBI GWAS Catalog.
GWAS Catalog Trait Associations (14)
Genome-wide significant associations (p < 5×10⁻⁸) from the NHGRI-EBI GWAS Catalog.
lymphocyte percentage of leukocytes
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 0.12
p 4.0e-32
N 394,642
Large GWAS
European
Vuckovic D et al. “The Polygenic and Monogenic Basis of Blood Traits and Diseases.” Cell 182(5):1214-1231.e11 (2020)
Allele C
OR 0.12
p 1.0e-24
N 408,112
Large GWAS
European
neutrophil percentage of leukocytes
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 0.10
p 2.0e-24
N 394,642
Large GWAS
European
Vuckovic D et al. “The Polygenic and Monogenic Basis of Blood Traits and Diseases.” Cell 182(5):1214-1231.e11 (2020)
Allele C
OR 0.10
p 5.0e-20
N 408,112
Large GWAS
European
mean reticulocyte volume
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 0.09
p 4.0e-21
N 394,642
Large GWAS
European
Vuckovic D et al. “The Polygenic and Monogenic Basis of Blood Traits and Diseases.” Cell 182(5):1214-1231.e11 (2020)
Allele C
OR 0.10
p 3.0e-19
N 408,112
Large GWAS
European
alkaline phosphatase 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 0.08
p 2.0e-18
N 394,642
Large GWAS
European
cadherin-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 C
OR 0.20
p 4.0e-14
N 47,745
Large GWAS
European
C-C motif chemokine 25 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 0.18
p 5.0e-14
N 47,745
Large GWAS
European
sphingomyelin measurement
Yin X et al. “Genome-wide association studies of metabolites in Finnish men identify disease-relevant loci.” Nature Communications 13(1):1644 (2022)
Allele C
OR 0.37
p 5.0e-14
N 6,136
Large GWAS
European
level of cadherin-17 in blood serum
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 0.17
p 2.0e-13
N 47,745
Large GWAS
European
Red cell distribution width
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 0.07
p 3.0e-13
N 394,642
Large GWAS
European
Vuckovic D et al. “The Polygenic and Monogenic Basis of Blood Traits and Diseases.” Cell 182(5):1214-1231.e11 (2020)
Allele C
OR 0.07
p 3.0e-9
N 408,112
Large GWAS
European
level of BPI fold-containing family A member 2 in blood serum
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 0.18
p 2.0e-12
N 47,745
Large GWAS
European
About DBP
The protein encoded by this gene is a member of the PAR bZIP transcription factor family and binds to specific sequences in the promoters of several genes, such as albumin, CYP2A4, and CYP2A5. The encoded protein can bind DNA as a homo- or heterodimer and is involved in the regulation of some circadian rhythm genes. [provided by RefSeq, Jul 2014]
View all DBP variants →Gene information from NCBI Gene. Variant classifications from ClinVar.
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