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相关基因
RGS14
位点:RS11746443
位点:RS12654812
ABCG2
位点:RS1481012
GIPR
位点:RS1800437
CLDN14
位点:RS219780
位点:RS219781
TFAP2B
位点:RS2206271
MAPT
位点:RS242559
DGKH
位点:RS4142110
UMOD
位点:RS4293393
GCKR
位点:RS780093
SCNN1B
位点:RS889299
SLC12A1
位点:RS34819316
ALPL
位点:RS1256328
RNU5F-1
位点:RS884127
ASCC3
位点:RS1039031
A Genome-Wide Association Study of Nephrolithiasis in the Japanese Population Identifies Novel Susceptible Loci at 5q35.3, 7p14.3, and 13q14.1
Genetics of common complex kidney stone disease: insights from genome-wide association studies
Genetic variants of calcium and vitamin D metabolism in kidney stone disease
Integrative genome-wide analyses identify novel loci associated with kidney stones and provide insights into its genetic architecture
Genetics of common complex kidney stone disease: insights from genome-wide association studies
Sequence variants in the CLDN14 gene associate with kidney stones and bone mineral density
Integrative genome-wide analyses identify novel loci associated with kidney stones and provide insights into its genetic architecture
Integrative genome-wide analyses identify novel loci associated with kidney stones and provide insights into its genetic architecture
A Genome-Wide Association Study of Nephrolithiasis in the Japanese Population Identifies Novel Susceptible Loci at 5q35.3, 7p14.3, and 13q14.1
Association of Variants at UMOD with Chronic Kidney Disease and Kidney Stones—Role of Age and Comorbid Diseases
Genetic variants of calcium and vitamin D metabolism in kidney stone disease
Genetic variants of calcium and vitamin D metabolism in kidney stone disease
Integrative genome-wide analyses identify novel loci associated with kidney stones and provide insights into its genetic architecture
Common variants in alpl gene contribute to the risk of kidney stones in the han chinese population
Integrative genome-wide analyses identify novel loci associated with kidney stones and provide insights into its genetic architecture
Integrative genome-wide analyses identify novel loci associated with kidney stones and provide insights into its genetic architecture