» Articles » PMID: 16920156

Association Between Intronic SNP in Urate-anion Exchanger Gene, SLC22A12, and Serum Uric Acid Levels in Japanese

Overview
Journal Life Sci
Publisher Elsevier
Date 2006 Aug 22
PMID 16920156
Citations 27
Authors
Affiliations
Soon will be listed here.
Abstract

Serum uric acid levels are maintained by urate synthesis and excretion. URAT1 (coded by SLC22CA12) was recently proposed to be the major absorptive urate transporter protein in the kidney regulating blood urate levels. Because genetic background is known to affect serum urate levels, we hypothesized that genetic variations in SLC22A12 may predispose humans to hyperuricemia and gout. We investigated rs893006 polymorphism (GG, GT and TT) in SLC22A12 in a total of 326 Japanese subjects. Differences in clinical characteristics among the genotype groups were tested by the analysis of variance (ANOVA). In male subjects, mean serum uric acid levels were significantly different among the three genotypes. Levels in the GG genotype subjects were the highest, followed by those with the GT and TT genotypes. However, no differences between the groups were seen in the distributions of creatinine, Fasting plasma glucose (FPG), HbA(1c), total cholesterol, triglyceride, HDL cholesterol levels or BMI. A single nucleotide polymorphism (SNP) in the urate transporter gene SLC22CA12 was found to be associated with elevated serum uric acid levels among Japanese subjects. This SNP may be an independent genetic marker for predicting hyperuricemia.

Citing Articles

Gout: global epidemiology, risk factors, comorbidities and complications: a narrative review.

Motlagh Asghari K, Zahmatyar M, Seyedi F, Motamedi A, Zolfi M, Alamdary S BMC Musculoskelet Disord. 2024; 25(1):1047.

PMID: 39702222 PMC: 11660718. DOI: 10.1186/s12891-024-08180-9.


A combination of red and processed meat intake and polygenic risk score influences the incidence of hyperuricemia in middle-aged Korean adults.

Lee S, Shin D Nutr Res Pract. 2024; 18(5):721-745.

PMID: 39398885 PMC: 11464275. DOI: 10.4162/nrp.2024.18.5.721.


Insights into the relationship between serum uric acid and pulmonary hypertension (Review).

Zhou Y, Chen M, Zheng J, Shui X, He Y, Luo H Mol Med Rep. 2023; 29(1).

PMID: 37997855 PMC: 10704563. DOI: 10.3892/mmr.2023.13133.


Identifying genes associated with genetic control of color polymorphism in the pearl oyster var. (Linnaeus 1758) using a comparative whole genome pool-sequencing approach.

Stenger P, Ky C, Vidal-Dupiol J, Planes S, Reisser C Evol Appl. 2023; 16(2):408-427.

PMID: 36793698 PMC: 9923487. DOI: 10.1111/eva.13464.


A semi-mechanistic exposure-response model to assess the effects of verinurad, a potent URAT1 inhibitor, on serum and urine uric acid in patients with hyperuricemia-associated diseases.

Leander J, Sunnaker M, Rekic D, Aksenov S, Eriksson U, Johansson S J Pharmacokinet Pharmacodyn. 2021; 48(4):525-541.

PMID: 33728547 PMC: 8225519. DOI: 10.1007/s10928-021-09747-y.