Recent advances in renal urate transport: characterization of candidate transporters indicated by genome-wide association studies

被引:126
作者
Anzai, Naohiko [1 ,2 ]
Jutabha, Promsuk [1 ,2 ]
Amonpatumrat-Takahashi, Sirirat [2 ]
Sakurai, Hiroyuki [2 ]
机构
[1] Dokkyo Med Univ, Sch Med, Dept Pharmacol & Toxicol, Shimotsuga, Tochigi 3210293, Japan
[2] Kyorin Univ, Sch Med, Dept Pharmacol & Toxicol, Mitaka, Tokyo 1818611, Japan
关键词
Urate; Transporter; Hypouricemia; Hyperuricemia; Gout; Genome-wide association study; URIC-ACID CONCENTRATIONS; PHOSPHATE TRANSPORTER; SERUM URATE; APICAL MEMBRANE; ANION EXCHANGER; SLC2A9; IDENTIFICATION; PROTEIN; GLUT9; PDZK1;
D O I
10.1007/s10157-011-0532-z
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
100201 [内科学]; 100221 [泌尿外科学];
摘要
Humans have higher serum uric acid levels than other mammalian species owing to the genetic silencing of the hepatic enzyme uricase that metabolizes uric acid into allantoin. Urate (the ionized form of uric acid) is generated from purine metabolism and it may provide antioxidant defense in the human body. Despite its potential advantage, sustained hyperuricemia has pathogenetic causes in gout and renal diseases, and putative roles in hypertension and cardiovascular diseases. Since the kidney plays a dominant role in maintaining plasma urate levels through the excretion process, it is important to understand the molecular mechanism of renal urate handling. Although the molecular identification of a kidney-specific urate/anion exchanger URAT1 in 2002 paved the way for successive identification of several urate transport-related proteins, the entire picture of effective renal urate handling in humans has not yet been clarified. Recently, several genome-wide association studies identified a substantial association between uric acid concentration and single nucleotide polymorphisms in at least ten genetic loci including eight transporter-coding genes. In 2008, we functionally characterized the facilitatory glucose transporter family member SLC2A9 (GLUT9), one of the candidate genes for urate handling, as a voltage-driven urate transporter URATv1 at the basolateral side of renal proximal tubules that comprises the main route of the urate reabsorption pathway, in tandem with URAT1 at the apical side. In this review, recent findings concerning these candidate molecules are presented.
引用
收藏
页码:89 / 95
页数:7
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