Sato Masanobu, Wakayama Tomohiko, Mamada Hideaki, Shirasaka Yoshiyuki, Nakanishi Takeo, Tamai Ikumi
Faculty of Pharmacy, Department of Histology and Embryology, Graduate School of Medical Science, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kakuma-machi, Kanazawa, 920-1192, Japan.
Biochim Biophys Acta. 2011 Jun;1808(6):1441-7. doi: 10.1016/j.bbamem.2010.11.002. Epub 2010 Nov 11.
Uric acid transporter URAT1 contributes significantly to reabsorption of uric acid in humans to maintain a constant serum uric acid (SUA) level. Since alteration of SUA level is associated with various diseases, it is important to clarify the mechanism of change in SUA. However, although expression of mRNA of an ortholog of URAT1 (rUrat1) in rats has been reported, functional analysis and localization have not been done. Therefore, rat rUrat1 was functionally analyzed using gene expression systems and isolated brush-border membrane vesicles (BBMVs) prepared from rat kidney, and its localization in kidney was examined immunohistochemically. Uric acid transport by rUrat1 was chloride (Cl-) susceptible with a Km of 1773μM. It was inhibited by benzbromarone and trans-stimulated by lactate and pyrazinecarboxylic acid (PZA). Cl- gradient-susceptible uric acid transport by BBMVs showed similar characteristics to those of uric acid transport by rUrat1. Moreover, rUrat1 was localized at the apical membrane in proximal tubular epithelial cells in rat kidney. Accordingly, rUrat1 is considered to be involved in uric acid reabsorption in rats in the same manner as URAT1 in humans. Therefore, rUrat1 may be a useful model to study issues related to the role of human URAT1.
尿酸转运蛋白URAT1对人体尿酸的重吸收有显著作用,以维持血清尿酸(SUA)水平恒定。由于SUA水平的改变与多种疾病相关,阐明SUA变化机制很重要。然而,尽管已报道大鼠中URAT1直系同源物(rUrat1)的mRNA表达,但尚未进行功能分析和定位研究。因此,利用基因表达系统和从大鼠肾脏制备的分离刷状缘膜囊泡(BBMVs)对大鼠rUrat1进行功能分析,并通过免疫组织化学检查其在肾脏中的定位。rUrat1介导的尿酸转运对氯离子(Cl-)敏感,Km为1773μM。它受到苯溴马隆的抑制,并受到乳酸和吡嗪羧酸(PZA)的反式刺激。BBMVs对Cl-梯度敏感的尿酸转运表现出与rUrat1介导的尿酸转运相似的特征。此外, rUrat1定位于大鼠肾脏近端小管上皮细胞的顶端膜。因此,rUrat1被认为以与人类URAT1相同的方式参与大鼠尿酸的重吸收。因此,rUrat1可能是研究与人类URAT1作用相关问题的有用模型。