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尿酸排泄剂多立司他(Dotinurad)选择性抑制肾脏尿酸重吸收转运体 URAT1 的独特结合位点。

Unique Binding Sites of Uricosuric Agent Dotinurad for Selective Inhibition of Renal Uric Acid Reabsorptive Transporter URAT1.

机构信息

Faculty of Pharmaceutical Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kakuma-machi, Kanazawa, Japan (K.F., Q.Z., H.A., Y.S., I.T.); Department of Future Basic Medicine (N.I., E.M.) and V-iCliniX Laboratory (E.M.), Nara Medical University, Kashihara, Japan; and Research Laboratories 2, Fuji Yakuhin Co., Ltd., Nishi-Ward, Saitama, Japan (M.M., T.T.).

Faculty of Pharmaceutical Sciences, Institute of Medical, Pharmaceutical and Health Sciences, Kanazawa University, Kakuma-machi, Kanazawa, Japan (K.F., Q.Z., H.A., Y.S., I.T.); Department of Future Basic Medicine (N.I., E.M.) and V-iCliniX Laboratory (E.M.), Nara Medical University, Kashihara, Japan; and Research Laboratories 2, Fuji Yakuhin Co., Ltd., Nishi-Ward, Saitama, Japan (M.M., T.T.)

出版信息

J Pharmacol Exp Ther. 2024 Jun 21;390(1):99-107. doi: 10.1124/jpet.124.002096.

Abstract

Dotinurad was developed as a uricosuric agent, inhibiting urate (UA) reabsorption through the UA transporter URAT1 in the kidneys. Due to its high selectivity for URAT1 among renal UA transporters, we investigated the mechanism underlying this selectivity by identifying dotinurad binding sites specific to URAT1. Dotinurad was docked to URAT1 using AutoDock4, utilizing the AlphaFold2-predicted structure. The inhibitory effects of dotinurad on wild-type and mutated URAT1 at the predicted binding sites were assessed through URAT1-mediated [C]UA uptake in oocytes. Nine amino acid residues in URAT1 were identified as dotinurad-binding sites. Sequence alignment with UA-transporting organic anion transporters (OATs) revealed that H142 and R487 were unique to URAT1 among renal UA-transporting OATs. For H142, values of dotinurad increased to 62, 55, and 76 nM for mutated URAT1 (H142A, H142E, and H142R, respectively) compared with 19 nM for the wild type, indicating that H142 contributes to URAT1-selective interaction with dotinurad. H142 was predicted to interact with the phenyl-hydroxyl group of dotinurad. The of the hydroxyl group methylated dotinurad (F13141) was 165 M, 8420-fold higher than dotinurad, suggesting the interaction of H142 and the phenyl-hydroxyl group by forming a hydrogen bond. Regarding R487, URAT1-R487A exhibited a loss of activity. Interestingly, the URAT1-H142A/R487A double mutant restored UA transport activity, with the value of dotinurad for the mutant (388 nM) significantly higher than that for H142A (73.5 nM). These results demonstrate that H142 and R487 of URAT1 determine its selectivity for dotinurad, a uniqueness observed only in URAT1 among UA-transporting OATs. SIGNIFICANCE STATEMENT: Dotinurad selectively inhibits the urate reabsorption transporter URAT1 in renal urate-transporting organic ion transporters (OATs). This study demonstrates that dotinurad interacts with H142 and R487 of URAT1, located in the extracellular domain and unique among OATs when aligning amino acid sequences. Mutations in these residues reduce affinity of dotinurad for URAT1, confirming their role in conferring selective inhibition. Additionally, the interaction between dotinurad and URAT1 involving H142 is found to mediate hydrogen bonding.

摘要

多替拉韦是一种促进尿酸排泄的药物,通过肾脏中的尿酸转运蛋白 URAT1 抑制尿酸 (UA) 的重吸收。由于它对肾脏 UA 转运蛋白中的 URAT1 具有高度选择性,我们通过鉴定特定于 URAT1 的多替拉韦结合位点来研究这种选择性的机制。使用 AutoDock4 将多替拉韦对接至使用 AlphaFold2 预测结构的 URAT1。通过在卵母细胞中进行 URAT1 介导的 [C]UA 摄取来评估多替拉韦在预测结合位点对野生型和突变型 URAT1 的抑制作用。在 URAT1 中鉴定出九个氨基酸残基作为多替拉韦结合位点。与 UA 转运有机阴离子转运体 (OAT) 的序列比对表明,在肾脏 UA 转运 OAT 中,H142 和 R487 是 URAT1 所特有的。对于 H142,与野生型相比,突变型 URAT1 (H142A、H142E 和 H142R) 的多替拉韦 值分别增加到 62、55 和 76 nM,表明 H142 有助于 URAT1 与多替拉韦的选择性相互作用。预测 H142 与多替拉韦的苯羟基相互作用。苯羟基甲基化的多替拉韦 (F13141) 的 为 165 M,比多替拉韦高 8420 倍,表明 H142 和苯羟基通过形成氢键相互作用。关于 R487,URAT1-R487A 表现出活性丧失。有趣的是,URAT1-H142A/R487A 双突变体恢复了 UA 转运活性,突变体的多替拉韦 值 (388 nM) 明显高于 H142A (73.5 nM)。这些结果表明,URAT1 的 H142 和 R487 决定了它对多替拉韦的选择性,这是 UA 转运 OAT 中仅在 URAT1 中观察到的独特性。意义陈述:多替拉韦选择性抑制肾脏尿酸转运有机离子转运体 (OAT) 中的尿酸重吸收转运蛋白 URAT1。本研究表明,多替拉韦与 URAT1 的 H142 和 R487 相互作用,这些氨基酸残基位于细胞外结构域中,在与氨基酸序列对齐时在 OAT 中是独特的。这些残基的突变降低了多替拉韦与 URAT1 的亲和力,证实了它们在赋予选择性抑制中的作用。此外,发现多替拉韦与 URAT1 之间涉及 H142 的相互作用介导氢键。

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