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人类尿酸阴离子转运蛋白1对尿酸识别与转运的原子机制的结构见解

Structural Insights into the Atomistic Mechanisms of Uric Acid Recognition and Translocation of Human Urate Anion Transporter 1.

作者信息

Zhao Ze'an, Jiang Yu, Li Lu, Chen Yanyu, Li Yongmei, Lan Qunsheng, Wu Ting, Lin Cuiting, Cao Ying, Nandakumar Kutty Selva, Zhou Pingzheng, Tian Yuanxin, Pang Jianxin

机构信息

School of Pharmaceutical Sciences, Southern Medical University, 1838 North Guangzhou Avenue, Guangzhou, Guangdong 510515, China.

出版信息

ACS Omega. 2020 Dec 17;5(51):33421-33432. doi: 10.1021/acsomega.0c05360. eCollection 2020 Dec 29.

Abstract

: Human urate transporter 1 (hURAT1) is the most pivotal therapeutic target for treating hyperuricemia. However, the molecular interactions between uric acid and URAT1 are still unknown due to lack of structural details. : In the present study, several methods (homology modeling, sequence alignment, docking, and mutagenesis) were used to explain the atomistic mechanisms of uric acid transport of hURAT1. : Residues W357-F365 in the TMD7 and P484-R487 in the TMD11 present in the hURAT1 have unique roles in both binding to the uric acid and causing subsequent structural changes. These residues, located in the transport tunnel, were found to be related to the structural changes, as demonstrated by the reduced values and an unaltered expression of protein level. In addition, W357, G361, T363, F365, and R487 residues may confer high affinity for binding to uric acid. An outward-open homology model of hURAT1 revealed a crucial role for these two domains in the conformational changes of hURAT1. F241 and H245 in TMD5, and R477 and R487 in TMD11 may confer high affinity for uric acid, and as the docking analysis suggests, they may also enhance the affinity for the inhibitors. R477 relation to the structural changes was demonstrated by the values of the mutants and the contribution of positive charge to the uric acid selectivity. : W357-F365 in TMD7, P484-R487 in TMD11, and residues F241, H245, and R477 were found to be critical for the translocation and recognition of uric acid.

摘要

人尿酸转运蛋白1(hURAT1)是治疗高尿酸血症最关键的治疗靶点。然而,由于缺乏结构细节,尿酸与URAT1之间的分子相互作用仍不清楚。:在本研究中,使用了几种方法(同源建模、序列比对、对接和诱变)来解释hURAT1尿酸转运的原子机制。:hURAT1中TMD7的W357 - F365残基和TMD11的P484 - R487残基在结合尿酸和引起随后的结构变化中都具有独特作用。这些位于转运通道中的残基被发现与结构变化有关,这通过降低的值和蛋白质水平未改变的表达得以证明。此外,W357、G361、T363、F365和R487残基可能赋予与尿酸结合的高亲和力。hURAT1的外向开放同源模型揭示了这两个结构域在hURAT1构象变化中的关键作用。TMD5中的F241和H245以及TMD11中的R477和R487可能赋予对尿酸的高亲和力,并且如对接分析所示,它们也可能增强对抑制剂的亲和力。R477与结构变化的关系通过突变体的值和正电荷对尿酸选择性的贡献得以证明。:发现TMD7中的W357 - F365、TMD11中的P484 - R487以及F241、H245和R477残基对于尿酸的转运和识别至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd0d/7774290/13fcb5fb493c/ao0c05360_0002.jpg

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