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Expression, Purification, and Structural Insights for the Human Uric Acid Transporter, GLUT9, Using the Xenopus laevis Oocytes System

机译:使用非洲爪蟾卵母细胞系统对人类尿酸转运蛋白GLUT9的表达,纯化和结构见解

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摘要

The urate transporter, GLUT9, is responsible for the basolateral transport of urate in the proximal tubule of human kidneys and in the placenta, playing a central role in uric acid homeostasis. GLUT9 shares the least homology with other members of the glucose transporter family, especially with the glucose transporting members GLUT1-4 and is the only member of the GLUT family to transport urate. The recently published high-resolution structure of XylE, a bacterial D-xylose transporting homologue, yields new insights into the structural foundation of this GLUT family of proteins. While this represents a huge milestone, it is unclear if human GLUT9 can benefit from this advancement through subsequent structural based targeting and mutagenesis. Little progress has been made toward understanding the mechanism of GLUT9 since its discovery in 2000. Before work can begin on resolving the mechanisms of urate transport we must determine methods to express, purify and analyze hGLUT9 using a model system adept in expressing human membrane proteins. Here, we describe the surface expression, purification and isolation of monomeric protein, and functional analysis of recombinant hGLUT9 using the Xenopus laevis oocyte system. In addition, we generated a new homology-based high-resolution model of hGLUT9 from the XylE crystal structure and utilized our purified protein to generate a low-resolution single particle reconstruction. Interestingly, we demonstrate that the functional protein extracted from the Xenopus system fits well with the homology-based model allowing us to generate the predicted urate-binding pocket and pave a path for subsequent mutagenesis and structure-function studies.
机译:尿酸盐转运蛋白GLUT9负责尿酸在人肾近端小管和胎盘中的基底外侧转运,在尿酸体内平衡中起重要作用。 GLUT9与葡萄糖转运蛋白家族的其他成员,特别是与葡萄糖转运蛋白GLUT1-4的同源性最低,并且是GLUT家族中唯一可转运尿酸盐的成员。 XylE(一种细菌D-木糖转运同源物)的最新高分辨率结构对GLUT蛋白家族的结构基础产生了新的见解。虽然这是一个巨大的里程碑,但尚不清楚人类GLUT9是否可以通过随后的基于结构的靶向和诱变而受益于这一进展。自从2000年发现GLUT9以来,在了解GLUT9的机制方面进展甚微。在开始解决尿酸盐转运机制之前,我们必须确定一种表达模型,表达和纯化方法,并使用能表达人膜蛋白的模型系统分析hGLUT9。在这里,我们描述了使用非洲爪蟾卵母细胞系统的重组hGLUT9的表面表达,纯化和单体蛋白分离以及功能分析。此外,我们从XylE晶体结构生成了基于新的基于同源性的hGLUT9高分辨率模型,并利用我们纯化的蛋白质生成了低分辨率单颗粒重建体。有趣的是,我们证明了从非洲爪蟾属系统中提取的功能蛋白与基于同源性的模型非常吻合,这使我们能够生成预测的尿酸盐结合口袋,并为随后的诱变和结构功能研究铺平道路。

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