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Sugar Binding Residue Affects Apparent Na+ Affinity and Transport Stoichiometry in Mouse Sodium/Glucose Cotransporter Type 3B

机译:糖结合残基影响小鼠钠/葡萄糖共转运蛋白3B型中的表观Na +亲和力和转运化学计量。

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摘要

SGLT1 is a sodium/glucose cotransporter that moves two Na+ ions with each glucose molecule per cycle. SGLT3 proteins belong to the same family and are described as glucose sensors rather than glucose transporters. Thus, human SGLT3 (hSGLT3) does not transport sugar, but extracellular glucose depolarizes the cell in which it is expressed. Mouse SGLT3b (mSGLT3b), although it transports sugar, has low apparent sugar affinity and partially uncoupled stoichiometry compared with SGLT1, suggesting that mSGLT3b is also a sugar sensor. The crystal structure of the Vibrio parahaemolyticus SGLT showed that residue Gln428 interacts directly with the sugar. The corresponding amino acid in mammalian proteins, 457, is conserved in all SGLT1 proteins as glutamine. In SGLT3 proteins, glutamate is the most common residue at this position, although it is a glycine in mSGLT3b and a serine in rat SGLT3b. To test the contribution of this residue to the function of SGLT3 proteins, we constructed SGLT3b mutants that recapitulate residue 457 in SGLT1 and hSGLT3, glutamine and glutamate, respectively. The presence of glutamine at residue 457 increased the apparent Na+ and sugar affinities, whereas glutamate decreased the apparent Na+ affinity. Moreover, glutamate transported more cations per sugar molecule than the wild type protein. We propose a model where cations are released intracellularly without the release of sugar from an intermediate state. This model explains the uncoupled charge:sugar transport phenotype observed in wild type and G457E-mSGLT3b compared with SGLT1 and the sugar-activated cation transport without sugar transport that occurs in hSGLT3.
机译:SGLT1是钠/葡萄糖共转运蛋白,每个循环中每个葡萄糖分子移动两个Na + 离子。 SGLT3蛋白属于同一家族,被称为葡萄糖传感器而不是葡萄糖转运蛋白。因此,人SGLT3(hSGLT3)不转运糖,但细胞外葡萄糖使表达它的细胞去极化。小鼠SGLT3b(mSGLT3b)虽然可以转运糖,但与SGLT1相比,表观糖亲和力低,化学计量部分不耦合,表明mSGLT3b还是糖传感器。副溶血弧菌SGLT的晶体结构表明残基Gln 428 与糖直接相互作用。哺乳动物蛋白中的相应氨基酸457在所有SGLT1蛋白中均以谷氨酰胺保守。在SGLT3蛋白中,谷氨酸是该位置最常见的残基,尽管它在mSGLT3b中是甘氨酸,在大鼠SGLT3b中是丝氨酸。为了测试此残基对SGLT3蛋白功能的贡献,我们构建了SGLT3b突变体,它们分别概括了SGLT1和hSGLT3,谷氨酰胺和谷氨酸的残基457。残基457上存在谷氨酰胺增加了表观Na + 和糖的亲和力,而谷氨酸降低了表观Na + 的亲和力。此外,与野生型蛋白质相比,谷氨酸每个糖分子转运更多的阳离子。我们提出了一种模型,其中阳离子在细胞内释放,而糖没有从中间状态释放。该模型解释了与SGLT1相比,在野生型和G457E-mSGLT3b中观察到的未耦合电荷:糖转运表型,以及在hSGLT3中发生的没有糖转运的糖活化阳离子转运。

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