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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Identification of a key residue determining substrate affinity in the human glucose transporter GLUT1.
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Identification of a key residue determining substrate affinity in the human glucose transporter GLUT1.

机译:鉴定关键残基以确定人类葡萄糖转运蛋白GLUT1中的底物亲和力。

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摘要

Asn(331) in transmembrane segment 7 of the yeast Saccharomyces cerevisiae transporter Hxt2 has been identified as a single key residue for high-affinity glucose transport by comprehensive chimera approach. The glucose transporter GLUT1 of mammals belongs to the same major facilitator superfamily as Hxt2 and may therefore show a similar mechanism of substrate recognition. The functional role of Ile(287) in human GLUT1, which corresponds to Asn(331) in Hxt2, was studied by its replacement with each of the other 19 amino acids. The mutant transporters were individually expressed in a recently developed yeast expression system for GLUT1. Replacement of Ile(287) generated transporters with various affinities for glucose that correlated well with those of the corresponding mutants of the yeast transporter. Residues exhibiting high affinity for glucose were medium-sized, non-aromatic, uncharged and irrelevant to hydrogen-bond capability, suggesting an important role of van der Waals interaction. Sensitivity to phloretin, a specific inhibitor for the presumed exofacial glucose binding site, was decreased in two mutants, whereas that to cytochalasin B, a specific inhibitor for the presumed endofacial glucose binding site, was unchanged in the mutants. These results suggest that Ile(287) is a key residue for maintaining high glucose affinity in GLUT1 as revealed in Hxt2 and is located at or near the exofacial glucose binding site.
机译:酵母酿酒酵母转运蛋白Hxt2跨膜片段7中的Asn(331)已被鉴定为通过全面的嵌合体方法进行高亲和力葡萄糖转运的单个关键残基。哺乳动物的葡萄糖转运蛋白GLUT1与Hxt2属于同一主要促进子超家族,因此可能显示相似的底物识别机制。通过将其替换为其他19个氨基酸,研究了Ile(287)在人GLUT1中的功能作用,该功能对应于Hxt2中的Asn(331)。突变体转运蛋白在最近开发的GLUT1酵母表达系统中单独表达。替换Ile(287)可以生成具有各种亲和力的葡萄糖转运蛋白,这些亲和力与酵母转运蛋白的相应突变体的亲和性很好。对葡萄糖表现出高亲和力的残基是中等大小,无芳香,不带电荷且与氢键能力无关,表明范德华相互作用的重要作用。在两个突变体中,对phloretin(一种推测的面颊葡萄糖结合位点的特异性抑制剂)的敏感性降低,而对突变体中对chachalasin B(一种对假定的界面葡萄糖结合位点的特异性抑制剂)的敏感性不变。这些结果表明,Ile(287)是在GLUT1中保持高葡萄糖亲和力的关键残基,如Hxt2中所揭示的那样,并且位于面部外葡萄糖结合位点或附近。

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