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酵母葡萄糖转运蛋白Hxt2跨膜片段中的八个氨基酸残基是高亲和力转运所必需的。

Eight amino acid residues in transmembrane segments of yeast glucose transporter Hxt2 are required for high affinity transport.

作者信息

Kasahara Toshiko, Ishiguro Masaji, Kasahara Michihiro

机构信息

Laboratory of Biophysics, School of Medicine, Teikyo University, Hachioji, Tokyo 192-0395, Japan.

出版信息

J Biol Chem. 2006 Jul 7;281(27):18532-8. doi: 10.1074/jbc.M602123200. Epub 2006 Apr 24.

Abstract

Hxt2 and Hxt1 are high affinity and low affinity facilitative glucose transporter paralogs of Saccharomyces cerevisiae, respectively, that differ at 75 amino acid positions in their 12 transmembrane segments (TMs). Comprehensive analysis of chimeras of these two proteins has previously revealed that TMs 1, 5, 7, and 8 of Hxt2 are required for high affinity glucose transport activity and that leucine 201 in TM5 is the most important in this regard of the 20 amino acid residues in these regions that differ between Hxt2 and Hxt1. To evaluate the importance of the remaining residues, we systematically shuffled the amino acids at these positions and screened the resulting proteins for high affinity and high capacity glucose transport activity. In addition to leucine 201 (TM5), four residues of Hxt2 (leucine 59 and leucine 61 in TM1, asparagine 331 in TM7, and phenylalanine 366 in TM8) were found to be important for such activity. Furthermore, phenylalanine 198 (TM5), alanine 363 (TM8), and either valine 316 (TM7) or alanine 368 (TM8) were found to be supportive of maximal activity. Construction of a homology model suggested that asparagine 331 interacts directly with the substrate and that the other identified residues may contribute to maintenance of protein conformation.

摘要

Hxt2和Hxt1分别是酿酒酵母的高亲和力和低亲和力易化葡萄糖转运体旁系同源物,它们在12个跨膜区段(TMs)的75个氨基酸位置上存在差异。此前对这两种蛋白质嵌合体的综合分析表明,Hxt2的TMs 1、5、7和8对于高亲和力葡萄糖转运活性是必需的,并且TM5中的亮氨酸201在Hxt2和Hxt1之间存在差异的这些区域的20个氨基酸残基中,在这方面是最重要的。为了评估其余残基的重要性,我们系统地对这些位置的氨基酸进行了洗牌,并筛选所得蛋白质的高亲和力和高容量葡萄糖转运活性。除了亮氨酸201(TM5)之外,还发现Hxt2的四个残基(TM1中的亮氨酸59和亮氨酸61、TM7中的天冬酰胺331以及TM8中的苯丙氨酸366)对于这种活性很重要。此外,还发现苯丙氨酸198(TM5)、丙氨酸363(TM8)以及缬氨酸316(TM7)或丙氨酸368(TM8)有助于最大活性。同源模型的构建表明,天冬酰胺331直接与底物相互作用,并且其他鉴定出的残基可能有助于维持蛋白质构象。

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