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The HXT2 gene of Saccharomyces cerevisiae is required for high-affinity glucose transport.

机译:酿酒酵母的HXT2基因是高亲和力葡萄糖转运所必需的。

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摘要

The HXT2 gene of the yeast Saccharomyces cerevisiae was identified on the basis of its ability to complement the defect in glucose transport of a snf3 mutant when present on the multicopy plasmid pSC2. Analysis of the DNA sequence of HXT2 revealed an open reading frame of 541 codons, capable of encoding a protein of Mr 59,840. The predicted protein displayed high sequence and structural homology to a large family of procaryotic and eucaryotic sugar transporters. These proteins have 12 highly hydrophobic regions that could form transmembrane domains; the spacing of these putative transmembrane domains is also highly conserved. Several amino acid motifs characteristic of this sugar transporter family are also present in the HXT2 protein. An hxt2 null mutant strain lacked a significant component of high-affinity glucose transport when under derepressing (low-glucose) conditions. However, the hxt2 null mutation did not incur a major growth defect on glucose-containing media. Genetic and biochemical analyses suggest that wild-type levels of high-affinity glucose transport require the products of both the HXT2 and SNF3 genes; these genes are not linked. Low-stringency Southern blot analysis revealed a number of other sequences that cross-hybridize with HXT2, suggesting that S. cerevisiae possesses a large family of sugar transporter genes.
机译:酵母酿酒酵母的HXT2基因是根据其补充多拷贝质粒pSC2上snf3突变体葡萄糖转运缺陷的能力而鉴定的。对HXT2 DNA序列的分析表明,该酶具有541个密码子的开放阅读框,能够编码59,840先生的蛋白质。预测的蛋白质显示出与大范围的原核和真核糖转运蛋白的高序列和结构同源性。这些蛋白质有12个高度疏水的区域,可以形成跨膜结构域。这些推定的跨膜结构域的间隔也高度保守。 HXT2蛋白中也存在该糖转运蛋白家族的几个氨基酸基序。在解除抑制(低葡萄糖)条件下,hxt2无效突变株缺乏高亲和力葡萄糖转运的重要成分。但是,hxt2无效突变不会在含葡萄糖的培养基上引起主要的生长缺陷。遗传和生化分析表明,高亲和力葡萄糖转运的野生型水平需要HXT2和SNF3基因的产物。这些基因没有联系。低严格性Southern印迹分析揭示了许多其他与HXT2交叉杂交的序列,表明酿酒酵母拥有大量糖转运蛋白基因家族。

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