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Assessing Glucose Uptake through the Yeast Hexose Transporter 1 (Hxt1)

机译:通过酵母己糖转运蛋白1(Hxt1)评估葡萄糖摄取

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摘要

The transport of glucose across the plasma membrane is mediated by members of the glucose transporter family. In this study, we investigated glucose uptake through the yeast hexose transporter 1 (Hxt1) by measuring incorporation of 2-NBDG, a non-metabolizable, fluorescent glucose analog, into the yeast Saccharomyces cerevisiae. We find that 2-NBDG is not incorporated into the hxt null strain lacking all glucose transporter genes and that this defect is rescued by expression of wild type Hxt1, but not of Hxt1 with mutations at the putative glucose-binding residues, inferred from the alignment of yeast and human glucose transporter sequences. Similarly, the growth defect of the hxt null strain on glucose is fully complemented by expression of wild type Hxt1, but not of the mutant Hxt1 proteins. Thus, 2-NBDG, like glucose, is likely to be transported into the yeast cells through the glucose transport system. Hxt1 is internalized and targeted to the vacuole for degradation in response to glucose starvation. Among the mutant Hxt1 proteins, Hxt1N370A and HXT1W473A are resistant to such degradation. Hxt1N370A, in particular, is able to neither uptake 2-NBDG nor restore the growth defect of the hxt null strain on glucose. These results demonstrate 2-NBDG as a fluorescent probe for glucose uptake in the yeast cells and identify N370 as a critical residue for the stability and function of Hxt1.
机译:葡萄糖跨质膜的转运是由葡萄糖转运蛋白家族的成员介导的。在这项研究中,我们通过测量2-NBDG(一种不可代谢的荧光葡萄糖类似物)掺入到酿酒酵母中,研究了通过酵母己糖转运蛋白1(Hxt1)摄取的葡萄糖。我们发现2-NBDG没有被整合到缺乏所有葡萄糖转运蛋白基因的hxt无效菌株中,并且该缺陷通过野生型Hxt1的表达得以挽救,但不是从Hxt1的表达中推定,该Hxt1在假定的葡萄糖结合残基处存在突变,可以从比对中推断出和人类葡萄糖转运蛋白序列的序列。同样,野生型Hxt1的表达完全弥补了hxt null株在葡萄糖上的生长缺陷,但突变型Hxt1蛋白却没有表达。因此,像葡萄糖一样,2-NBDG可能通过葡萄糖转运系统转运到酵母细胞中。 Hxt1被内化并靶向液泡,以响应葡萄糖饥饿而降解。在突变的Hxt1蛋白中,Hxt1 N370A 和HXT1 W473A 对这种降解具有抗性。特别是Hxt1 N370A 既不能摄取2-NBDG,也不能恢复hxt null菌株在葡萄糖上的生长缺陷。这些结果表明2-NBDG作为酵母细胞中葡萄糖摄取的荧光探针,并将N370鉴定为Hxt1稳定性和功能的关键残基。

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