Ye L, Berden J A, van Dam K, Kruckeberg A L
E.C. Slater Institute, The University of Amsterdam, Plantage Muidergracht 12, 1018 TV Amsterdam, The Netherlands.
Yeast. 2001 Sep 30;18(13):1257-67. doi: 10.1002/yea.771.
High-affinity hexose transport is required for efficient utilization of low hexose concentrations by the baker's yeast Saccharomyces cerevisiae. These low concentrations occur during the late exponential phase of batch growth on hexoses, during hexose-limited chemostat or fed-batch culture, or during growth on sugars such as sucrose and raffinose that are hydrolysed to hexoses outside the cell. The expression of the Hxt7 high-affinity glucose transporter of S. cerevisiae was examined during batch growth on glucose medium in a wild-type strain and a strain expressing only HXT7 (i.e. with null mutations in HXT1-HXT6). In the wild-type strain, HXT7 transcription was repressed at high glucose and was detected when the glucose in the culture approached depletion. In the HXT7-only strain, transcription of HXT7 was constitutive throughout the glucose growth phase and was increased further at low glucose concentrations. After glucose depletion, the levels of HXT7 mRNA declined rapidly in both strains. In contrast, the Hxt7 protein was relatively stable after glucose depletion. By monitoring the subcellular localization of an Hxt7::GFP fusion protein it was observed that Hxt7 was localized in the plasma membrane, even when expressed at high glucose concentrations in the HXT7-only strain. After glucose depletion Hxt7 was gradually endocytosed and targeted to the vacuole for degradation. The Hxt7::GFP fusion protein was a fully functional hexose transporter with a catalytic centre activity of approximately 200/sec. It is concluded that repression of HXT7 and degradation of Hxt7 at high glucose concentrations is dependent on a high glucose transport capacity.
面包酵母酿酒酵母高效利用低浓度己糖需要高亲和力的己糖转运。这些低浓度己糖出现在以己糖进行分批培养的指数生长后期、己糖限制恒化器或补料分批培养期间,或者在以蔗糖和棉子糖等在细胞外水解为己糖的糖类为碳源生长时。在野生型菌株和仅表达HXT7(即HXT1 - HXT6存在无效突变)的菌株中,研究了酿酒酵母Hxt7高亲和力葡萄糖转运蛋白在葡萄糖培养基分批培养过程中的表达情况。在野生型菌株中,HXT7转录在高葡萄糖浓度下受到抑制,当培养基中的葡萄糖接近耗尽时可检测到其转录。在仅表达HXT7的菌株中,HXT7转录在整个葡萄糖生长阶段都是组成型的,并且在低葡萄糖浓度下进一步增加。葡萄糖耗尽后,两种菌株中HXT7 mRNA水平均迅速下降。相比之下,葡萄糖耗尽后Hxt7蛋白相对稳定。通过监测Hxt7::GFP融合蛋白的亚细胞定位发现,即使在仅表达HXT7的菌株中高葡萄糖浓度下表达时,Hxt7也定位于质膜。葡萄糖耗尽后,Hxt7逐渐被内吞并靶向液泡进行降解。Hxt7::GFP融合蛋白是一种功能完全的己糖转运蛋白,催化中心活性约为200/秒。得出的结论是,高葡萄糖浓度下HXT7的抑制和Hxt7的降解依赖于高葡萄糖转运能力。