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Molecular Analysis of Maltotriose Active Transport and Fermentation by Saccharomyces cerevisiae Reveals a Determinant Role for the AGT1 Permease

机译:酿酒酵母的麦芽三糖主动运输和发酵的分子分析揭示了AGT1通透酶的决定性作用。

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摘要

Incomplete and/or sluggish maltotriose fermentation causes both quality and economic problems in the ale-brewing industry. Although it has been proposed previously that the sugar uptake must be responsible for these undesirable phenotypes, there have been conflicting reports on whether all the known α-glucoside transporters in Saccharomyces cerevisiae (MALx1, AGT1, and MPH2 and MPH3 transporters) allow efficient maltotriose utilization by yeast cells. We characterized the kinetics of yeast cell growth, sugar consumption, and ethanol production during maltose or maltotriose utilization by several S. cerevisiae yeast strains (both MAL constitutive and MAL inducible) and by their isogenic counterparts with specific deletions of the AGT1 gene. Our results clearly showed that yeast strains carrying functional permeases encoded by the MAL21, MAL31, and/or MAL41 gene in their plasma membranes were unable to utilize maltotriose. While both high- and low-affinity transport activities were responsible for maltose uptake from the medium, in the case of maltotriose, the only low-affinity (Km, 36 ± 2 mM) transport activity was mediated by the AGT1 permease. In conclusion, the AGT1 transporter is required for efficient maltotriose fermentation by S. cerevisiae yeasts, highlighting the importance of this permease for breeding and/or selection programs aimed at improving sluggish maltotriose fermentations.
机译:麦芽三糖发酵的不完全和/或缓慢,在牧草业中引起质量和经济问题。尽管以前已经提出糖摄取必须是这些不良表型的原因,但是关于酿酒酵母中所有已知的α-糖苷转运蛋白(MALx1,AGT1,MPH2和MPH3转运蛋白)是否都允许有效利用麦芽三糖的报道相互矛盾。通过酵母细胞。我们表征了酵母细胞生长,糖消耗和麦芽糖或麦芽三糖利用期间由几个酿酒酵母酵母菌株(MAL组成型和MAL诱导型)和其同基因对应物与AGT1基因的特定缺失的乙醇生产的动力学。我们的结果清楚地表明,在其质膜上携带由MAL21,MAL31和/或MAL41基因编码的功能性渗透酶的酵母菌株无法利用麦芽三糖。虽然高亲和力和低亲和力的转运活动均是从培养基中摄取麦芽糖的原因,但对于麦芽三糖,唯一的低亲和力(Km,36±2 mM)转运活性是由AGT1渗透酶介导的。总之,酿酒酵母对麦芽三糖的有效发酵需要AGT1转运蛋白,这突显了这种通透酶对于旨在改善麦芽三糖发酵缓慢的育种和/或选择程序的重要性。

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