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Glycerol accumulation in the dimorphic yeast Saccharomycopsis fibuligera: cloning of two glycerol 3-phosphate dehydrogenase genes, one of which is markedly induced by osmotic stress.

机译:甘油在双形酵母腓肠杆菌中的积累:克隆了两个3-磷酸甘油脱氢酶基因,其中之一明显受到渗透胁迫的诱导。

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Glycerol plays an important role in the osmoadaptation responses of Saccharomyces cerevisiae. However, there is no detailed investigation about the role of glycerol in the osmoadaptation responses of Saccharomycopsis fibuligera. Here we show that both intra- and extracellular glycerol concentrations in Sm. fibuligera cells responded very quickly when they were subjected to osmotic stress. We then cloned two isogenes encoding putative NAD(+)-dependent glycerol 3-phosphate dehydrogenase (GPD) from Sm. fibuligera PD70 by degenerate PCR and subsequent chromosome walking methods. Those two genes, designated SfGPD1 and SfGPD2, respectively, exhibited 86.6% pairwise identity in their encoding regions, while there was no obvious homology in their non-coding regions. Either SfGPD1 or SfGPD2 could complement the salt tolerance characteristics of the gpd1gpd2 double mutant strain of S. cerevisiae, further demonstrating that both of those genes are functional homologues of S. cerevisiae GPD1 and GPD2. Northern blot analysis revealed that SfGPD1 was induced markedly by osmotic stress, while SfGPD2 was not. In consistency with the observation that there was no obvious glycerol content change when the cells were transferred to anoxic conditions, neither SfGPD1 nor SfGPD2 was induced when the cells were transferred to anoxic conditions, thus suggesting a functional splitting of glycerol 3-phosphate dehydrogenase between S. cerevisiae and Sm. fibuligera.
机译:甘油在酿酒酵母的渗透适应反应中起重要作用。然而,没有关于甘油在腓肠酵母菌渗透适应反应中的作用的详细研究。在这里,我们显示了Sm中细胞内和细胞外甘油的浓度。腓肠细胞受到渗透压时反应非常快。然后,我们从Sm克隆了两个假定的编码NAD(+)依赖性甘油3-磷酸甘油脱氢酶(GPD)的同工酶。简并PCR和随后的染色体步移方法检测腓肠PD70。这两个基因分别命名为SfGPD1和SfGPD2,在其编码区中表现出86.6%的成对同一性,而在它们的非编码区中则没有明显的同源性。 SfGPD1或SfGPD2都可以补充酿酒酵母gpd1gpd2双突变株的耐盐性,进一步证明这两个基因都是酿酒酵母GPD1和GPD2的功能同源物。 Northern印迹分析显示,SfGPD1明显受渗透压诱导,而SfGPD2则不受。与将细胞转移到缺氧条件下甘油含量没有明显变化的观察结果一致,当将细胞转移到缺氧条件下时,SfGPD1和SfGPD2均未被诱导,因此表明甘油3-磷酸脱氢酶在S之间有功能性分裂。啤酒和Sm。腓肠草。

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