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The three trehalases Nth1p, Nth2p and Ath1p participate in the mobilization of intracellular trehalose required for recovery from saline stress in Saccharomyces cerevisiae

机译:NTH1P,NTH2P和ATH1P的三个海绵酶参与调动细胞内海藻糖所需的酿酒酵母群中的盐水胁迫所需的细胞内海藻糖

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Trehalose accumulation is a common response to several stresses in the yeast Saccharomyces cerevisiae. This metabolite protects proteins and membrane lipids from structural damage and helps cells to maintain integrity. Based on genetic studies, degradation of trehalose has been proposed as a required mechanism for growth recovery after stress, and the neutral trehalase Nth1p as the unique degradative activity involved. Here we constructed a collection of mutants for several trehalose metabolism and transport genes and analysed their growth and trehalose mobilization profiles during experiments of saline stress recovery. The behaviour of the triple Δnth1Δnth2Δath1 and quadruple Δnth1Δnth2Δath1Δagt1 mutant strains in these experiments demonstrates the participation of the three known yeast trehalases Nth1p, Nth2p and Ath1p in the mobilization of intracellular trehalose during growth recovery after saline stress, rules out the participation of the Agt1p H+-disaccharide symporter, and allows us to propose the existence of additional new mechanisms for trehalose mobilization after saline stress.
机译:海藻糖积累是对酵母酿酒酵母酿酒酵母的几种应力的共同应对。该代谢物保护蛋白质和膜脂质免受结构损伤,并有助于细胞保持完整性。基于遗传研究,已经提出了海藻糖的降解作为胁迫后生长恢复所需机制,中性海藻酶NTH1p作为所涉及的独特降解活性。在这里,我们构建了几种突变体的突变体,用于几种海藻糖代谢和运输基因,并在盐水应激恢复的实验期间分析它们的生长和海藻糖动员曲线。在这些实验中,三Δnth1Δnth2δath1和四重δnth1Δnth2δath1Δagt1突变菌株的行为证明了三个已知的酵母海藻酶Nth1p,nth2p和Ath1p在盐胁迫后生长回收过程中的细胞内海藻糖动员中的参与,排除了AgT1p H +的参与 - 二糖对称者,并允许我们提出盐水应激后海藻糖动员的额外新机制。

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