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不同环境胁迫下,酿酒酵母海藻糖积累的差异及其重要性。

Differential importance of trehalose accumulation in Saccharomyces cerevisiae in response to various environmental stresses.

机构信息

Department of Bioinformatic Engineering, Graduate School of Information Science and Technology, Osaka University, 1-5 Yamadaoka, Suita, Osaka 565-0871, Japan.

出版信息

J Biosci Bioeng. 2010 Mar;109(3):262-6. doi: 10.1016/j.jbiosc.2009.08.500. Epub 2009 Sep 29.

Abstract

Trehalose is believed to play an important role in stress tolerance in the yeast Saccharomyces cerevisiae. In this research, the responses to various environmental stresses, such as high ethanol concentration, heat, oxidative, and freezing stresses, were investigated in a strain with deletion of the NTH1, NTH2, and ATH1 genes encoding trehalases that are involved in trehalose degradation and the triple deletion strains overexpressing TPS1 or TPS2, both of which encode trehalose biosynthesis enzymes in S. cerevisiae. The contents of trehalose constitutively accumulated in the TPS1- and TPS2-overexpressing triple deletion strains were higher than that in the original triple deletion strain. High trehalose accumulation and growth activity were observed in the TPS2-overexpressing triple deletion strain after ethanol stress induction. The same was also observed in the triple deletion and the TPS1- and TPS2-overexpressing triple deletion strains after heat stress induction. In case of freezing stress, all the recombinant strains with high constitutive trehalose content showed high tolerance. However, in case of oxidative stress, trehalose accumulation could not make the yeast cells tolerant. Our results indicated that high trehalose accumulation can make yeast cells resistant to multiple stresses, but the importance of this accumulation before or after stress induction is varied depending on the type of stress.

摘要

海藻糖被认为在酵母酿酒酵母的应激耐受中发挥重要作用。在这项研究中,研究了缺失参与海藻糖降解的 NTH1、NTH2 和 ATH1 基因的菌株以及过表达海藻糖合成酶 TPS1 或 TPS2 的三重缺失菌株对各种环境应激的反应,如高乙醇浓度、热、氧化和冷冻应激。在 TPS1 和 TPS2 过表达的三重缺失菌株中,海藻糖的含量持续积累,高于原始三重缺失菌株。在乙醇应激诱导后,TPS2 过表达的三重缺失菌株中观察到高海藻糖积累和生长活性。在热应激诱导后,同样观察到三重缺失和 TPS1 和 TPS2 过表达的三重缺失菌株中也观察到了这一现象。在冷冻应激的情况下,所有具有高组成性海藻糖含量的重组菌株均表现出高耐受性。然而,在氧化应激的情况下,海藻糖的积累并不能使酵母细胞耐受。我们的结果表明,高海藻糖积累可以使酵母细胞耐受多种应激,但这种积累在应激诱导前后的重要性因应激类型而异。

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