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海藻糖合成在酵母获得耐热性中的作用。I. 海藻糖是一种热保护剂的遗传学证据。

The role of trehalose synthesis for the acquisition of thermotolerance in yeast. I. Genetic evidence that trehalose is a thermoprotectant.

作者信息

De Virgilio C, Hottiger T, Dominguez J, Boller T, Wiemken A

机构信息

Botanisches Institut, Universität Basel, Switzerland.

出版信息

Eur J Biochem. 1994 Jan 15;219(1-2):179-86. doi: 10.1111/j.1432-1033.1994.tb19928.x.

Abstract

In the yeast Saccharomyces cerevisiae, accumulation of the non-reducing disaccharide trehalose is triggered by various stimuli that activate the heat-schock response. Several studies have shown a close correlation between trehalose levels and tolerance to heat stress, suggesting that trehalose may be a protectant which contributes to thermotolerance. In this study, we have examined mutants defective in genes coding for key enzymes involved in trehalose metabolism with respect to the heat-induced and stationary-phase-induced accumulation of trehalose and the acquisition of thermotolerance. Inactivation of either TPS1 or TPS2, encoding subunits of the trehalose-6-phosphate synthase/phosphatase complex, caused an inability to accumulate trehalose upon a mild heat-shock or upon initiation of the stationary phase and significantly reduced the levels of heat-induced and stationary-phase-induced thermotolerance. Deletion of NTH1, the gene coding for the neutral trehalase, resulted in a defect in trehalose mobilization during recovery from a heat shock which was paralleled by an abnormally slow decrease of thermotolerance. Our results provide strong genetic evidence that heat-induced synthesis of trehalose is an important factor for thermotolerance induction. In an accompanying study [Hottiger, T., De Virgilio, C., Hall, M. N., Boller, T. & Wiemken, A. (1993) Eur. J. Biochem. 219, 187-193], we present evidence that the function of heat-induced trehalose accumulation may be to increase the thermal stability of proteins.

摘要

在酿酒酵母中,非还原性二糖海藻糖的积累是由激活热休克反应的各种刺激引发的。多项研究表明,海藻糖水平与耐热性之间存在密切关联,这表明海藻糖可能是一种有助于耐热性的保护剂。在本研究中,我们检测了海藻糖代谢关键酶编码基因存在缺陷的突变体,观察其在热诱导和稳定期诱导下海藻糖的积累情况以及耐热性的获得情况。编码海藻糖 -6- 磷酸合酶 / 磷酸酶复合物亚基的 TPS1 或 TPS2 失活,导致在轻度热休克或进入稳定期时无法积累海藻糖,并显著降低热诱导和稳定期诱导的耐热性水平。编码中性海藻糖酶的基因 NTH1 的缺失,导致热休克恢复过程中海藻糖动员存在缺陷,同时耐热性异常缓慢下降。我们的结果提供了有力的遗传学证据,表明热诱导的海藻糖合成是诱导耐热性的重要因素。在一项相关研究中 [霍蒂格,T.,德·维尔吉利奥,C.,霍尔,M. N.,博勒,T. 和维姆肯,A.(1993 年)《欧洲生物化学杂志》219 卷,187 - 193 页],我们提供证据表明热诱导的海藻糖积累的功能可能是提高蛋白质的热稳定性。

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