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RAS/腺苷酸环化酶途径改变的酵母突变体中海藻糖含量与耐热性的相关性:海藻糖是一种热保护剂吗?

Correlation of trehalose content and heat resistance in yeast mutants altered in the RAS/adenylate cyclase pathway: is trehalose a thermoprotectant?

作者信息

Hottiger T, Boller T, Wiemken A

机构信息

Department of Botany, University of Basel, Switzerland.

出版信息

FEBS Lett. 1989 Sep 25;255(2):431-4. doi: 10.1016/0014-5793(89)81139-1.

Abstract

Trehalose content and thermotolerance were closely correlated in wild type yeast (Saccharomyces cerevisiae) and in cyr1-2 and bcy1-1 mutants both during exponential growth at 27 degrees C and during heat shock at 40 degrees C. Trehalose levels were high when heat shock proteins (hsps) were expected to be induced and low when hsps were presumably absent. It was tried to uncouple trehalose biosynthesis and hsp-induction. Various non-heat stresses affected trehalose levels of wild type cells in a similar way as they would have affected hsps. However, no trehalose was accumulated when cells were treated with canavanine, a well-known inducer of hsps but not of the thermotolerant state.

摘要

在野生型酵母(酿酒酵母)以及cyr1-2和bcy1-1突变体中,无论是在27℃指数生长期间还是在40℃热激期间,海藻糖含量与耐热性都密切相关。当预期热激蛋白(hsps)被诱导时,海藻糖水平较高;而当推测热激蛋白不存在时,海藻糖水平较低。人们试图使海藻糖生物合成与热激蛋白诱导解偶联。各种非热应激对野生型细胞海藻糖水平的影响方式,与它们对热激蛋白的影响方式相似。然而,当用刀豆氨酸处理细胞时,没有积累海藻糖,刀豆氨酸是一种众所周知的热激蛋白诱导剂,但不是耐热状态的诱导剂。

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