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小分子热休克蛋白Hsp12有助于酵母对冷冻胁迫的耐受性。

Small heat-shock protein Hsp12 contributes to yeast tolerance to freezing stress.

作者信息

Pacheco A, Pereira C, Almeida M J, Sousa M J

机构信息

CBMA (Centre of Molecular and Environmental Biology), Department of Biology, University of Minho, Campus of Gualtar, 4710-057 Braga, Portugal.

出版信息

Microbiology (Reading). 2009 Jun;155(Pt 6):2021-2028. doi: 10.1099/mic.0.025981-0. Epub 2009 Apr 21.

Abstract

The HSP12 gene encodes one of the two major small heat-shock proteins of Saccharomyces cerevisiae and is induced under different conditions, such as low and high temperatures, osmotic or oxidative stress and high sugar or ethanol concentrations. However, few studies could demonstrate any correlation between HSP12 deletion or overexpression and a phenotype of sensitivity/resistance, making it difficult to attribute a role for Hsp12p under several of these stress conditions. We investigated the possible role of Hsp12p in yeast freezing tolerance. Contrary to what would be expected, the hsp12 null mutant when subjected to prolonged storage at -20 degrees C showed an increased resistance to freezing when compared with the isogenic wild-type strain. Because the mutant strain displayed a higher intracellular trehalose concentration than the wild-type, which could mask the effect of manipulating HSP12, we overexpressed the HSP12 gene in a trehalose-6-phosphate synthase (TPS1) null mutant. The tps1Delta strain overexpressing HSP12 showed an increase in resistance to freezing storage, indicating that Hsp12p plays a role in freezing tolerance in a way that seems to be interchangeable with trehalose. In addition, we show that overexpression of HSP12 in this tps1Delta strain also increased resistance to heat shock and that absence of HSP12 compromises the ability of yeast cells to accumulate high levels of trehalose in response to a mild heat stress.

摘要

HSP12基因编码酿酒酵母两种主要的小热休克蛋白之一,在不同条件下被诱导表达,如低温和高温、渗透或氧化应激以及高糖或乙醇浓度。然而,很少有研究能够证明HSP12缺失或过表达与敏感/抗性表型之间存在任何关联,因此很难确定Hsp12p在这些应激条件中的作用。我们研究了Hsp12p在酵母耐冻性中的可能作用。与预期相反,hsp12基因缺失突变体在-20℃长期储存时,与同基因野生型菌株相比,显示出对冷冻的抗性增加。由于突变菌株的细胞内海藻糖浓度高于野生型,这可能掩盖操纵HSP12的效果,我们在海藻糖-6-磷酸合酶(TPS1)基因缺失突变体中过表达HSP12基因。过表达HSP12的tps1Δ菌株对冷冻储存的抗性增加,表明Hsp12p在耐冻性中发挥作用,其方式似乎与海藻糖可互换。此外,我们表明在该tps1Δ菌株中过表达HSP12也增加了对热休克的抗性,并且缺乏HSP12会损害酵母细胞在轻度热应激下积累高水平海藻糖的能力。

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