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具有活性氧清除和分子伴侣样活性的水稻 ASR1 蛋白增强酿酒酵母对非生物胁迫的获得性耐受。

Rice ASR1 protein with reactive oxygen species scavenging and chaperone-like activities enhances acquired tolerance to abiotic stresses in Saccharomyces cerevisiae.

机构信息

Department of Biology, Kyungpook National University, Daegu 702-701, Korea.

出版信息

Mol Cells. 2012 Mar;33(3):285-93. doi: 10.1007/s10059-012-2253-x. Epub 2012 Feb 28.

Abstract

Abscisic acid stress ripening (ASR1) protein is a small hydrophilic, low molecular weight, and stress-specific plant protein. The gene coding region of ASR1 protein, which is induced under high salinity in rice (Oryza sativa Ilmi), was cloned into a yeast expression vector pVTU260 and transformed into yeast cells. Heterologous expression of ASR1 protein in transgenic yeast cells improved tolerance to abiotic stresses including hydrogen peroxide (H(2)O(2)), high salinity (NaCl), heat shock, menadione, copper sulfate, sulfuric acid, lactic acid, salicylic acid, and also high concentration of ethanol. In particular, the expression of metabolic enzymes (Fba1p, Pgk1p, Eno2p, Tpi1p, and Adh1p), antioxidant enzyme (Ahp1p), molecular chaperone (Ssb1p), and pyrimidine biosynthesis-related enzyme (Ura1p) was up-regulated in the transgenic yeast cells under oxidative stress when compared with wild-type cells. All of these enzymes contribute to an alleviated redox state to H2O2-induced oxidative stress. In the in vitro assay, the purified ASR1 protein was able to scavenge ROS by converting H(2)O(2) to H(2)O. Taken together, these results suggest that the ASR1 protein could function as an effective ROS scavenger and its expression could enhance acquired tolerance of ROS-induced oxidative stress through induction of various cell rescue proteins in yeast cells.

摘要

脱落酸胁迫成熟(ASR1)蛋白是一种小的亲水性、低分子量和应激特异性植物蛋白。在水稻(Oryza sativa Ilmi)中高盐诱导的 ASR1 蛋白的基因编码区被克隆到酵母表达载体 pVTU260 中,并转化到酵母细胞中。ASR1 蛋白在转基因酵母细胞中的异源表达提高了对包括过氧化氢(H2O2)、高盐(NaCl)、热休克、甲萘醌、硫酸铜、硫酸、乳酸、水杨酸和高浓度乙醇在内的非生物胁迫的耐受性。特别是,在氧化应激下,与野生型细胞相比,代谢酶(Fba1p、Pgk1p、Eno2p、Tpi1p 和 Adh1p)、抗氧化酶(Ahp1p)、分子伴侣(Ssb1p)和嘧啶生物合成相关酶(Ura1p)的表达在转基因酵母细胞中上调。所有这些酶都有助于减轻 H2O2 诱导的氧化应激的氧化还原状态。在体外试验中,纯化的 ASR1 蛋白能够通过将 H2O2 转化为 H2O 来清除 ROS。总之,这些结果表明,ASR1 蛋白可以作为一种有效的 ROS 清除剂,其表达可以通过诱导酵母细胞中各种细胞保护蛋白来增强对 ROS 诱导的氧化应激的获得性耐受性。

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