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酿酒酵母中依赖谷胱甘肽过氧化物酶3的抗氧化应激反应。

Gpx3-dependent responses against oxidative stress in Saccharomyces cerevisiae.

作者信息

Kho Chang Won, Lee Phil Young, Bae Kwang-Hee, Kang Sunghyun, Cho Sayeon, Lee Do Hee, Sun Choong-Hyun, Yi Gwan-Su, Park Byoung Chul, Park Sung Goo

机构信息

Translational Research Center, KRIBB, Daejeon 806-333, Korea.

出版信息

J Microbiol Biotechnol. 2008 Feb;18(2):270-82.

PMID:18309271
Abstract

The yeast Saccharomyces cerevisiae has defense mechanisms identical to higher eukaryotes. It offers the potential for genome-wide experimental approaches owing to its smaller genome size and the availability of the complete sequence. It therefore represents an ideal eukaryotic model for studying cellular redox control and oxidative stress responses. S. cerevisiae Yap1 is a well-known transcription factor that is required for H2O2-dependent stress responses. Yap1 is involved in various signaling pathways in an oxidative stress response. The Gpx3 (Orp1/PHGpx3) protein is one of the factors related to these signaling pathways. It plays the role of a transducer that transfers the hydroperoxide signal to Yap1. In this study, using extensive proteomic and bioinformatics analyses, the function of the Gpx3 protein in an adaptive response against oxidative stress was investigated in wild-type, gpx3-deletion mutant, and gpx3-deletion mutant overexpressing Gpx3 protein strains. We identified 30 proteins that are related to the Gpx3- dependent oxidative stress responses and 17 proteins that are changed in a Gpx3-dependent manner regardless of oxidative stress. As expected, H2O2-responsive Gpx3-dependent proteins include a number of antioxidants related with cell rescue and defense. In addition, they contain a variety of proteins related to energy and carbohydrate metabolism, transcription, and protein fate. Based upon the experimental results, it is suggested that Gpx3-dependent stress adaptive response includes the regulation of genes related to the capacity to detoxify oxidants and repair oxidative stress-induced damages affected by Yap1 as well as metabolism and protein fate independent from Yap1.

摘要

酿酒酵母具有与高等真核生物相同的防御机制。由于其基因组较小且有完整序列,它为全基因组实验方法提供了潜力。因此,它是研究细胞氧化还原控制和氧化应激反应的理想真核模型。酿酒酵母Yap1是一种众所周知的转录因子,是过氧化氢依赖性应激反应所必需的。Yap1参与氧化应激反应中的各种信号通路。Gpx3(Orp1/PHGpx3)蛋白是与这些信号通路相关的因素之一。它起着将氢过氧化物信号传递给Yap1的转导器的作用。在本研究中,通过广泛的蛋白质组学和生物信息学分析,在野生型、gpx3缺失突变体和过表达Gpx3蛋白的gpx3缺失突变体菌株中研究了Gpx3蛋白在氧化应激适应性反应中的功能。我们鉴定出30种与Gpx3依赖性氧化应激反应相关的蛋白质和17种无论氧化应激如何都以Gpx3依赖性方式发生变化的蛋白质。正如预期的那样,过氧化氢反应性Gpx3依赖性蛋白质包括许多与细胞拯救和防御相关的抗氧化剂。此外,它们还包含与能量和碳水化合物代谢、转录以及蛋白质命运相关的各种蛋白质。基于实验结果,表明Gpx3依赖性应激适应性反应包括对与氧化剂解毒能力相关的基因的调控以及对受Yap1影响的氧化应激诱导损伤的修复,以及独立于Yap1的代谢和蛋白质命运。

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