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Methods for Analysis of Protein Glutathionylation and their Application to Photosynthetic Organisms

机译:蛋白质谷胱甘肽化的分析方法及其在光合生物中的应用

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Protein S-glutathionylation, the reversible formation of a mixed-disulfide between glutathione and protein thiols, is involved in protection of protein cysteines from irreversible oxidation, but also in protein redox regulation. Recent studies have implicated S-glutathionylation as a cellular response to oxidativeitrosative stress, likely playing an important role in signaling. Considering the potential importance of glutathionylation, a number of methods have been developed for identifying proteins undergoing glutathionylation. These methods, ranging from analysis of purified proteins in vitro to large-scale proteomic analyses in vivo, allowed identification of nearly 200 targets in mammals. By contrast, the number of known glutathionylated proteins is more limited in photosynthetic organisms, although they are severely exposed to oxidative stress. The aim of this review is to detail the methods available for identification and analysis of glutathionylated proteins in vivo and in vitro. The advantages and drawbacks of each technique will be discussed as well as their application to photosynthetic organisms. Furthermore, an overview of known glutathionylated proteins in photosynthetic organisms is provided and the physiological importance of this post-translational modification is discussed.
机译:谷胱甘肽和蛋白质硫醇之间可逆形成的混合二硫键形式的蛋白质S-谷胱甘肽酰化涉及蛋白质半胱氨酸的不可逆氧化保护,也涉及蛋白质氧化还原调节。最近的研究表明S-谷胱甘肽酰化是细胞对氧化/亚硝化应激的反应,可能在信号传导中起重要作用。考虑到谷胱甘肽化的潜在重要性,已经开发出许多方法来鉴定正在进行谷胱甘肽化的蛋白质。这些方法,从体外纯化蛋白质分析到体内大规模蛋白质组分析,范围广泛,可鉴定哺乳动物中近200个靶标。相比之下,在光合生物中,已知谷胱甘肽化蛋白的数量受到更多限制,尽管它们严重暴露于氧化应激。这篇综述的目的是详细介绍可用于体内和体外谷胱甘肽酰化蛋白鉴定和分析的方法。将讨论每种技术的优缺点及其在光合生物中的应用。此外,提供了光合生物中已知的谷胱甘肽化蛋白的概述,并讨论了这种翻译后修饰的生理重要性。

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