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Analysis of Methionine/Selenomethionine Oxidation and Methionine Sulfoxide Reductase Function Using Methionine-Rich Proteins and Antibodies against Their Oxidized Forms

机译:使用富含蛋氨酸的蛋白质和抗氧化形式的抗体对蛋氨酸/硒蛋氨酸氧化和蛋氨酸亚砜还原酶功能进行分析

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摘要

Methionine (Met) residues are present in most proteins. However, this sulfur-containing amino acid is highly susceptible to oxidation. In cells, the resulting Met sulfoxides are reduced back to Met by stereospecific reductases MsrA and MsrB. Reversible Met oxidation occurs even in the absence of stress, is elevated during aging and disease, but is notoriously difficult to monitor. In this work, we computationally identified natural Met-rich proteins (MRPs) and characterized three such proteins containing 21–33% Met residues. Oxidation of multiple Met residues in MRPs with H2O2 and reduction of Met sulfoxides with MsrA/MsrB dramatically influenced the mobility of these proteins on polyacrylamide gels and could be monitored by simple SDS–PAGE. We further prepared antibodies enriched for reduced and Met sulfoxide forms of these proteins and used them to monitor Met oxidation and reduction by immunoblot assays. We describe applications of these reagents for the analysis of MsrA and MsrB functions, as well as the development of the assay for high-throughput analysis of their activities. We also show that all Met sulfoxide residues in an MRP can be reduced by MsrA and MsrB. Furthermore, we prepared a selenomethionine form of an MRP and found that selenomethionine selenoxide residues can be efficiently reduced nonenzymatically by glutathione and other thiol compounds. Selenomethionine selenoxide residues were not recognized by antibodies specific for the Met sulfoxide form of an MRP. These findings, reagents, assays, and approaches should facilitate research and applications in the area of Met sulfoxide reduction, oxidative stress, and aging.
机译:大多数蛋白质中都存在蛋氨酸(Met)残基。但是,该含硫氨基酸高度易被氧化。在细胞中,生成的Met亚砜通过立体特异性还原酶MsrA和MsrB还原成Met。即使在没有压力的情况下,可逆的Met氧化也会发生,在衰老和疾病期间会升高,但众所周知很难监测。在这项工作中,我们通过计算鉴定了富含Met的天然蛋白质(MRP),并鉴定了包含21-33%Met残基的三种此类蛋白质。用H2O2氧化MRP中多个Met残基,并用MsrA / MsrB还原Met亚砜,极大地影响了这些蛋白质在聚丙烯酰胺凝胶上的迁移率,可以通过简单的SDS-PAGE进行监测。我们进一步制备了富集了这些蛋白质的还原形式和Met亚砜形式的抗体,并将其用于通过免疫印迹分析监测Met氧化和还原。我们描述了这些试剂在MsrA和MsrB功能分析中的应用,以及对它们的活性进行高通量分析的测定方法的发展。我们还显示,MsrA和MsrB可以减少MRP中的所有Met亚砜残基。此外,我们制备了MRP的硒代蛋氨酸形式,发现谷胱甘肽和其他硫醇化合物可以有效地非酶促还原硒代蛋氨酸硒酸残基。 MRP亚砜形式的特异性抗体无法识别硒代蛋氨酸亚硒酸酯残基。这些发现,试剂,分析方法和方法应有助于降低亚甲氧基硫酸的代谢,氧化应激和衰老领域的研究和应用。

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