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首页> 外文期刊>Redox Biology >Copper ion / H2O2 oxidation of Cu/Zn-Superoxide dismutase: Implications for enzymatic activity and antioxidant action
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Copper ion / H2O2 oxidation of Cu/Zn-Superoxide dismutase: Implications for enzymatic activity and antioxidant action

机译:Cu / Zn-超氧化物歧化酶的铜离子/ H2O2氧化:对酶活性和抗氧化作用的影响

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摘要

Copper ion-catalyzed oxidation of yeast SOD1 (ySOD1) was examined to determine early oxidative modifications, including oxidation of a crucial disulfide bond, and the structural and functional repercussions of these events. The study used distinct oxidative conditions: Cusup2+/sup/Hsub2/subOsub2/sub, Cusup2+/sup/Hsub2/subOsub2/sub/AscHsup?/sup and Cusup2+/sup/Hsub2/subOsub2/sub/glucose. Capillary electrophoresis experiments and quantification of protein carbonyls indicate that ySOD1 is highly susceptible to oxidative modification and that changes can be detected within 0.1?min of the initiation of the reaction. Oxidation-induced structural perturbations, characterized by circular dichroism, revealed the formation of partially-unfolded ySOD1 species in a dose-dependent manner. Consistent with these structural changes, pyrogallol assay indicates a partial loss of enzymatic activity. ESI-MS analyses showed seven distinct oxidized ySOD1 species under mild oxidation within 0.1?min. LC/MS analysis after proteolytic digestion demonstrated that the copper-coordinating active site histidine residues, His47 and His49, were converted into 2-oxo-histidine. Furthermore, the Cu and Zn bridging residue, His64 is converted into aspartate/asparagine. Importantly, the disulfide-bond Cys58-Cys147 which is critical for the structural and functional integrity of ySOD1 was detected as being oxidized at Cys147. We propose, based on LC/MS analyses, that disulfide-bond oxidation occurs without disulfide bond cleavage. Modifications were also detected at Met85 and five surface-exposed Lys residues. Based on these data we propose that the Cys58-Cys147 bond may act as a sacrificial target for oxidants and protect ySOD1 from oxidative inactivation arising from exposure to Cusup2+/sup/Hsub2/subOsub2/sub and auto-inactivation during extended enzymatic turnover.
机译:检查了铜离子催化的酵母SOD1(ySOD1)的氧化,以确定早期的氧化修饰,包括关键的二硫键的氧化以及这些事件的结构和功能影响。该研究使用了不同的氧化条件:Cu 2 + / H 2 O 2 ,Cu 2 + / H < sub> 2 O 2 / AscH ?和Cu 2 + / H 2 O 2 /葡萄糖。毛细管电泳实验和蛋白质羰基化合物的定量分析表明ySOD1对氧化修饰高度敏感,并且可以在反应开始后的0.1?min内检测到变化。氧化诱导的结构扰动(以圆二色性为特征)揭示了部分展开的ySOD1物种的形成具有剂量依赖性。与这些结构变化一致,邻苯三酚测定表明部分酶活性丧失。 ESI-MS分析表明,在0.1?min内的轻度氧化下,有7种不同的ySOD1被氧化。蛋白水解消化后的LC / MS分析表明,铜配位活性位点组氨酸残基His47和His49被转化为2-氧代组氨酸。此外,铜和锌的桥接残基His64被转化为天冬氨酸/天冬酰胺。重要的是,检测到对ySOD1的结构和功能完整性至关重要的二硫键Cys58-Cys147在Cys147处被氧化。我们建议基于LC / MS分析,二硫键氧化发生而没有二硫键裂解。还检测到Met85和五个表面暴露的Lys残基的修饰。根据这些数据,我们认为Cys58-Cys147键可作为氧化剂的牺牲目标,并保护ySOD1免受因暴露于Cu 2 + / H 2 而引起的氧化失活。 O 2 和酶失活延长过程中的自灭活。

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