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Mechanism of autocatalytic oxidation of oxyhemoglobin by nitrite.

机译:亚硝酸盐自动催化氧化氧合血红蛋白的机理。

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摘要

Oxidation of oxyhemoglobin by nitrite is characterized by the presence of a lag phase followed by autocatalysis. The stoichiometry of the overall reaction is described by the following equation: 4HbO2 + 4NO2- + 4H+ = 4Hb+ + 4NO3- + O2 + 2H2O (Hb denotes hemoglobin monomer). During the oxidation, we detected a free radical at g = 2.005, which is very similar to the methemoglobin free radical generated by the reaction with hydrogen peroxide. Nitrosylhemoglobin was not detected. The oxidation was delayed by the addition of KCN or catalase, but was not modified by superoxide dismutase in phosphate buffer. In bistris buffer, however, superoxide dimutase markedly prolonged the lag phase. The results suggest that during the oxidation, the methemoglobin peroxide compound is generated and converts nitrite into nitrogen dioxide by its peroxidatic activity. Nitrogen dioxide oxidizes oxyhemoglobin to methemoglobin and nitrite, yielding the autocatalytic phase.
机译:亚硝酸盐氧化氧合血红蛋白的特征在于存在滞后相,然后进行自催化。整个反应的化学计量由以下方程式描述:4HbO2 + 4NO2- + 4H + = 4Hb + + 4NO3- + O2 + 2H2O(Hb表示血红蛋白单体)。在氧化过程中,我们检测到一个在g = 2.005处的自由基,该自由基与通过与过氧化氢反应生成的高铁血红蛋白自由基非常相似。未检测到亚硝基血红蛋白。通过添加KCN或过氧化氢酶可延迟氧化,但在磷酸盐缓冲液中不会被超氧化物歧化酶修饰。但是,在bistris缓冲液中,超氧化物歧化酶显着延长了延迟期。结果表明,在氧化过程中会生成过氧化高铁血红蛋白化合物,并通过其过氧化活性将亚硝酸盐转化为二氧化氮。二氧化氮将氧合血红蛋白氧化为高铁血红蛋白和亚硝酸盐,产生自催化相。

著录项

  • 作者

    Kosaka, H; Tyuma, I;

  • 作者单位
  • 年度 1987
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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