Kocha T, Yamaguchi M, Ohtaki H, Fukuda T, Aoyagi T
Department of Hygienic Chemistry, Showa College of Pharmaceutical Sciences, Tokyo, Japan.
Biochim Biophys Acta. 1997 Feb 8;1337(2):319-26. doi: 10.1016/s0167-4838(96)00180-x.
Cupric ions (Cu2+) added to hydrogen peroxide (H2O2) were found to generate hydroxyl radicals (HO) capable of benzoate hydroxylation. Although ferrous (Fe2+) and ferric (Fe3+) ions, when added to H2O2, resulted in very little production of HO, the addition of EDTA to the reaction mixture markedly increased their catalytic activity. In the absence of albumin, catalase (a H2O2 scavenger) and mannitol (an HO radical scavenger) effectively inhibited the formation of HO in H2O2/Cu2+ and H2O2/Fe2+/EDTA oxidation systems. On analysis using SDS-polyacrylamide gel electrophoresis, catalase was shown to prevent the degradation of albumin by both oxidation systems, whereas mannitol was an effective scavenger of the H2O2/Fe2+/EDTA oxidation system but not of the H2O2/Cu2+ oxidation system. Furthermore, the effect of alteration of benzoate hydroxylation and H2O2 consumption on the H2O2/Cu2+ and H2O2/Fe2+/EDTA oxidation systems resulted in opposite behavior that was dependent upon the presence or absence of albumin. These observations suggest that copper ions bind to albumin and induce site-specific degradation by HO generated at the copper-binding site, whereas the Fe2+/EDTA-catalyzed oxidation system induces non-specific degradation of albumin by HO generated by the Fenton reaction between H2O2 and free Fe2+/EDTA in solution.
研究发现,向过氧化氢(H₂O₂)中添加铜离子(Cu²⁺)会生成能够使苯甲酸羟化的羟基自由基(HO)。虽然向H₂O₂中添加亚铁离子(Fe²⁺)和铁离子(Fe³⁺)时,生成的HO极少,但向反应混合物中添加乙二胺四乙酸(EDTA)会显著提高它们的催化活性。在没有白蛋白的情况下,过氧化氢酶(一种H₂O₂清除剂)和甘露醇(一种HO自由基清除剂)可有效抑制H₂O₂/Cu²⁺和H₂O₂/Fe²⁺/EDTA氧化体系中HO的形成。通过十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳分析表明,过氧化氢酶可防止两种氧化体系对白蛋白的降解,而甘露醇是H₂O₂/Fe²⁺/EDTA氧化体系的有效清除剂,但不是H₂O₂/Cu²⁺氧化体系的有效清除剂。此外,苯甲酸羟化和H₂O₂消耗的改变对H₂O₂/Cu²⁺和H₂O₂/Fe²⁺/EDTA氧化体系的影响导致了相反的行为,这取决于白蛋白的存在与否。这些观察结果表明,铜离子与白蛋白结合并通过在铜结合位点产生的HO诱导位点特异性降解,而Fe²⁺/EDTA催化的氧化体系通过溶液中H₂O₂与游离Fe²⁺/EDTA之间的芬顿反应产生的HO诱导白蛋白的非特异性降解。