Covalent binding of bleomycin to concanavalin A and immunoglobulin G enhances the ability of the bleomycin-Fe(II) complex to destroy the erythrocyte membrane.

Biomedical science Pub Date : 1991-01-01
A I Voznesenskii, Galanova YuV, A I Archakov
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Abstract

The antibiotic bleomycin was examined as a possible component of hybrid molecules composed of an address fragment and a generator of reactive oxygen species. The bleomycin-Fe(II) complex was found to destroy the erythrocyte membrane by generating reactive oxygen. The ability of antioxidants to slow down haemolysis points to a free-radical mechanism for this process. The protective effects of catalase and superoxide dismutase indicate that hydrogen peroxide and the superoxide radical formed on autoxidation of the complex are essential for membrane damage. Haemolytic activity is also exhibited by bleomycin-Fe(III) reduced in the NADPH-cytochrome P450 reductase reaction. The covalent binding of bleomycin to such address molecules as concanavalin A and antierythrocyte immunoglobulin G enhances the ability of the bleomycin-Fe(II) complex to destroy the plasma membrane of erythrocytes.

博来霉素与豆豆蛋白A和免疫球蛋白G的共价结合增强了博来霉素-铁(II)复合物破坏红细胞膜的能力。
研究了抗生素博来霉素作为由地址片段和活性氧产生器组成的杂化分子的可能组分。发现博莱霉素-铁(II)配合物通过产生活性氧破坏红细胞膜。抗氧化剂减缓溶血的能力指出了这一过程的自由基机制。过氧化氢酶和超氧化物歧化酶的保护作用表明,过氧化氢和自氧化形成的超氧化物自由基对膜损伤是必不可少的。在nadph -细胞色素P450还原酶反应中,博莱霉素-铁(III)也表现出溶血活性。博来霉素与角蛋白A和抗红细胞免疫球蛋白G等寻址分子的共价结合增强了博来霉素-铁(II)复合物破坏红细胞质膜的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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