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轻度二酰胺氧化对人红细胞血影蛋白结构和功能的影响。

The effect of mild diamide oxidation on the structure and function of human erythrocyte spectrin.

作者信息

Becker P S, Cohen C M, Lux S E

出版信息

J Biol Chem. 1986 Apr 5;261(10):4620-8.

PMID:3957910
Abstract

Oxidants can alter erythrocyte membrane properties and cause ultimate hemolysis, but the mechanisms responsible for these changes are not understood. A protein skeleton preserves the normal integrity of the erythrocyte membrane. In this study, we investigated the effects of limited chemical oxidation on the structure and function of the major skeletal protein, spectrin. After mild treatment of spectrin with 2.5 microM diamide, with formation of an average of only one disulfide bond, we observed a 50% reduction in the ability of protein 4.1 to amplify spectrin-actin binding. The oxidized spectrin specifically lacked the ability to bind protein 4.1, whereas all other spectrin functions remained intact. However, oxidation also produced a structural change in spectrin. A rapidly migrating species appeared on non-denaturing gels in a dose-dependent manner with increasing diamide concentrations. By electron microscopy, the oxidized spectrin appeared as single-stranded signet rings with irregular knob-like protrusions. Fifty per cent of spectrin was converted to the ring form after the formation of an average of two disulfide bonds. Both the structural and functional defects were reversed by chemical reduction. The loss of spectrin function or the structural transformation in spectrin may contribute to erythrocyte membrane failure in the oxidative environment.

摘要

氧化剂可改变红细胞膜特性并导致最终溶血,但造成这些变化的机制尚不清楚。蛋白质骨架维持着红细胞膜的正常完整性。在本研究中,我们研究了有限化学氧化对主要骨架蛋白血影蛋白的结构和功能的影响。在用2.5微摩尔/升二酰胺对血影蛋白进行温和处理后,平均仅形成一个二硫键,我们观察到4.1蛋白增强血影蛋白-肌动蛋白结合的能力降低了50%。氧化的血影蛋白特别缺乏结合4.1蛋白的能力,而所有其他血影蛋白功能保持完整。然而,氧化也使血影蛋白发生了结构变化。随着二酰胺浓度增加,在非变性凝胶上出现了一种快速迁移的条带,呈剂量依赖性。通过电子显微镜观察,氧化的血影蛋白呈现为带有不规则瘤状突起的单链印戒状。在平均形成两个二硫键后,50%的血影蛋白转化为环形式。化学还原可逆转血影蛋白的结构和功能缺陷。血影蛋白功能丧失或其结构转变可能导致氧化环境中红细胞膜功能障碍。

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