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红细胞膜带3与高铁血红素共聚反应的部分特性分析

Partial characterization of the copolymerization reaction of erythrocyte membrane band 3 with hemichromes.

作者信息

Waugh S M, Walder J A, Low P S

出版信息

Biochemistry. 1987 Mar 24;26(6):1777-83. doi: 10.1021/bi00380a041.

Abstract

Early intermediates in the denaturation of hemoglobin, termed hemichromes, have been found previously to associate with the cytoplasmic domain of erythrocyte membrane band 3 in a manner which rapidly propagates into an insoluble, macroscopic copolymer. Because this interaction is thought to force a redistribution of band 3 in situ, the properties of the copolymerization reaction were investigated in greater detail. The band 3-hemichrome coaggregate was found to be stabilized largely by ionic interactions since elevation of either ionic strength or pH led to dissolution of the complex. The pH dependence, however, shifted to a more alkaline pH with increasing hemichrome concentration, suggesting a strong linkage between band 3 or hemichrome protonation and copolymer formation. The stoichiometry of the copolymer was measured at five globin chains per band 3 chain whenever underivatized dimer-tetramer hemichrome mixtures were employed. However, cross-linking of the hemichromes at either the alpha or the beta chains to form the stabilized tetramer yielded a copolymer stoichiometry of approximately eight globin chains per band 3 chain, i.e., two hemichrome sites per band 3 subunit. While underivatized hemichromes exhibited both a fast and slow phase of copolymerization, the cross-link-stabilized tetrameric hemichromes displayed predominantly the fast phase kinetics. Naturally occurring disulfide cross-linked hemichromes also reacted more avidly with band 3 than their reduced counterparts; however, the copolymerization process also proceeded to completion with totally reduced components. It is concluded that copolymerization of band 3 with hemichromes should occur under normal cellular conditions and at an accelerated velocity when the intracellular reducing power is low.

摘要

血红蛋白变性过程中的早期中间体,即半色素,此前已被发现以一种迅速扩展为不溶性宏观共聚物的方式与红细胞膜带3的细胞质结构域结合。由于这种相互作用被认为会迫使带3在原位重新分布,因此对共聚反应的性质进行了更详细的研究。发现带3 - 半色素共聚集体在很大程度上通过离子相互作用得以稳定,因为离子强度或pH值的升高都会导致复合物溶解。然而,随着半色素浓度的增加,pH依赖性向更碱性的pH值转变,这表明带3或半色素的质子化与共聚物形成之间存在强烈的联系。每当使用未衍生化的二聚体 - 四聚体半色素混合物时,测得共聚物的化学计量比为每条带3链对应五条珠蛋白链。然而,半色素在α链或β链处交联形成稳定的四聚体时,产生的共聚物化学计量比约为每条带3链对应八条珠蛋白链,即每个带3亚基有两个半色素位点。虽然未衍生化的半色素表现出共聚的快速和慢速阶段,但交联稳定的四聚体半色素主要表现出快速阶段动力学。天然存在的二硫键交联半色素与带3的反应也比其还原对应物更剧烈;然而,共聚过程也能在完全还原的组分存在下进行到底。得出的结论是,带3与半色素的共聚反应应在正常细胞条件下发生,并且当细胞内还原能力较低时会加速进行。

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