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遗传性红细胞多核症伴酸化血清溶血试验阳性(HEMPAS)患者红细胞对补体的异常调节

Aberrant regulation of complement by the erythrocytes of hereditary erythroblastic multinuclearity with a positive acidified serum lysis test (HEMPAS).

作者信息

Tomita A, Parker C J

机构信息

Department of Medicine, University of Utah, Salt Lake City.

出版信息

Blood. 1994 Jan 1;83(1):250-9.

PMID:7506081
Abstract

Susceptibility to hemolysis in acidified serum is a pathognomonic feature of hereditary erythroblastic multinuclearity with a positive acidified serum lysis test (HEMPAS, congenital dyserythropoietic anemia type II). The purpose of the studies reported herein was to determine if aberrant regulation of complement contributes to the susceptibility of HEMPAS erythrocytes to acidified serum lysis. The results of these experiments have demonstrated that regulation of both the C3 convertase of the alternative pathway and the membrane attack complex of complement by HEMPAS erythrocytes is aberrant. However, these abnormalities are not a consequence of quantitative or functional deficiencies of the erythrocyte complement-regulatory proteins, decay accelerating factor (DAF, CD55), or membrane inhibitor of reactive lysis (MIRL, CD59). Our recent studies have shown that glycophorin A (GPA), the major erythrocyte sialoglycoprotein is a complement regulatory protein. Analysis by radioimmunoprecipitation suggested that GPA on HEMPAS erythrocytes is abnormally glycosylated. Further analysis indicated that the abnormality involves the O-linked oligosaccharide moiety. Together, these studies show that complement regulation by HEMPAS erythrocytes is abnormal and that constituents other than DAF and MIRL participate in controlling complement activation on the erythrocyte membrane. Additionally, these studies suggest that the glycosylation defect that is characteristic of HEMPAS involves GPA.

摘要

酸化血清中红细胞溶血敏感性是遗传性成红细胞多核症伴酸化血清溶血试验阳性(HEMPAS,Ⅱ型先天性红细胞生成异常性贫血)的一项特征性表现。本文报道的研究目的是确定补体调节异常是否导致HEMPAS红细胞对酸化血清溶血敏感。这些实验结果表明,HEMPAS红细胞对替代途径C3转化酶和补体膜攻击复合物的调节均异常。然而,这些异常并非红细胞补体调节蛋白、衰变加速因子(DAF,CD55)或反应性溶解膜抑制剂(MIRL,CD59)数量或功能缺陷的结果。我们最近的研究表明,主要的红细胞唾液酸糖蛋白血型糖蛋白A(GPA)是一种补体调节蛋白。放射免疫沉淀分析表明,HEMPAS红细胞上的GPA糖基化异常。进一步分析表明,这种异常涉及O-连接寡糖部分。这些研究共同表明,HEMPAS红细胞的补体调节异常,且除DAF和MIRL外的其他成分参与控制红细胞膜上的补体激活。此外,这些研究表明,HEMPAS特有的糖基化缺陷涉及GPA。

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