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恶性疟原虫EBA-175红细胞入侵途径的结构基础

Structural basis for the EBA-175 erythrocyte invasion pathway of the malaria parasite Plasmodium falciparum.

作者信息

Tolia Niraj H, Enemark Eric J, Sim B Kim Lee, Joshua-Tor Leemor

机构信息

Watson School of Biological Sciences, Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, New York 11724, USA.

出版信息

Cell. 2005 Jul 29;122(2):183-93. doi: 10.1016/j.cell.2005.05.033.

Abstract

Erythrocyte binding antigen 175 (EBA-175) is a P. falciparum protein that binds the major glycoprotein found on human erythrocytes, glycophorin A, during invasion. Here we present the crystal structure of the erythrocyte binding domain of EBA-175, RII, which has been established as a vaccine candidate. Binding sites for the heavily sialylated receptor glycophorin A are proposed based on a complex of RII with a glycan that contains the essential components required for binding. The dimeric organization of RII displays two prominent channels that contain four of the six observed glycan binding sites. Each monomer consists of two Duffy binding-like (DBL) domains (F1 and F2). F2 more prominently lines the channels and makes the majority of the glycan contacts, underscoring its role in cytoadherence and in antigenic variation in malaria. Our studies provide insight into the mechanism of erythrocyte invasion by the malaria parasite and aid in rational drug design and vaccines.

摘要

红细胞结合抗原175(EBA-175)是一种恶性疟原虫蛋白,在入侵过程中可与人红细胞上发现的主要糖蛋白血型糖蛋白A结合。在此,我们展示了EBA-175的红细胞结合结构域RII的晶体结构,该结构域已被确立为候选疫苗。基于RII与一种聚糖的复合物,提出了高度唾液酸化的受体血型糖蛋白A的结合位点,该聚糖包含结合所需的必需成分。RII的二聚体结构显示出两个突出的通道,其中包含六个观察到的聚糖结合位点中的四个。每个单体由两个达菲结合样(DBL)结构域(F1和F2)组成。F2更显著地排列在通道内,并形成了大部分聚糖接触,突出了其在细胞黏附和疟疾抗原变异中的作用。我们的研究为疟原虫入侵红细胞的机制提供了见解,并有助于合理的药物设计和疫苗研发。

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