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Molecular architecture of a complex between an adhesion protein from the malaria parasite and intracellular adhesion molecule 1.

机译:疟原虫的粘附蛋白与细胞内粘附分子1之间的复合物的分子结构。

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摘要

The adhesion of Plasmodium falciparum-infected erythrocytes to human tissues or endothelium is central to the pathology caused by the parasite during malaria. It contributes to the avoidance of parasite clearance by the spleen and to the specific pathologies of cerebral and placental malaria. The PfEMP1 family of adhesive proteins is responsible for this sequestration by mediating interactions with diverse human ligands. In addition, as the primary targets of acquired, protective immunity, the PfEMP1s are potential vaccine candidates. PfEMP1s contain large extracellular ectodomains made from CIDR (cysteine-rich interdomain regions) and DBL (Duffy-binding-like) domains and show extensive variation in sequence, size, and domain organization. Here we use biophysical methods to characterize the entire ∼300-kDa ectodomain from IT4VAR13, a protein that interacts with the host receptor, intercellular adhesion molecule-1 (ICAM-1). We show through small angle x-ray scattering that IT4VAR13 is rigid, elongated, and monomeric. We also show that it interacts with ICAM-1 through the DBLβ domain alone, forming a 1:1 complex. These studies provide a first low resolution structural view of a PfEMP1 ectodomain in complex with its ligand. They show that it combines a modular domain arrangement consisting of individual ligand binding domains, with a defined higher order architecture that exposes the ICAM-1 binding surface to allow adhesion.
机译:恶性疟原虫感染的红细胞对人体组织或内皮的粘附是疟疾期间由寄生虫引起的病理学的关键。它有助于避免脾脏清除寄生虫,并有助于脑部和胎盘疟疾的特殊病理。粘附蛋白的PfEMP1家族通过介导与各种人类配体的相互作用来负责这种螯合。此外,作为获得性保护性免疫的主要靶标,PfEMP1s可能是候选疫苗。 PfEMP1包含由CIDR(富含半胱氨酸的域间区域)和DBL(达菲结合样)域组成的大型胞外域,并在序列,大小和域组织方面显示出很大的差异。在这里,我们使用生物物理方法来表征IT4VAR13的整个〜300 kDa胞外域,IT4VAR13是一种与宿主受体细胞间粘附分子1(ICAM-1)相互作用的蛋白质。我们通过小角度X射线散射显示IT4VAR13是刚性的,细长的和单体的。我们还表明,它仅通过DBLβ域与ICAM-1相互作用,形成1:1的复合物。这些研究提供了PfEMP1胞外域与其配体复合物的第一个低分辨率结构图。他们表明,它结合了由单个配体结合结构域组成的模块化结构域排列,并具有定义的高级结构,该结构暴露了ICAM-1结合表面以实现粘附。

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