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首页> 外文期刊>The journal of immunology >Mapping the Binding Site of a Cross-Reactive Plasmodium falciparum PfEMP1 Monoclonal Antibody Inhibitory of ICAM-1 Binding
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Mapping the Binding Site of a Cross-Reactive Plasmodium falciparum PfEMP1 Monoclonal Antibody Inhibitory of ICAM-1 Binding

机译:映射交叉反应的恶性疟原虫PfEMP1单克隆抗体抑制ICAM-1结合的结合位点

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摘要

The virulence of Plasmodium falciparum is linked to the ability of infected erythrocytes (IE) to adhere to the vascular endothelium, mediated by P. falciparum erythrocyte membrane protein 1 (PfEMP1). In this article, we report the functional characterization of an mAb that recognizes a panel of PfEMP1s and inhibits ICAM-1 binding. The 24E9 mouse mAb was raised against PFD1235w DBLβ3_D4, a domain from the group A PfEMP1s associated with severe malaria. 24E9 recognizes native PfEMP1 expressed on the IE surface and shows cross-reactivity with and cross-inhibition of the ICAM-1 binding capacity of domain cassette 4 PfEMP1s. 24E9 Fab fragments bind DBLβ3_D4 with nanomolar affinity and inhibit ICAM-1 binding of domain cassette 4–expressing IE. The antigenic regions targeted by 24E9 Fab were identified by hydrogen/deuterium exchange mass spectrometry and revealed three discrete peptides that are solvent protected in the complex. When mapped onto a homology model of DBLβ3_D4, these cluster to a defined, surface-exposed region on the convex surface of DBLβ3_D4. Mutagenesis confirmed that the site most strongly protected is necessary for 24E9 binding, which is consistent with a low-resolution structure of the DBLβ3_D4::24E9 Fab complex derived from small-angle x-ray scattering. The convex surface of DBLβ3_D4 has previously been shown to contain the ICAM-1 binding site of DBLβ domains, suggesting that the mAb acts by occluding the ICAM-1 binding surface. Conserved epitopes, such as those targeted by 24E9, are promising candidates for the inclusion in a vaccine interfering with ICAM-1–specific adhesion of group A PfEMP1 expressed by P. falciparum IE during severe malaria.
机译:恶性疟原虫的毒力与受感染的红细胞(IE)粘附在恶性疟原虫红细胞膜蛋白1(PfEMP1)介导的血管内皮上的能力有关。在本文中,我们报告了可识别PfEMP1s并抑制ICAM-1结合的mAb的功能表征。针对PFD1235wDBLβ3_D4(来自与严重疟疾相关的A组PfEMP1s的结构域)产生了24E9小鼠单克隆抗体。 24E9识别在IE表面表达的天然PfEMP1,并显示与域盒4 PfEMP1s的ICAM-1结合能力的交叉反应和交叉抑制。 24E9 Fab片段以纳摩尔亲和力结合DBLβ3 _D4,并抑制表达结构域盒4的IE的ICAM-1结合。通过氢/氘交换质谱法鉴定了24E9 Fab靶向的抗原区,并揭示了在复合物中受溶剂保护的三个离散肽。当映射到DBLβ3 _D4的同源性模型上时,这些聚类到DBLβ3 _D4凸面上的已定义表面暴露区域。诱变证实,最强保护的位点是24E9结合所必需的,这与从小角度X射线散射得出的DBLβ3 _D4 :: 24E9 Fab复合物的低分辨率结构是一致的。先前已显示DBLβ3 _D4的凸表面包含DBLβ域的ICAM-1结合位点,这表明mAb通过闭塞ICAM-1结合表面起作用。保守的抗原决定簇(例如24E9靶向的抗原决定簇)有望在严重疟疾期间被包含在疫苗中,以干扰恶性疟原虫IE表达的A组PfEMP1的ICAM-1特异性粘附。

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