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胎盘疟疾疫苗抗原 VAR2CSA 的构象表位:它能给我们什么启示?

A conformational epitope in placental malaria vaccine antigen VAR2CSA: What does it teach us?

机构信息

Laboratory of Malaria Immunology and Vaccinology, National Institute of Allergy and Infectious Diseases, NIH, Bethesda, Maryland, United States of America.

Centre for Medical Parasitology, Department of Microbiology and Immunology, University of Copenhagen and Department of Infectious Diseases, Rigshospitalet, Copenhagen, Denmark.

出版信息

PLoS Pathog. 2023 May 25;19(5):e1011370. doi: 10.1371/journal.ppat.1011370. eCollection 2023 May.

Abstract

VAR2CSA is the Plasmodium falciparum variant surface antigen that mediates binding of infected erythrocytes to chondroitin sulfate A (CSA) and their sequestration in intervillous spaces of the placenta, leading to placental malaria (PM). Relatively high polymorphism in VAR2CSA sequences has hindered development of a vaccine that induces broadly neutralizing immunity. Recent research has highlighted that a broadly reactive human monoclonal antibody, called PAM1.4, binds to multiple conserved residues of different subfragments of VAR2CSA, forming a conformational epitope. In this short perspective, we describe evidence that residues located in the interdomain-1 fragment of VAR2CSA within the PAM1.4 binding epitope might be critical to broad reactivity of the antibody. Future investigation into broadly reactive anti-VAR2CSA antibodies may be important for the following: (1) identification of similar conformation epitopes targeted by broadly neutralizing antibodies; and (2) understanding different immune evasion mechanisms used by placenta-binding parasites through VAR2CSA polymorphism in critical epitopes.

摘要

VAR2CSA 是恶性疟原虫变异表面抗原,介导感染的红细胞与硫酸软骨素 A(CSA)结合,并将其隔离在胎盘的绒毛间隙中,导致胎盘疟疾(PM)。VAR2CSA 序列中相对较高的多态性阻碍了能够诱导广泛中和免疫的疫苗的开发。最近的研究强调,一种广泛反应的人类单克隆抗体,称为 PAM1.4,与 VAR2CSA 的多个不同亚片段的多个保守残基结合,形成构象表位。在这篇短评中,我们描述了这样的证据,即在 PAM1.4 结合表位内 VAR2CSA 的结构域 1 片段中的残基可能对抗体的广泛反应性至关重要。对广泛反应性的抗 VAR2CSA 抗体的进一步研究可能对以下方面具有重要意义:(1)鉴定针对广泛中和抗体的类似构象表位;(2)通过关键表位中 VAR2CSA 的多态性,了解胎盘结合寄生虫使用的不同免疫逃避机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eff7/10212100/6ac495651ac8/ppat.1011370.g001.jpg

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