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基于疟疾传播阻断疫苗接种个体的分析,鉴定 PfS230D1 蛋白的人抗体表位图谱。

A human antibody epitope map of Pfs230D1 derived from analysis of individuals vaccinated with a malaria transmission-blocking vaccine.

机构信息

Host-Pathogen Interactions and Structural Vaccinology Section, Laboratory of Malaria Immunology and Vaccinology, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD, USA.

Pathogenesis and Immunity Section, Laboratory of Malaria Immunology and Vaccinology, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD, USA.

出版信息

Immunity. 2023 Feb 14;56(2):433-443.e5. doi: 10.1016/j.immuni.2023.01.012.

Abstract

Pfs230 domain 1 (Pfs230D1) is an advanced malaria transmission-blocking vaccine antigen demonstrating high functional activity in clinical trials. However, the structural and functional correlates of transmission-blocking activity are not defined. Here, we characterized a panel of human monoclonal antibodies (hmAbs) elicited in vaccinees immunized with Pfs230D1. These hmAbs exhibited diverse transmission-reducing activity, yet all bound to Pfs230D1 with nanomolar affinity. We compiled epitope-binning data for seventeen hmAbs and structures of nine hmAbs complexes to construct a high-resolution epitope map and revealed that potent transmission-reducing hmAbs bound to one face of Pfs230D1, while non-potent hmAbs bound to the opposing side. The structure of Pfs230D1D2 revealed that non-potent transmission-reducing epitopes were occluded by the second domain. The hmAb epitope map delineated binary hmAb combinations that synergized for extremely high-potency, transmission-reducing activity. This work provides a high-resolution guide for structure-based design of enhanced immunogens and informs diagnostics that measure the transmission-reducing response.

摘要

PfS230 结构域 1(PfS230D1)是一种先进的疟疾传播阻断疫苗抗原,在临床试验中表现出高功能活性。然而,传播阻断活性的结构和功能相关性尚不清楚。在这里,我们对用 PfS230D1 免疫接种的疫苗接种者中产生的一组人源单克隆抗体(hmAb)进行了表征。这些 hmAb 表现出不同的传播减少活性,但都与 PfS230D1 以纳摩尔亲和力结合。我们汇编了十七个 hmAb 的表位分组数据和九个 hmAb 复合物的结构,以构建高分辨率的表位图谱,并揭示了有效的传播减少 hmAb 结合到 PfS230D1 的一个面上,而非有效的 hmAb 结合到对面。PfS230D1D2 的结构表明,非有效的传播减少表位被第二个结构域掩盖。hmAb 表位图谱描绘了协同作用的二元 hmAb 组合,具有极高的效力和传播减少活性。这项工作为基于结构的增强免疫原设计提供了高分辨率的指南,并为测量传播减少反应的诊断提供了信息。

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