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Extended low-resolution structure of a Leptospira antigen offers high bactericidal antibody accessibility amenable to vaccine design

机译:钩端螺旋体抗原的扩展的低分辨率结构提供了适合疫苗设计的高杀菌抗体可及性

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摘要

Pathogens rely on proteins embedded on their surface to perform tasks essential for host infection. These obligatory structures exposed to the host immune system provide important targets for rational vaccine design. Here, we use a systematically designed series of multi-domain constructs in combination with small angle X-ray scattering (SAXS) to determine the structure of the main immunoreactive region from a major antigen from Leptospira interrogans, LigB. An anti-LigB monoclonal antibody library exhibits cell binding and bactericidal activity with extensive domain coverage complementing the elongated architecture observed in the SAXS structure. Combining antigenic motifs in a single-domain chimeric immunoglobulin-like fold generated a vaccine that greatly enhances leptospiral protection over vaccination with single parent domains. Our study demonstrates how understanding an antigen’s structure and antibody accessible surfaces can guide the design and engineering of improved recombinant antigen-based vaccines.
机译:病原体依靠嵌入其表面的蛋白质来执行宿主感染必不可少的任务。这些暴露于宿主免疫系统的强制性结构为合理疫苗设计提供了重要目标。在这里,我们结合小角度X射线散射(SAXS)使用系统设计的一系列多域构建体,来确定来自问号钩端螺旋体LigB的主要抗原的主要免疫反应区域的结构。抗LigB单克隆抗体文库具有细胞结合和杀菌活性,并具有广泛的结构域覆盖范围,与在SAXS结构中观察到的细长结构互补。在单域嵌合免疫球蛋白样折叠中结合抗原基序产生了一种疫苗,该疫苗大大增强了对单亲本域免疫的钩端螺旋体保护作用。我们的研究表明,了解抗原的结构和抗体可及的表面如何可以指导改进的重组基于抗原的疫苗的设计和工程。

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