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Combinatorial peptide-based epitope mapping from Ebola virus DNA vaccines and infections reveals residue-level determinants of antibody binding

机译:从埃博拉病毒DNA疫苗和感染的组合肽的表位映射显示抗体结合的残基级别决定因素

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Ebola virus (EBOV) infection is highly lethal and results in severe febrile bleeding disorders that affect humans and non-human primates. One of the therapeutic approaches for treating EBOV infection focus largely on cocktails of monoclonal antibodies (mAbs) that bind to specific regions of the EBOV glycoprotein (GP) and neutralize the virus. Recent structural studies using cryo-electron microscopy have identified key epitopes for several EBOV mAbs. While such information has yielded deep insights into antibody binding, limitations on resolution of these structures often preclude a residue-level analysis of EBOV epitopes. In this study, we performed combinatorial peptide-based epitope mapping of EBOV GP against a broad panel of mAbs and polyclonal sera derived from several animal species vaccinated with EBOV DNA and replicon vaccines and/or exposed to EBOV infection to identify residue-level determinants of antibody binding. The peptide-based epitope mapping obtained from a wide range of serum and mAb samples, combined with available cryo-EM structure reconstructions revealed fine details of antibody-virus interactions, allowing for a more precise and comprehensive mapping of antibody epitopes on EBOV GP. We show how these residue-level epitope definitions can be used to characterize antigenic variation across different filoviruses, and provide a theoretical basis for predicting immunity and cross-neutralization in potential future outbreaks.
机译:埃博拉病毒(EBOV)感染是高度致命的,导致严重的发热性,影响人和非人类原始化物的出血障碍。治疗EBOV感染的治疗方法主要聚焦,主要关注单克隆抗体(MAb)的鸡尾酒,其与EBOV糖蛋白(GP)的特异性区域结合并中和病毒。使用冷冻电子显微镜的最近结构研究已经确定了几种EBOV MAB的关键表位。虽然这些信息已经产生了深入了解抗体结合,但是对这些结构的分辨率的限制通常妨碍EBOV表位的残留水平分析。在这项研究中,我们对来自诸如与EBOV DNA和复制品疫苗接种的几种动物物种和/或暴露于EBOV感染,对EBOV GP的基于组合肽的表位测定符合来自诸如eboV的疫苗和/或暴露于EBOV感染以鉴定残留水平的决定簇抗体结合。从宽范围的血清和MAB样品获得的基于肽的表位映射,与可用的Cryo-EM结构重建组合揭示了抗体病毒相互作用的细节,允许更精确和全面的EBOV GP上的抗体表位映射。我们展示了这些残留水平的表位定义如何用于表征抗原性变异以表征不同的泌尿病毒,并为预测潜力和未来爆发中的抗扰度和交叉中和提供理论依据。

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