Department of Integrative Structural and Computational Biology, Scripps Research, La Jolla, CA 92037, USA.
Department of Medical Microbiology and Infection Prevention, Amsterdam University Medical Center, Location AMC, University of Amsterdam, Amsterdam Infection & Immunity Institute, 1105 AZ Amsterdam, the Netherlands.
Cell Rep. 2024 Sep 24;43(9):114708. doi: 10.1016/j.celrep.2024.114708. Epub 2024 Sep 6.
Lassa fever continues to be a major public health burden in West Africa, yet effective therapies or vaccines are lacking. The isolation of protective neutralizing antibodies against the Lassa virus glycoprotein complex (GPC) justifies the development of vaccines that can elicit strong neutralizing antibody responses. However, Lassa vaccine candidates have generally been unsuccessful at doing so, and the associated antibody responses to these vaccines remain poorly characterized. Here, we establish an electron microscopy-based epitope mapping workflow that enables high-resolution structural characterization of polyclonal antibodies to the GPC. By applying this method to rabbits vaccinated with a recombinant GPC vaccine and a GPC-derived virus-like particle, we reveal determinants of neutralization that involve epitopes of the GPC-A competition cluster. Furthermore, by identifying undescribed immunogenic off-target epitopes, we expose the challenges that recombinant GPC vaccines face. By enabling detailed polyclonal antibody characterization, our work ushers in a next generation of more rational Lassa vaccine design.
拉沙热仍然是西非的主要公共卫生负担,但缺乏有效的治疗方法或疫苗。针对拉沙病毒糖蛋白复合物(GPC)的保护性中和抗体的分离证明了可以引发强烈中和抗体反应的疫苗的开发是合理的。然而,拉沙疫苗候选物通常未能做到这一点,并且对这些疫苗的相关抗体反应仍未得到很好的描述。在这里,我们建立了一种基于电子显微镜的表位作图工作流程,该流程能够对 GPC 的多克隆抗体进行高分辨率结构表征。通过将这种方法应用于用重组 GPC 疫苗和 GPC 衍生的病毒样颗粒接种的兔子,我们揭示了涉及 GPC-A 竞争簇表位的中和决定因素。此外,通过鉴定未描述的免疫原性脱靶表位,我们揭示了重组 GPC 疫苗所面临的挑战。通过实现详细的多克隆抗体表征,我们的工作为更合理的拉沙疫苗设计开启了下一代。