Wehrle Sarah, Scheck Andreas, Reusch Laura, Matassoli Flavio, Georgeon Sandrine, Castro Karla M, Cramer Johannes, Harshbarger Wayne, Rosset Stéphane, Andrews Sarah F, Schön Karin, Bouzya Badiaa, Rouxel Ronan, Blais Normand, Malito Enrico, McDermott Adrian, Krey Thomas, Mallett Corey P, Vassilev Ventzislav, Angeletti Davide, Correia Bruno E
Institute of Bioengineering, École Polytechnique Fédérale de Lausanne, Lausanne CH-1015, Switzerland.
Swiss Institute of Bioinformatics (SIB), Lausanne CH-1015, Switzerland.
bioRxiv. 2025 Jan 22:2025.01.22.634229. doi: 10.1101/2025.01.22.634229.
Broad protection against diverse influenza viruses can be conferred by broadly neutralizing antibodies (bnAbs) targeting a conserved site on the hemagglutinin (HA) stem domain. However, the low immunogenicity of this antigenic region hinders the robust induction of such antibodies. Here, we showcase a structure-based immunogen design strategy focusing on the surface mimicry of antigenic sites. By leveraging the structural definition of a stem epitope, we apply computational protein design to develop epitope mimetics to focus the immune response against this site of viral vulnerability. The structurally complex antigenic site is displayed on heterologous protein scaffolds, retaining excellent binding towards known HA stem-specific bnAbs. Our epitope-mimetic induces stem-specific antibodies against highly divergent group 1 and 2 subtypes. The results provide a general framework for the design of novel immunogens eliciting focused immune responses which may be a valuable tool in the development of effective vaccine candidates against other variable pathogens.
靶向血凝素(HA)茎域保守位点的广泛中和抗体(bnAbs)可提供针对多种流感病毒的广泛保护。然而,该抗原区域的低免疫原性阻碍了此类抗体的强劲诱导。在此,我们展示了一种基于结构的免疫原设计策略,重点是抗原位点的表面模拟。通过利用茎表位的结构定义,我们应用计算蛋白质设计来开发表位模拟物,以聚焦针对病毒易损位点的免疫反应。结构复杂的抗原位点展示在异源蛋白质支架上,对已知的HA茎特异性bnAbs保持优异的结合能力。我们的表位模拟物可诱导针对高度不同的1组和2组亚型的茎特异性抗体。这些结果为设计引发聚焦免疫反应的新型免疫原提供了一个通用框架,这可能是开发针对其他可变病原体的有效候选疫苗的宝贵工具。