State Key Laboratory for Animal Disease Control and Prevention, College of Veterinary Medicine, Lanzhou University, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, China.
CAS Key Laboratory of Infection and Immunity, National Laboratory of Macromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2024 Oct 10;15(1):8774. doi: 10.1038/s41467-024-53027-5.
Unlike most other picornaviruses, foot-and-mouth disease (FMD) intact virions (146S) dissociate easily into small pentameric subunits (12S). This causes a dramatically decreased immunogenicity by a mechanism that remains elusive. Here, we present the high-resolution structures of 12S (3.2 Å) and its immune complex of a single-domain antibody (VHH) targeting the particle interior (3.2 Å), as well as two 146S-specific VHHs complexed to distinct sites on the 146S capsid surface (3.6 Å and 2.9 Å). The antigenic landscape of 146S is depicted using 13 known FMD virus-antibody complexes. Comparison of the immunogenicity of 146S and 12S in pigs, focusing on the resulting antigenic sites and incorporating structural analysis, reveals that dissociation of 146S leads to structural alteration and destruction of multiple epitopes, resulting in significant differences in antibody profiles/lineages induced by 12S and 146S. Furthermore, 146S generates higher synergistic neutralizing antibody titers compared to 12S, whereas both particles induce similar total FMD virus specific antibody titers. This study can guide the structure-based rational design of novel multivalent and broad-spectrum recombinant vaccines for protection against FMD.
与大多数其他小 RNA 病毒不同,口蹄疫(FMD)完整病毒(146S)很容易解离成小的五聚体亚基(12S)。这种机制导致免疫原性显著降低,但具体机制仍不清楚。在这里,我们展示了 12S(3.2Å)及其针对颗粒内部的单域抗体(VHH)免疫复合物的高分辨率结构(3.2Å),以及两个与 146S 衣壳表面上不同位点结合的 146S 特异性 VHH(3.6Å 和 2.9Å)。使用 13 个已知的口蹄疫病毒-抗体复合物描绘了 146S 的抗原景观。通过比较 146S 和 12S 在猪中的免疫原性,重点关注产生的抗原位点并结合结构分析,揭示了 146S 的解离导致结构改变和多个表位的破坏,导致 12S 和 146S 诱导的抗体谱/谱系存在显著差异。此外,与 12S 相比,146S 产生更高的协同中和抗体滴度,而两种颗粒均诱导相似的总口蹄疫病毒特异性抗体滴度。该研究可以指导针对 FMD 的新型多价和广谱重组疫苗的基于结构的合理设计。