Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, CA, 92037, USA.
Uvax Bio, LLC, Newark, DE, 19702, USA.
Nat Commun. 2024 Nov 16;15(1):9939. doi: 10.1038/s41467-024-54287-x.
Respiratory syncytial virus (RSV) and human metapneumovirus (hMPV) cause human respiratory diseases and are major targets for vaccine development. In this study, we design uncleaved prefusion-closed (UFC) trimers for the fusion protein (F) of both viruses by examining mutations critical to F metastability. For RSV, we assess four previous prefusion F designs, including the first and second generations of DS-Cav1, SC-TM, and 847A. We then identify key mutations that can maintain prefusion F in a native-like, closed trimeric form (up to 76%) without introducing any interprotomer disulfide bond. For hMPV, we develop a stable UFC trimer with a truncated F-F linkage and an interprotomer disulfide bond. Dozens of UFC constructs are characterized by negative-stain electron microscopy (nsEM), x-ray crystallography (11 RSV-F structures and one hMPV-F structure), and antigenic profiling. Using an optimized RSV-F UFC trimer as bait, we identify three potent RSV neutralizing antibodies (NAbs) from a phage-displayed human antibody library, with a public NAb lineage targeting sites Ø and V and two cross-pneumovirus NAbs recognizing site III. In mouse immunization, rationally designed RSV-F and hMPV-F UFC trimers induce robust antibody responses with high neutralizing titers. Our study provides a foundation for future prefusion F-based RSV and hMPV vaccine development.
呼吸道合胞病毒(RSV)和人偏肺病毒(hMPV)可引起人类呼吸道疾病,是疫苗开发的主要目标。在本研究中,我们通过研究对 F 蛋白的不稳定性至关重要的突变,设计了两种病毒融合蛋白(F)的未切割前融合-闭合(UFC)三聚体。对于 RSV,我们评估了四种以前的前融合 F 设计,包括第一代和第二代 DS-Cav1、SC-TM 和 847A。然后,我们确定了可以将前融合 F 维持在类似天然的闭合三聚体形式的关键突变(高达 76%),而不会引入任何蛋白间二硫键。对于 hMPV,我们开发了一种带有截断 F-F 连接和蛋白间二硫键的稳定 UFC 三聚体。数十种 UFC 构建体通过负染电子显微镜(nsEM)、X 射线晶体学(11 个 RSV-F 结构和一个 hMPV-F 结构)和抗原分析进行了表征。我们使用优化的 RSV-F UFC 三聚体作为诱饵,从噬菌体展示的人类抗体文库中鉴定了三种有效的 RSV 中和抗体(NAb),其中一种公共 NAb 靶向 Ø 和 V 位点,两种交叉型 NAb 识别 III 位点。在小鼠免疫中,合理设计的 RSV-F 和 hMPV-F UFC 三聚体诱导产生高中和滴度的强烈抗体反应。我们的研究为基于前融合 F 的 RSV 和 hMPV 疫苗的未来开发提供了基础。