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人呼吸道合胞病毒和人偏肺病毒未切割前融合封闭三聚体疫苗的合理设计。

Rational design of uncleaved prefusion-closed trimer vaccines for human respiratory syncytial virus and metapneumovirus.

机构信息

Department of Integrative Structural and Computational Biology, The Scripps Research Institute, La Jolla, CA, 92037, USA.

Uvax Bio, LLC, Newark, DE, 19702, USA.

出版信息

Nat Commun. 2024 Nov 16;15(1):9939. doi: 10.1038/s41467-024-54287-x.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c283/11569192/7d4393f6416a/41467_2024_54287_Fig1_HTML.jpg

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