Janssen Vaccines & Prevention BV, Leiden, The Netherlands.
ForgeBio B.V., Amsterdam, The Netherlands.
Nat Commun. 2024 Jul 25;15(1):6270. doi: 10.1038/s41467-024-50659-5.
The prefusion conformation of human metapneumovirus fusion protein (hMPV Pre-F) is critical for eliciting the most potent neutralizing antibodies and is the preferred immunogen for an efficacious vaccine against hMPV respiratory infections. Here we show that an additional cleavage event in the F protein allows closure and correct folding of the trimer. We therefore engineered the F protein to undergo double cleavage, which enabled screening for Pre-F stabilizing substitutions at the natively folded protomer interfaces. To identify these substitutions, we developed an AI convolutional classifier that successfully predicts complex polar interactions often overlooked by physics-based methods and visual inspection. The combination of additional processing, stabilization of interface regions and stabilization of the membrane-proximal stem, resulted in a Pre-F protein vaccine candidate without the need for a heterologous trimerization domain that exhibited high expression yields and thermostability. Cryo-EM analysis shows the complete ectodomain structure, including the stem, and a specific interaction of the newly identified cleaved C-terminus with the adjacent protomer. Importantly, the protein induces high and cross-neutralizing antibody responses resulting in near complete protection against hMPV challenge in cotton rats, making the highly stable, double-cleaved hMPV Pre-F trimer an attractive vaccine candidate.
人类偏肺病毒融合蛋白(hMPV Pre-F)的预融合构象对于引发最有效的中和抗体至关重要,是针对 hMPV 呼吸道感染的有效疫苗的首选免疫原。在这里,我们表明 F 蛋白中的另一个切割事件允许三聚体的闭合和正确折叠。因此,我们对 F 蛋白进行了双切割工程,从而能够筛选在天然折叠的单体界面上稳定 Pre-F 的取代。为了识别这些取代,我们开发了一个 AI 卷积分类器,该分类器成功预测了物理方法和目视检查经常忽略的复杂极性相互作用。额外的加工、接口区域的稳定和膜近端茎的稳定的组合,导致了一种不需要异源三聚体化结构域的 Pre-F 蛋白疫苗候选物,该候选物表现出高表达产量和热稳定性。冷冻电镜分析显示了完整的外域结构,包括茎,以及新鉴定的切割 C 末端与相邻单体的特定相互作用。重要的是,该蛋白诱导高交叉中和抗体反应,导致对 hMPV 挑战的近乎完全保护,使高度稳定的、双切割的 hMPV Pre-F 三聚体成为有吸引力的疫苗候选物。