Vaccine Research Center, National Institutes of Health, Bethesda, MD, 20892, USA.
NCI Antibody Engineering Program, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, 20892, USA.
Nat Commun. 2024 Jan 4;15(1):285. doi: 10.1038/s41467-023-44534-y.
Lassa virus (LASV) infection is expanding outside its traditionally endemic areas in West Africa, posing a pandemic biothreat. LASV-neutralizing antibodies, moreover, have proven difficult to elicit. To gain insight into LASV neutralization, here we develop a prefusion-stabilized LASV glycoprotein trimer (GPC), pan it against phage libraries comprising single-domain antibodies (nanobodies) from shark and camel, and identify one, D5, which neutralizes LASV. Cryo-EM analyses reveal D5 to recognize a cleavage-dependent site-of-vulnerability at the trimer apex. The recognized site appears specific to GPC intermediates, with protomers lacking full cleavage between GP1 and GP2 subunits. Guinea pig immunizations with the prefusion-stabilized cleavage-intermediate LASV GPC, first as trimer and then as a nanoparticle, induce neutralizing responses, targeting multiple epitopes including that of D5; we identify a neutralizing antibody (GP23) from the immunized guinea pigs. Collectively, our findings define a prefusion-stabilized GPC trimer, reveal an apex-situated site-of-vulnerability, and demonstrate elicitation of LASV-neutralizing responses by a cleavage-intermediate LASV trimer.
拉萨病毒(LASV)感染正在其传统的西非地方性地区之外蔓延,构成了一种大流行的生物威胁。此外,已经证明 LASV 中和抗体很难产生。为了深入了解 LASV 的中和作用,我们在这里开发了一种预融合稳定的 LASV 糖蛋白三聚体(GPC),用它来对抗包含鲨鱼和骆驼单域抗体(纳米抗体)的噬菌体文库,并鉴定出一种能够中和 LASV 的抗体 D5。冷冻电镜分析表明 D5 识别三聚体顶端依赖切割的易损位点。所识别的位点似乎是 GPC 中间体特有的,原聚体在 GP1 和 GP2 亚基之间缺乏完全切割。用预融合稳定的切割中间体 LASV GPC 对豚鼠进行免疫接种,首先作为三聚体,然后作为纳米颗粒,可诱导中和反应,针对多个表位,包括 D5;我们从免疫豚鼠中鉴定出一种中和抗体(GP23)。总的来说,我们的研究结果定义了一种预融合稳定的 GPC 三聚体,揭示了一个位于三聚体顶端的易损位点,并证明了切割中间体 LASV 三聚体能够诱导 LASV 中和反应。