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人偏肺病毒融合糖蛋白的互变二硫键稳定变体诱导高滴度中和反应。

Interprotomer disulfide-stabilized variants of the human metapneumovirus fusion glycoprotein induce high titer-neutralizing responses.

机构信息

Vaccine Research Center, NIH, Bethesda, MD 20892.

National Resource for Automated Molecular Microscopy, Simons Electron Microscopy Center, New York Structural Biology Center, New York, NY 10027.

出版信息

Proc Natl Acad Sci U S A. 2021 Sep 28;118(39). doi: 10.1073/pnas.2106196118.

Abstract

Human metapneumovirus (HMPV) is a major cause of respiratory disease worldwide, particularly among children and the elderly. Although there is no licensed HMPV vaccine, promising candidates have been identified for related pneumoviruses based on the structure-based stabilization of the fusion (F) glycoprotein trimer, with prefusion-stabilized F glycoprotein trimers eliciting significantly higher neutralizing responses than their postfusion F counterparts. However, immunization with HMPV F trimers in either prefusion or postfusion conformations has been reported to elicit equivalent neutralization responses. Here we investigate the impact of stabilizing disulfides, especially interprotomer disulfides (IP-DSs) linking protomers of the F trimer, on the elicitation of HMPV-neutralizing responses. We designed F trimer disulfides, screened for their expression, and used electron microscopy (EM) to confirm their formation, including that of an unexpected postfusion variant. In mice, IP-DS-stabilized prefusion and postfusion HMPV F elicited significantly higher neutralizing responses than non-IP-DS-stabilized HMPV Fs. In macaques, the impact of IP-DS stabilization was more measured, although IP-DS-stabilized variants of either prefusion or postfusion HMPV F induced neutralizing responses many times the average titers observed in a healthy human cohort. Serological and absorption-based analyses of macaque responses revealed elicited HMPV-neutralizing responses to be absorbed differently by IP-DS-containing and by non-IP-DS-containing postfusion Fs, suggesting IP-DS stabilization to alter not only the immunogenicity of select epitopes but their antigenicity as well. We speculate the observed increase in immunogenicity by IP-DS trimers to be related to reduced interprotomer flexibility within the HMPV F trimer.

摘要

人偏肺病毒(HMPV)是一种全球性的主要呼吸道疾病病原体,尤其在儿童和老年人中较为常见。尽管目前尚无获得许可的 HMPV 疫苗,但已有研究基于融合(F)糖蛋白三聚体的结构稳定化,针对相关的肺炎病毒,鉴定出有前景的候选疫苗,其中预融合稳定化的 F 糖蛋白三聚体比其融合后形式的 F 糖蛋白三聚体引起的中和反应显著更高。然而,已有研究报道称,在预融合或融合构象下接种 HMPV F 三聚体,可引起等效的中和反应。在此,我们研究了稳定二硫键(特别是连接 F 三聚体的亚基的同二聚体二硫键)对 HMPV 中和反应诱导的影响。我们设计了 F 三聚体二硫键,筛选其表达,并使用电子显微镜(EM)确认其形成,包括意外的融合后变体。在小鼠中,稳定二硫键的预融合和融合后 HMPV F 引发的中和反应显著高于非稳定二硫键的 HMPV F。在食蟹猴中,二硫键稳定的影响更为显著,尽管稳定二硫键的预融合或融合后 HMPV F 的变体诱导的中和反应是健康人类队列中观察到的平均滴度的许多倍。对食蟹猴反应的血清学和吸收分析表明,含二硫键和不含二硫键的融合后 F 所引起的中和反应的吸收方式不同,这表明二硫键稳定不仅改变了特定表位的免疫原性,而且改变了它们的抗原性。我们推测观察到的含二硫键三聚体的免疫原性增加与 HMPV F 三聚体中亚基间的灵活性降低有关。

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