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基于结构的呼吸道合胞病毒仅头部融合糖蛋白免疫原设计

Structure-Based Design of Head-Only Fusion Glycoprotein Immunogens for Respiratory Syncytial Virus.

作者信息

Boyington Jeffrey C, Joyce M Gordon, Sastry Mallika, Stewart-Jones Guillaume B E, Chen Man, Kong Wing-Pui, Ngwuta Joan O, Thomas Paul V, Tsybovsky Yaroslav, Yang Yongping, Zhang Baoshan, Chen Lei, Druz Aliaksandr, Georgiev Ivelin S, Ko Kiyoon, Zhou Tongqing, Mascola John R, Graham Barney S, Kwong Peter D

机构信息

Vaccine Research Center, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland, 20892, United States of America.

Electron Microscopy Laboratory, Cancer Research Technology Program, Leidos Biomedical Research, Inc., Frederick National Laboratory for Cancer Research, Frederick, Maryland, United States of America.

出版信息

PLoS One. 2016 Jul 27;11(7):e0159709. doi: 10.1371/journal.pone.0159709. eCollection 2016.

Abstract

Respiratory syncytial virus (RSV) is a significant cause of severe respiratory illness worldwide, particularly in infants, young children, and the elderly. Although no licensed vaccine is currently available, an engineered version of the metastable RSV fusion (F) surface glycoprotein-stabilized in the pre-fusion (pre-F) conformation by "DS-Cav1" mutations-elicits high titer RSV-neutralizing responses. Moreover, pre-F-specific antibodies, often against the neutralization-sensitive antigenic site Ø in the membrane-distal head region of trimeric F glycoprotein, comprise a substantial portion of the human response to natural RSV infection. To focus the vaccine-elicited response to antigenic site Ø, we designed a series of RSV F immunogens that comprised the membrane-distal head of the F glycoprotein in its pre-F conformation. These "head-only" immunogens formed monomers, dimers, and trimers. Antigenic analysis revealed that a majority of the 70 engineered head-only immunogens displayed reactivity to site Ø-targeting antibodies, which was similar to that of the parent RSV F DS-Cav1 trimers, often with increased thermostability. We evaluated four of these head-only immunogens in detail, probing their recognition by antibodies, their physical stability, structure, and immunogenicity. When tested in naïve mice, a head-only trimer, half the size of the parent RSV F trimer, induced RSV titers, which were statistically comparable to those induced by DS-Cav1. When used to boost DS-Cav1-primed mice, two head-only RSV F immunogens, a dimer and a trimer, boosted RSV-neutralizing titers to levels that were comparable to those boosted by DS-Cav1, although with higher site Ø-directed responses. Our results provide proof-of-concept for the ability of the smaller head-only RSV F immunogens to focus the vaccine-elicited response to antigenic site Ø. Decent primary immunogenicity, enhanced physical stability, potential ease of manufacture, and potent immunogenicity upon boosting suggest these head-only RSV F immunogens, engineered to retain the pre-fusion conformation, may have advantages as candidate RSV vaccines.

摘要

呼吸道合胞病毒(RSV)是全球范围内严重呼吸道疾病的重要病因,尤其是在婴儿、幼儿和老年人中。尽管目前尚无获批的疫苗,但一种通过“DS-Cav1”突变稳定在融合前(pre-F)构象的亚稳RSV融合(F)表面糖蛋白的工程化版本可引发高滴度的RSV中和反应。此外,pre-F特异性抗体,通常针对三聚体F糖蛋白膜远端头部区域的中和敏感抗原位点Ø,在人类对自然RSV感染的反应中占很大一部分。为了使疫苗引发的反应聚焦于抗原位点Ø,我们设计了一系列RSV F免疫原,其包含处于pre-F构象的F糖蛋白的膜远端头部。这些“仅头部”免疫原形成单体、二聚体和三聚体。抗原分析表明,70种工程化的仅头部免疫原中的大多数对靶向位点Ø的抗体具有反应性,这与亲本RSV F DS-Cav1三聚体相似,且通常具有更高的热稳定性。我们详细评估了其中四种仅头部免疫原,探究它们被抗体识别的情况、物理稳定性、结构和免疫原性。在未经免疫的小鼠中进行测试时,一种仅头部的三聚体,其大小为亲本RSV F三聚体的一半,诱导产生的RSV滴度在统计学上与DS-Cav1诱导的滴度相当。当用于加强免疫DS-Cav1预免疫的小鼠时,两种仅头部的RSV F免疫原,一种二聚体和一种三聚体,将RSV中和滴度提高到与DS-Cav1加强免疫相当的水平,尽管具有更高的位点Ø定向反应。我们的结果为较小的仅头部RSV F免疫原能够使疫苗引发的反应聚焦于抗原位点Ø提供了概念验证。良好的初次免疫原性、增强的物理稳定性、潜在的易于制造性以及加强免疫时的强效免疫原性表明,这些经工程改造以保留融合前构象的仅头部RSV F免疫原作为RSV候选疫苗可能具有优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec7d/4963090/ed74f229a46f/pone.0159709.g001.jpg

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