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PMID: 26098893 已发表 · epublish 英语

A Cysteine Zipper Stabilizes a Pre-Fusion F Glycoprotein Vaccine for Respiratory Syncytial Virus.

PloS one ·第 10 卷 ·第 6 期 ·2016-05-04

Stewart-Jones Guillaume B E, Thomas Paul V, Chen Man, Druz Aliaksandr, Joyce M Gordon, Kong Wing-Pui, Sastry Mallika, Soto Cinque, Yang Yongping, Zhang Baoshan, Chen Lei, Chuang Gwo-Yu, Georgiev Ivelin S, McLellan Jason S, Srivatsan Sanjay, Zhou Tongqing, Baxa Ulrich, Mascola John R, Graham Barney S, Kwong Peter D

摘要

Recombinant subunit vaccines should contain minimal non-pathogen motifs to reduce potential off-target reactivity. We recently developed a vaccine antigen against respiratory syncytial virus (RSV), which comprised the fusion (F) glycoprotein stabilized in its pre-fusion trimeric conformation by "DS-Cav1" mutations and by an appended C-terminal trimerization motif or "foldon" from T4-bacteriophage fibritin. Here we investigate the creation of a cysteine zipper to allow for the removal of the phage foldon, while maintaining the immunogenicity of the parent DS-Cav1+foldon antigen. Constructs without foldon yielded RSV F monomers, and enzymatic removal of the phage foldon from pre-fusion F trimers resulted in their dissociation into monomers. Because the native C terminus of the pre-fusion RSV F ectodomain encompasses a viral trimeric coiled-coil, we explored whether introduction of cysteine residues capable of forming inter-protomer disulfides might allow for stable trimers. Structural modeling indicated the introduced cysteines to form disulfide "rings", with each ring comprising a different set of inward facing residues of the coiled-coil. Three sets of rings could be placed within the native RSV F coiled-coil, and additional rings could be added by duplicating portions of the coiled-coil. High levels of neutralizing activity in mice, equivalent to that of the parent DS-Cav1+foldon antigen, were elicited by a 4-ring stabilized RSV F trimer with no foldon. Structure-based alteration of a viral coiled-coil to create a cysteine zipper thus allows a phage trimerization motif to be removed from a candidate vaccine antigen.

文献信息
期刊
PloS one
期刊简称
PLoS One
发表日期
2016-05-04
收录日期
2015-06-23
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
101285081
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