Targeting the Zika virus envelope domains I and III as a recombinant vaccine protects mice from lethal challenge.

IF 7.2 1区 医学 Q1 IMMUNOLOGY
Vincent Dussupt, Jaime L Jensen, Angélica Peña Rosado, Marissa Donofrio, Jill Pflugheber, Letzibeth Mendez-Rivera, Rajeshwer S Sankhala, Wei-Hung Chen, Bonnie M Slike, Annika Schmid, Ursula Tran, Lily Metzger, Caroline E Peterson, Amelia K Pinto, Sandhya Vasan, Natalie D Collins, Aaron Farmer, Nelson L Michael, M Gordon Joyce, James D Brien, Shelly J Krebs
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Abstract

Zika virus (ZIKV) vaccine candidates developed through Phase I clinical trials are based on the full-length envelope glycoprotein (E), which presents both desirable and undesirable antigenic determinants. Among the latter, the conserved fusion loop epitope (FLE) within domain II is a major target for flavivirus cross-reactive and poorly neutralizing responses. To eliminate unwanted FLE targeting, we redesigned ZIKV E using a reverse vaccinology approach, excising domain II and allowing domains I and III (DI-DIII) to fold into an independent subunit harboring key neutralizing epitopes. Ifnar1-/- mice vaccinated with ZIKV DI-DIII elicited high ZIKV neutralizing antibodies and were protected from weight loss and death. In addition, sera from DI-DIII vaccinated mice demonstrated a reduced capacity to enhance DENV 1-4 infection in vitro, compared to mice vaccinated with full-length E. This study identifies DI-DIII as a promising immunogen, focusing antibody responses to protective epitopes on ZIKV and minimizing the elicitation of unwanted responses.

以寨卡病毒包膜结构域I和III为目标的重组疫苗可保护小鼠免受致命攻击。
通过I期临床试验开发的寨卡病毒(ZIKV)候选疫苗基于全长包膜糖蛋白(E),它具有理想和不理想的抗原决定因子。在后者中,II结构域内的保守融合环表位(FLE)是黄病毒交叉反应和低中和反应的主要靶点。为了消除不必要的FLE靶向,我们使用反向疫苗学方法重新设计了ZIKV E,切除结构域II,并允许结构域I和III (DI-DIII)折叠成包含关键中和表位的独立亚基。接种ZIKV DI-DIII疫苗的Ifnar1-/-小鼠可激发高ZIKV中和抗体,并可避免体重减轻和死亡。此外,与接种全长e疫苗的小鼠相比,接种DI-DIII的小鼠血清在体外增强DENV 1-4感染的能力降低。这项研究确定了DI-DIII是一种很有前途的免疫原,它将抗体对ZIKV保护表位的反应集中在ZIKV上,并最大限度地减少了不良反应的引发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
NPJ Vaccines
NPJ Vaccines Immunology and Microbiology-Immunology
CiteScore
11.90
自引率
4.30%
发文量
146
审稿时长
11 weeks
期刊介绍: Online-only and open access, npj Vaccines is dedicated to highlighting the most important scientific advances in vaccine research and development.
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