稳定型登革热病毒2包膜亚单位疫苗将中和抗体反应重定向到所有e结构域。

IF 4 2区 医学 Q2 VIROLOGY
Journal of Virology Pub Date : 2025-05-20 Epub Date: 2025-04-16 DOI:10.1128/jvi.00229-25
Devina J Thiono, Demetrios Samaras, Thanh T N Phan, Deanna R Zhu, Ruby P Shah, Izabella Castillo, Lawrence J Forsberg, Lakshmanane Premkumar, Ralph S Baric, Shaomin Tian, Brian Kuhlman, Aravinda M de Silva
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引用次数: 0

摘要

四种登革热病毒(DENV)血清型每年造成数亿人感染。几种四价登革热减毒活疫苗正处于临床试验和监管部门批准的不同阶段。两种主要的病毒抗体面临的一个主要障碍是疫苗血清型的不均匀复制,以牺牲其他三种血清型为代价,刺激对一种血清型的显性反应,导致疫苗抗体(Ab)增强的可能性,野生型(WT) DENV血清型无法在疫苗中复制,从而导致更严重的感染。蛋白质亚单位疫苗是一种很有希望的替代方法,因为抗原剂量可以精确控制。然而,DENV包膜(E)蛋白亚单位疫苗迄今表现不佳,可能是由于可溶性E的单体结构与病毒表面E的同型二聚体之间的差异。在此之前,我们已经将结构指导的计算方法和实验方法相结合,设计并生产了DENV2 E抗原,该抗原在37℃下是稳定的同型二聚体,并且在小鼠体内刺激比WT E抗原更高水平的中和抗体(nab)。本研究的目的是评估与WT E单体相比,DENV2 E同型二聚体是否能刺激针对E蛋白不同表位的nab。使用DENV4/2嵌合病毒和Ab消耗方法,我们将WT E诱导的nab映射到E的III结构域的简单表位上。相比之下,稳定的E二聚体对E蛋白的所有三个表面暴露结构域都激发了更复杂的反应。我们的研究结果强调了DENV2 E寡聚体状态对DENV nab的质量和特异性的影响,以及DENV E同源二聚体作为亚单位疫苗的前景。理想的登革热病毒(DENV)疫苗应该针对所有四种DENV血清型引发平衡和高度保护性的免疫反应。目前的DENV四价减毒活疫苗面临着挑战,因为疫苗病毒株的复制不均匀,对一种血清型的免疫反应强烈,而对其他三种血清型的免疫反应较弱。蛋白质亚单位疫苗为刺激平衡反应提供了新的机会,因为剂量可以精确控制并且不受疫苗病毒复制的影响。在这里,我们比较了一种新的DENV血清2型蛋白疫苗引起的免疫反应,该疫苗设计用于匹配病毒表面的蛋白质结构。我们发现,与以前的蛋白质疫苗相比,设计用于匹配病毒表面的蛋白质可以刺激针对病毒表面多个位点的更好的免疫反应。我们的结果证明进一步测试和开发这些第二代DENV蛋白亚单位疫苗是合理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stabilized dengue virus 2 envelope subunit vaccine redirects the neutralizing antibody response to all E-domains.

The four dengue virus (DENV) serotypes cause several hundred million infections annually. Several live-attenuated tetravalent dengue vaccines (LAVs) are at different stages of clinical testing and regulatory approval. A major hurdle faced by the two leading LAVs is uneven replication of vaccine serotypes stimulating a dominant response to one serotype at the expense of the other three, leading to the potential for vaccine antibody (Ab)-enhanced, more severe infections by wild-type (WT) DENV serotypes that fail to replicate in the vaccine. Protein subunit vaccines are a promising alternative since antigen dosing can be precisely controlled. However, DENV envelope (E) protein subunit vaccines have not performed well to date, possibly due to differences between the monomeric structure of soluble E and the E homodimer of the viral surface. Previously, we have combined structure-guided computational and experimental approaches to design and produce DENV2 E antigens that are stable homodimers at 37℃ and stimulate higher levels of neutralizing Abs (NAbs) than the WT E antigen in mice. The goal of this study was to evaluate if DENV2 E homodimers stimulate NAbs that target different epitopes on E protein compared to the WT E monomer. Using DENV4/2 chimeric viruses and Ab depletion methods, we mapped the WT E-elicited NAbs to simple epitopes on domain III of E. In contrast, the stable E homodimer stimulated a more complex response toward all three surface-exposed domains of the E protein. Our findings highlight the impact of DENV2 E oligomeric state on the quality and specificity of DENV NAbs and the promise of DENV E homodimers as subunit vaccines.IMPORTANCEThe ideal dengue virus (DENV) vaccine should elicit a balanced and highly protective immune response against all four DENV serotypes. Current tetravalent live-attenuated DENV vaccines have faced challenges due to uneven replication of vaccine virus strains stimulating a strong immune response to one serotype and weak responses to the other three. Protein subunit vaccines provide novel opportunities to stimulate a balanced response because dosing can be precisely controlled and independent of vaccine virus replication. Here, we compare immune responses elicited by a new DENV serotype 2 protein vaccine designed to match the structure of proteins on the viral surface. We find that proteins designed to match the viral surface stimulate better immune responses targeting multiple sites on the viral surface compared to previous protein vaccines. Our results justify further testing and development of these second-generation DENV protein subunit vaccines.

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来源期刊
Journal of Virology
Journal of Virology 医学-病毒学
CiteScore
10.10
自引率
7.40%
发文量
906
审稿时长
1 months
期刊介绍: Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.
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