A human cytomegalovirus prefusion-like glycoprotein B subunit vaccine elicits humoral immunity similar to that of postfusion gB in mice.

IF 4 2区 医学 Q2 VIROLOGY
Krithika P Karthigeyan, Megan Connors, Christian R Binuya, Mackensie Gross, Adelaide S Fuller, Chelsea M Crooks, Hsuan-Yuan Wang, Madeline R Sponholtz, Patrick O Byrne, Savannah Herbek, Caroline Andy, Linda M Gerber, John D Campbell, Caitlin A Williams, Elizabeth Mitchell, Lara van der Maas, Itzayana Miller, Dong Yu, Matthew J Bottomley, Jason S McLellan, Sallie R Permar
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引用次数: 0

Abstract

Human cytomegalovirus (HCMV) is the leading infectious cause of birth defects. Despite the global disease burden, there is no Food and Drug Administration (FDA)-approved HCMV vaccine. The most efficacious HCMV vaccine candidates to date have used glycoprotein B (gB), a class III viral fusion protein, in its postfusion form. While some viral fusion proteins have been shown to elicit stronger neutralizing responses in their prefusion conformation, HCMV prefusion-like and postfusion gB were recently shown to elicit antibodies with similar fibroblast neutralization titers in mice. We aimed to define and compare the specificity and functionality of plasma IgG elicited by distinct prefusion-like and postfusion gB constructs. Prefusion-like and postfusion gB elicited comparable IgG responses that predominantly mapped to the AD-5 antigenic domain known to elicit neutralizing antibodies. Interestingly, postfusion gB elicited significantly higher plasma IgG binding to cell-associated gB and antibody-dependent cellular phagocytosis than that of prefusion-like gB. The vaccines elicited comparable neutralization titers of heterologous HCMV strain AD169r in fibroblasts; however, neither elicited neutralizing titers against the vaccine-matched strain Towne in fibroblasts. Our data indicate that gB in this prefusion-like conformation elicits similar specificity and functional humoral immunity to that of postfusion gB, unlike certain class I viral fusion proteins that have been used as vaccine antigens. These findings deepen our understanding of the immune response elicited by class III fusion proteins and may inform further design and testing of conformationally dependent herpesvirus glycoprotein vaccine candidates.IMPORTANCEVaccines against human cytomegalovirus (HCMV) still remain elusive in spite of the high disease burden of the virus, especially in pre-term infants and immunocompromised individuals. While vaccine efforts have focused on vaccine-induced antibodies to neutralize the virus, studies have increasingly shown the importance of other antibody functions in protection against cytomegalovirus (CMV) transmission. In this study, we comprehensively evaluated immune responses elicited by the prefusion state of an important HCMV protein called glycoprotein B (gB) in mice. Our results indicate that prefusion gB elicits immune responses similar to that of postfusion gB in mice and reveals areas for further redesign and testing for prefusion vaccine antigens against CMV and other herpesviruses, which could help in furthering vaccine development against HCMV.

人巨细胞病毒融合样糖蛋白B亚单位疫苗在小鼠体内引起与融合后的gB相似的体液免疫。
人类巨细胞病毒(HCMV)是导致出生缺陷的主要传染病。尽管有全球疾病负担,但目前还没有美国食品和药物管理局(FDA)批准的HCMV疫苗。迄今为止最有效的HCMV候选疫苗使用的是糖蛋白B (gB),这是一种融合后形式的III类病毒融合蛋白。虽然一些病毒融合蛋白在其预融合构象中显示出更强的中和反应,但HCMV预融合样和融合后的gB最近在小鼠中显示出具有相似的成纤维细胞中和滴度的抗体。我们的目的是定义和比较不同的灌注样和融合后gB构建体诱导的血浆IgG的特异性和功能。预融合样和融合后的gB引起了类似的IgG反应,主要映射到已知的可引起中和抗体的AD-5抗原区域。有趣的是,融合后的gB与细胞相关的gB和抗体依赖的细胞吞噬的血浆IgG结合明显高于灌注样gB。疫苗在成纤维细胞中诱导了相当的异源HCMV毒株AD169r的中和滴度;然而,这两种方法都不能在成纤维细胞中引起针对疫苗匹配菌株Towne的中和效价。我们的数据表明,与用作疫苗抗原的某些I类病毒融合蛋白不同,这种融合样构象的gB与融合后的gB具有相似的特异性和功能性体液免疫。这些发现加深了我们对III类融合蛋白引起的免疫反应的理解,并可能为进一步设计和测试构象依赖性疱疹病毒糖蛋白候选疫苗提供信息。尽管人类巨细胞病毒(HCMV)的疾病负担很高,特别是在早产儿和免疫功能低下的个体中,但针对该病毒的疫苗仍然难以捉摸。虽然疫苗工作的重点是疫苗诱导的抗体来中和病毒,但研究越来越多地显示其他抗体功能在防止巨细胞病毒(CMV)传播方面的重要性。在这项研究中,我们综合评估了一种重要的HCMV蛋白糖蛋白B (gB)在小鼠体内的预融合状态所引发的免疫反应。我们的研究结果表明,预融合gB在小鼠中引发了与融合后gB相似的免疫反应,并揭示了进一步重新设计和测试CMV和其他疱疹病毒预融合疫苗抗原的领域,这可能有助于进一步开发HCMV疫苗。
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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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