Identification and characterization of a broadly neutralizing and protective nanobody against the HA1 domain of H5 avian influenza virus hemagglutinin.

IF 4 2区 医学 Q2 VIROLOGY
Siqi Xu, Yutong Liu, Chenying Luo, Mengruo Zhou, Ke Wang, Qianmei Xie, Qi Zhang, Qinying Zhang, Qianyu Li, Zhichao Pan, Saixiang Feng, Ming Liao
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引用次数: 0

Abstract

The highly pathogenic avian influenza viruses (HPAIVs) of subtype H5, particularly those of the currently circulating clades 2.3.2.1 and 2.3.4.4, are largely responsible for the sporadic human infections that frequently present with a high case fatality rate. Consequently, there is an urgent necessity for the development of advanced antiviral therapeutic options against the H5 HPAIVs. Herein, the yeast two-hybrid system was employed for identifying seven nanobodies that bind the HA1 domain of hemagglutinin (HA). Among these nanobodies, Nb10 was found to exhibit high-affinity and broad-spectrum neutralization capacity against viruses of clades 2.3.2.1 and 2.3.4.4 under both in vitro and in vivo conditions. Surprisingly, Nb10 exhibited excellent efficacy against the recombinant viruses Re6/PR8, Re8/PR8, Re10/PR8, Re11/PR8, and Re14/PR8 of the subtype H5, with average half-maximal inhibitory concentrations ranging from 0.01 to 0.42 µg/mL in a microneutralization assay. Furthermore, the intratracheal administration of Nb10 resulted in remarkable prophylactic and therapeutic efficacy in mice. The findings herein reveal that the virus-neutralizing effect of Nb10 is achieved by obstructing viral entrance into host cells. Moreover, Western blot analysis and enzyme-linked immunosorbent assay revealed that Nb10 recognizes a conformational epitope located in the region spanning amino acid residues 50-271 of the protein HA1 displayed on the surface of yeast cells. The predicted structure of the binding pocket indicates that Nb10 recognizes the highly conserved receptor-binding site of HA1. Taken together, the current study offers valuable insights for the development of protective therapeutics with broad-spectrum activity and the design of broadly protective influenza vaccines.IMPORTANCEHPAIVs of subtype H5 have raised substantial public health concerns regarding the potential for viral adaptation and sustained human-to-human transmission. The prevention and treatment of the disease are replete with numerous challenges due to frequent antigenic alterations in the virus. Nanobodies have significant potential for clinical applications and therapies owing to their small size and robust tissue-penetrating capabilities. Herein, we describe the identification of Nb10, a broad-spectrum virus-neutralizing and protective nanobody that is effective against the currently circulating H5 HPAIVs of clades 2.3.2.1 and 2.3.4.4. The intratracheal administration of Nb10 afforded significant protection in mice infected with the H5 virus. This result provides novel insights for the rational design of antiviral pharmaceuticals. Furthermore, an analysis of the binding site of the target protein HA1 may be useful for the development of more effective vaccinations against influenza viruses of the subtype H5.

抗H5禽流感病毒血凝素HA1结构域的广泛中和和保护性纳米体的鉴定和表征
H5亚型的高致病性禽流感病毒(hpaiv),特别是目前流行的2.3.2.1和2.3.4.4分支的高致病性禽流感病毒,在很大程度上是造成散发的人间感染的原因,这种感染经常出现高病死率。因此,迫切需要开发针对H5 hpaiv的先进抗病毒治疗方案。本文利用酵母双杂交系统鉴定了7个结合血凝素(HA) HA1结构域的纳米体。在这些纳米体中,Nb10在体外和体内条件下均对2.3.2.1和2.3.4.4支系的病毒表现出高亲和力和广谱中和能力。令人惊讶的是,Nb10对H5亚型重组病毒Re6/PR8、Re8/PR8、Re10/PR8、Re11/PR8和Re14/PR8表现出优异的抑菌效果,微中和试验中平均半最大抑菌浓度为0.01 ~ 0.42µg/mL。此外,经气管给药Nb10对小鼠有显著的预防和治疗作用。本研究结果表明Nb10的病毒中和作用是通过阻断病毒进入宿主细胞来实现的。此外,Western blot分析和酶联免疫吸附实验显示,Nb10识别的构象表位位于酵母细胞表面HA1蛋白氨基酸残基50-271的区域。结合袋的预测结构表明Nb10识别HA1高度保守的受体结合位点。综上所述,目前的研究为开发具有广谱活性的保护性治疗方法和设计具有广泛保护性的流感疫苗提供了宝贵的见解。重要意义H5亚型pai病毒引起了对病毒适应和持续人际传播可能性的重大公共卫生关注。由于病毒中频繁的抗原改变,该疾病的预防和治疗充满了许多挑战。纳米体由于其小尺寸和强大的组织穿透能力,在临床应用和治疗方面具有重要的潜力。在这里,我们描述了Nb10的鉴定,Nb10是一种广谱病毒中和和保护性纳米体,对目前流行的2.3.2.1和2.3.4.4分支的H5 hpaiv有效。经气管给药Nb10对感染H5病毒的小鼠具有显著的保护作用。这一结果为抗病毒药物的合理设计提供了新的见解。此外,对目标蛋白HA1结合位点的分析可能有助于开发更有效的针对H5亚型流感病毒的疫苗。
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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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