State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
Graduate School of Guangxi Medical University, Nanning, Guangxi, China.
Microbes Infect. 2017 Dec;19(12):641-647. doi: 10.1016/j.micinf.2017.08.010. Epub 2017 Sep 10.
Highly pathogenic influenza viruses continue to cause serious threat to public health due to their pandemic potential, calling for an urgent need to develop effective, safe, convenient, and universal vaccines against influenza virus infection. In this study, we constructed two recombinant protein vaccines, 2H5M2e-2H7M2e-H5FP-H7FP (hereinafter M2e-FP-1) and 2H5M2e-H5FP-2H7M2e-H7FP (hereinafter M2e-FP-2), by respectively linking highly conserved sequences of two molecules of ectodomain of M2 (M2e) and one molecule of fusion peptide (FP) epitope of hemagglutinin (HA) of H5N1 and H7N9 influenza viruses in different orders. The Escherichia coli-expressed M2e-FP-1 and M2e-FP-2 proteins induced similarly high-titer M2e-FP-specific antibodies in the immunized mice. Importantly, both proteins were able to prevent lethal challenge of heterologous H1N1 influenza virus, with significantly reduced viral titers and alleviated pathological changes in the lungs, as well as increased body weight and complete survivals, in the challenge mice. Taken together, our study demonstrates that highly conserved M2e and FP epitope of HA of H5N1 and H7N9 influenza viruses can be used as important targets for development of safe and economical universal influenza vaccines, and that the position of H7N9 M2e and H5N1 HA epitope sequences in the vaccine components has no significant effects on the immunogenicity and efficacy of M2e-FP-based subunit vaccines.
高致病性流感病毒由于其具有大流行的潜力,继续对公共卫生造成严重威胁,因此迫切需要开发针对流感病毒感染的有效、安全、方便和通用的疫苗。在本研究中,我们通过分别连接血凝素(HA)的两种分子的外域的高度保守序列和 H5N1 和 H7N9 流感病毒的融合肽(FP)表位的两种分子的 M2(M2e),构建了两种重组蛋白疫苗,2H5M2e-2H7M2e-H5FP-H7FP(以下简称 M2e-FP-1)和 2H5M2e-H5FP-2H7M2e-H7FP(以下简称 M2e-FP-2)。在大肠杆菌中表达的 M2e-FP-1 和 M2e-FP-2 蛋白在免疫小鼠中诱导了类似高滴度的 M2e-FP 特异性抗体。重要的是,这两种蛋白都能够预防异源 H1N1 流感病毒的致死性攻击,显著降低病毒滴度,减轻肺部的病理变化,增加体重,使感染的小鼠完全存活。总之,我们的研究表明,H5N1 和 H7N9 流感病毒的 M2 和 HA 的高度保守的 M2e 和 FP 表位可以作为开发安全经济的通用流感疫苗的重要靶标,并且疫苗成分中 H7N9 M2e 和 H5N1 HA 表位序列的位置对基于 M2e-FP 的亚单位疫苗的免疫原性和功效没有显著影响。