Yang Ding-Gang, Chung Yao-Chi, Lai Yiu-Kay, Lai Chia-Wei, Liu Hung-Jen, Hu Yu-Chen
Department of Chemical Engineering, National Tsing Hua, University, Hsinchu, Taiwan.
Mol Ther. 2007 May;15(5):989-96. doi: 10.1038/mt.sj.6300131. Epub 2007 Mar 20.
Hemagglutinin (HA) is the major immunogen on the envelope of avian influenza virus (AIV). Therefore we constructed two recombinant baculoviruses: Bac-HA, expressing histidine-tagged HA with the cytoplasmic domain (CTD) derived from HA, and Bac-HA64, expressing histidine-tagged HA with the CTD derived from baculovirus envelope protein gp64. After infection, HA with either CTD was expressed and anchored on the plasma membrane of Sf-9 cells, as revealed by confocal microscopy. Immunogold electron microscopy demonstrated that both Bac-HA and Bac-HA64 displayed HA on the viral surface. However, analyses of purified viruses revealed that significantly more HA was incorporated into Bac-HA64 than into Bac-HA. In comparison with Bac-HA, Bac-HA64 significantly improved the gene delivery and transgene expression in mammalian cells, as determined by quantitative real-time polymerase chain reaction and flow cytometry. Bac-HA64 elicited significantly higher hemagglutination inhibition titers in mouse models than Bac-HA and the negative controls. These data collectively confirmed that the gp64 CTD, in comparison with HA CTD, resulted in more efficient HA incorporation into baculovirus, more efficient transgene delivery and expression, and elevated immunogenicity. This is the first report demonstrating the potential of HA-pseudotyped baculovirus as an avian influenza vaccine and that the choice of CTD tremendously affects baculovirus properties and vaccine efficacy.
血凝素(HA)是禽流感病毒(AIV)包膜上的主要免疫原。因此,我们构建了两种重组杆状病毒:Bac-HA,表达带有源自HA的胞质结构域(CTD)的组氨酸标签化HA;以及Bac-HA64,表达带有源自杆状病毒包膜蛋白gp64的CTD的组氨酸标签化HA。感染后,共聚焦显微镜显示,带有任一CTD的HA均在Sf-9细胞的质膜上表达并锚定。免疫金电子显微镜表明,Bac-HA和Bac-HA64均在病毒表面展示HA。然而,对纯化病毒的分析显示,与Bac-HA相比,有显著更多的HA掺入Bac-HA64中。通过定量实时聚合酶链反应和流式细胞术测定,与Bac-HA相比,Bac-HA64显著提高了在哺乳动物细胞中的基因递送和转基因表达。在小鼠模型中,Bac-HA64引发的血凝抑制效价比Bac-HA和阴性对照显著更高。这些数据共同证实,与HA CTD相比,gp64 CTD能使HA更有效地掺入杆状病毒,实现更高效的转基因递送和表达,并提高免疫原性。这是首次报道证明HA假型杆状病毒作为禽流感疫苗的潜力,以及CTD的选择对杆状病毒特性和疫苗效力有巨大影响。