Li Qian, Ma Xusheng, Shen Yaner, Dai Junfei, Nian Xiaofeng, Shang Xiaofen, Chen Jiao, Wubshet Ashenafi Kiros, Zhang Jie, Zheng Haixue
State Key Laboratory for Animal Disease Control and Prevention, Lanzhou Veterinary Research Institute, College of Veterinary Medicine, Lanzhou University, Chinese Academy of Agricultural Sciences, Lanzhou 730046, China.
College of Veterinary Medicine, Northeast Agricultural University, Harbin 150030, China.
Viruses. 2024 Apr 17;16(4):621. doi: 10.3390/v16040621.
Southern Africa Territories 2 (SAT2) foot-and-mouth disease (FMD) has crossed long-standing regional boundaries in recent years and entered the Middle East. However, the existing vaccines offer poor cross-protection against the circulating strains in the field. Therefore, there is an urgent need for an alternative design approach for vaccines in anticipation of a pandemic of SAT2 Foot-and-mouth disease virus (FMDV). The porcine parvovirus (PPV) VP2 protein can embed exogenous epitopes into the four loops on its surface, assemble into virus-like particles (VLPs), and induce antibodies and cytokines to PPV and the exogenous epitope. In this study, chimeric porcine parvovirus VP2 VLPs (chimeric PPV-SAT2-VLPs) expressing the T-and/or B-cell epitopes of the structural protein VP1 of FMDV SAT2 were produced using the recombinant pFastBac™ Dual vector of baculoviruses in Sf9 and HF cells We used the Bac-to-Bac system to construct the recombinant baculoviruses. The VP2-VLP--SAT2 chimeras displayed chimeric T-cell epitope (amino acids 21-40 of VP1) and/or the B-cell epitope (amino acids 135-174) of SAT FMDV VP1 by substitution of the corresponding regions at the N terminus (amino acids 2-23) and/or loop 2 and/or loop 4 of the PPV VP2 protein, respectively. In mice, the chimeric PPV-SAT2-VLPs induced specific antibodies against PPV and the VP1 protein of SAT2 FMDV. The VP2-VLP-SAT2 chimeras induced specific antibodies to PPV and the VP1 protein specific epitopes of FMDV SAT2. In this study, as a proof-of-concept, successfully generated chimeric PPV-VP2 VLPs expressing epitopes of the structural protein VP1 of FMDV SAT2 that has a potential to prevent FMDV SAT2 and PPV infection in pigs.
近年来,南部非洲领土2型(SAT2)口蹄疫已跨越长期存在的区域边界,进入中东地区。然而,现有的疫苗对野外流行毒株的交叉保护效果不佳。因此,鉴于SAT2口蹄疫病毒(FMDV)可能大流行,迫切需要一种疫苗的替代设计方法。猪细小病毒(PPV)VP2蛋白可将外源表位嵌入其表面的四个环中,组装成病毒样颗粒(VLP),并诱导针对PPV和外源表位的抗体及细胞因子。在本研究中,利用杆状病毒的重组pFastBac™ Dual载体在Sf9和HF细胞中制备了表达FMDV SAT2结构蛋白VP1的T细胞和/或B细胞表位的嵌合猪细小病毒VP2 VLP(嵌合PPV-SAT2-VLP)。我们使用Bac-to-Bac系统构建重组杆状病毒。通过分别替换PPV VP2蛋白N端(氨基酸2 - 23)和/或环2和/或环4的相应区域,VP2-VLP-SAT2嵌合体展示了SAT FMDV VP1的嵌合T细胞表位(VP1的氨基酸21 - 40)和/或B细胞表位(氨基酸135 - 174)。在小鼠中,嵌合PPV-SAT2-VLP诱导了针对PPV和SAT2 FMDV VP1蛋白的特异性抗体。VP2-VLP-SAT2嵌合体诱导了针对PPV和FMDV SAT2 VP1蛋白特异性表位的特异性抗体。在本研究中,作为概念验证,成功制备了表达FMDV SAT2结构蛋白VP1表位的嵌合PPV-VP2 VLP,其具有预防猪感染FMDV SAT2和PPV的潜力。