Indian Veterinary Research Institute, Hebbal, Bengaluru, 560024, India.
ICAR-Project Directorate on Foot-and-Mouth Disease, Mukteswar, Nainital, 263138, India.
Appl Microbiol Biotechnol. 2018 Oct;102(20):8883-8893. doi: 10.1007/s00253-018-9278-9. Epub 2018 Aug 22.
Foot-and-mouth disease (FMD) is an economically important, global disease of cloven-hoofed animals. The conventional vaccine could bring down the incidence of disease in many parts of the world but has many limitations and in India, the disease is enzootic. More promisingly, the alternate vaccine candidates, virus-like particles (VLPs) are as immunogenic as a native virus but are more labile to heat than the live virus capsids. To produce stable VLPs, a single amino acid residue was mutated at 93 and 98 positions at VP2 inter-pentamer region of the P1-2A gene of FMD virus serotype O (IND/R2/75). The mutated capsid protein was expressed in insect cells and characterized for temperature and varying pH stability. Out of S93Y, S93F, S93C, S93H, and Y98F mutant, VLPs, S93Y, S93F, and Y98F showed improved stability at 37 °C for 75 days compared to wild capsid, which was evaluated by sandwich ELISA. Further, the stability analysis of purified VLPs either by differential scanning fluorescence (DSF) stability assay at different temperatures and pH conditions or by dissociation kinetics showed that the Y98F mutant VLPs were more stable than S93Y, S93F, S93C, and S93H mutant and wild-type VLPs. Immunization of guinea pigs with Y98F VLPs induced neutralizing antibodies and 60% of the animals were protected from the FMDV "O" 100 GPID challenge virus.
口蹄疫(FMD)是一种对有蹄类动物具有重要经济意义的全球性疾病。传统疫苗可以降低世界许多地区的疾病发病率,但存在许多限制,在印度,该疾病呈地方性流行。更有前景的是,替代疫苗候选物病毒样颗粒(VLPs)与天然病毒一样具有免疫原性,但比活病毒衣壳对热更不稳定。为了生产稳定的 VLPs,在 FMD 病毒血清型 O(IND/R2/75)的 P1-2A 基因 VP2 五聚体间区的 93 和 98 位氨基酸残基处发生单点突变。突变的衣壳蛋白在昆虫细胞中表达,并对温度和不同 pH 值稳定性进行了表征。在 S93Y、S93F、S93C、S93H 和 Y98F 突变体中,S93Y、S93F 和 Y98F 的 VLPs 在 37°C 下的稳定性提高了 75 天,与野生型衣壳相比,通过夹心 ELISA 进行了评估。此外,通过在不同温度和 pH 条件下进行差示扫描荧光(DSF)稳定性分析或通过离解动力学对纯化的 VLPs 进行稳定性分析表明,Y98F 突变体 VLPs 比 S93Y、S93F、S93C 和 S93H 突变体和野生型 VLPs 更稳定。用 Y98F VLPs 免疫豚鼠可诱导中和抗体,60%的动物可免受 FMDV“O”100 GPID 挑战病毒的侵害。