Laboratory of Animal Infectious Diseases and Molecular Immunology, College of Animal Science and Technology, Guangxi University, Nanning, 530005, China.
Laboratory of Animal Infectious Diseases and Molecular Immunology, College of Animal Science and Technology, Guangxi University, Nanning, 530005, China; Guangxi Zhuang Autonomous Region Engineering Research Center of Veterinary Biologics, Nanning, 530005, China; Guangxi Key Laboratory of Animal Reproduction, Breeding and Disease Control, Nanning, 530005, China.
Virology. 2024 Aug;596:110102. doi: 10.1016/j.virol.2024.110102. Epub 2024 May 10.
The escalating epidemic of PRRSV-1 in China has prompted widespread concern regarding the evolution of strains, disparities in pathogenicity to herds, and immunological detection of emerging strains. The nucleocapsid (N) protein, as a highly conserved protein with immunogenic properties in PRRSV, is a subject of intensive study. In this research, the recombinant His-N protein was expressed based on the N gene of PRRSV-1 using a prokaryotic expression system and then administered to BALB/c mice. A cell fusion protocol was implemented between SP2/0 cells and splenocytes, resulting in the successful screening of a monoclonal antibody against the N protein, designated as mAb 2D7, by indirect ELISA. Western Blot analysis and Indirect Immunofluorescence Assay (IFA) confirmed that mAb 2D7 positively responded to PRRSV-1. By constructing and expressing a series of truncated His-fused N proteins, a B-cell epitope of N protein, 59-AAEDDIR-65, was identified. A sequence alignment of two genotypes of PRRSV revealed that this epitope is relatively conserved in PRRSV, yet more so in genotype 1. Cross-reactivity analysis by Western blot analysis demonstrated that the B-cell epitope containing D62Y mutation could not be recognized by mAb 2D7. The inability of mAb 2D7 to recognize the epitope carrying the D62Y mutation was further determined using an infectious clone of PRRSV. This research may shed light on the biological significance of the N protein of PRRSV, paving the way for the advancement of immunological detection and development of future recombinant marker vaccine.
中国 PRRSV-1 疫情不断升级,引发了人们对病毒株进化、对畜群致病性差异以及新型病毒株免疫检测等方面的广泛关注。核衣壳(N)蛋白是 PRRSV 中一种高度保守且具有免疫原性的蛋白,是研究的热点。本研究采用原核表达系统,根据 PRRSV-1 的 N 基因,表达了重组 His-N 蛋白,并将其免疫 BALB/c 小鼠。通过 SP2/0 细胞与脾细胞融合,间接 ELISA 成功筛选到一株针对 N 蛋白的单克隆抗体,命名为 mAb 2D7。Western blot 分析和间接免疫荧光试验(IFA)证实 mAb 2D7 可与 PRRSV-1 发生阳性反应。通过构建和表达一系列截短的 His 融合 N 蛋白,鉴定出 N 蛋白的一个 B 细胞表位,即 59-AAEDDIR-65。对两种基因型 PRRSV 的序列比对表明,该表位在 PRRSV 中相对保守,在基因型 1 中更为保守。Western blot 交叉反应分析表明,含有 D62Y 突变的 B 细胞表位不能被 mAb 2D7 识别。进一步通过 PRRSV 感染性克隆证实 mAb 2D7 不能识别含有 D62Y 突变的表位。本研究可为 PRRSV N 蛋白的生物学意义提供参考,为免疫检测和未来重组标记疫苗的开发奠定基础。