Qiu Ming, Li Shuai, Li Shubin, Sun Zhe, Lin Hong, Yang Shuai, Cui Meng, Qiu Yuejia, Qi Wenhao, Yu Xiuling, Shang Shaobin, Tian Kegong, Meurens François, Zhu Jianzhong, Chen Nanhua
College of Veterinary Medicine, Yangzhou University, Yangzhou, China.
National Research Center for Veterinary Medicine, Luoyang, China.
J Virol. 2025 Apr 15;99(4):e0004825. doi: 10.1128/jvi.00048-25. Epub 2025 Mar 12.
Porcine reproductive and respiratory syndrome virus (PRRSV) isolates share a restricted cellular tropism. Marc-145 cells derived from African green monkey are one of the few cell lines supporting PRRSV propagation and are commonly used for PRRS vaccine development. However, currently prevalent PRRSV isolates display different Marc-145 cell tropism while the exact determinant is not clarified yet. In this study, we identified for the first time that the 91/97/98 amino acid (aa) substitutions in GP2a of PRRSV play critical roles in determining Marc-145 adaptation. Specifically, multiple series of chimeric viruses were constructed based on four PRRSV infectious clones including Marc-145 adaptive HP-PRRSV-2 strain and Marc-145 non-adaptive NADC34-like PRRSV-2, NADC30-like PRRSV-2, and PRRSV-1 strains. The GP2a 91/97/98 aa substitutions are a sufficient and necessary determinant in NADC34-like and NADC30-like PRRSV-2, a sufficient but not necessary determinant in HP-PRRSV-2, a necessary but not sufficient determinant in PRRSV-1, respectively. In addition, the GP2a substitutions also influenced PRRSV infectivity in PAMs and piglets. Noticeably, the GP2a substitutions did not significantly affect the levels of neutralizing antibodies, porcine T follicular helper (Tfh) cells, and PRRSV-specific IFNγ secreting cells. Overall, our results not only provide new insights into PRRSV tropism and infectivity but also will facilitate PRRS vaccine development.
Prevalent PRRSV isolates present different cell tropisms . Clarifying the exact determinant of PRRSV tropism is crucial for PRRSV isolation and vaccine development. By constructing chimeric viruses based on four representative PRRSV infectious clones, we identified for the first time that the 91/97/98 amino acid substitutions in GP2a play critical but distinct roles in determining Marc-145 cell tropism for different PRRSV strains. The GP2a 91/97/98 amino acid substitutions also affect PRRSV infectivity in PAMs and piglets but do not influence immune responses. This study not only deciphers an exact determinant of PRRSV tropism and infectivity but also has guiding significance for PRRS vaccine development.
猪繁殖与呼吸综合征病毒(PRRSV)分离株具有有限的细胞嗜性。源自非洲绿猴的Marc-145细胞是少数支持PRRSV增殖的细胞系之一,常用于PRRS疫苗研发。然而,目前流行的PRRSV分离株表现出不同的Marc-145细胞嗜性,而确切的决定因素尚未明确。在本研究中,我们首次确定PRRSV的GP2a中91/97/98位氨基酸(aa)替换在决定Marc-145适应性方面起关键作用。具体而言,基于四个PRRSV感染性克隆构建了多个系列的嵌合病毒,包括Marc-145适应性的HP-PRRSV-2株以及Marc-145非适应性的NADC34样PRRSV-2、NADC30样PRRSV-2和PRRSV-1株。GP2a的91/97/98位氨基酸替换在NADC34样和NADC30样PRRSV-2中是充分必要决定因素,在HP-PRRSV-2中是充分但非必要决定因素,在PRRSV-1中是必要但非充分决定因素。此外,GP2a替换也影响PRRSV在肺泡巨噬细胞(PAMs)和仔猪中的感染性。值得注意的是,GP2a替换对中和抗体、猪滤泡辅助性T细胞(Tfh)和PRRSV特异性IFNγ分泌细胞水平没有显著影响。总体而言,我们的结果不仅为PRRSV嗜性和感染性提供了新见解,也将促进PRRS疫苗研发。
流行的PRRSV分离株呈现不同的细胞嗜性。阐明PRRSV嗜性的确切决定因素对于PRRSV分离和疫苗研发至关重要。通过基于四个代表性PRRSV感染性克隆构建嵌合病毒,我们首次确定GP2a中的91/97/98位氨基酸替换在决定不同PRRSV株的Marc-145细胞嗜性方面起关键但不同的作用。GP2a的91/97/98位氨基酸替换也影响PRRSV在PAMs和仔猪中的感染性,但不影响免疫反应。本研究不仅破译了PRRSV嗜性和感染性的确切决定因素,对PRRS疫苗研发也具有指导意义。