He Yintao, Xie Kaiyuan, Yuan Zhongmao, Ouyang Ting, Dong Anran, Ling Bing, Zeng Weijun, Fang Yiqi, Song Yiwan, Wang Lianxiang, Ding Hongxing, Zhao Mingqiu, Fan Shuangqi, Yi Lin, Zhao Dongfang, Chen Jinding
College of Veterinary Medicine, South China Agricultural University, Guangzhou, China.
Key Laboratory of Zoonosis Prevention and Control of Guangdong Province, South China Agricultural University, Guangzhou, China.
Front Vet Sci. 2024 Nov 13;11:1493650. doi: 10.3389/fvets.2024.1493650. eCollection 2024.
(MPS), caused by (Mhp), is a chronic, airborne respiratory disease that poses a significant threat to the global swine industry. The P97 and P46 proteins are major antigens of Mhp, with the R1 region of P97 possessing full adhesive capability. Studies have shown that the main antigenic regions of Mhp P42 and P65 proteins exhibit strong immunogenicity. In this study, we first linked the genes encoding P97R1 and P46 proteins to form the P97R1P65 gene and subsequently constructed three shuttle plasmids: pFBD-P97R1P46, pFBD-P97R1P46-p65, and pFBD-P65-P42. These proteins were expressed using the Bac to Bac system and formulated into subunit vaccines for mouse immunization. Mouse experiments indicated that the P97R1P46 + P65-P42 protein combination elicited higher levels of specific antibodies, IL-2, IL-4, and CD8 T cells compared to other subunit vaccine groups, a finding further validated in subsequent mouse challenge protection experiments. Therefore, we utilized the MultiBac expression system to co-express P97R1P46, P65, and P42 proteins in the pFastMultibacDual vector for immunization experiments in piglets. The piglet immunization experiments demonstrated that the Mhp subunit vaccine prepared in this study could induce specific antibodies against Mhp, with the combination of P97R1P46, P65, and P42 proteins inducing the highest level of humoral immunity. This study provides valuable insights for the development of Mhp subunit vaccines.
由猪肺炎支原体(Mhp)引起的猪支原体肺炎(MPS)是一种慢性空气传播性呼吸道疾病,对全球养猪业构成重大威胁。P97和P46蛋白是Mhp的主要抗原,P97的R1区域具有完全黏附能力。研究表明,Mhp P42和P65蛋白的主要抗原区域具有很强的免疫原性。在本研究中,我们首先将编码P97R1和P46蛋白的基因连接起来形成P97R1P65基因,随后构建了三种穿梭质粒:pFBD-P97R1P46、pFBD-P97R1P46-p65和pFBD-P65-P42。这些蛋白通过杆状病毒表达系统进行表达,并制成亚单位疫苗用于小鼠免疫。小鼠实验表明,与其他亚单位疫苗组相比,P97R1P46+P65-P42蛋白组合诱导产生了更高水平的特异性抗体、白细胞介素-2、白细胞介素-4和CD8 T细胞,这一结果在随后的小鼠攻毒保护实验中得到进一步验证。因此,我们利用多杆状病毒表达系统在pFastMultibacDual载体中共表达P97R1P46、P65和P42蛋白,用于仔猪免疫实验。仔猪免疫实验表明,本研究制备的Mhp亚单位疫苗可诱导针对Mhp的特异性抗体,P97R1P46、P65和P42蛋白组合诱导的体液免疫水平最高。本研究为Mhp亚单位疫苗的开发提供了有价值的见解。