Yang Jifei, Jing Mengyao, Niu Qingli, Wang Jinming, Zhao Yaru, Liu Meng, Guan Guiquan, Luo Jianxun, Yin Hong, Liu Zhijie
African Swine Fever Regional Laboratory of China (Lanzhou), State Key Laboratory of Veterinary Etiological Biology, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, Gansu, China.
China Agricultural VET. BIO. Science and Technology Co, Ltd, Lanzhou, China.
Front Microbiol. 2022 Oct 13;13:1017792. doi: 10.3389/fmicb.2022.1017792. eCollection 2022.
African swine fever virus (ASFV) is a large and very complex DNA virus. The major capsid protein p72 is the most predominant structural protein and constitutes the outmost icosahedral capsid of the virion. In the present study, the nanobodies against ASFV p72 protein were screened from a camelid immune VHH library by phage display technique. Nine distinct nanobodies were identified according to the amino acid sequences of the complementary determining regions (CDRs), and contain typical amino acid substitutions in the framework region 2 (FR2). Six nanobodies were successfully expressed in . , and their specificity and affinity to p72 protein were further evaluated. The results showed that nanobodies Nb25 had the best affinity to both recombinant and native p72 protein of ASFV. The Nb25 possesses an extremely long CDR3 with 23 amino acids compared with other nanobodies, which may allow this nanobody to access the hidden epitopes of target antigen. Furthermore, the Nb25 can specifically recognize the virus particles captured by polyclonal antibody against ASFV in a sandwich immunoassay, and its application as a biosensor to target virus in PAM cells was verified by an immunofluorescence assay. Nanobodies have been proven to possess many favorable properties with small size, high affinity and specificity, easier to produce, low costs and deep tissue penetration that make them suitable for various biotechnological applications. These findings suggest that nanobody Nb25 identified herein could be a valuable alternative tool and has potential applications in diagnostic and basic research on ASFV.
非洲猪瘟病毒(ASFV)是一种大型且极其复杂的DNA病毒。主要衣壳蛋白p72是最主要的结构蛋白,构成了病毒粒子最外层的二十面体衣壳。在本研究中,通过噬菌体展示技术从骆驼科动物免疫VHH文库中筛选出了针对ASFV p72蛋白的纳米抗体。根据互补决定区(CDR)的氨基酸序列鉴定出9种不同的纳米抗体,并且在框架区2(FR2)中含有典型的氨基酸替换。6种纳米抗体在……中成功表达,并进一步评估了它们对p72蛋白的特异性和亲和力。结果表明,纳米抗体Nb25对ASFV的重组p72蛋白和天然p72蛋白均具有最佳亲和力。与其他纳米抗体相比,Nb25拥有一个由23个氨基酸组成的极长的CDR3,这可能使该纳米抗体能够识别靶抗原的隐藏表位。此外,在夹心免疫测定中,Nb25能够特异性识别由抗ASFV多克隆抗体捕获的病毒粒子,并且通过免疫荧光测定验证了其作为生物传感器在PAM细胞中靶向病毒的应用。纳米抗体已被证明具有许多优良特性,如尺寸小、亲和力和特异性高、易于生产、成本低以及组织穿透力强,使其适用于各种生物技术应用。这些发现表明,本文鉴定出的纳米抗体Nb25可能是一种有价值的替代工具,在ASFV的诊断和基础研究中具有潜在应用。