State Key Laboratory of Veterinary Etiological Biology, National Foot and Mouth Disease Reference Laboratory, Innovative Team for GI Infection and Mucosal Immunity of Swine and Poultry, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou 730046, China.
Jiangsu Co-Innovation Center for Prevention and Control of Important Animal Infectious Diseases and Zoonoses, Yangzhou 225009, Jiangsu, China.
Biomed Res Int. 2020 Jan 30;2020:3201630. doi: 10.1155/2020/3201630. eCollection 2020.
Outbreak of classical swine fever (CSF) results in high mortality and thus causes severe economic losses in the swine industry. Single-domain antibody (sdAb) is the smallest antigen-binding molecule derived from camelid heavy-chain antibodies and has the potential to be used as a molecular probe for detection of CSF virus (CSFV). In this study, two sdAb fragments against the E2 antigen of CSFV were obtained, expressed . The functional characteristics analysis indicated that the recombinant sdAbE2-1 and sdAbE2-2 have excellent binding activity, specificity, and high affinity with equilibrium constant value of 3.34 × 10 and 1.35 × 10 M to E2 protein. Then, sdAbE2s were conjugated with quantum dots (QD)/AF488 to synthesize two molecular probes for imaging CSFV distribution in cells. The sdAbE2-1 was also labeled with carboxyl-magnetic beads to construct immunomagnetic nanobeads (IMNBs) able to capture CSFV virions and recombinant E2 protein. QD/AF455-sdAbE2s probes colocalised with CSFV virions in swine testis cells, and IMNBs were used as a detection template and proved to bind specifically with CSFV virions and E2 protein. The selected sdAb fragments and sdAb-based molecular probes may be used for the rapid identification of CSFV during field outbreaks and for research on CSFV and host interactions.
猪瘟(Classical swine fever,CSF)的爆发导致高死亡率,因此给养猪业造成了严重的经济损失。单域抗体(Single-domain antibody,sdAb)是源自骆驼重链抗体的最小抗原结合分子,具有作为 CSF 病毒(CSFV)检测的分子探针的潜力。在本研究中,获得了针对 CSFV E2 抗原的两个 sdAb 片段,并进行了表达。功能特性分析表明,重组 sdAbE2-1 和 sdAbE2-2 与 E2 蛋白具有优异的结合活性、特异性和高亲和力,平衡常数值分别为 3.34×10-8 和 1.35×10-8 M。然后,将 sdAbE2 与量子点(Quantum dots,QD)/AF488 偶联,合成了两种用于细胞内 CSFV 分布成像的分子探针。将 sdAbE2-1 标记在羧基磁珠上,构建了能够捕获 CSFV 病毒粒子和重组 E2 蛋白的免疫磁珠(Immunomagnetic beads,IMNBs)。QD/AF455-sdAbE2 探针与猪睾丸细胞中的 CSFV 病毒粒子共定位,而 IMNBs 则可用作检测模板,证明与 CSFV 病毒粒子和 E2 蛋白特异性结合。所选择的 sdAb 片段和基于 sdAb 的分子探针可用于在现场爆发期间快速识别 CSFV,并用于 CSFV 和宿主相互作用的研究。