Tianjin Key Laboratory of Risk Assessment and Control Technology for Environment & Food Safety, Tianjin Institute of Environmental and Operational Medicine, Tianjin, 300050, China.
State Key Laboratory of Pathogens and Biosecurity, Institute of Microbiology and Epidemiology, Beijing, 100071, China.
Anal Chim Acta. 2020 Apr 29;1108:28-36. doi: 10.1016/j.aca.2020.01.032. Epub 2020 Jan 22.
In this study, sandwich chemiluminescent immunoassay (CLIA) for the detection of Staphylococcal enterotoxin B (SEB) was developed using nanobody-alkaline phosphatase (Nb-ALP) fusion protein. The SEB-binding nanobodies were obtained from a naïve phage-display library and the Nb-ALP fusion protein was constructed and obtained as a thermally stable and potentially effective substance for detecting antibodies in CLIA. The working range of the sandwich CLIA based on anti-SEB monoclonal antibodies (mAbs) and our fusion protein, Nb37-ALP, was 3.12-50.0 ng mL with SC50 = 8.59 ± 0.37 ng mL. The limit of detection was 1.44 ng mL according to the blank value plus 3 standard deviations. In order to understand the interaction of SEB and Nb37 in depth, the 3D structure of the SEB-Nb37 complex was constructed and verified by molecular modeling and the docking method. The results showed that the complementary-determining region 3 (CDR3) of Nb37 embedded itself in the opening generated by the major histocompatibility complex (MHC) and T-cell receptor- (TcR) binding sites of SEB, indicating that Nb37 may affect the recognition of SEB by MHC class Ⅱ molecules and the TcR. The arginine residue (Arg) 101, Arg102 and phenylalanine residue (Phe)103 of CDR3 in Nb37 may have contributed to specific binding to form six salt-bridges between these and SEB. In conclusion, in terms of their specificity and sensitivity, the obtained anti-SEB Nb-ALP appears to have the potential to replace chemically labeled probes for the detection of SEB.
在这项研究中,开发了一种基于纳米抗体-碱性磷酸酶(Nb-ALP)融合蛋白的夹心化学发光免疫分析(CLIA)来检测葡萄球菌肠毒素 B(SEB)。SEB 结合纳米抗体是从天然噬菌体展示文库中获得的,并且构建并获得了 Nb-ALP 融合蛋白,作为一种热稳定且潜在有效的物质,用于 CLIA 中检测抗体。基于抗 SEB 单克隆抗体(mAbs)和我们的融合蛋白 Nb37-ALP 的夹心 CLIA 的工作范围为 3.12-50.0ng mL,SC50=8.59±0.37ng mL。根据空白值加 3 个标准差,检测限为 1.44ng mL。为了深入了解 SEB 和 Nb37 的相互作用,通过分子建模和对接方法构建并验证了 SEB-Nb37 复合物的 3D 结构。结果表明,Nb37 的互补决定区 3(CDR3)嵌入 SEB 的主要组织相容性复合物(MHC)和 T 细胞受体-(TcR)结合位点产生的开口中,表明 Nb37 可能影响 MHC Ⅱ类分子和 TcR 对 SEB 的识别。Nb37 中 CDR3 的精氨酸残基(Arg)101、Arg102 和苯丙氨酸残基(Phe)103 可能有助于与 SEB 形成六个盐桥,从而形成特异性结合。总之,就其特异性和敏感性而言,获得的抗 SEB Nb-ALP 似乎有可能替代化学标记探针用于检测 SEB。