Key Laboratory of Food Science and Technology, and Sino-German Joint Research Institute , Nanchang University , 235 Nanjing East Road , Nanchang 330047 , China.
Department of Entomology and Nematology and UCD Comprehensive Cancer Center , University of California, Davis , Davis , California 95616 , United States.
J Agric Food Chem. 2019 May 8;67(18):5221-5229. doi: 10.1021/acs.jafc.9b00688. Epub 2019 Apr 24.
Nanoluciferase (Nluc), the smallest luciferase known, was used as the fusion partner with a nanobody against aflatoxin B to develop a bioluminescent enzyme immunoassay (BLEIA) for detection of the aflatoxin B in cereal. Nanobody (clone G8) against aflatoxin B was fused with nanoluciferase and cloned into a pET22b expression vector, and then transformed into Escherichia coli. The nanobody fusion gene contained a hexahistidine tag for purification by immobilized metal affinity chromatography, yielding a biologically active fusion protein. The fusion protein G8-Nluc retained binding properties of the original nanobody. Concentration of the coelenterazine substrate and buffer composition were also optimized to provide high intensity and long half-life of the luminescent signal. The G8-Nluc was used as a detection antibody to establish a competitive bioluminescent ELISA for the detection of aflatoxin B in cereals successfully. Compared to classical ELISA, this novel assay showed more than 20-fold improvement in detection sensitivity, with an IC value of 0.41 ng/mL and linear range from 0.10 to 1.64 ng/mL. In addition, the entire BLEIA detection procedure can be completed in one step within 2 h, from sample preparation to data analysis. These results suggest that nanobody fragments fused with nanoluciferase might serve as useful and highly sensitive dual functional reagents for the development of rapid and highly sensitive immunoanalytical methods.
纳米荧光素酶(Nluc)是已知的最小荧光素酶,被用作与黄曲霉毒素 B 结合的纳米抗体的融合伙伴,以开发用于检测谷物中黄曲霉毒素 B 的生物发光酶免疫分析(BLEIA)。针对黄曲霉毒素 B 的纳米抗体(克隆 G8)与纳米荧光素酶融合,并克隆到 pET22b 表达载体中,然后转化为大肠杆菌。纳米抗体融合基因包含一个六组氨酸标签,用于通过固定化金属亲和层析进行纯化,得到具有生物活性的融合蛋白。融合蛋白 G8-Nluc 保留了原始纳米抗体的结合特性。还优化了 coelenterazine 底物和缓冲液组成的浓度,以提供高强度和长半衰期的发光信号。将 G8-Nluc 用作检测抗体,成功建立了用于检测谷物中黄曲霉毒素 B 的竞争生物发光 ELISA。与经典 ELISA 相比,该新型测定法的检测灵敏度提高了 20 多倍,IC 值为 0.41ng/mL,线性范围为 0.10 至 1.64ng/mL。此外,从样品制备到数据分析,整个 BLEIA 检测过程可以在 2 小时内一步完成。这些结果表明,与纳米荧光素酶融合的纳米抗体片段可能作为快速和高灵敏度免疫分析方法开发的有用且高度敏感的双功能试剂。