Carlomagno Mariana, Lassabe Gabriel, Rossotti Martín, González-Techera Andrés, Vanrell Lucía, González-Sapienza Gualberto
Cátedra de Inmunología, DEPBIO, Facultad de Química, Instituto de Higiene, UDELAR , Avinguda A. Navarro 3051, piso 2, Montevideo 11600, Uruguay.
Anal Chem. 2014 Oct 21;86(20):10467-73. doi: 10.1021/ac503130v. Epub 2014 Oct 10.
Short peptide loops selected from phage libraries can specifically recognize the formation of hapten-antibody immunocomplexes and can thus be used to develop phage anti-immunocomplex assays (PHAIA) for noncompetitive detection of small molecules. In this study, we generated recombinant chimeras by fusing anti-immunocomplex peptides selected from phage libraries to the N- or C-termini of core streptavidin and used them to setup phage-free noncompetitive assays for the herbicide clomazone (MW 240 Da). The best conditions for refolding were optimized by a high throughput screening allowing to obtain tens of mg of purified protein per liter of culture. The noncompetitive assay developed with these chimeras performed with a 50% saturating concentration (SC50) of 2.2 ± 0.3 ng/mL and limit of detection (LOD) of 0.48 ng/mL. Values that are 13- and 8-fold better that those obtained for the SC50 and LOD of the competitive assay setup with the same antibody. Apart from the first demonstration that recombinant peptide-streptavidin chimeras can be used for sensitive immunodetection of small molecules with a positive readout, this new assay component is a highly standardized reagent with a defined stoichiometry, which can be used in combination with the broad option of existing biotinylated reagents offering a great versatility for the development of conventional immunoassay and biosensors. The utility of the test was demonstrated analyzing the clomazone runoff during the rice growing season in northern Uruguay.
从噬菌体文库中筛选出的短肽环能够特异性识别半抗原-抗体免疫复合物的形成,因此可用于开发噬菌体抗免疫复合物分析方法(PHAIA),以非竞争性方式检测小分子。在本研究中,我们通过将从噬菌体文库中筛选出的抗免疫复合物肽与核心链霉亲和素的N端或C端融合,构建了重组嵌合体,并将其用于建立无噬菌体的非竞争性分析方法,用于检测除草剂异恶草酮(分子量240 Da)。通过高通量筛选优化了重折叠的最佳条件,使得每升培养物能够获得数十毫克的纯化蛋白。用这些嵌合体开发的非竞争性分析方法的50%饱和浓度(SC50)为2.2±0.3 ng/mL,检测限(LOD)为0.48 ng/mL。这些值分别比使用相同抗体建立的竞争性分析方法的SC50和LOD值好13倍和8倍。除了首次证明重组肽-链霉亲和素嵌合体可用于小分子的灵敏免疫检测并获得阳性读数外,这种新的分析组件是一种具有确定化学计量的高度标准化试剂,可与现有的多种生物素化试剂结合使用,为传统免疫分析和生物传感器的开发提供了极大的通用性。通过分析乌拉圭北部水稻生长季节的异恶草酮径流,证明了该检测方法的实用性。