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Substructure-activity relationship studies on antibody recognition for phenylurea compounds using competitive immunoassay and computational chemistry

机译:利用竞争性免疫分析和计算化学研究苯脲化合物抗体识别的亚结构-活性关系

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摘要

Based on the structural features of fluometuron, an immunizing hapten was synthesized and conjugated to bovine serum albumin as an immunogen to prepare a polyclonal antibody. However, the resultant antibody indicated cross-reactivity with 6 structurally similar phenylurea herbicides, with binding activities (expressed by IC50 values) ranging from 1.67 µg/L to 42.71 µg/L. All 6 phenylurea herbicides contain a common moiety and three different substitutes. To understand how these three different chemical groups affect the antibody-phenylurea recognition activity, quantum chemistry, using density function theory (DFT) at the B3LYP/6-311++ G(d,p) level of theory, was employed to optimize all phenylurea structures, followed by determination of the 3D conformations of these molecules, pharmacophore analysis, and molecular electrostatic potential (ESP) analysis. The molecular modeling results confirmed that the geometry configuration, pharmacophore features and electron distribution in the substituents were related to the antibody binding activity. Spearman correlation analysis further elucidated that the geometrical and electrostatic properties on the van der Waals (vdW) surface of the substituents played a critical role in the antibody-phenylurea recognition process.
机译:根据氟美隆的结构特点,合成了一种免疫半抗原,并与牛血清白蛋白结合作为免疫原,制备了多克隆抗体。但是,所得抗体表明与6种结构相似的苯基脲除草剂具有交叉反应性,结合活性(以IC50值表示)范围为1.67μg/ L至42.71μg/ L。所有6种苯基脲除草剂均包含一个公共部分和三个不同的替代物。为了了解这三个不同的化学基团如何影响抗体对苯脲的识别活性,采用了密度泛函理论(DFT)在B3LYP / 6-311 ++ G(d,p)的理论水平下进行量子化学分析,以优化所有苯脲结构,然后确定这些分子的3D构象,药效基团分析和分子静电势(ESP)分析。分子建模结果证实,取代基的几何构型,药效基团特征和电子分布与抗体结合活性有关。 Spearman相关分析进一步阐明了取代基的范德华(vdW)表面的几何和静电性质在抗体-苯基脲识别过程中起着关键作用。

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