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Investigation of Antigen-Antibody Interactions of Sulfonamides with a Monoclonal Antibody in a Fluorescence Polarization Immunoassay Using 3D-QSAR Models

机译:使用3D-QSAR模型在荧光偏振免疫测定中研究磺酰胺与单克隆抗体的抗原-抗体相互作用

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摘要

A three-dimensional quantitative structure-activity relationship (3D-QSAR) model of sulfonamide analogs binding a monoclonal antibody (MAbSMR) produced against sulfamerazine was carried out by Distance Comparison (DISCOtech), comparative molecular field analysis (CoMFA), and comparative molecular similarity indices analysis (CoMSIA). The affinities of the MAbSMR, expressed as Log10IC50, for 17 sulfonamide analogs were determined by competitive fluorescence polarization immunoassay (FPIA). The results demonstrated that the proposed pharmacophore model containing two hydrogen-bond acceptors, two hydrogen-bond donors and two hydrophobic centers characterized the structural features of the sulfonamides necessary for MAbSMR binding. Removal of two outliers from the initial set of 17 sulfonamide analogs improved the predictability of the models. The 3D-QSAR models of 15 sulfonamides based on CoMFA and CoMSIA resulted in q2cv values of 0.600 and 0.523, and r2 values of 0.995 and 0.994, respectively, which indicates that both methods have significant predictive capability. Connolly surface analysis, which mainly focused on steric force fields, was performed to complement the results from CoMFA and CoMSIA. This novel study combining FPIA with pharmacophore modeling demonstrates that multidisciplinary research is useful for investigating antigen-antibody interactions and also may provide information required for the design of new haptens.
机译:通过距离比较(DISCOtech),比较分子场分析(CoMFA)和比较分子相似性建立了磺胺类似物结合抗磺胺嘧啶的单克隆抗体(MAbSMR)的三维定量构效关系(3D-QSAR)模型指数分析(CoMSIA)。通过竞争性荧光偏振免疫分析法(FPIA)确定了MAbSMR对17种磺酰胺类似物的亲和力,表示为Log10IC50。结果表明,提出的药效团模型包含两个氢键受体,两个氢键供体和两个疏水中心,表征了MAbSMR结合所必需的磺酰胺的结构特征。从最初的17个磺酰胺类似物组中删除两个异常值可以改善模型的可预测性。基于CoMFA和CoMSIA的15种磺酰胺的3D-QSAR模型得出的q2cv值分别为0.600和0.523,r2值分别为0.995和0.994,这表明这两种方法都具有显着的预测能力。进行了Connolly表面分析,主要侧重于空间力场,以补充CoMFA和CoMSIA的结果。这项新颖的研究将FPIA与药效团建模相结合,证明了多学科研究对于研究抗原-抗体相互作用非常有用,并且还可能提供设计新半抗原所需的信息。

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