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抗体与对映体之间的立体特异性识别及定量构效关系:以氧氟沙星作为模型半抗原

Stereospecific recognition and quantitative structure-activity relationship between antibodies and enantiomers: ofloxacin as a model hapten.

作者信息

Mu Hongtao, Wang Baoling, Xu Zhenlin, Sun Yuanming, Huang Xinan, Shen Yudong, Eremin Sergei A, Zherdev Anatoly V, Dzantiev Boris B, Lei Hongtao

机构信息

Guangdong Provincial Key Laboratory of Food Quality and Safety, South China Agricultural University/Guangdong Provincial Engineering & Technique Research Centre of Food Safety Detection and Risk Assessment, Guangzhou 510642, China.

出版信息

Analyst. 2015 Feb 21;140(4):1037-45. doi: 10.1039/c4an02155j.

Abstract

In this study, ofloxacin stereoisomers were chosen as a simple model to investigate the stereospecific recognition of chiral haptens and antibodies. Three polyclonal antibodies were studied and showed a relatively high enantioselectivity and an excellent sensitivity. Comparative molecular field analysis and comparative molecular similarity indices analysis were employed to investigate the chiral recognition between the antibody and the ofloxacin enantiomer, and all the models yielded high correlation and predictive ability. It was found that the chiral discrimination was probably caused by steric hindrance; the antibody stereospecificity could be ascribed to the variation of the R1 and R3 groups of quinolones; the common structure of the quinolones is also essential in the hapten-antibody recognition. The recognition between the chiral haptens and the antibodies was co-affected by multiple interaction forces, and those forces were defined explicitly at the sub-structural level. An illustrative enhanced model with good simplicity and universality was also developed for a better understanding of the stereospecific recognition of ofloxacin enantiomers and antibodies for the first time. This work provides insights into the stereospecific recognition of chiral haptens and antibodies.

摘要

在本研究中,选择氧氟沙星立体异构体作为一个简单模型,以研究手性半抗原与抗体之间的立体特异性识别。研究了三种多克隆抗体,它们表现出相对较高的对映选择性和出色的灵敏度。采用比较分子场分析和比较分子相似性指数分析来研究抗体与氧氟沙星对映体之间的手性识别,所有模型都具有高度相关性和预测能力。研究发现,手性识别可能是由空间位阻引起的;抗体的立体特异性可归因于喹诺酮类药物R1和R3基团的变化;喹诺酮类药物的共同结构在半抗原-抗体识别中也至关重要。手性半抗原与抗体之间的识别受到多种相互作用力的共同影响,并且这些作用力在亚结构水平上得到了明确界定。还首次开发了一个具有良好简单性和通用性的示例性增强模型,以更好地理解氧氟沙星对映体与抗体之间的立体特异性识别。这项工作为手性半抗原与抗体之间的立体特异性识别提供了见解。

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