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基于重组抗体和计算机辅助的抗体对交链孢酚和交链孢酚单甲醚等效识别机制的综合分析

Recombinant Antibody-Based and Computer-Aided Comprehensive Analysis of Antibody's Equivalent Recognition Mechanism of Alternariol and Alternariol Monomethyl Ether.

作者信息

Wang Zile, Chen Ling, Zheng Pimiao, Wang Jianyi, Ren Zhenhui, Zhang Huixia, Zhang Liang, Jiang Haiyang

机构信息

Department of Veterinary Pharmacology and Toxicology, Beijing Key Laboratory of Detection Technology for Animal-Derived Food Safety, Beijing Laboratory for Food Quality and Safety, College of Veterinary Medicine, China Agricultural University, Beijing, China.

China Institution of Veterinary Drug Control, Beijing, China.

出版信息

Front Chem. 2022 Apr 14;10:871659. doi: 10.3389/fchem.2022.871659. eCollection 2022.

Abstract

Alternariol (AOH) and alternariol monomethyl ether (AME) are two main mycotoxins that endanger human health. In this study, a single-chain antibody fragment (scFv) capable of equivalently and specifically recognizing AOH and AME was first expressed, and its equivalent recognition mechanism was discussed. According to molecular docking and dynamic simulation, the C9 site, which was always exposed outside the binding cavity, made the structural differences between AOH and AME negligible. Due to the high similarity of structures, AOH and AME interacted with almost the same amino acids on the scFv; thus, the same interaction mode and interaction force were produced. This was considered to be the most critical reason for the equivalent recognition. Thus, the exposure of common structures was considered a potential strategy to obtain the equivalent recognition antibodies, and C9 was considered the key site in the process of hapten modification. These results laid a theoretical foundation for further research on antibodies against mycotoxins. It could promote the rapid detection of AOH and AME in food and provide a new idea for targeted preparation of antibodies that could recognize multiple hazards with similar structures.

摘要

交链孢酚(AOH)和交链孢酚单甲醚(AME)是两种危害人类健康的主要霉菌毒素。在本研究中,首先表达了一种能够等效且特异性识别AOH和AME的单链抗体片段(scFv),并探讨了其等效识别机制。根据分子对接和动力学模拟,始终暴露在结合腔外部的C9位点使得AOH和AME之间的结构差异可忽略不计。由于结构高度相似,AOH和AME与scFv上几乎相同的氨基酸相互作用;因此,产生了相同的相互作用模式和相互作用力。这被认为是等效识别的最关键原因。因此,共同结构的暴露被认为是获得等效识别抗体的一种潜在策略,而C9被认为是半抗原修饰过程中的关键位点。这些结果为进一步研究抗霉菌毒素抗体奠定了理论基础。它可以促进食品中AOH和AME的快速检测,并为靶向制备能够识别具有相似结构的多种危害的抗体提供新思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75a9/9046909/9758a62d718b/fchem-10-871659-g001.jpg

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