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通过荧光光谱和分子对接研究脆弱拟杆菌的CcrA与头孢噻肟和头孢他啶的分子识别及结合

Molecular recognition and binding of CcrA from Bacteroides fragilis with cefotaxime and ceftazidime by fluorescence spectra and molecular docking.

作者信息

Duan Meijiao, Bai Jiakun, Yang Jian, Qiao Pan, Bian Liujiao

机构信息

College of Life Science, Northwest University, Xi'an, 710069, China.

出版信息

J Biol Inorg Chem. 2022 Apr;27(3):283-295. doi: 10.1007/s00775-022-01927-6. Epub 2022 Feb 21.

Abstract

In search of new super-bacterial inhibitor agents, the recognition and binding mechanism of the B1 subclass MβL CcrA from Bacteroides fragilis with cefotaxime (CTX) and ceftazidime (CAZ) were studied using spectroscopy analysis and molecular docking. The results showed that the fluorescence quenching of CcrA induced by CTX and CAZ were all due to the complex formation, which belonged to static quenching and was forced by hydrogen bonds and Van der Waals forces, despite the greater binding ability of CTX with CcrA than CAZ. Upon recognizing CTX or CAZ, the CcrA opened its binding pocket by the microenvironmental and conformational of three loops changing to promote an induced-fit of the freshly introduced antibiotics. In addition, the whole antibiotic molecule ultimately entered the active pocket of CcrA with its original carbonate replaced by the carboxyl oxygen of the hexatomic ring adjacent to the β-lactam ring in CTX or CAZ, forming a new tetrahedral coordination structure at the Zn2 site. Moreover, the difference in steric hindrance and electrostatic effects of the side chain affected the binding ability of the two antibiotics to the CcrA. This work showed the refined procedures of the antibiotics binding to CcrA and might provide useful information hint for the new strategy of developing the novel and innovative super-bacterial antibiotics.

摘要

为寻找新型超级细菌抑制剂,采用光谱分析和分子对接方法,研究了脆弱拟杆菌B1亚类金属β-内酰胺酶CcrA与头孢噻肟(CTX)和头孢他啶(CAZ)的识别及结合机制。结果表明,CTX和CAZ诱导的CcrA荧光猝灭均归因于复合物的形成,属于静态猝灭,由氢键和范德华力驱动,尽管CTX与CcrA的结合能力强于CAZ。识别CTX或CAZ时,CcrA通过三个环的微环境和构象变化打开其结合口袋,以促进新引入抗生素的诱导契合。此外,整个抗生素分子最终进入CcrA的活性口袋,其原有的碳酸根被CTX或CAZ中与β-内酰胺环相邻的六元环的羧基氧取代,在Zn2位点形成新的四面体配位结构。而且,侧链的空间位阻和静电效应差异影响了两种抗生素与CcrA的结合能力。这项工作展示了抗生素与CcrA结合的精细过程,可能为开发新型创新超级细菌抗生素的新策略提供有用的信息提示。

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