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可视化十六元环大环内酯类替米考星和替米考星与核糖体结合部位。

Visualizing the 16-membered ring macrolides tildipirosin and tilmicosin bound to their ribosomal site.

机构信息

Department of Biochemistry & Molecular Biology, University of Southern Denmark, Campusvej 55, DK-5230 Odense M, Denmark.

出版信息

ACS Chem Biol. 2012 Aug 17;7(8):1351-5. doi: 10.1021/cb300105p. Epub 2012 May 14.

Abstract

The veterinary antibiotic tildipirosin (20,23-dipiperidinyl-mycaminosyl-tylonolide, Zuprevo) was developed recently to treat bovine and swine respiratory tract infections caused by bacterial pathogens such as Pasteurella multocida. Tildipirosin is a derivative of the naturally occurring compound tylosin. Here, we define drug-target interactions by combining chemical footprinting with structure modeling and show that tildipirosin, tylosin, and an earlier tylosin derivative, tilmicosin (20-dimethylpiperidinyl-mycaminosyl-tylonolide, Micotil), bind to the same macrolide site within the large subunit of P. multocida and Escherichia coli ribosomes. The drugs nevertheless differ in how they occupy this site. Interactions of the two piperidine components, which are unique to tildipirosin, distinguish this drug from tylosin and tilmicosin. The 23-piperidine of tildipirosin contacts ribosomal residues on the tunnel wall while its 20-piperidine is oriented into the tunnel lumen and is positioned to interfere with the growing nascent peptide.

摘要

兽用抗生素替米考星(20,23-二哌啶基-麦加米霉素-泰乐菌素,Zuprevo)是最近开发的一种用于治疗由巴氏杆菌和猪肺炎支原体等细菌病原体引起的牛和猪呼吸道感染的药物。替米考星是天然存在的泰乐菌素的衍生物。在这里,我们通过将化学足迹与结构建模相结合来定义药物-靶标相互作用,并表明替米考星、泰乐菌素和早期的泰乐菌素衍生物替米考星(20-二甲基哌啶基-麦加米霉素-泰乐菌素,Micotil)结合到巴氏杆菌和大肠杆菌核糖体大亚基中的相同大环内酯结合位点。然而,这些药物在占据该位点的方式上存在差异。替米考星中特有的两个哌啶成分的相互作用将这种药物与泰乐菌素和替米考星区分开来。替米考星的 23-哌啶与隧道壁上的核糖体残基相互作用,而其 20-哌啶则朝向隧道腔,并被定位以干扰正在生长的新生肽。

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