泰乐菌素
替米考星
多杀性巴氏杆菌
内啡肽酶
大肠杆菌
核糖体
免疫原
生物
核糖体RNA
化学
微生物学
立体化学
生物化学
抗生素
核糖核酸
核糖核酸酶P
细菌
遗传学
单克隆抗体
基因
抗体
作者
Jacob Poehlsgaard,N. Møller Andersen,Ralf Warrassꝉ,Stephen Douthwaite
摘要
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.
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