寡肽
肽
抗生素
大肠杆菌
生物
特洛伊木马
细菌
抗菌肽
细菌外膜
抗生素耐药性
微生物学
运输机
革兰氏阴性菌
生物化学
计算生物学
基因
遗传学
计算机科学
操作系统
作者
Shangwen Luo,Xinrong Li,Xiaojian Gong,Alexey Kulikovsky,Feng Qu,Konstantinos Beis,Konstantin Severinov,Svetlana Dubiley,Xinxin Feng,Shi‐Hui Dong,Satish K. Nair
标识
DOI:10.1073/pnas.2319483121
摘要
Infections caused by gram-negative pathogens continue to be a major risk to human health because of the innate antibiotic resistance endowed by their unique cell membrane architecture. Nature has developed an elegant solution to target gram-negative strains, namely by conjugating toxic antibiotic warheads to a suitable carrier to facilitate the active import of the drug to a specific target organism. Microcin C7 (McC) is a Trojan horse peptide–conjugated antibiotic that specifically targets enterobacteria by exploiting active import through oligopeptide transport systems. Here, we characterize the molecular mechanism of McC recognition by YejA, the solute binding protein of the Escherichia coli oligopeptide transporter. Structure-guided mutational and functional analysis elucidates the determinants of substrate recognition. We demonstrate that the peptide carrier can serve as a passport for the entry of molecules that are otherwise not taken into E. coli cells. We show that peptide conjugation can remodel the antibiotic spectrum of clinically relevant parent compounds. Bioinformatics analysis reveals a broad distribution of YejA-like transporters in only the Proteobacteria, underscoring the potential for the development of Trojan horse antibiotics that are actively imported into such gram-negative bacteria.
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