Plasmid-encoded tet(X) genes that confer high-level tigecycline resistance in Escherichia coli

替加环素 大肠杆菌 微生物学 生物 流出 质粒 抗生素 基因 多重耐药 抗药性 四环素 抗生素耐药性 遗传学
作者
Jian Sun,Chong Chen,Chao‐Yue Cui,Yan Zhang,Xiao Liu,Ze-Hua Cui,Xiao-Yu Ma,Youjun Feng,Liang-Xing Fang,Xin-Lei Lian,Rong-Min Zhang,You‐Zhi Tang,Kou-Xing Zhang,Han-Mian Liu,Zhi-Hui Zhuang,Shi-Dan Zhou,Jing-Nan Lv,Hong Du,Bin Huang,Fang-You Yu,Barun Mathema,Barry N. Kreiswirth,Xiao‐Ping Liao,Liang Chen,Ya-Hong Liu
出处
期刊:Nature microbiology 卷期号:4 (9): 1457-1464 被引量:357
标识
DOI:10.1038/s41564-019-0496-4
摘要

Tigecycline is one of the last-resort antibiotics to treat complicated infections caused by both multidrug-resistant Gram-negative and Gram-positive bacteria1. Tigecycline resistance has sporadically occurred in recent years, primarily due to chromosome-encoding mechanisms, such as overexpression of efflux pumps and ribosome protection2,3. Here, we report the emergence of the plasmid-mediated mobile tigecycline resistance mechanism Tet(X4) in Escherichia coli isolates from China, which is capable of degrading all tetracyclines, including tigecycline and the US FDA newly approved eravacycline. The tet(X4)-harbouring IncQ1 plasmid is highly transferable, and can be successfully mobilized and stabilized in recipient clinical and laboratory strains of Enterobacteriaceae bacteria. It is noteworthy that tet(X4)-positive E. coli strains, including isolates co-harbouring mcr-1, have been widely detected in pigs, chickens, soil and dust samples in China. In vivo murine models demonstrated that the presence of Tet(X4) led to tigecycline treatment failure. Consequently, the emergence of plasmid-mediated Tet(X4) challenges the clinical efficacy of the entire family of tetracycline antibiotics. Importantly, our study raises concern that the plasmid-mediated tigecycline resistance may further spread into various ecological niches and into clinical high-risk pathogens. Collective efforts are in urgent need to preserve the potency of these essential antibiotics. Plasmid-encoded tet(X) genes from Escherichia coli in China confer high-level tigecycline resistance.
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