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

被引:0
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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
机构
[1] South China Agricultural University,National Risk Assessment Laboratory for Antimicrobial Resistance of Animal Original Bacteria
[2] South China Agricultural University,College of Veterinary Medicine
[3] South China Agricultural University,Guangdong Provincial Key Laboratory of Veterinary Pharmaceutics Development and Safety Evaluation
[4] The Third Affiliated Hospital of Sun Yat-sen University,Intensive Care Unit
[5] Huizhou Municipal Central Hospital,Intensive Care Unit
[6] The Second Affiliated Hospital of Soochow University,Department of Clinical Laboratory
[7] The First Affiliated Hospital of Sun Yat-sen University,Department of Laboratory Medicine
[8] Shanghai Pulmonary Hospital,Department of Clinical Laboratory
[9] School of Medicine,Department of Epidemiology, Mailman School of Public Health
[10] Tongji University,undefined
[11] Columbia University,undefined
[12] Hackensack-Meridian Health Center for Discovery and Innovation,undefined
来源
Nature Microbiology | 2019年 / 4卷
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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.
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页码:1457 / 1464
页数:7
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