Tian Guo-Bao, Jiang Yi-Qi, Huang Ying-Min, Qin Yun, Feng Lian-Qiang, Zhang Xue-Fei, Li Hong-Yu, Zhong Lan-Lan, Zeng Kun-Jiao, Patil Sandip, Xing Yong, Huang Xi
Program of Immunology, Affiliated Guangzhou Women and Children's Medical Center, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China Department of Immunology, Institute of Human Virology, Zhongshan School of Medicine, Sun Yat-sen University, Guangzhou, China Key Laboratory of Tropical Diseases Control, Sun Yat-sen University, Ministry of Education, Guangzhou, China.
BGI Genomics Co., Ltd., Shenzhen, Guangdong, China.
Antimicrob Agents Chemother. 2016 Sep 23;60(10):6121-6. doi: 10.1128/AAC.00822-16. Print 2016 Oct.
CTX-M-140, a novel CTX-M-type extended-spectrum β-lactamase (ESBL), was identified in cephalosporin-resistant clinical isolates of Proteus mirabilis CTX-M-140 contained an alanine-to-threonine substitution at position 109 compared to its putative progenitor, CTX-M-14. When it was expressed in an Escherichia coli isogenic background, CTX-M-140 conferred 4- to 32-fold lower MICs of cephalosporins than those with CTX-M-14, indicating that the phenotype was attributable to this single substitution. For four mutants of CTX-M-14 that were constructed by site-directed mutagenesis (A109E, A109D, A109K, and A109R mutants), MICs of cephalosporins were similar to those for the E. coli host strain, which suggested that the alanine at position 109 was essential for cephalosporin hydrolysis. The kinetic properties of native CTX-M-14 and CTX-M-140 were consistent with the MICs for the E. coli clones. Compared with that of CTX-M-14, a lower hydrolytic activity against cephalosporins was observed for CTX-M-140. blaCTX-M-140 is located on the chromosome as determined by I-CeuI pulsed-field gel electrophoresis (I-CeuI-PFGE) and Southern hybridization. The genetic environment surrounding blaCTX-M-140 is identical to the sequence found in different plasmids with blaCTX-M-9-group genes among the Enterobacteriaceae Genome sequencing and analysis showed that P. mirabilis strains with blaCTX-M-140 have a genome size of ∼4 Mbp, with a GC content of 38.7% and 23 putative antibiotic resistance genes. Our results indicate that alanine at position 109 is critical for the hydrolytic activity of CTX-M-14 against oxyimino-cephalosporins.
CTX-M-140是一种新型的CTX-M型超广谱β-内酰胺酶(ESBL),在奇异变形杆菌对头孢菌素耐药的临床分离株中被鉴定出来。与推测的亲本CTX-M-14相比,CTX-M-140在第109位存在丙氨酸到苏氨酸的替换。当它在大肠杆菌同基因背景中表达时,CTX-M-140对头孢菌素的最低抑菌浓度(MIC)比CTX-M-14低4至32倍,表明该表型归因于这一单一替换。通过定点诱变构建的CTX-M-14的四个突变体(A109E、A109D、A109K和A109R突变体)对头孢菌素的MIC与大肠杆菌宿主菌株相似,这表明第109位的丙氨酸对于头孢菌素水解至关重要。天然CTX-M-14和CTX-M-140的动力学特性与大肠杆菌克隆的MIC一致。与CTX-M-14相比,观察到CTX-M-140对头孢菌素的水解活性较低。通过I-CeuI脉冲场凝胶电泳(I-CeuI-PFGE)和Southern杂交确定,blaCTX-M-140位于染色体上。blaCTX-M-140周围的遗传环境与肠杆菌科不同质粒中发现的blaCTX-M-9组基因序列相同。基因组测序和分析表明,携带blaCTX-M-140的奇异变形杆菌菌株基因组大小约为4 Mbp,GC含量为38.7%,有23个推定的抗生素抗性基因。我们的结果表明,第109位的丙氨酸对于CTX-M-14对氧亚氨基头孢菌素的水解活性至关重要。