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The Fosfomycin Resistance Gene fosB3 Is Located on a Transferable Extrachromosomal Circular Intermediate in Clinical Enterococcus faecium Isolates

机译:磷霉素抗性基因fosB3位于粪肠球菌临床分离株中可转移的染色体外环状中间体上

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摘要

Some VanM-type vancomycin-resistant Enterococcus faecium isolates from China are also resistant to fosfomycin. To investigate the mechanism of fosfomycin resistance in these clinical isolates, antimicrobial susceptibility testing, filter-mating, Illumina/Solexa sequencing, inverse PCR and fosfomycin resistance gene cloning were performed. Three E. faecium clinical isolates were highly resistant to fosfomycin and vancomycin with minimal inhibitory concentrations (MICs) >1024 µg/ml and >256 µg/ml, respectively. The fosfomycin and vancomycin resistance of these strains could be co-transferred by conjugation. They carried a fosfomycin resistance gene fosB encoding a protein differing by one or two amino acids from FosB, which is encoded on staphylococcal plasmids. Accordingly, the gene was designated fosB3. The fosB3 gene was cloned into pMD19-T, and transformed into E. coli DH5α. The fosfomycin MIC for transformants with fosB3 was 750-fold higher than transformants without fosB3. The fosB3 gene could be transferred by an extrachromosomal circular intermediate. The results indicate that the fosB3 gene is transferable, can mediate high level fosfomycin resistance in both Gram-positive and Gram-negative bacteria, and can be located on a circular intermediate.
机译:一些来自中国的VanM型耐万古霉素粪便肠球菌也对磷霉素耐药。为了研究这些临床分离株中磷霉素耐药的机制,进行了抗菌药敏试验,过滤器配接,Illumina / Solexa测序,反向PCR和磷霉素耐药基因克隆。三种粪肠球菌临床分离株对磷霉素和万古霉素具有高度耐药性,分别具有最小抑菌浓度(MIC)> 1024 µg / ml和> 256 µg / ml。这些菌株对磷霉素和万古霉素的抗性可以通过结合共转移。他们携带了磷霉素抗性基因fosB,该基因编码的蛋白质与FosB有一个或两个氨基酸的差异,该蛋白质在葡萄球菌质粒上编码。因此,该基因被命名为fosB3。将该fosB3基因克隆到pMD19-T中,并转化到大肠杆菌DH5α中。具有fosB3的转化子的磷霉素MIC比没有fosB3的转化子高750倍。 fosB3基因可以通过染色体外的环状中间体转移。结果表明,fosB3基因是可转移的,可以在革兰氏阳性和革兰氏阴性细菌中介导高水平的磷霉素抗性,并且可以位于圆形中间体上。

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