Plasmid-encoding extended-spectrum β-lactamase CTX-M-55 in a clinical Shigella sonnei strain, China

Author:

Qu Fen1,Ying Zhe2,Zhang Chuanling3,Chen Zhenhong4,Chen Suming1,Cui Enbo1,Bao Chunmei1,Yang Huiying2,Wang Jie2,Liu Changting4,Mao Yuanli1,Zhou Dongsheng2

Affiliation:

1. The 302nd Hospital of Chinese People's Liberation Army, Beijing, China

2. State Key Laboratory of Pathogen & Biosecurity, Beijing Institute of Microbiology & Epidemiology, Beijing, China

3. Xiaoshan Hospital, Hangzhou, China

4. Nanlou Respiratory Diseases Department, Chinese People's Liberation Army General Hospital, Beijing 100853, China

Abstract

ABSTRACT  Aims: To characterize a clinical Shigella sonnei strain harboring a conjugatable bla CTX-M-55-borne plasmid. Materials & methods: S. sonnei strain #1081 was isolated from a dysentery patient in China. A CTX-M-55-encoding plasmid harbored in this strain was transformed to Escherichia coli, and then its complete nucleotide sequence was determined by next generation sequencing. The MIC values of bacterial strains were tested by using Vitec® 2 (Biomerieux, Marcy l'Etoile, France). Results: Strain #1081 conferred the resistance to multiple beta-lactam antibiotics. bla CTX-M-55 was the only known antibiotic resistance gene and located in a 3090-bp ISEcp1-bla CTX-M-55-orf477 transposition unit carried by a conjugatable plasmid p1081-CTXM in #1081. The ISEcp1-mediated transposition provided a sole promoter, which was located adjacently upstream of the inverted repeat right element of ISEcp1, to drive the expression of CTX-M-55. Conclusion: Plasmid p1081-CTXM was a close variant of the IncI2-type plasmid pHN1122-1 that was harbored in a faecal E. coli strain recovered from a dog in China, indicating the potential transfer of CTX-M-55-encoding plasmids from faecal flora E. coli to human pathogen S. sonnei.

Publisher

Future Medicine Ltd

Subject

Microbiology (medical),Microbiology

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