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Detection of Horizontal Gene Transfer Mediated by Natural Conjugative Plasmids in E. coli
Published on: March 24, 2023
Novel Plasmid-Mediated Colistin Resistance Gene mcr-3 in Escherichia coli
Wenjuan Yin1, Hui Li1, Yingbo Shen1
1Beijing Advanced Innovation Center for Food Nutrition and Human Health, College of Veterinary Medicine, China Agricultural University, Beijing, China.
Abstract:
The mobile colistin resistance gene mcr-1 has attracted global attention, as it heralds the breach of polymyxins, one of the last-resort antibiotics for the treatment of severe clinical infections caused by multidrug-resistant Gram-negative bacteria. To date, six slightly different variants of mcr-1, and a second mobile colistin resistance gene, mcr-2, have been reported or annotated in the GenBank database. Here, we characterized a third mobile colistin resistance gene, mcr-3 The gene coexisted with 18 additional resistance determinants in the 261-kb IncHI2-type plasmid pWJ1 from porcine Escherichia colimcr-3 showed 45.0% and 47.0% nucleotide sequence identity to mcr-1 and mcr-2, respectively, while the deduced amino acid sequence of MCR-3 showed 99.8 to 100% and 75.6 to 94.8% identity to phosphoethanolamine transferases found in other Enterobacteriaceae species and in 10 Aeromonas species, respectively. pWJ1 was mobilized to an E. coli recipient by conjugation and contained a plasmid backbone similar to those of other mcr-1-carrying plasmids, such as pHNSHP45-2 from the original mcr-1-harboring E. coli strain. Moreover, a truncated transposon element, TnAs2, which was characterized only in Aeromonas salmonicida, was located upstream of mcr-3 in pWJ1. This ΔTnAs2-mcr-3 element was also identified in a shotgun genome sequence of a porcine E. coli isolate from Malaysia, a human Klebsiella pneumoniae isolate from Thailand, and a human Salmonella enterica serovar Typhimurium isolate from the United States. These results suggest the likelihood of a wide dissemination of the novel mobile colistin resistance gene mcr-3 among Enterobacteriaceae and aeromonads; the latter may act as a potential reservoir for mcr-3IMPORTANCE The emergence of the plasmid-mediated colistin resistance gene mcr-1 has attracted substantial attention worldwide. Here, we examined a colistin-resistant Escherichia coli isolate that was negative for both mcr-1 and mcr-2 and discovered a novel mobile colistin resistance gene, mcr-3 The amino acid sequence of MCR-3 aligned closely with phosphoethanolamine transferases from Enterobacteriaceae and Aeromonas species originating from both clinical infections and environmental samples collected in 12 countries on four continents. Due to the ubiquitous profile of aeromonads in the environment and the potential transfer of mcr-3 between Enterobacteriaceae and Aeromonas species, the wide spread of mcr-3 may be largely underestimated. As colistin has been and still is widely used in veterinary medicine and used at increasing frequencies in human medicine, the continuous monitoring of mobile colistin resistance determinants in colistin-resistant Gram-negative bacteria is imperative for understanding and tackling the dissemination of mcr genes in both the agricultural and health care sectors.
Insights
A new mobile colistin resistance gene, mcr-3, has been discovered in Escherichia coli. This gene, similar to mcr-1 and mcr-2, may be widely spreading among Enterobacteriaceae and Aeromonas species, posing a significant public health concern.
Area of Science:
- Microbiology
- Genetics
- Antimicrobial Resistance
Background:
- The mobile colistin resistance gene mcr-1 has raised global concerns due to its role in polymyxin resistance, a last-resort antibiotic for multidrug-resistant Gram-negative bacteria.
- Existing mobile colistin resistance genes include mcr-1 and mcr-2, with several variants reported.
- Colistin is crucial for treating severe infections caused by Gram-negative bacteria, making resistance a significant threat.
Purpose of the Study:
- To characterize a novel mobile colistin resistance gene, designated mcr-3, identified in a porcine Escherichia coli isolate.
- To investigate the genetic context and potential dissemination of the mcr-3 gene.
Main Methods:
- Nucleotide and amino acid sequence analysis of the mcr-3 gene and its surrounding elements.
- Conjugation experiments to assess the transferability of the plasmid carrying mcr-3.
- Comparative analysis with known mcr genes and mobile genetic elements.
Main Results:
- A novel mobile colistin resistance gene, mcr-3, was identified in the IncHI2-type plasmid pWJ1 from porcine E. coli.
- mcr-3 shares sequence identity with mcr-1 and mcr-2 and encodes a putative phosphoethanolamine transferase.
- The mcr-3 gene was found within a ΔTnAs2 element, which was also identified in E. coli, Klebsiella pneumoniae, and Salmonella enterica isolates from different countries.
Conclusions:
- The discovery of mcr-3 suggests a wider dissemination of mobile colistin resistance genes than previously recognized.
- Aeromonas species may serve as a potential reservoir for mcr-3, facilitating its spread between Enterobacteriaceae and other bacteria.
- Continuous monitoring of mobile colistin resistance determinants is essential to combat the spread of mcr genes in agricultural and healthcare settings.
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