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Published on: March 24, 2023
Plasmid Mediated mcr-1.1 Colistin-Resistance in Clinical Extraintestinal Escherichia coli Strains Isolated in Poland
Piotr Majewski1, Anna Gutowska1, David G E Smith2
1Department of Microbiological Diagnostics and Infectious Immunology, Medical University of Białystok, Białystok, Poland.
Abstract:
Objectives: The growing incidence of multidrug-resistant (MDR) bacteria is an inexorable and fatal challenge in modern medicine. Colistin is a cationic polypeptide considered a "last-resort" antimicrobial for treating infections caused by MDR Gram-negative bacterial pathogens. Plasmid-borne mcr colistin resistance emerged recently, and could potentially lead to essentially untreatable infections, particularly in hospital and veterinary (livestock farming) settings. In this study, we sought to establish the molecular basis of colistin-resistance in six extraintestinal Escherichia coli strains. Methods: Molecular investigation of colistin-resistance was performed in six extraintestinal E. coli strains isolated from patients hospitalized in Medical University Hospital, Bialystok, Poland. Complete structures of bacterial chromosomes and plasmids were recovered with use of both short- and long-read sequencing technologies and Unicycler hybrid assembly. Moreover, an electrotransformation assay was performed in order to confirm IncX4 plasmid influence on colistin-resistance phenotype in clinical E. coli strains. Results: Here we report on the emergence of six mcr-1.1-producing extraintestinal E. coli isolates with a number of virulence factors. Mobile pEtN transferase-encoding gene, mcr-1.1, has been proved to be encoded within a type IV secretion system (T4SS)-containing 33.3 kbp IncX4 plasmid pMUB-MCR, next to the PAP2-like membrane-associated lipid phosphatase gene. Conclusion: IncX4 mcr-containing plasmids are reported as increasingly disseminated among E. coli isolates, making it an "epidemic" plasmid, responsible for (i) dissemination of colistin-resistance determinants between different E. coli clones, and (ii) circulation between environmental, industrial, and clinical settings. Great effort needs to be taken to avoid further dissemination of plasmid-mediated colistin resistance among clinically relevant Gram-negative bacterial pathogens.
Insights
Multidrug-resistant bacteria pose a significant threat. This study identifies the IncX4 plasmid carrying the mcr-1.1 gene as a key factor in colistin resistance in extraintestinal Escherichia coli, highlighting its potential for widespread dissemination.
Area of Science:
- Microbiology
- Genetics
- Antimicrobial Resistance
Background:
- The rise of multidrug-resistant (MDR) bacteria presents a critical global health challenge.
- Colistin, a last-resort antibiotic, is vital for treating infections caused by MDR Gram-negative bacteria.
- Emergence of plasmid-borne colistin resistance genes, such as mcr, threatens treatment efficacy.
Purpose of the Study:
- To elucidate the molecular mechanisms underlying colistin resistance in six extraintestinal Escherichia coli strains.
- To investigate the role of plasmids in the dissemination of colistin resistance.
Main Methods:
- Whole-genome sequencing (short- and long-read) and hybrid assembly (Unicycler) were used to characterize bacterial chromosomes and plasmids.
- Electrotransformation assays were conducted to confirm the IncX4 plasmid's role in colistin resistance.
- Six clinical extraintestinal E. coli isolates were analyzed.
Main Results:
- Six mcr-1.1-producing extraintestinal E. coli isolates were identified, possessing multiple virulence factors.
- The mcr-1.1 gene was located on a 33.3 kbp IncX4 plasmid (pMUB-MCR), adjacent to a PAP2-like gene and within a type IV secretion system.
- This IncX4 plasmid demonstrated influence on the colistin-resistance phenotype.
Conclusions:
- IncX4 plasmids carrying mcr genes are increasingly prevalent and act as 'epidemic' plasmids.
- These plasmids facilitate the spread of colistin resistance determinants among E. coli clones.
- Effective strategies are crucial to prevent further dissemination of plasmid-mediated colistin resistance in clinical settings.
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