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.

Mbio
|June 29, 2017
PubMed

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.