Capsular Polysaccharide Is Essential for the Virulence of the Antimicrobial-Resistant Pathogen Enterobacter

Amelia St John1,2, Andrew I Perault1,2, Sabrina I Giacometti3

  • 1Department of Microbiology, New York University Grossman School of Medicine, New York, New York, USA.

Mbio
|February 13, 2023
PubMed

Insights

Multidrug-resistant Enterobacter cloacae complex pathogens use a capsule to evade the host immune system. This capsule is a key target for developing new therapies against these dangerous infections.

Area of Science:

  • Microbiology and Immunology
  • Bacterial Pathogenesis
  • Antimicrobial Resistance

Background:

  • Nosocomial infections caused by multidrug-resistant (MDR) Enterobacter cloacae complex (ECC) pathogens are increasing.
  • Understanding the virulence strategies of ECC is crucial for combating these infections.
  • The role of serum resistance and complement evasion in ECC virulence is not well understood.

Purpose of the Study:

  • To investigate how ECC pathogens evade the host immune system, specifically the complement system in human serum.
  • To identify genetic determinants of serum resistance in Enterobacter hormaechei.
  • To evaluate the role of the bacterial capsule in immune evasion and virulence.

Main Methods:

  • Selection of serum-resistant clones from a serum-sensitive Enterobacter hormaechei strain (NR3055) through in vitro culture.
  • Comparative genomics to identify genetic differences between serum-sensitive and serum-resistant strains.
  • Genetic complementation of the wzy gene and subsequent in vitro assays (serum resistance, complement deposition, neutrophil phagocytosis) and in vivo mouse models (peritonitis) to assess virulence.

Main Results:

  • A premature stop codon in the wzy gene, essential for capsular polysaccharide biosynthesis, was identified in the serum-sensitive strain.
  • Complementation of the wzy gene restored serum resistance, reduced complement deposition, inhibited neutrophil phagocytosis, and increased virulence in a mouse model.
  • Mice vaccinated with encapsulated bacteria were protected against lethal infection, while those exposed to unencapsulated bacteria were not.

Conclusions:

  • The bacterial capsule is a critical determinant of immune evasion for Enterobacter hormaechei, enabling resistance to serum complement.
  • The capsule facilitates virulence by preventing complement-mediated bacterial killing and phagocytosis.
  • Targeting the capsule presents a promising strategy for developing novel therapeutics and prophylactics against MDR Enterobacter infections.

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