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Published on: May 19, 2020
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.
Abstract:
Nosocomial infections caused by multidrug-resistant (MDR) Enterobacter cloacae complex (ECC) pathogens are on the rise. However, the virulence strategies employed by these pathogens remain elusive. Here, we study the interaction of ECC clinical isolates with human serum to define how this pathogen evades the antimicrobial action of complement, one of the first lines of host-mediated immune defense. We identified a small number of serum-sensitive strains, including Enterobacter hormaechei strain NR3055, which we exploited for the in vitro selection of serum-resistant clones. Comparative genomics between the serum-sensitive NR3055 strain and the isolated serum-resistant clones revealed a premature stop codon in the wzy gene of the capsular polysaccharide biosynthesis locus of NR3055. The complementation of wzy conferred serum resistance to NR3055, prevented the deposition of complement proteins on the bacterial surface, inhibited phagocytosis by human neutrophils, and rendered the bacteria virulent in a mouse model of peritonitis. Mice exposed to a nonlethal dose of encapsulated NR3055 were protected from subsequent lethal infections by encapsulated NR3055, whereas mice that were previously exposed to unencapsulated NR3055 succumbed to infection. Thus, capsule is a key immune evasion determinant for E. hormaechei, and it is a potential target for prophylactics and therapeutics to combat these increasingly MDR human pathogens. IMPORTANCE Infections caused by antimicrobial resistant bacteria are of increasing concern, especially those due to carbapenem-resistant Enterobacteriaceae pathogens. Included in this group are species of the Enterobacter cloacae complex, regarding which there is a paucity of knowledge on the infection biology of the pathogens, despite their clinical relevance. In this study, we combine techniques in comparative genomics, bacterial genetics, and diverse models of infection to establish capsule as an important mechanism of Enterobacter pathogens to resist the antibacterial activity of serum, a first line of host defense against bacterial infections. We also show that immune memory targeting the Enterobacter capsule protects against lethal infection. The further characterization of Enterobacter infection biology and the immune response to infection are needed for the development of therapies and preventative interventions targeting these highly antibiotic resistant pathogens.
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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