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Characterization of Inflammatory Responses During Intranasal Colonization with Streptococcus pneumoniae
Published on: January 17, 2014
Bacterial superantigens promote acute nasopharyngeal infection by Streptococcus pyogenes in a human MHC Class
Katherine J Kasper1, Joseph J Zeppa1, Adrienne T Wakabayashi1
1Department of Microbiology and Immunology and the Centre for Human Immunology, Schulich School of Medicine & Dentistry, Western University, London, Ontario, Canada.
Abstract:
Establishing the genetic determinants of niche adaptation by microbial pathogens to specific hosts is important for the management and control of infectious disease. Streptococcus pyogenes is a globally prominent human-specific bacterial pathogen that secretes superantigens (SAgs) as 'trademark' virulence factors. SAgs function to force the activation of T lymphocytes through direct binding to lateral surfaces of T cell receptors and class II major histocompatibility complex (MHC-II) molecules. S. pyogenes invariably encodes multiple SAgs, often within putative mobile genetic elements, and although SAgs are documented virulence factors for diseases such as scarlet fever and the streptococcal toxic shock syndrome (STSS), how these exotoxins contribute to the fitness and evolution of S. pyogenes is unknown. Here we show that acute infection in the nasopharynx is dependent upon both bacterial SAgs and host MHC-II molecules. S. pyogenes was rapidly cleared from the nasal cavity of wild-type C57BL/6 (B6) mice, whereas infection was enhanced up to ∼10,000-fold in B6 mice that express human MHC-II. This phenotype required the SpeA superantigen, and vaccination with an MHC -II binding mutant toxoid of SpeA dramatically inhibited infection. Our findings indicate that streptococcal SAgs are critical for the establishment of nasopharyngeal infection, thus providing an explanation as to why S. pyogenes produces these potent toxins. This work also highlights that SAg redundancy exists to avoid host anti-SAg humoral immune responses and to potentially overcome host MHC-II polymorphisms.
Insights
Streptococcus pyogenes superantigens (SAgs) are critical for establishing nasopharyngeal infections by binding to host MHC-II molecules. Targeting these SAgs, like SpeA, can inhibit bacterial infection.
Area of Science:
- Microbiology
- Immunology
- Genetics
Background:
- Streptococcus pyogenes is a human pathogen that produces superantigens (SAgs).
- SAgs are virulence factors but their role in S. pyogenes fitness and evolution is unclear.
- SAgs bind to T cell receptors and MHC-II molecules, activating T lymphocytes.
Purpose of the Study:
- To investigate the role of bacterial SAgs and host MHC-II in S. pyogenes nasopharyngeal infection.
- To determine if SAgs are essential for pathogen establishment and fitness.
Main Methods:
- Utilized wild-type and human MHC-II expressing C57BL/6 mice to model S. pyogenes infection.
- Assessed bacterial load in the nasopharynx following infection.
- Vaccinated mice with a mutant SpeA toxoid to evaluate its inhibitory effect on infection.
Main Results:
- S. pyogenes infection was significantly enhanced in mice expressing human MHC-II compared to wild-type mice.
- The SpeA superantigen was essential for this enhanced infection phenotype.
- Vaccination with an MHC-II binding mutant SpeA toxoid conferred protection against infection.
Conclusions:
- Bacterial SAgs are critical for the establishment of S. pyogenes nasopharyngeal infections.
- The production of multiple SAgs may serve to evade host anti-SAg immune responses and overcome MHC-II polymorphisms.
- SAgs are key determinants of host-pathogen interactions and niche adaptation for S. pyogenes.
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