Binding host proteins to the M protein contributes to the mortality associated with influenza-Streptococcus pyogenes
Andrea L Herrera1, Kuta Suso1, Stephanie Allison1
1Division of Basic Biomedical Sciences, The Sanford School of Medicine of the University of South Dakota, Vermillion, South Dakota, USA.
Abstract:
The mortality associated with influenza A virus (IAV) is often due to the development of secondary bacterial infections known as superinfections. The group A streptococcus (GAS) is a relatively uncommon cause of IAV superinfections, but the mortality of these infections is high. We used a murine model to determine whether the surface-localized GAS M protein contributes to the outcome of IAV-GAS superinfections. A comparison between wild-type GAS and an M protein mutant strain (emm3) showed that the M3 protein was essential to virulence. To determine whether the binding, or recruitment, of host proteins to the bacterial surface contributed to virulence, GAS was suspended with BALF collected from mice that had recovered from a sub-lethal infection with IAV. Following intranasal inoculation of naïve mice, the mortality associated with the wild-type strain, but not the emm3 mutant strain, was greater compared to mice inoculated with GAS suspended with either BALF from uninfected mice or PBS. Further analyses showed that both albumin and fibrinogen (Fg) were more abundant in the respiratory tract 8 days after IAV infection, that M3 bound both proteins to the bacterial surface, and that suspension of GAS with either protein increased GAS virulence in the absence of antecedent IAV infection. Overall, the results showed that M3 is essential to the virulence of GAS in an IAV superinfection and suggested that increased abundance of albumin and Fg in the respiratory tract following IAV infection enhanced host susceptibility to secondary GAS infection.
Insights
Influenza A virus (IAV) superinfections with Group A Streptococcus (GAS) are deadly. GAS M protein is crucial for virulence, binding host proteins like albumin and fibrinogen to increase mortality.
Area of Science:
- Microbiology
- Immunology
- Pathogen-Host Interactions
Background:
- Influenza A virus (IAV) infections can lead to severe secondary bacterial superinfections.
- Group A Streptococcus (GAS) is an uncommon but highly lethal cause of IAV superinfections.
- The role of GAS surface proteins in IAV superinfection pathogenesis is not well understood.
Purpose of the Study:
- To investigate the contribution of the GAS M protein to the outcome of IAV-GAS superinfections.
- To determine if host protein binding to the GAS surface mediates M protein's role in virulence.
Main Methods:
- Murine model of IAV-GAS superinfection.
- Comparison of wild-type GAS and M protein mutant (emm3) strains.
- Analysis of GAS virulence when incubated with bronchoalveolar lavage fluid (BALF) from IAV-infected mice.
Main Results:
- The GAS M3 protein was essential for virulence in the IAV-GAS superinfection model.
- GAS incubated with BALF from IAV-infected mice showed increased mortality compared to controls.
- Albumin and fibrinogen (Fg) were elevated in the respiratory tract post-IAV infection and enhanced GAS virulence upon binding to M3.
Conclusions:
- The GAS M protein is critical for GAS virulence during IAV superinfection.
- Increased levels of albumin and fibrinogen in the respiratory tract after IAV infection enhance susceptibility to GAS superinfection.
- M protein-mediated binding of host proteins contributes to GAS pathogenesis in IAV superinfection.
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