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Published on: December 15, 2011
Immune exclusion by naturally acquired secretory IgA against pneumococcal pilus-1
Abstract:
Successful infection by mucosal pathogens requires overcoming the mucus barrier. To better understand this key step, we performed a survey of the interactions between human respiratory mucus and the human pathogen Streptococcus pneumoniae. Pneumococcal adherence to adult human nasal fluid was seen only by isolates expressing pilus-1. Robust binding was independent of pilus-1 adhesive properties but required Fab-dependent recognition of RrgB, the pilus shaft protein, by naturally acquired secretory IgA (sIgA). Pilus-1 binding by specific sIgA led to bacterial agglutination, but adherence required interaction of agglutinated pneumococci and entrapment in mucus particles. To test the effect of these interactions in vivo, pneumococci were preincubated with human sIgA before intranasal challenge in a mouse model of colonization. sIgA treatment resulted in rapid immune exclusion of pilus-expressing pneumococci. Our findings predict that immune exclusion would select for nonpiliated isolates in individuals who acquired RrgB-specific sIgA from prior episodes of colonization with piliated strains. Accordingly, genomic data comparing isolates carried by mothers and their children showed that mothers are less likely to be colonized with pilus-expressing strains. Our study provides a specific example of immune exclusion involving naturally acquired antibody in the human host, a major factor driving pneumococcal adaptation.
Insights
Streptococcus pneumoniae uses pilus-1 to bind mucus, but secretory IgA (sIgA) prevents infection by causing bacterial clumping and entrapment. This immune exclusion mechanism shapes pneumococcal adaptation and colonization patterns.
Area of Science:
- Microbiology
- Immunology
- Pathogen-Host Interactions
Background:
- Mucosal pathogens must overcome mucus barriers for infection.
- Streptococcus pneumoniae is a major human respiratory pathogen.
Purpose of the Study:
- To investigate the interactions between human respiratory mucus and Streptococcus pneumoniae.
- To elucidate the role of secretory IgA (sIgA) in pneumococcal adherence and colonization.
Main Methods:
- Survey of pneumococcal adherence to human nasal fluid.
- Analysis of pilus-1 expression and binding properties.
- Fab-dependent recognition assays for RrgB and sIgA.
- In vivo mouse model of intranasal colonization.
- Genomic comparison of maternal and child isolates.
Main Results:
- Pneumococcal adherence to nasal fluid required pilus-1 expression.
- Binding depended on Fab-dependent recognition of RrgB by sIgA, not pilus-1 adhesins.
- sIgA induced bacterial agglutination and entrapment in mucus.
- sIgA treatment in mice led to immune exclusion of piliated pneumococci.
- Mothers were less likely to carry piliated strains compared to their children.
Conclusions:
- Naturally acquired sIgA mediates immune exclusion of Streptococcus pneumoniae via pilus-1.
- This mechanism is a significant factor driving pneumococcal adaptation and evolution.
- Immune exclusion selects against piliated strains in individuals with specific sIgA.
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