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Published on: January 17, 2014
Dual function of pneumolysin in the early pathogenesis of murine pneumococcal pneumonia
J B Rubins1, D Charboneau, J C Paton
1Pulmonary Disease Division, Veterans Affairs Medical Center, Minneapolis, Minnesota.
Abstract:
Streptococcus pneumoniae is one of the most common etiologic agents of community-acquired pneumonia, particularly bacteremic pneumonia. Pneumolysin, a multifunctional cytotoxin, is a putative virulence factor for S. pneumoniae; however, a direct role for pneumolysin in the early pathogenesis of pneumococcal pneumonia has not been confirmed in vivo. We compared the growth of a pneumolysin-deficient (PLY[-]) type 2 S. pneumoniae strain with its isogenic wild-type strain (PLY[+]) after direct endotracheal instillation of bacteria into murine lungs. Compared with PLY(-) bacteria, infection with PLY(+) bacteria produced greater injury to the alveolar-capillary barrier, as assayed by albumin concentrations in alveolar lavage, and substantially greater numbers of PLY(+) bacteria were recovered in alveolar lavages and lung homogenates at 3 and 6 h after infection. The presence of pneumolysin also contributed to the development of bacteremia, which was detected at 3 h after intratracheal instillation of PLY(+) bacteria. The direct effects of pneumolysin on lung injury and on the ability of pneumococci to evade local lung defenses was confirmed by addition of purified recombinant pneumolysin to inocula of PLY(-) pneumococci, which promoted growth of PLY(-) bacteria in the lung to levels comparable to those seen with the PLY(+) strain. We further demonstrated the contributions of both the cytolytic and the complement-activating properties of pneumolysin on enhanced bacterial growth in murine lungs using genetically modified pneumolysin congeners and genetically complement-deficient mice. Thus, pneumolysin facilitates intraalveolar replication of pneumococci, penetration of bacteria from alveoli into the interstitium of the lung, and dissemination of pneumococci into the bloodstream during experimental pneumonia. Moreover, both the cytotoxic and the complement-activating activities of pneumolysin may contribute independently to the acute pulmonary injury and the high rates of bacteremia which characterize pneumococcal pneumonia.
Insights
Pneumolysin, a toxin from Streptococcus pneumoniae, enhances bacterial growth and lung injury during pneumonia. This study confirms its role in facilitating bacterial spread and bloodstream infection in mice.
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Streptococcus pneumoniae is a leading cause of pneumonia, with pneumolysin identified as a key virulence factor.
- The precise role of pneumolysin in the early stages of pneumococcal pneumonia pathogenesis remains unclear.
- Understanding pneumolysin's function is crucial for developing targeted therapies against pneumococcal infections.
Purpose of the Study:
- To investigate the in vivo role of pneumolysin in the early pathogenesis of Streptococcus pneumoniae pneumonia.
- To elucidate the specific contributions of pneumolysin's cytotoxic and complement-activating properties to disease progression.
Main Methods:
- Comparison of wild-type and pneumolysin-deficient Streptococcus pneumoniae strains in a murine lung infection model.
- Assessment of lung injury via alveolar albumin concentration and bacterial load in lung homogenates and lavage fluid.
- Utilized purified recombinant pneumolysin and genetically modified strains/mice to dissect pneumolysin's functions.
Main Results:
- Pneumolysin-deficient bacteria showed reduced lung injury and bacterial replication compared to wild-type.
- Pneumolysin significantly contributed to bacterial dissemination into the bloodstream (bacteremia).
- Both cytotoxic and complement-activating activities of pneumolysin were independently linked to enhanced bacterial growth and lung injury.
Conclusions:
- Pneumolysin is a critical virulence factor that promotes Streptococcus pneumoniae replication within alveoli and facilitates bacterial invasion of lung tissues.
- Pneumolysin aids in the dissemination of pneumococci into the bloodstream, contributing to bacteremia.
- The dual activities of pneumolysin are essential for the acute lung injury and high bacteremia rates characteristic of pneumococcal pneumonia.
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