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Additive inhibition of complement deposition by pneumolysin and PspA facilitates Streptococcus pneumoniae septicemia
Jose Yuste1, Marina Botto, James C Paton
1Centre for Respiratory Research, Department of Medicine, Royal Free and University College Medical School, Rayne Institute, London, United Kingdom.
Abstract:
Streptococcus pneumoniae is a common cause of septicemia in the immunocompetent host. To establish infection, S. pneumoniae has to overcome host innate immune responses, one component of which is the complement system. Using isogenic bacterial mutant strains and complement-deficient immune naive mice, we show that the S. pneumoniae virulence factor pneumolysin prevents complement deposition on S. pneumoniae, mainly through effects on the classical pathway. In addition, using a double pspA-/ply- mutant strain we demonstrate that pneumolysin and the S. pneumoniae surface protein PspA act in concert to affect both classical and alternative complement pathway activity. As a result, the virulence of the pspA-/ply- strain in models of both systemic and pulmonary infection is greatly attenuated in wild-type mice but not complement deficient mice. The sensitivity of the pspA-/ply- strain to complement was exploited to demonstrate that although early innate immunity to S. pneumoniae during pulmonary infection is partially complement-dependent, the main effect of complement is to prevent spread of S. pneumoniae from the lungs to the blood. These data suggest that inhibition of complement deposition on S. pneumoniae by pneumolysin and PspA is essential for S. pneumoniae to successfully cause septicemia. Targeting mechanisms of complement inhibition could be an effective therapeutic strategy for patients with septicemia due to S. pneumoniae or other bacterial pathogens.
Insights
Streptococcus pneumoniae uses virulence factors pneumolysin and PspA to evade the complement system, preventing bacterial deposition. This evasion is crucial for causing septicemia in hosts.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Streptococcus pneumoniae causes septicemia by overcoming host immune responses.
- The complement system is a key component of innate immunity against S. pneumoniae.
Purpose of the Study:
- To investigate the role of pneumolysin and PspA in S. pneumoniae evasion of the complement system.
- To determine how complement evasion contributes to S. pneumoniae virulence and septicemia.
Main Methods:
- Utilized isogenic bacterial mutant strains and complement-deficient mice.
- Assessed complement deposition on S. pneumoniae.
- Evaluated bacterial virulence in systemic and pulmonary infection models.
Main Results:
- Pneumolysin prevents complement deposition, primarily via the classical pathway.
- Pneumolysin and PspA act together to inhibit both classical and alternative complement pathways.
- A pspA-/ply- mutant strain showed significantly reduced virulence in wild-type mice but not in complement-deficient mice.
- Complement primarily prevents S. pneumoniae dissemination from lungs to blood.
Conclusions:
- Inhibition of complement deposition by pneumolysin and PspA is essential for S. pneumoniae septicemia.
- Targeting complement evasion mechanisms may offer a therapeutic strategy against S. pneumoniae infections.
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Determinants of Bacterial Pathogenicity and Virulence
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Bacterial Meningitis II: Pathophysiology
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