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Using the Overlay Assay to Qualitatively Measure Bacterial Production of and Sensitivity to Pneumococcal Bacteriocins
Published on: September 30, 2014
Toll-like receptor 2 contributes to antibacterial defence against pneumolysin-deficient pneumococci
Mark C Dessing1, Sandrine Florquin, James C Paton
1Center of Infection and Immunity Amsterdam (CINIMA), University of Amsterdam, Amsterdam, The Netherlands. m.c.dessing@amc.uva.nl
Abstract:
Toll-like receptors (TLRs) are pattern recognition receptors that recognize conserved molecular patterns expressed by pathogens. Pneumolysin, an intracellular toxin found in all Streptococcus pneumoniae clinical isolates, is an important virulence factor of the pneumococcus that is recognized by TLR4. Although TLR2 is considered the most important receptor for Gram-positive bacteria, our laboratory previously could not demonstrate a decisive role for TLR2 in host defence against pneumonia caused by a serotype 3 S. pneumoniae. Here we tested the hypothesis that in the absence of TLR2, S. pneumoniae can still be sensed by the immune system through an interaction between pneumolysin and TLR4. C57BL/6 wild-type (WT) and TLR2 knockout (KO) mice were intranasally infected with either WT S. pneumoniae D39 (serotype 2) or the isogenic pneumolysin-deficient S. pneumoniae strain D39 PLN. TLR2 did not contribute to antibacterial defence against WT S. pneumoniae D39. In contrast, pneumolysin-deficient S. pneumoniae only grew in lungs of TLR2 KO mice. TLR2 KO mice displayed a strongly reduced early inflammatory response in their lungs during pneumonia caused by both pneumolysin-producing and pneumolysin-deficient pneumococci. These data suggest that pneumolysin-induced TLR4 signalling can compensate for TLR2 deficiency during respiratory tract infection with S. pneumoniae.
Insights
Toll-like receptor 2 (TLR2) deficiency in mice did not impair defense against Streptococcus pneumoniae. However, pneumolysin-mediated TLR4 signaling compensated for TLR2 absence, crucial for sensing pneumococcal infections.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Toll-like receptors (TLRs) are key pattern recognition receptors in innate immunity.
- Pneumolysin, a Streptococcus pneumoniae toxin, is recognized by TLR4.
- The role of TLR2 in pneumococcal pneumonia defense is not fully understood.
Purpose of the Study:
- To investigate if TLR4 signaling compensates for TLR2 deficiency in host defense against S. pneumoniae.
- To determine the role of pneumolysin in TLR2-deficient mice during pneumococcal infection.
Main Methods:
- Intranasal infection of C57BL/6 wild-type and TLR2 knockout mice with S. pneumoniae D39 (wild-type or pneumolysin-deficient).
- Assessment of bacterial load and inflammatory responses in the lungs.
Main Results:
- TLR2 deficiency did not affect antibacterial defense against wild-type S. pneumoniae.
- Pneumolysin-deficient S. pneumoniae exhibited uncontrolled growth exclusively in TLR2 knockout mice.
- TLR2 knockout mice showed a diminished early inflammatory response to both wild-type and pneumolysin-deficient pneumococci.
Conclusions:
- Pneumolysin-induced TLR4 signaling can compensate for TLR2 deficiency in the context of S. pneumoniae respiratory tract infections.
- TLR4 plays a significant role in host defense against pneumococcal pneumonia, particularly when TLR2 is absent.
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