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Salmonella infections in the absence of the major histocompatibility complex II
1Division of Biology, Kansas State University, Manhattan 66506-4901, USA. skcbiol@ksu.edu
Abstract:
We examined the pathogenesis of the facultative intracellular bacterium, Salmonella typhimurium in MHCII-/-, C2D knock-out mice, and wild-type C57BL/6J mice. The MHCII knock-out shortened the kinetics of animal death and reduced the dose of S. typhimurium needed to kill mice. We measured the physiological and cytokine responses of both mouse strains after S. typhimurium injection. Animal weight loss, spleen weights, liver weights, thymus weights, and serum corticosterone concentrations were comparable after injection with several doses of bacteria. The only physiological differences observed between the two strains were observed 3 days after injection of the highest dose of bacteria tested. Serum concentrations of tumor necrosis factor alpha, interleukin-2, and interleukin-6 increased in a dose-dependent fashion irrespective of mouse MHCII expression. Therefore, even in the absence of MHCII, mice are able to mount relatively normal physiological and immunological responses. Consistent with these normal responses, an increased percentage of MHCII-/- mice, primed with a low dose of bacteria 13 days earlier, were able to survive a lethal challenge of Salmonella compared with unprimed controls. Lastly, C2D mice had significantly higher serum interleukin-10 concentrations than C57BL/6J mice 48 h after infection with all doses of S. typhimurium. C2D macrophages also secreted significantly more IL-10 and less NO and O2- after lipopolysaccharide or phorbol ester stimulation in vitro than wild-type macrophages.
Insights
Mice lacking MHCII expression showed faster Salmonella typhimurium-induced death but mounted normal immune responses. These mice also exhibited enhanced survival after prior Salmonella exposure, indicating robust innate immunity.
Area of Science:
- Immunology
- Microbiology
- Genetics
Background:
- Mice lacking MHC Class II (MHCII-/-) and C2D knock-out strains were used to study Salmonella typhimurium pathogenesis.
- MHCII plays a role in adaptive immunity, influencing host-pathogen interactions.
Purpose of the Study:
- To investigate the role of MHCII in Salmonella typhimurium infection.
- To compare physiological and cytokine responses in MHCII-/- and wild-type mice.
- To assess the impact of MHCII deficiency on host survival and immune response.
Main Methods:
- Salmonella typhimurium infection in MHCII-/-, C2D knock-out, and wild-type C57BL/6J mice.
- Measurement of physiological parameters (weight loss, organ weights, corticosterone).
- Quantification of serum cytokine levels (TNF-α, IL-2, IL-6, IL-10) and macrophage responses (NO, O2-).
Main Results:
- MHCII-/- mice exhibited accelerated mortality and reduced lethal dose of S. typhimurium.
- Physiological responses and most cytokine levels (TNF-α, IL-2, IL-6) were comparable between strains.
- MHCII-/- mice showed increased survival after prior Salmonella priming.
- C2D mice displayed higher IL-10 levels and altered macrophage function (less NO and O2-).
Conclusions:
- Mice can mount significant physiological and immunological responses to S. typhimurium even without MHCII expression.
- The absence of MHCII impacts disease kinetics but not the overall ability to generate certain immune responses.
- C2D mice exhibit distinct IL-10 production and macrophage activity profiles during Salmonella infection.