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Isolation of Rickettsia prowazekii with reduced sensitivity to gamma interferon
1Department of Microbiology and Immunology, College of Medicine, University of South Alabama, Mobile 36688.
Abstract:
The growth of Rickettsia prowazekii Madrid E was monitored in mouse L929 cells subcultured for several weeks in the presence of gamma interferon (IFN-gamma) to determine whether the rickettsiae would be eliminated from or would persist in these cultures. R. prowazekii exhibited two distinct patterns in these IFN-gamma-treated cultures. In some cases, IFN-gamma-induced inhibition of rickettsial growth led to elimination of the rickettsiae from the L929 cell cultures; in other cases, the initial inhibition of rickettsial growth was followed by establishment of a persistent rickettsial infection in the IFN-gamma-treated L929 cells. During the first 3 days after infection, the growth rate of the L929 cells was significantly lower and higher percentages of the cells were killed in the IFN-gamma-treated, R. prowazekii-infected cultures than in the untreated, R. prowazekii-infected cultures or the mock-infected cultures, whether treated or untreated. This suppression of cell growth occurred in the infected, IFN-gamma-treated cultures that eventually exhibited the elimination pattern as well as the IFN-gamma-treated cultures that became persistently infected. It was not possible to predict the outcome of a particular infection from the early growth pattern of the culture. It was determined that the L929 cells in the persistently infected, IFN-gamma-treated cultures had not lost the ability to respond to IFN-gamma. These cells, after treatment with an antibiotic to eliminate the persistent rickettsiae, retained the ability to inhibit both the replication of vesicular stomatitis virus and the growth of R. prowazekii Madrid E after treatment with IFN-gamma. In contrast, rickettsiae isolated from two persistently infected, IFN-gamma-treated cultures were less sensitive than R. prowazekii Madrid E to the antirickettsial effects of IFN-gamma in standard L929 cells. The maintenance of the phenotype of these altered rickettsiae during plaque purification and passage in the absence of IFN-gamma suggests an alteration at the genetic level rather than phenotypic adaptation.
Insights
Gamma interferon (IFN-gamma) treatment of Rickettsia prowazekii in mouse cells led to either elimination or persistent infection. Persistent infections involved rickettsiae with reduced sensitivity to IFN-gamma, suggesting genetic alteration.
Area of Science:
- Microbiology
- Immunology
- Cell Biology
Background:
- Rickettsia prowazekii is an intracellular bacterium responsible for epidemic typhus.
- Gamma interferon (IFN-gamma) is a key cytokine in the innate immune response against intracellular pathogens.
- Mouse L929 cell line is a commonly used model for studying host-pathogen interactions.
Purpose of the Study:
- To investigate the effect of IFN-gamma on Rickettsia prowazekii Madrid E infection in mouse L929 cells.
- To determine if R. prowazekii can be eliminated or establish persistent infections under IFN-gamma treatment.
- To characterize the host cell response and potential alterations in rickettsiae during persistent infection.
Main Methods:
- Infection of mouse L929 cells with R. prowazekii Madrid E.
- Treatment of infected cells with IFN-gamma over several weeks.
- Monitoring of rickettsial growth and cell viability.
- Characterization of host cell response to IFN-gamma.
- Isolation and sensitivity testing of rickettsiae from persistently infected cultures.
Main Results:
- IFN-gamma treatment resulted in two outcomes: elimination of R. prowazekii or establishment of persistent infection.
- Early infection in IFN-gamma-treated cultures showed suppressed cell growth and increased cell death.
- Persistently infected cells retained responsiveness to IFN-gamma.
- Rickettsiae from persistent infections exhibited reduced sensitivity to IFN-gamma's antirickettsial effects.
- Altered rickettsial phenotype was stable, suggesting a genetic basis.
Conclusions:
- IFN-gamma can lead to either clearance or persistent infection of R. prowazekii in L929 cells.
- Persistent R. prowazekii infections may arise from rickettsiae with genetically determined reduced susceptibility to IFN-gamma.
- This study highlights the complex interplay between host immune response and bacterial adaptation during intracellular infections.