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A Genetic Screen to Isolate Toxoplasma gondii Host-cell Egress Mutants
Published on: February 8, 2012
Encephalitozoon intestinalis infection increases host cell mutation frequency
Cory Ann Leonard, Maria Schell, Robert Vincent Schoborg
1Department of Biomedical Sciences, James H, Quillen College of Medicine, East Tennessee State University, Johnson City, TN 37614-0579, USA. hayman@etsu.edu.
Background:
Microsporidia are obligate intracellular opportunistic fungi that cause significant pathology in immunocompromised hosts. However, 11 percent of immunocompetent individuals in the general population are microsporidia-seropositive, indicating that severe immune suppression may not be a prerequisite for infection. Encephalitozoon intestinalis is transmitted in contaminated water and initially infects gastro-intestinal enterocytes, leading to diarrheal disease. This organism can also disseminate to many other organs. A recent report suggests that microsporidia can establish persistent infections, which anti-fungal treatment does not eradicate. Like other intracellular pathogens, microsporidia infection stresses the host cell and infected individuals have elevated hydrogen peroxide and free radical levels.
Findings:
As oxidative stress can lead to DNA damage, we hypothesized that E. intestinalis-infection would increase host cell nuclear mutation rate. Embryo fibroblasts from Big BlueTM transgenic mice were E. intestinalis-infected and host nuclear mutation frequency was determined by selection of temperature-sensitive c-II gene mutant λ phage. The host mutation frequency in E. intestinalis-infected cultures was 2.5-fold higher than that observed in either mock-infected cells or cells infected with UV-inactivated E. intestinalis spores.
Conclusions:
These data provide the first evidence that microsporidia infection can directly increase host cellular mutation frequency. Additionally, some event in the microsporidia developmental cycle between host cell attachment and parasitophorous vacuole formation is required for the observed effect. As there is considerable evidence linking infection with other intracellular pathogens and cancer, future studies to dissect the mechanism by which E. intestinalis infection increases host mutation frequency are warranted.
Insights
Microsporidia infection, caused by Encephalitozoon intestinalis, significantly elevates host cell mutation rates. This finding suggests a potential link between microsporidia and cancer development, warranting further investigation into the underlying mechanisms.
Area of Science:
- Microbiology
- Cell Biology
- Genetics
Background:
- Microsporidia are opportunistic intracellular fungi causing disease, particularly in immunocompromised individuals.
- Encephalitozoon intestinalis, a common microsporidian, infects enterocytes and can disseminate, leading to persistent infections.
- Microsporidia infection induces oxidative stress, characterized by elevated hydrogen peroxide and free radicals.
Purpose of the Study:
- To investigate whether Encephalitozoon intestinalis infection increases host cell nuclear mutation frequency.
- To explore the potential link between microsporidia infection, oxidative stress, and DNA damage.
Main Methods:
- Utilized Big BlueTM transgenic mice embryo fibroblasts for infection studies.
- Infected cells with E. intestinalis and measured host nuclear mutation frequency using a temperature-sensitive c-II gene mutant λ phage selection system.
- Compared mutation rates in infected cells versus mock-infected and UV-inactivated spore-infected cells.
Main Results:
- E. intestinalis infection resulted in a 2.5-fold increase in host cell nuclear mutation frequency compared to controls.
- The observed increase in mutation frequency was dependent on viable, actively infecting microsporidia spores.
- Specific stages of the microsporidia developmental cycle, from attachment to vacuole formation, are critical for inducing mutations.
Conclusions:
- Microsporidia infection directly elevates host cellular mutation frequency.
- A critical event during the early stages of microsporidia infection is responsible for increasing mutation rates.
- Findings suggest a potential mechanism linking microsporidia infection to cancer, necessitating further research into the molecular pathways involved.
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