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Low iron availability modulates the course of Chlamydia pneumoniae infection
H M Al-Younes1, T Rudel, V Brinkmann
1Department of Molecular Biology and Central Microscopy Unit, Max Planck Institute for Infection Biology, Schumannstrasse 21/22, D-10117 Berlin, Germany.
Abstract:
Chlamydiae are obligate intracellular bacteria residing exclusively in host cell vesicles termed inclusions. We have investigated the effects of deferoxamine mesylate (DAM)-induced iron deficiency on the growth of Chlamydia pneumoniae and Chlamydia trachomatis serovar L2. In epithelial cells subjected to iron starvation and infected with either C. pneumoniae or C. trachomatis L2, small inclusions were formed, and the infectivity of chlamydial progeny was impaired. Moreover, for C. trachomatis L2, we observed a delay in homotypic fusion of inclusions. The inhibitory effects of DAM were reversed by adding exogenous iron-saturated transferrin, which restored the production of infectious chlamydiae. Electron microscopy examination of iron-deprived specimens revealed that the small inclusions contained reduced numbers of C. pneumoniae that were mostly reticulate bodies. We have previously reported specific accumulation of transferrin receptors (TfRs) around C. pneumoniae inclusions within cells grown under normal conditions. Using confocal and electron microscopy, we show here a remarkable increase in the amount of TfRs surrounding the inclusions in iron-starved cultures. It has been shown that iron is an essential factor in the growth and survival of C. trachomatis. Here, we postulate that, for C. pneumoniae also, iron is an indispensable element and that Chlamydia may use iron transport pathways of the host by attracting TfR to the phagosome.
Insights
Iron deficiency impairs Chlamydia pneumoniae and Chlamydia trachomatis growth by affecting inclusion development and progeny infectivity. Host transferrin receptors are crucial for Chlamydia iron uptake.
Area of Science:
- Microbiology
- Cell Biology
- Bacterial Pathogenesis
Background:
- Chlamydiae are obligate intracellular bacteria that reside within host cell inclusions.
- Iron is known to be essential for the growth and survival of Chlamydia trachomatis.
Purpose of the Study:
- To investigate the impact of iron deficiency on the growth and infectivity of Chlamydia pneumoniae and Chlamydia trachomatis L2.
- To explore the role of host transferrin receptors (TfRs) in Chlamydia's response to iron starvation.
Main Methods:
- Induction of iron deficiency using deferoxamine mesylate (DAM) in infected epithelial cells.
- Assessment of inclusion size, chlamydial infectivity, and inclusion fusion.
- Confocal and electron microscopy to visualize TfR localization.
Main Results:
- Iron deficiency resulted in smaller inclusions and reduced infectivity of chlamydial progeny for both species.
- A delay in inclusion fusion was observed for C. trachomatis L2.
- Exogenous iron-saturated transferrin reversed the inhibitory effects of DAM.
- Iron-starved cultures showed a significant increase in TfRs surrounding the inclusions.
Conclusions:
- Iron is an indispensable element for the growth of C. pneumoniae, similar to C. trachomatis.
- Chlamydia species may utilize host iron transport pathways by attracting TfRs to the inclusion.