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Published on: September 27, 2018
Elemental analysis of Mycobacterium avium-, Mycobacterium tuberculosis-, and Mycobacterium smegmatis-containing
Dirk Wagner1, Jörg Maser, Barry Lai
1Kuzell Institute for Arthritis and Infectious Diseases, San Francisco, CA 94115, USA.
Abstract:
Mycobacterium avium and Mycobacterium tuberculosis are human pathogens that infect and replicate within macrophages. Both organisms live in phagosomes that fail to fuse with lysosomes and have adapted their lifestyle to accommodate the changing environment within the endosomal system. Among the many environmental factors that could influence expression of bacterial genes are the concentrations of single elements within the phagosomes. We used a novel hard x-ray microprobe with suboptical spatial resolution to analyze characteristic x-ray fluorescence of 10 single elements inside phagosomes of macrophages infected with M. tuberculosis and M. avium or with avirulent M. smegmatis. The iron concentration decreased over time in phagosomes of macrophages infected with Mycobacterium smegmatis but increased in those infected with pathogenic mycobacteria. Autoradiography of infected macrophages incubated with (59)Fe-loaded transferrin demonstrated that the bacteria could acquire iron delivered via the endocytic route, confirming the results obtained in the x-ray microscopy. In addition, the concentrations of chlorine, calcium, potassium, manganese, copper, and zinc were shown to differ between the vacuole of pathogenic mycobacteria and M. smegmatis. Differences in the concentration of several elements between M. avium and M. tuberculosis vacuoles were also observed. Activation of macrophages with recombinant IFN-gamma or TNF-alpha before infection altered the concentrations of elements in the phagosome, which was not observed in cells activated following infection. Siderophore knockout M. tuberculosis vacuoles exhibited retarded acquisition of iron compared with phagosomes with wild-type M. tuberculosis. This is a unique approach to define the environmental conditions within the pathogen-containing compartment.
Insights
Pathogenic mycobacteria, including Mycobacterium tuberculosis, increase iron in macrophage phagosomes, unlike M. smegmatis. This elemental difference impacts bacterial survival and offers insights into host-pathogen interactions.
Area of Science:
- Microbiology
- Cell Biology
- Biochemistry
Background:
- Mycobacterium avium and Mycobacterium tuberculosis are human pathogens that infect macrophages, residing in phagosomes that avoid lysosomal fusion.
- These pathogens adapt to the endosomal system, with gene expression potentially influenced by phagosomal elemental concentrations.
Purpose of the Study:
- To analyze elemental concentrations within phagosomes of macrophages infected with pathogenic (M. tuberculosis, M. avium) and avirulent (M. smegmatis) mycobacteria.
- To investigate the role of iron acquisition and the impact of macrophage activation on phagosomal elemental composition.
Main Methods:
- Utilized a novel hard x-ray microprobe for high-resolution elemental analysis (10 elements) via characteristic x-ray fluorescence.
- Employed autoradiography with (59)Fe-loaded transferrin to confirm bacterial iron uptake.
- Assessed effects of macrophage activation (IFN-gamma, TNF-alpha) and siderophore knockout in M. tuberculosis.
Main Results:
- Iron concentration increased in phagosomes of pathogenic mycobacteria but decreased in M. smegmatis-infected phagosomes over time.
- Significant differences in chlorine, calcium, potassium, manganese, copper, and zinc concentrations were observed between pathogenic and avirulent mycobacterial vacuoles.
- Macrophage activation before infection altered phagosomal elements; siderophore knockout impaired M. tuberculosis iron acquisition.
Conclusions:
- Phagosomal elemental microenvironments differ significantly between pathogenic and avirulent mycobacteria, particularly regarding iron.
- Bacterial iron acquisition mechanisms and host immune activation influence these elemental compositions, providing a unique view of the pathogen-containing compartment.
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