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Deciphering the Molecular Mechanism and Function of Pore-Forming Toxins Using Leishmania major
Published on: October 28, 2022
Leishmania initially activates but subsequently down-regulates intracellular mitogen-activated protein kinases and
Rym Ben-Othman1, Lamia Guizani-Tabbane, Koussay Dellagi
1Laboratory of Immunopathology, Vaccinology and Molecular Genetics, WHO Collaborating Centre for Research and Training in Leishmaniasis, Institut Pasteur de Tunis, Tunis-Belvedere, Tunisia.
Abstract:
The complex interactions between Leishmania and macrophages are central to the outcome of parasite infection. Disrupting signaling molecules to impair macrophage function, is a subversive strategy used by several pathogens. In the present study, we show that the initial contact of Leishmania with human naïves macrophages and murine Raw264.7 macrophage cell line induced a rapid and transient activation of extracellular-signal-regulated kinases 1 and 2 (ERK1/2) and p38MAPK. This activation is an actin-dependent mechanism that requires internalization of live parasites. Once stably infected, macrophages become unresponsive to subsequent parasite infection. Priming of cells with IFNgamma, prior to Leishmania infection, did not prevent the silencing of MAPKs pathways induced by Leishmania parasites. NF-kappaB transcriptional activity in response to Leishmania infection is also impaired in stably infected cells. This impairment was not due to MAPK deactivation as inhibition of ERK1/2 and p38MAPK, actually enhances the transcriptional activity of NF-kappaB in response to initial contact of Leishmania with the murine macrophagic cell line Raw264.7. Moreover, Leishmania parasites could not reverse the hyporesponsive state induced by LPS. These effects do not reflect a general down-regulation of macrophages signaling by parasites, as cells with established Leishmania infection display normal response to PMA. In addition we show that the mechanisms of Leishmania-induced hyporesponsive state is not due to the induction of a cellular tyrosine phosphatase activity as previously reported in LPS treated cells.
Insights
Leishmania parasites transiently activate macrophage signaling pathways like ERK1/2 and p38MAPK upon initial contact. Stable infection leads to impaired NF-kappaB activity and hyporesponsiveness, crucial for understanding Leishmania pathogenesis.
Area of Science:
- Immunology
- Cell Biology
- Parasitology
Background:
- Macrophage function is critical for controlling Leishmania parasite infections.
- Pathogens can subvert host cell signaling to impair macrophage defense mechanisms.
Purpose of the Study:
- To investigate the impact of Leishmania infection on macrophage signaling pathways.
- To elucidate the mechanisms by which Leishmania modulates host cell responses.
Main Methods:
- Utilized human naive macrophages and murine Raw264.7 cell line.
- Assessed activation of extracellular-signal-regulated kinases 1 and 2 (ERK1/2) and p38MAPK.
- Evaluated Nuclear Factor-kappaB (NF-kappaB) transcriptional activity.
- Investigated the role of actin-dependent mechanisms and parasite internalization.
Main Results:
- Initial Leishmania contact induced rapid, transient ERK1/2 and p38MAPK activation, dependent on live parasite internalization.
- Stably infected macrophages showed impaired NF-kappaB activity and unresponsiveness to further infection.
- IFN-gamma priming did not prevent MAPK pathway silencing.
- Leishmania infection did not induce cellular tyrosine phosphatase activity.
Conclusions:
- Leishmania infection establishes a hyporesponsive macrophage state by modulating key signaling pathways.
- Understanding these parasite-induced immune evasion strategies is vital for developing effective treatments.
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