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Updated: Jun 18, 2025

Deciphering the Molecular Mechanism and Function of Pore-Forming Toxins Using Leishmania major
Published on: October 28, 2022
Implication of the Annexin 1/FPR axis in leishmanial exosome-mediated Leishmania major skin hyperpathogenesis
Alonso da Silva Lira Filho1,2, Andrea Lafleur1,2, Fernando Alvarez1,2
1Department of Microbiology and Immunology, McGill University, Montréal, QC, Canada.
Introduction:
Exosomes produced by the protozoan parasite Leishmania (LeishEXO) are well-established drivers of virulence, though mechanisms underlying their exacerbation of experimental leishmaniasis remain elusive. Expression of Annexin A1 (ANXA1), a protein implicated in exosome-mediated pathologies and viral internalization, has been shown to correlate with cutaneous leishmaniasis severity. Given ANXA1's regulation of myeloid cells - the canonical hosts for Leishmania - we studied the potential role of ANXA1 and its receptors FPR1/2 in exerting LeishEXO's effects.
Methods:
Murine and in vitro ANXA1-/- models were used to study the generation of protective TH1 responses during experimental L. major infection with and without LeishEXO. Recruitment of inflammatory cells was assessed using a peritoneal cell recruitment assay and immunophenotyping, and production of inflammatory mediators was measured using a cytokine and chemokine array. Treatment of experimental models with FPR2 antagonist WRW4 and FPR1/2 agonist WKYMVm was used to delineate the role of the FPR/ANXA1 axis in LeishEXO-mediated hyperpathogenesis.
Results:
We established that ANXA1 deficiency prohibits LeishEXO-mediated pathogenesis and myeloid cell infection, with minimal alterations to adaptive and innate immune phenotypes. FPR2 blockade with WRW4 similarly inhibited leishmanial hyperpathogenesis, while direct activation of FPRs with WKYMVm enhanced infection and recapitulated the LeishEXO-mediated phenotype. This research describes LeishEXO's utilization of the ANXA1/FPR axis to facilitate parasitic internalization and pathogenesis, which may be leveraged in the development of therapeutics for leishmaniasis.
Insights
Leishmania exosomes (LeishEXO) use Annexin A1 (ANXA1) and its receptors (FPR1/2) to drive leishmaniasis pathogenesis by promoting parasitic internalization. Blocking this axis inhibits infection, offering therapeutic potential.
Area of Science:
- Parasitology
- Immunology
- Cell Biology
Background:
- Exosomes from Leishmania parasites (LeishEXO) are key virulence factors in leishmaniasis.
- Annexin A1 (ANXA1) expression correlates with disease severity and influences myeloid cell interactions.
- The role of ANXA1 and its receptors in LeishEXO-driven pathogenesis was previously unclear.
Purpose of the Study:
- To investigate the role of Annexin A1 (ANXA1) and its receptors (FPR1/2) in LeishEXO-mediated pathogenesis.
- To determine how LeishEXO utilizes the ANXA1/FPR axis to promote parasitic internalization and disease.
Main Methods:
- Utilized ANXA1 knockout murine and in vitro models for experimental Leishmania major infection.
- Assessed inflammatory cell recruitment and mediator production.
- Employed FPR2 antagonist (WRW4) and FPR1/2 agonist (WKYMVm) to study the ANXA1/FPR axis.
Main Results:
- ANXA1 deficiency prevented LeishEXO-mediated pathogenesis and myeloid cell infection.
- FPR2 blockade inhibited leishmaniasis hyperpathogenesis, while FPR activation mimicked LeishEXO effects.
- LeishEXO exploits the ANXA1/FPR axis for parasitic entry and disease exacerbation.
Conclusions:
- LeishEXO actively utilizes the ANXA1/FPR signaling pathway to enhance parasitic internalization and virulence.
- Targeting the ANXA1/FPR axis presents a potential therapeutic strategy for leishmaniasis treatment.
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