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Updated: Jun 5, 2026

Deciphering the Molecular Mechanism and Function of Pore-Forming Toxins Using Leishmania major
Published on: October 28, 2022
Processing of metacaspase into a cytoplasmic catalytic domain mediating cell death in Leishmania major
Habib Zalila1, Iveth J González, Amal Kuendig El-Fadili
1Department of Biochemistry, University of Lausanne, 155 Chemin des Boveresses, 1066 Epalinges, Switzerland.
Abstract:
Metacaspases are cysteine peptidases that could play a role similar to caspases in the cell death programme of plants, fungi and protozoa. The human protozoan parasite Leishmania major expresses a single metacaspase (LmjMCA) harbouring a central domain with the catalytic dyad histidine and cysteine as found in caspases. In this study, we investigated the processing sites important for the maturation of LmjMCA catalytic domain, the cellular localization of LmjMCA polypeptides, and the functional role of the catalytic domain in the cell death pathway of Leishmania parasites. Although LmjMCA polypeptide precursor form harbours a functional mitochondrial localization signal (MLS), we determined that LmjMCA polypeptides are mainly localized in the cytoplasm. In stress conditions, LmjMCA precursor forms were extensively processed into soluble forms containing the catalytic domain. This domain was sufficient to enhance sensitivity of parasites to hydrogen peroxide by impairing the mitochondrion. These data provide experimental evidences of the importance of LmjMCA processing into an active catalytic domain and of its role in disrupting mitochondria, which could be relevant in the design of new drugs to fight leishmaniasis and likely other protozoan parasitic diseases.
Insights
Leishmania major metacaspase (LmjMCA) processing enhances parasite sensitivity to hydrogen peroxide by disrupting mitochondria. This finding offers potential for new anti-parasitic drug development against leishmaniasis.
Area of Science:
- Biochemistry
- Parasitology
- Cell Biology
Background:
- Metacaspases are cysteine peptidases involved in programmed cell death across various organisms.
- Leishmania major, a protozoan parasite, possesses a unique metacaspase, LmjMCA, with a caspase-like catalytic domain.
Purpose of the Study:
- To investigate LmjMCA processing sites and cellular localization.
- To determine the functional role of the LmjMCA catalytic domain in Leishmania cell death.
Main Methods:
- Analysis of LmjMCA processing and maturation.
- Cellular localization studies of LmjMCA polypeptides.
- Functional assays assessing parasite sensitivity to oxidative stress.
Main Results:
- LmjMCA polypeptides are primarily cytoplasmic, despite a mitochondrial localization signal in the precursor.
- Under stress, LmjMCA is processed into active catalytic domains.
- The LmjMCA catalytic domain sensitizes parasites to hydrogen peroxide by impairing mitochondria.
Conclusions:
- LmjMCA processing is crucial for generating its active catalytic domain.
- LmjMCA's role in mitochondrial disruption is significant in Leishmania cell death.
- Targeting LmjMCA processing or function may yield novel therapeutic strategies for leishmaniasis and other protozoan diseases.
Related Concept Videos
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The Intrinsic Apoptotic Pathway
Leishmaniasis
Apoptosis
Phagocytosis of Apoptotic Cells
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