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Deciphering the Molecular Mechanism and Function of Pore-Forming Toxins Using Leishmania major
Published on: October 28, 2022
Knockdown of LdMC1 and Hsp70 by antisense oligonucleotides causes cell-cycle defects and programmed cell death in
1Parasitology Laboratory, Department of Zoology, Panjab University, Chandigarh, 160014, India.
Abstract:
Programmed cell death (PCD) has important implications in the biology of unicellular parasites, especially in devising control strategies against them. In this study, we examined the role of metacaspase LdMC1 and heat shock protein Hsp70 in Leishmania donovani through transient gene knockdown using antisense oligonucleotides (ASOs), during MG132-induced PCD. Proteasome inhibitor MG132 was used for inducing PCD in the in vitro culture of Leishmania donovani, which was confirmed by morphological and molecular markers. To assess the role of LdMC1 and Hsp70, ASOs with partially modified phosphorothioate backbone were designed against the protein-coding regions of these genes. Promastigotes and axenic ALFs were exposed to ASOs, and gene knockdown was confirmed using RT-PCR. Exposure to MG132 and ASOs led to morphological defects, DNA fragmentation, delay in progressing through the S-phase of cell-cycle and a decrease in the mitochondrial membrane potential. Antisense knockdown of both these genes, individually as well as together, caused phenotypic and molecular characteristics of PCD. Simultaneous knockdown of both LdMC1 and Hsp70 led to a severity in these defects. Parasites co-exposed to MG132 along with ASOs suffered the maximum damage. Together, these data suggest that LdMC1 and Hsp70 have an indispensable role in Leishmania cell-cycle and are, therefore, important for its survival.
Insights
Programmed cell death (PCD) in Leishmania donovani is crucial for parasite control. Metacaspase LdMC1 and heat shock protein Hsp70 are vital for Leishmania cell-cycle regulation and survival.
Area of Science:
- Parasitology
- Cell Biology
- Molecular Biology
Background:
- Programmed cell death (PCD) is essential in unicellular parasites for developing control strategies.
- Leishmania donovani is a significant human pathogen requiring novel therapeutic approaches.
Purpose of the Study:
- To investigate the roles of metacaspase LdMC1 and heat shock protein Hsp70 in Leishmania donovani PCD.
- To assess the impact of LdMC1 and Hsp70 knockdown on parasite survival and cell-cycle progression.
Main Methods:
- Transient gene knockdown using antisense oligonucleotides (ASOs) against LdMC1 and Hsp70 in Leishmania donovani.
- Induction of PCD using proteasome inhibitor MG132.
- Confirmation of gene knockdown via RT-PCR and assessment of PCD markers (morphological, molecular, cell-cycle, mitochondrial potential).
Main Results:
- MG132 and ASO treatment induced morphological defects, DNA fragmentation, S-phase delay, and decreased mitochondrial membrane potential.
- Knockdown of LdMC1 and Hsp70 individually and simultaneously resulted in PCD characteristics.
- Simultaneous knockdown exacerbated PCD, with combined MG132 and ASO exposure causing maximal damage.
Conclusions:
- LdMC1 and Hsp70 play indispensable roles in Leishmania donovani cell-cycle regulation.
- These proteins are critical for parasite survival, highlighting their potential as targets for anti-Leishmania strategies.
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