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In vivo Imaging of Transgenic Leishmania Parasites in a Live Host
Published on: July 27, 2010
Protein methyltransferase 7 deficiency in Leishmania major increases neutrophil associated pathology in murine model
Juliana Alcoforado Diniz1, Mariana M Chaves2, Slavica Vaselek3
1Department of Cell and Molecular Biology, Ribeirão Preto Medical School, University of São Paulo, Ribeirão Preto, São Paulo, Brazil.
Abstract:
Leishmania major is the main causative agent of cutaneous leishmaniasis in the Old World. In Leishmania parasites, the lack of transcriptional control is mostly compensated by post-transcriptional mechanisms. Methylation of arginine is a conserved post-translational modification executed by Protein Arginine Methyltransferase (PRMTs). The genome from L. major encodes five PRMT homologs, including the cytosolic protein associated with several RNA-binding proteins, LmjPRMT7. It has been previously reported that LmjPRMT7 could impact parasite infectivity. In addition, a more recent work has clearly shown the importance of LmjPRMT7 in RNA-binding capacity and protein stability of methylation targets, demonstrating the role of this enzyme as an important epigenetic regulator of mRNA metabolism. In this study, we unveil the impact of PRMT7-mediated methylation on parasite development and virulence. Our data reveals that higher levels of LmjPRMT7 can impair parasite pathogenicity, and that deletion of this enzyme rescues the pathogenic phenotype of an attenuated strain of L. major. Interestingly, lesion formation caused by LmjPRMT7 knockout parasites is associated with an exacerbated inflammatory reaction in the tissue correlated with an excessive neutrophil recruitment. Moreover, the absence of LmjPRMT7 also impairs parasite development within the sand fly vector Phlebotomus duboscqi. Finally, a transcriptome analysis shed light onto possible genes affected by depletion of this enzyme. Taken together, this study highlights how post-transcriptional regulation can affect different aspects of the parasite biology.
Insights
Protein Arginine Methyltransferase 7 (PRMT7) in Leishmania major impacts parasite virulence and development. Higher PRMT7 levels impair pathogenicity, while its absence affects sand fly development and host inflammation.
Area of Science:
- Molecular Parasitology
- Epigenetics
- Post-transcriptional Regulation
Background:
- Leishmania major causes cutaneous leishmaniasis; post-transcriptional mechanisms compensate for limited transcriptional control.
- Protein Arginine Methyltransferase 7 (PRMT7) is an epigenetic regulator involved in mRNA metabolism and protein stability.
- LmjPRMT7 in L. major has been linked to parasite infectivity and RNA-binding.
Purpose of the Study:
- To investigate the role of PRMT7-mediated methylation in Leishmania major parasite development and virulence.
- To elucidate the impact of LmjPRMT7 on host-parasite interactions and vector competence.
Main Methods:
- Generation of LmjPRMT7 knockout parasites.
- Assessment of parasite pathogenicity and lesion formation in vivo.
- Analysis of parasite development in the sand fly vector (Phlebotomus duboscqi).
- Transcriptome analysis to identify genes affected by LmjPRMT7 depletion.
Main Results:
- Increased LmjPRMT7 levels impair parasite pathogenicity; knockout rescues attenuated strain virulence.
- LmjPRMT7 knockout parasites induce exacerbated inflammation and neutrophil recruitment.
- Absence of LmjPRMT7 hinders parasite development within the sand fly vector.
Conclusions:
- PRMT7 plays a critical role in regulating Leishmania major virulence and development.
- Post-transcriptional regulation by LmjPRMT7 influences host inflammatory responses and vector transmission.
- LmjPRMT7 is a key epigenetic regulator affecting multiple facets of parasite biology.
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