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Investigating the Phagocytosis of Leishmania using Confocal Microscopy
Published on: July 29, 2021
Dual Transcriptome Profiling of Leishmania-Infected Human Macrophages Reveals Distinct Reprogramming Signatures
Maria Cecilia Fernandes1, Laura A L Dillon1, Ashton Trey Belew1
1Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, Maryland, USA Center for Bioinformatics and Computational Biology, University of Maryland, College Park, Maryland, USA.
Unlabelled:
Macrophages are mononuclear phagocytes that constitute a first line of defense against pathogens. While lethal to many microbes, they are the primary host cells of Leishmania spp. parasites, the obligate intracellular pathogens that cause leishmaniasis. We conducted transcriptomic profiling of two Leishmania species and the human macrophage over the course of intracellular infection by using high-throughput RNA sequencing to characterize the global gene expression changes and reprogramming events that underlie the interactions between the pathogen and its host. A systematic exclusion of the generic effects of large-particle phagocytosis revealed a vigorous, parasite-specific response of the human macrophage early in the infection that was greatly tempered at later time points. An analogous temporal expression pattern was observed with the parasite, suggesting that much of the reprogramming that occurs as parasites transform into intracellular forms generally stabilizes shortly after entry. Following that, the parasite establishes an intracellular niche within macrophages, with minimal communication between the parasite and the host cell later during the infection. No significant difference was observed between parasite species transcriptomes or in the transcriptional response of macrophages infected with each species. Our comparative analysis of gene expression changes that occur as mouse and human macrophages are infected by Leishmania spp. points toward a general signature of the Leishmania-macrophage infectome.
Importance:
Little is known about the transcriptional changes that occur within mammalian cells harboring intracellular pathogens. This study characterizes the gene expression signatures of Leishmania spp. parasites and the coordinated response of infected human macrophages as the pathogen enters and persists within them. After accounting for the generic effects of large-particle phagocytosis, we observed a parasite-specific response of the human macrophages early in infection that was reduced at later time points. A similar expression pattern was observed in the parasites. Our analyses provide specific insights into the interplay between human macrophages and Leishmania parasites and constitute an important general resource for the study of how pathogens evade host defenses and modulate the functions of the cell to survive intracellularly.
Insights
Human macrophages mount an early, parasite-specific defense against Leishmania, which diminishes over time. This study reveals key gene expression changes during Leishmania infection in macrophages.
Area of Science:
- Immunology
- Molecular Biology
- Parasitology
Background:
- Macrophages are crucial immune cells, acting as the primary host for Leishmania parasites, which cause leishmaniasis.
- Understanding host-pathogen interactions at the molecular level is vital for developing effective treatments.
Purpose of the Study:
- To characterize global gene expression changes in human macrophages and Leishmania parasites during intracellular infection.
- To identify parasite-specific host responses and understand pathogen adaptation within macrophages.
Main Methods:
- Transcriptomic profiling using high-throughput RNA sequencing of Leishmania species and human macrophages.
- Systematic exclusion of generic phagocytosis effects to isolate parasite-specific responses.
- Comparative analysis of gene expression in human and mouse macrophages infected with Leishmania.
Main Results:
- Human macrophages exhibit a vigorous, parasite-specific response early in infection, which significantly decreases at later stages.
- Parasites show a similar temporal expression pattern, stabilizing shortly after entry into the host cell.
- No significant differences were observed between Leishmania species transcriptomes or macrophage responses to each species.
Conclusions:
- Leishmania establishes an intracellular niche within macrophages with minimal host-cell communication later in infection.
- A general signature of the Leishmania-macrophage infectome was identified, applicable across species.
- Findings provide insights into pathogen evasion strategies and host cell modulation for intracellular survival.

