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.

Mbio
|May 12, 2016
PubMed
Abstract

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.

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