Host M-CSF induced gene expression drives changes in susceptible and resistant mice-derived BMdMs upon Leishmania

Cyrine Bouabid1,2, Sameh Rabhi1, Kristina Thedinga3

  • 1Laboratory of Medical Parasitology, Biotechnology and Biomolecules (PMBB), Institut Pasteur de Tunis, Tunis, Tunisia.

Insights

Host gene expression significantly influences leishmaniasis outcomes. Analyzing gene expression and protein-protein interaction networks reveals distinct immune and metabolic responses in resistant versus susceptible mice infected with Leishmania major.

Area of Science:

  • Immunology
  • Genetics
  • Parasitology

Background:

  • Leishmaniases exhibit diverse clinical outcomes, heavily influenced by macrophage-parasite interactions.
  • Host factors, including genetic background and macrophage activation, critically determine disease progression.
  • Mouse models with contrasting infection responses are vital for dissecting disease mechanisms.

Purpose of the Study:

  • To analyze dynamic transcriptome data from Leishmania major-infected macrophages of resistant and susceptible mice.
  • To identify host-specific gene expression profiles and their impact on infection response.
  • To explore infection-induced biological processes using network propagation on protein-protein interaction networks.

Main Methods:

  • Differential gene expression analysis of M-CSF differentiated bone marrow-derived macrophages (BMdMs) from resistant and susceptible mice.
  • Mapping time-resolved expression profiles onto a protein-protein interaction (PPI) network.
  • Network propagation to identify infection-responsive modules and validation via qRT-PCR.

Main Results:

  • Identified a differential basal transcriptome profile in macrophages, with 75% of genes related to the immune system, independent of Leishmania infection.
  • Network propagation revealed distinct immune signaling and metabolism network modules between resistant and susceptible strains.
  • Validated strain-specific network differences using time-series qRT-PCR experiments.

Conclusions:

  • The host's intrinsic gene expression background significantly dictates the response to Leishmania major infection.
  • Combining gene expression analysis with network propagation effectively identifies dynamically altered, strain-specific networks.
  • This approach provides mechanistic insights into contrasting host responses and disease pathophysiology.