Thrombospondin-1 expression and modulation of Wnt and hippo signaling pathways during the early phase of Trypanosoma cruzi infection of heart endothelial cells

PLoS Negl Trop Dis. 2022 Jan 5;16(1):e0010074. doi: 10.1371/journal.pntd.0010074. eCollection 2022 Jan.

Abstract

The protozoan parasite, Trypanosoma cruzi, causes severe morbidity and mortality in afflicted individuals. Approximately 30% of T. cruzi infected individuals present with cardiac pathology. The invasive forms of the parasite are carried in the vascular system to infect other cells of the body. During transportation, the molecular mechanisms by which the parasite signals and interact with host endothelial cells (EC) especially heart endothelium is currently unknown. The parasite increases host thrombospondin-1 (TSP1) expression and activates the Wnt/β-catenin and hippo signaling pathways during the early phase of infection. The links between TSP1 and activation of the signaling pathways and their impact on parasite infectivity during the early phase of infection remain unknown. To elucidate the significance of TSP1 function in YAP/β-catenin colocalization and how they impact parasite infectivity during the early phase of infection, we challenged mouse heart endothelial cells (MHEC) from wild type (WT) and TSP1 knockout mice with T. cruzi and evaluated Wnt signaling, YAP/β-catenin crosstalk, and how they affect parasite infection. We found that in the absence of TSP1, the parasite induced the expression of Wnt-5a to a maximum at 2 h (1.73±0.13), P< 0.001 and enhanced the level of phosphorylated glycogen synthase kinase 3β at the same time point (2.99±0.24), P<0.001. In WT MHEC, the levels of Wnt-5a were toned down and the level of p-GSK-3β was lowest at 2 h (0.47±0.06), P< 0.01 compared to uninfected control. This was accompanied by a continuous significant increase in the nuclear colocalization of β-catenin/YAP in TSP1 KO MHEC with a maximum Pearson correlation coefficient of (0.67±0.02), P< 0.05 at 6 h. In WT MHEC, the nuclear colocalization of β-catenin/YAP remained steady and showed a reduction at 6 h (0.29±0.007), P< 0.05. These results indicate that TSP1 plays an important role in regulating β-catenin/YAP colocalization during the early phase of T. cruzi infection. Importantly, dysregulation of this crosstalk by pre-incubation of WT MHEC with a β-catenin inhibitor, endo-IWR 1, dramatically reduced the level of infection of WT MHEC. Parasite infectivity of inhibitor treated WT MHEC was similar to the level of infection of TSP1 KO MHEC. These results indicate that the β-catenin pathway induced by the parasite and regulated by TSP1 during the early phase of T. cruzi infection is an important potential therapeutic target, which can be explored for the prophylactic prevention of T. cruzi infection.

MeSH terms

  • Active Transport, Cell Nucleus / physiology
  • Animals
  • Chagas Disease / pathology*
  • Endothelial Cells / parasitology
  • Endothelium / cytology
  • Endothelium / parasitology
  • Glycogen Synthase Kinase 3 beta / metabolism
  • Heart / parasitology
  • Hippo Signaling Pathway / physiology*
  • Mice
  • Mice, Knockout
  • Rats
  • Thrombospondin 1 / genetics
  • Thrombospondin 1 / metabolism*
  • Trypanosoma cruzi / metabolism
  • Wnt Signaling Pathway / physiology*
  • Wnt-5a Protein / metabolism
  • YAP-Signaling Proteins / metabolism*
  • beta Catenin / antagonists & inhibitors
  • beta Catenin / metabolism*

Substances

  • Thrombospondin 1
  • Wnt-5a Protein
  • Wnt5a protein, mouse
  • YAP-Signaling Proteins
  • Yap1 protein, mouse
  • beta Catenin
  • Thbs1 protein, mouse
  • Glycogen Synthase Kinase 3 beta