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Interactions between Trypanosoma cruzi Secreted Proteins and Host Cell Signaling Pathways
Renata Watanabe Costa1, Jose F da Silveira1, Diana Bahia2
1Departamento de Microbiologia, Imunologia e Parasitologia, Escola Paulista de Medicina, Universidade Federal de São Paulo São Paulo, Brazil.
Insights
Trypanosoma cruzi secretes proteins to invade host cells and hinder immune responses, causing Chagas disease. Understanding these parasite-host interactions is key to developing new treatments for this neglected tropical disease.
Area of Science:
- Parasitology
- Molecular Biology
- Immunology
Background:
- Chagas disease is a major neglected tropical disease affecting millions in Latin America.
- Caused by Trypanosoma cruzi, transmitted by insects, it leads to myocarditis and potential death.
Purpose of the Study:
- To review the interaction between Trypanosoma cruzi secreted proteins and host cells.
- To emphasize the manipulation of host signaling pathways during parasite invasion.
Main Methods:
- Review of scientific literature on Trypanosoma cruzi secreted proteins.
- Analysis of parasite-host cell signaling pathway interactions.
Main Results:
- T. cruzi secretes proteins like cruzipain and P21 to manipulate host cell signaling.
- Cruzipain inhibits macrophage activation via NF-kB P65 pathway.
- Secreted phospholipase A activates the PKC signaling pathway.
Conclusions:
- T. cruzi utilizes secreted proteins to facilitate host cell invasion and immune evasion.
- Understanding these mechanisms is crucial for Chagas disease therapeutic strategies.
Abstract:
Chagas disease is one of the prevalent neglected tropical diseases, affecting at least 6-7 million individuals in Latin America. It is caused by the protozoan parasite Trypanosoma cruzi, which is transmitted to vertebrate hosts by blood-sucking insects. After infection, the parasite invades and multiplies in the myocardium, leading to acute myocarditis that kills around 5% of untreated individuals. T. cruzi secretes proteins that manipulate multiple host cell signaling pathways to promote host cell invasion. The primary secreted lysosomal peptidase in T. cruzi is cruzipain, which has been shown to modulate the host immune response. Cruzipain hinders macrophage activation during the early stages of infection by interrupting the NF-kB P65 mediated signaling pathway. This allows the parasite to survive and replicate, and may contribute to the spread of infection in acute Chagas disease. Another secreted protein P21, which is expressed in all of the developmental stages of T. cruzi, has been shown to modulate host phagocytosis signaling pathways. The parasite also secretes soluble factors that exert effects on host extracellular matrix, such as proteolytic degradation of collagens. Finally, secreted phospholipase A from T. cruzi contributes to lipid modifications on host cells and concomitantly activates the PKC signaling pathway. Here, we present a brief review of the interaction between secreted proteins from T. cruzi and the host cells, emphasizing the manipulation of host signaling pathways during invasion.
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