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Mechanisms by which Factor H protects Trypanosoma cruzi from the alternative pathway of complement
Smrithi S Menon1, Galia Ramirez-Toloza2, Keith L Wycoff3
1Department of Medical Microbiology and Immunology, University of Toledo College of Medicine and Life Sciences, Toledo, OH, United States.
Insights
Chagas disease parasite Trypanosoma cruzi evades immune attack by binding Factor H. This binding, mediated by specific parasite surface molecules, enhances parasite survival in the host.
Area of Science:
- Immunology
- Parasitology
- Molecular Biology
Background:
- Chagas disease is caused by Trypanosoma cruzi, with no effective treatment or vaccine.
- The infective trypomastigote form of T. cruzi resists complement-mediated killing.
- Factor H (FH) regulates the complement alternative pathway (AP) and is used by pathogens to evade immune responses.
Purpose of the Study:
- To elucidate the molecular basis of Factor H binding to Trypanosoma cruzi.
- To determine the role of Factor H in the complement resistance of T. cruzi trypomastigotes.
Main Methods:
- Investigated direct binding of FH to T. cruzi trypomastigotes and epimastigotes.
- Utilized domain mapping with FH fragments and FH-Fc fusion proteins.
- Employed FH-related protein-5 to inhibit FH binding and assess parasite survival.
Main Results:
- T. cruzi trypomastigotes, but not epimastigotes, directly bound FH independently of C3 deposition.
- FH domains 5-8 partially inhibited FH binding to trypomastigotes without affecting complement resistance.
- FH-related protein-5 fully inhibited FH binding and significantly reduced trypomastigote survival in serum.
Conclusions:
- Factor H binding to T. cruzi trypomastigotes is crucial for complement resistance.
- Specific parasite surface interactions mediate FH binding, independent of complement opsonization.
- Targeting FH-parasite interactions offers a potential strategy against Chagas disease.
Abstract:
Chagas disease, a chronic disabling disease caused by the protozoan Trypanosoma cruzi, has no standardized treatment or preventative vaccine. The infective trypomastigote form of T. cruzi is highly resistant to killing by the complement immune system. Factor H (FH), a negative regulator of the alternative pathway (AP) of complement on cell surfaces and in blood, contains 20 short consensus repeat domains. The four N-terminal domains of FH inactivate the AP, while the other domains interact with C3b/d and glycan markers on cell surfaces. Various pathogens bind FH to inactivate the AP. T. cruzi uses its trans-sialidase enzyme to transfer host sialic acids to its own surface, which could be one of the approaches it uses to bind FH. Previous studies have shown that FH binds to complement-opsonized T. cruzi and parasite desialylation increases complement-mediated lysis of trypomastigotes. However, the molecular basis of FH binding to T. cruzi remain unknown. Only trypomastigotes, but not epimastigotes (non-infective, complement susceptible) bound FH directly, independent of C3 deposition, in a dose-dependent manner. Domain mapping experiments using 3-5 FH domain fragments showed that domains 5-8 competitively inhibited FH binding to the trypomastigotes by ~35% but did not decrease survival in complement. FH-Fc or mutant FH-Fc fusion proteins (3-11 contiguous FH domains fused to the IgG Fc) also did not kill trypomastigotes. FH-related protein-5, whose domains bear significant sequence identity to all known polyanion-binding FH domains (6-7, 10-14, 19-20), fully inhibited FH binding to trypomastigotes and reduced trypomastigote survival to < 24% in the presence of serum. In conclusion, we have elucidated the role of FH in complement resistance of trypomastigotes.
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