Chagasin, the endogenous cysteine-protease inhibitor ofTrypanosoma cruzi, modulates parasite differentiation and invasion of mammalian cells
Open Access
- 1 March 2005
- journal article
- Published by The Company of Biologists in Journal of Cell Science
- Vol. 118 (5) , 901-915
- https://doi.org/10.1242/jcs.01677
Abstract
Chagasin is a Trypanosoma cruzi protein that was recently characterized as a tight-binding inhibitor of papain-like cysteine proteases (CPs). Considering that parasite virulence and morphogenesis depend on the endogenous activity of lysosomal CPs of the cruzipain family, we sought to determine whether chagasin and cruzipain interact in the living cell. Ultrastructural studies showed that chagasin and cruzipain both localize to the Golgi complex and reservosomes (lysosome-like organelles), whereas free chagasin was found in small intracellular vesicles, suggesting that chagasin trafficking pathways might intersect with those of cruzipain. Taking advantage of the fact that sodium dodecyl sulphate and β-mercaptoethanol prevent binding between the isolated proteins but do not dismantle preformed cruzipain-chagasin complexes, we obtained direct evidence that chagasin-cruzipain complexes are indeed formed in epimastigotes. Chagasin transfectants (fourfold increase in CP inhibitory activity) displayed low rates of differentiation (metacyclogenesis) and exhibited increased resistance to a synthetic CP inhibitor. These phenotypic changes were accompanied by a drastic reduction of soluble cruzipain activity and by upregulated secretion of cruzipain-chagasin molecular complexes. Analysis of six T. cruzi strains revealed that expression levels of cruzipain and chagasin are variable, but the molar ratios are fairly stable (∼50:1) in most strains, with the exception of the G strain (5:1), which is poorly infective. On the same vein, we found that trypomastigotes overexpressing chagasin are less infective than wild-type parasites in vitro. The deficiency of chagasin overexpressers is caused by lower activity of membrane-associated CPs, because membranes recovered from wild-type trypomastigotes restored infectivity and this effect was nullified by the CP inhibitor E-64. In summary, our studies suggest that chagasin regulates the endogenous activity of CP, thus indirectly modulating proteolytic functions that are essential for parasite differentiation and invasion of mammalian cells.Keywords
This publication has 35 references indexed in Scilit:
- A New Cruzipain-Mediated Pathway of Human Cell Invasion by Trypanosoma cruzi Requires Trypomastigote MembranesInfection and Immunity, 2004
- Basic Cell Biology of Trypanosoma cruziCurrent Pharmaceutical Design, 2002
- Active site mapping, biochemical properties and subcellular localization of rhodesain, the major cysteine protease of Trypanosoma brucei rhodesiensePublished by Elsevier ,2001
- Proteolytic activation of canatoxin, a plant toxic protein, by insect cathepsin‐like enzymesArchives of Insect Biochemistry and Physiology, 2000
- Cysteine Protease Inhibitors Cure an Experimental Trypanosoma cruzi InfectionThe Journal of Experimental Medicine, 1998
- Brazilian isolates of Trypanosoma cruzi from humans and triatomines classified into two lineages using mini-exon and ribosomal RNA sequences.The American Journal of Tropical Medicine and Hygiene, 1998
- Characterization of the substrate specificity of the major cysteine protease (cruzipain) from Trypanosoma cruzi using a portion-mixing combinatorial library and fluorogenic peptidesBiochemical Journal, 1997
- The major cysteine proteinase (cruzipain) from Trypanosoma cruzi is encoded by multiple polymorphic tandemly organized genes located on different chromosomesMolecular and Biochemical Parasitology, 1992
- Characterization and expression of proteases during Trypanosoma cruzi metacyclogenesisExperimental Parasitology, 1991
- Purification and characterization of a sulfhydryl-dependent protease from Rhodnius prolixus midgutArchives of Biochemistry and Biophysics, 1978