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Tridimensional ultrastructure and glycolipid pattern studies of Trypanosoma dionisii
Authors:Miriam Pires de Castro Oliveira  Thiago Cesar Prata Ramos  Adriana Maria V.N. Pinheiro  Silvio Bertini  Helio Kiyoshi Takahashi  Anita Hilda Straus  Edna Freymuller Haapalainen
Affiliation:1. Departamento de Biologia Estrutural e Funcional, Universidade Federal de São Paulo, Rua Botucatu, 740, São Paulo, SP, 04023-900, Brazil;2. Departamento de Bioquímica, Universidade Federal de São Paulo, Rua Botucatu, 862, 1° andar, São Paulo, SP, 04023-900, Brazil;3. Centro de Microscopia Eletrônica, Universidade Federal de São Paulo, Rua Botucatu, 862, térreo, São Paulo, SP, 04023-900, Brazil
Abstract:Trypanosoma (Schizotrypanum) dionisii is a non-pathogenic bat trypanosome closely related to Trypanosoma cruzi, the etiological agent of Chaga's disease. Both kinetoplastids present similar morphological stages and are able to infect mammalian cells in culture. In the present study we examined 3D ultrastructure aspects of the two species by serial sectioning epimastigote and trypomastigote forms, and identified common carbohydrate epitopes expressed in T. dionisii, T. cruzi and Leishmania major. A major difference in 3D morphology was that T. dionisii epimastigote forms present larger multivesicular structures, restricted to the parasite posterior region. These structures could be related to T. cruzi reservosomes and are also rich in cruzipain, the major cysteine-proteinase of T. cruzi. We analyzed the reactivity of two monoclonal antibodies: MEST-1 directed to galactofuranose residues of glycolipids purified from Paracoccidioides brasiliensis, and BST-1 directed to glycolipids purified from T. cruzi epimastigotes. Both antibodies were reactive with T. dionisii epimastigotes by indirect immunofluorescense, but we noted differences in the location and intensity of the epitopes, when compared to T. cruzi. In summary, despite similar features in cellular structure and life cycle of T. dionisii and T. cruzi, we observed a unique morphological characteristic in T. dionisii that deserves to be explored.
Keywords:Trypanosoma dionisii   Tridimensional ultrastructure   3D reconstruction   Epimastigote   Glycolipid
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