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1.
J Mol Recognit ; 27(2): 98-105, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24436127

ABSTRACT

Peptides from the COOH-terminal extension of cysteine proteinase B from Leishmania (Leishmania) amazonensis (cyspep) can modulate immune responses in vertebrate hosts. With this hypothesis as base, we used the online analysis tool SYFPEITHI to predict seven epitopes from this region with potential to bind H2 proteins. We performed proliferation tests and quantified reactive T lymphocytes applying a cytometry analysis, using samples from draining lymph node of lesions from L. (L.) amazonensis-infected mice. To define reactivity of T cells, we used complexes of DimerX (H2 D(b):Ig and H2 L(d):Ig) and the putative epitopes. Additionally, we applied surface plasmon resonance to verify real time interactions between the putative epitopes and DimerX proteins. Five peptides induced blastogenesis in BALB/c cells, while only two presented the same property in C57BL/6 mouse cells. In addition, our data indicate the existence of CD8+ T lymphocyte populations able to recognize each tested peptide in both murine strains. We observed an overlapping of results between the peptides that induced lymphocyte proliferation and those capable of binding to the DimerX in the surface plasmon resonance assays thus indicating that using these recombinant proteins in biosensing analyses is a promising tool to study real time molecular interactions in the context of major histocompatibility complex epitopes. The data gathered in this study reinforce the hypothesis that cyspep-derived peptides are important factors in the murine host infection by L. (L.) amazonensis.


Subject(s)
Cysteine Proteases/immunology , Epitopes/metabolism , Immunity, Cellular , Peptides/immunology , Animals , CD8-Positive T-Lymphocytes/immunology , CD8-Positive T-Lymphocytes/metabolism , Epitopes/immunology , H-2 Antigens/immunology , Humans , Leishmania/immunology , Leishmania/pathogenicity , Lymph Nodes/immunology , Lymphocyte Activation/immunology , Mice
2.
Parasit Vectors ; 4: 216, 2011 Nov 14.
Article in English | MEDLINE | ID: mdl-22082050

ABSTRACT

BACKGROUND: Leishmania (Vianna) braziliensis, Leishmania (Leishmania) amazonensis and Leishmania (Leishmania) chagasi are important parasites in the scenario of leishmaniasis in Brazil. During the life cycle of these parasites, the promastigote forms adhere to the midgut epithelial microvillii of phlebotomine insects to avoid being secreted along with digestive products. Lulo cells are a potential model that will help to understand the features of this adhesion phenomenon. Here, we analyze the interaction between Leishmania spp. promastigotes and Lulo cells in vitro, specifically focusing on adhesion events occurring between three Leishmania species and this cell line. METHODS: Confluent monolayers of Lulo cells were incubated with promastigotes and adhesion was assessed using both light microscopy and scanning electron microscopy. FINDINGS: The results indicate that species from the subgenera Leishmania and Viannia have great potential to adhere to Lulo cells. The highest adherence rate was observed for L. (L.) chagasi after 24 h of incubation with Lulo cells (27.3 ± 1.8% of cells with adhered promastigotes), followed by L. (L.) amazonensis (16.0 ± 0.7%) and L. (V.) braziliensis (3.0 ± 0.7%), both after 48 h. In the ultrastructural analysis, promastigote adherence was also assessed by scanning electron microscopy, showing that, for parasites from both subgenera, adhesion occurs by both the body and the flagellum. The interaction of Lulo cells with Leishmania (L.) chagasi showed the participation of cytoplasmic projections from the former closely associating the parasites with the cells. CONCLUSIONS: We present evidence that Lulo cells can be useful in studies of insect-parasite interactions for Leishmania species.


Subject(s)
Cell Adhesion , Host-Pathogen Interactions , Leishmania/pathogenicity , Psychodidae/cytology , Animals , Cell Line , Disease Models, Animal , Leishmania/growth & development , Microscopy
3.
Parasitol Res ; 106(1): 95-104, 2009 Dec.
Article in English | MEDLINE | ID: mdl-19777260

ABSTRACT

Leishmania (Viannia) braziliensis is the major causative agent of American tegumentary leishmaniasis, a disease that has a wide geographical distribution and is a severe public health problem. The cysteine proteinase B (CPB) from Leishmania spp. represents an important virulence factor. In this study, we characterized and localized cysteine proteinases in L. (V.) braziliensis promastigotes. By a combination of triton X-114 extraction, concanavalin A-affinity, and ion exchange chromatographies, we obtained an enriched fraction of hydrophobic proteins rich in mannose residues. This fraction contained two proteinases of 63 and 43 kDa, which were recognized by a CPB antiserum, and were partially sensitive to E-64 in enzymatic assays with the peptide Glu-Phe-Leu. In confocal microscopy, the CPB homologues localized in the peripheral region of the parasite. This data together with direct agglutination and flow cytometry assays suggest a surface localization of the CPB homologues. The incubation of intact promastigotes with phospholipase C reduced the number of CPB-positive cells, while anti-cross-reacting determinant and anti-CPB antisera recognized two polypeptides (63 and 43 kDa) derived from phospholipase C treatment, suggesting that some CPB isoforms may be glycosylphosphatidylinositol-anchored. Collectively, our results suggest the presence of CPB homologues in L. braziliensis surface and highlight the need for further studies on L. braziliensis cysteine proteinases, which require enrichment methods for enzymatic detection.


Subject(s)
Cysteine Proteases/isolation & purification , Cysteine Proteases/metabolism , Leishmania braziliensis/enzymology , Protozoan Proteins/isolation & purification , Protozoan Proteins/metabolism , Animals , Cell Membrane/chemistry , Cysteine Proteases/chemistry , Cysteine Proteases/immunology , Cysteine Proteinase Inhibitors/pharmacology , Leucine/analogs & derivatives , Leucine/pharmacology , Membrane Proteins/chemistry , Membrane Proteins/immunology , Membrane Proteins/isolation & purification , Membrane Proteins/metabolism , Microscopy, Confocal , Microscopy, Fluorescence , Molecular Weight , Protozoan Proteins/chemistry , Protozoan Proteins/immunology
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