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1.
Parasitology ; 146(11): 1379-1386, 2019 09.
Artigo em Inglês | MEDLINE | ID: mdl-31190664

RESUMO

Survival and infectivity of trypanosomatids rely on cell-surface and secreted glycoconjugates, many of which contain a variable number of galactose residues. Incorporation of galactose to proteins and lipids occurs along the secretory pathway from UDP-galactose (UDP-Gal). Before being used in glycosylation reactions, however, this activated sugar donor must first be transported across the endoplasmic reticulum and Golgi membranes by a specific nucleotide sugar transporter (NST). In this study, we identified an UDP-Gal transporter (named TcNST2 and encoded by the TcCLB.504085.60 gene) from Trypanosoma cruzi, the etiological agent of Chagas disease. TcNST2 was identified by heterologous expression of selected putative nucleotide sugar transporters in a mutant Chinese Hamster Ovary cell line. TcNST2 mRNA levels were detected in all T. cruzi life-cycle forms, with an increase in expression in axenic amastigotes. Confocal microscope analysis indicated that the transporter is specifically localized to the Golgi apparatus. A three-dimensional model of TcNST2 suggested an overall structural conservation as compared with members of the metabolite transporter superfamily and also suggested specific features that could be related to its activity. The identification of this transporter is an important step toward a better understanding of glycoconjugate biosynthesis and the role NSTs play in this process in trypanosomatids.


Assuntos
Complexo de Golgi/metabolismo , Proteínas de Transporte de Monossacarídeos/metabolismo , Proteínas de Protozoários/genética , Trypanosoma cruzi/genética , Animais , Células CHO , Cricetulus , Proteínas de Protozoários/química , Proteínas de Protozoários/metabolismo , Análise de Sequência de Proteína , Trypanosoma cruzi/metabolismo
2.
Front Immunol ; 9: 896, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29755471

RESUMO

During the onset of Trypanosoma cruzi infection, an effective immune response is necessary to control parasite replication and ensure host survival. Macrophages have a central role in innate immunity, acting as an important trypanocidal cell and triggering the adaptive immune response through antigen presentation and cytokine production. However, T. cruzi displays immune evasion mechanisms that allow infection and replication in macrophages, favoring its chronic persistence. One potential mechanism is the release of T. cruzi strain Y extracellular vesicle (EV Y), which participate in intracellular communication by carrying functional molecules that signal host cells and can modulate the immune response. The present work aimed to evaluate immune modulation by EV Y in C57BL/6 mice, a prototype resistant to infection by T. cruzi strain Y, and the effects of direct EV Y stimulation of macrophages in vitro. EV Y inoculation in mice prior to T. cruzi infection resulted in increased parasitemia, elevated cardiac parasitism, decreased plasma nitric oxide (NO), reduced NO production by spleen cells, and modulation of cytokine production, with a reduction in TNF-α in plasma and decreased production of TNF-α and IL-6 by spleen cells from infected animals. In vitro assays using bone marrow-derived macrophages showed that stimulation with EV Y prior to infection by T. cruzi increased the parasite internalization rate and release of infective trypomastigotes by these cells. In this same scenario, EV Y induced lipid body formation and prostaglandin E2 (PGE2) production by macrophages even in the absence of T. cruzi. In infected macrophages, EV Y decreased production of PGE2 and cytokines TNF-α and IL-6 24 h after infection. These results suggest that EV Y modulates the host response in favor of the parasite and indicates a role for lipid bodies and PGE2 in immune modulation exerted by EVs.


Assuntos
Doença de Chagas/imunologia , Vesículas Extracelulares/imunologia , Interações Hospedeiro-Parasita/imunologia , Macrófagos Peritoneais/imunologia , Trypanosoma cruzi/imunologia , Animais , Doença de Chagas/parasitologia , Chlorocebus aethiops , Dinoprostona/imunologia , Dinoprostona/metabolismo , Modelos Animais de Doenças , Humanos , Evasão da Resposta Imune , Gotículas Lipídicas/imunologia , Gotículas Lipídicas/metabolismo , Ativação de Macrófagos/imunologia , Macrófagos Peritoneais/metabolismo , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Baço/citologia , Baço/imunologia , Trypanosoma cruzi/metabolismo , Células Vero
3.
Proteomics ; 17(15-16)2017 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-28643940

RESUMO

Toxoplasma gondii infects a wide range of hosts worldwide, including humans and domesticated animals causing toxoplasmosis disease. Recently, exosomes, small extracellular vesicles (EV) that contain nucleic acids, proteins, and lipids derived from their original cells were linked with disease protection. The effect of EVs derived from T. gondii on the immune response and its relevance in a physiological context is unknown. Here we disclose the first proteomic profiling of T. gondii EVs compared to EVs isolated from a human foreskin fibroblast infected cell line cultured in a vesicle-free medium. Our results reveal a broad range of canonical exosomes proteins. Data are available via ProteomeXchange with the identifier PXD004895.


Assuntos
Exossomos/metabolismo , Vesículas Extracelulares/metabolismo , Proteômica/métodos , Toxoplasma/metabolismo , Toxoplasmose/parasitologia , Linhagem Celular , Fibroblastos/citologia , Fibroblastos/metabolismo , Fibroblastos/parasitologia , Prepúcio do Pênis/citologia , Prepúcio do Pênis/metabolismo , Prepúcio do Pênis/parasitologia , Humanos , Masculino , Toxoplasmose/metabolismo
4.
Mol Microbiol ; 102(4): 672-689, 2016 11.
Artigo em Inglês | MEDLINE | ID: mdl-27542978

RESUMO

Nucleo-cytoplasmic RNA export is an essential post-transcriptional step to control gene expression in eukaryotic cells and is poorly understood in apicomplexan parasites. With the exception of UAP56, a component of TREX (Transcription Export) complex, other components of mRNA export machinery are not well conserved in divergent supergroups. Here, we use Toxoplasma gondii as a model system to functionally characterize TgUAP56 and its potential interaction factors. We demonstrate that TgUAP56 is crucial for mRNA export and that functional interference leads to significant accumulation of mRNA in the nucleus. It was necessary to employ bioinformatics and phylogenetic analysis to identify orthologs related to mRNA export, which show a remarkable low level of conservation in T. gondii. We adapted a conditional Cas9/CRISPR system to carry out a genetic screen to verify if these factors were involved in mRNA export in T. gondii. Only the disruption of TgRRM_1330 caused accumulation of mRNA in the nucleus as found with TgUAP56. This protein is potentially a divergent partner of TgUAP56, and provides insight into a divergent mRNA export pathway in apicomplexans.


Assuntos
RNA Helicases DEAD-box/genética , RNA Helicases DEAD-box/metabolismo , RNA Mensageiro/metabolismo , Toxoplasma/genética , Toxoplasma/metabolismo , Transporte Ativo do Núcleo Celular , Núcleo Celular/metabolismo , Biologia Computacional/métodos , Humanos , Proteínas Nucleares/genética , Transporte de RNA , RNA Mensageiro/genética , Proteínas de Ligação a RNA/metabolismo , Toxoplasma/enzimologia , Fatores de Transcrição/metabolismo
5.
BMC Microbiol ; 15: 269, 2015 Nov 21.
Artigo em Inglês | MEDLINE | ID: mdl-26589870

RESUMO

BACKGROUND: Nucleotide sugar transporters (NSTs) play an essential role in translocating nucleotide sugars into the lumen of the endoplasmic reticulum and Golgi apparatus to be used as substrates in glycosylation reactions. This intracellular transport is an essential step in the biosynthesis of glycoconjugates. RESULTS: We have identified a family of 11 putative NSTs in Trypanosoma cruzi, the etiological agent of Chagas' disease. A UDP-N-acetylglucosamine transporter, TcNST1, was identified by a yeast complementation approach. Based on a phylogenetic analysis four candidate genes were selected and used for complementation assays in a Kluyveromyces lactis mutant strain. The transporter is likely expressed in all stages of the parasite life cycle and during differentiation of epimastigotes to infective metacyclics. Immunofluorescence analyses of a GFP-TcNST1 fusion protein indicate that the transporter is localized to the Golgi apparatus. As many NSTs are multisubstrate transporters, we also tested the capacity of TcNST1 to transport GDP-Man. CONCLUSIONS: We have identified a UDP-N-acetylglucosamine transporter in T. cruzi, which is specifically localized to the Golgi apparatus and seems to be expressed, at the mRNA level, throughout the parasite life cycle. Functional studies of TcNST1 will be important to unravel the role of NSTs and specific glycoconjugates in T. cruzi survival and infectivity.


Assuntos
Complexo de Golgi/enzimologia , Proteínas de Membrana Transportadoras/genética , Trypanosoma cruzi/enzimologia , Perfilação da Expressão Gênica , Teste de Complementação Genética , Complexo de Golgi/genética , Kluyveromyces/genética , Kluyveromyces/metabolismo , Estágios do Ciclo de Vida , Proteínas de Membrana Transportadoras/metabolismo , Especificidade por Substrato
6.
RNA Biol ; 11(7): 921-33, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-25180711

RESUMO

Trypanosome gene expression is regulated almost exclusively at the posttranscriptional level, through mRNA stability, storage and degradation. Here, we characterize the ribonucleoprotein complex (mRNPs) corresponding to the zinc finger protein TcZC3H39 from T. cruzi comparing cells growing in normal conditions and under nutritional stress. The nutritional stress is a key step during T. cruzi differentiation from epimastigote form to human infective metacyclic trypomastigote form. The mechanisms by which the stress, altogether with other stimuli, triggers differentiation is not well understood. This work aims to characterize the TcZC3H39 protein during stress response. Using cells cultured in normal and stress conditions, we observed a dynamic change in TcZC3H39 granule distribution, which appeared broader in stressed epimastigotes. The protein core of the TcZC3H39-mRNP is composed of ribosomes, translation factors and RBPs. The TcZC3H39-mRNP could act sequestering highly expressed mRNAs and their associated ribosomes, potentially slowing translation in stress conditions. A shift were observed in the mRNAs associated with TcZC3H39: the number of targets in unstressed epimastigotes was smaller than that in stressed parasites, with no clear functional clustering in normal conditions. By contrast, in stressed parasites, the targets of TcZC3H39 were mRNAs encoding ribosomal proteins and a remarkable enrichment in mRNAs for the cytochrome c complex (COX), highly expressed mRNAs in the replicative form. This identification of a new component of RNA granules in T. cruzi, the TcZC3H39 protein, provides new insight into the mechanisms involved in parasite stress responses and the regulation of gene expression during T. cruzi differentiation.


Assuntos
Proteínas de Protozoários/metabolismo , RNA Mensageiro/metabolismo , Ribonucleoproteínas/metabolismo , Trypanosoma cruzi/crescimento & desenvolvimento , Trypanosoma cruzi/fisiologia , Evolução Molecular , Regulação da Expressão Gênica , Filogenia , Proteínas de Protozoários/genética , RNA de Protozoário/metabolismo , Ribonucleoproteínas/genética , Ribossomos , Estresse Fisiológico , Trypanosoma cruzi/genética
7.
Mem Inst Oswaldo Cruz ; 107(6): 790-9, 2012 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-22990970

RESUMO

Trypanosomes are parasitic protozoa in which gene expression is primarily controlled through the regulation of mRNA stability and translation. This post-transcriptional control is mediated by various families of RNA-binding proteins, including those with zinc finger CCCH motifs. CCCH zinc finger proteins have been shown to be essential to differentiation events in trypanosomatid parasites. Here, we functionally characterise TcZFP2 as a predicted post-transcriptional regulator of differentiation in Trypanosoma cruzi. This protein was detected in cell culture-derived amastigotes and trypomastigotes, but it was present in smaller amounts in metacyclic trypomastigote forms of T. cruzi. We use an optimised recombinant RNA immunopreciptation followed by microarray analysis assay to identify TcZFP2 target mRNAs. We further demonstrate that TcZFP2 binds an A-rich sequence in which the adenosine residue repeats are essential for high-affinity recognition. An analysis of the expression profiles of the genes encoding the TcZFP2-associated mRNAs throughout the parasite life cycle by microarray hybridisation showed that most of the associated mRNAs were upregulated in the metacyclic trypomastigote forms, also suggesting a role for TcZFP2 in metacyclic trypomastigote differentiation. Knockdown of the orthologous Trypanosoma brucei protein levels showed ZFP2 to be a positive regulator of specific target mRNA abundance.


Assuntos
Proteínas de Ligação a DNA/metabolismo , Proteínas de Protozoários/metabolismo , RNA Mensageiro/metabolismo , Proteínas de Ligação a RNA/metabolismo , Trypanosoma cruzi/metabolismo , Regulação da Expressão Gênica no Desenvolvimento , Estabilidade de RNA , Trypanosoma cruzi/crescimento & desenvolvimento
8.
Mem. Inst. Oswaldo Cruz ; 107(6): 790-799, set. 2012. ilus, graf, tab
Artigo em Inglês | LILACS | ID: lil-649496

RESUMO

Trypanosomes are parasitic protozoa in which gene expression is primarily controlled through the regulation of mRNA stability and translation. This post-transcriptional control is mediated by various families of RNA-binding proteins, including those with zinc finger CCCH motifs. CCCH zinc finger proteins have been shown to be essential to differentiation events in trypanosomatid parasites. Here, we functionally characterise TcZFP2 as a predicted post-transcriptional regulator of differentiation in Trypanosoma cruzi. This protein was detected in cell culture-derived amastigotes and trypomastigotes, but it was present in smaller amounts in metacyclic trypomastigote forms of T. cruzi. We use an optimised recombinant RNA immunopreciptation followed by microarray analysis assay to identify TcZFP2 target mRNAs. We further demonstrate that TcZFP2 binds an A-rich sequence in which the adenosine residue repeats are essential for high-affinity recognition. An analysis of the expression profiles of the genes encoding the TcZFP2-associated mRNAs throughout the parasite life cycle by microarray hybridisation showed that most of the associated mRNAs were upregulated in the metacyclic trypomastigote forms, also suggesting a role for TcZFP2 in metacyclic trypomastigote differentiation. Knockdown of the orthologous Trypanosoma brucei protein levels showed ZFP2 to be a positive regulator of specific target mRNA abundance.


Assuntos
Proteínas de Ligação a DNA/metabolismo , Proteínas de Protozoários/metabolismo , RNA Mensageiro/metabolismo , Proteínas de Ligação a RNA/metabolismo , Trypanosoma cruzi/metabolismo , Regulação da Expressão Gênica no Desenvolvimento , Estabilidade de RNA , Trypanosoma cruzi/crescimento & desenvolvimento
9.
Biochem Biophys Res Commun ; 319(1): 169-77, 2004 Jun 18.
Artigo em Inglês | MEDLINE | ID: mdl-15158457

RESUMO

We have identified two zinc finger proteins of Trypanosoma cruzi, the protozoan parasite that causes Chagas disease in humans. These proteins, named tcZFP1 and tcZFP2, share the unusual zinc finger motif (CCCH) found in a diverse range of RNA-binding proteins involved in various aspects of the control of cell homeostasis and differentiation. We report here the functional expression of a recombinant tcZFP1, and the relative affinity and stability of the specific complexes formed between the protein and synthetic oligoribonucleotides containing C-rich sequences.


Assuntos
Proteínas de Ligação a DNA/química , Proteínas de Ligação a DNA/metabolismo , Oligorribonucleotídeos/química , Proteínas de Protozoários/química , Proteínas de Protozoários/metabolismo , Trypanosoma cruzi/metabolismo , Sequência de Aminoácidos , Animais , Northern Blotting , Clonagem Molecular , Relação Dose-Resposta a Droga , Proteínas de Fluorescência Verde , Cinética , Proteínas Luminescentes/química , Dados de Sequência Molecular , Polirribossomos/química , Ligação Proteica , Estrutura Terciária de Proteína , Proteínas de Ligação a RNA/química , Proteínas Recombinantes de Fusão/química , Proteínas Recombinantes/química , Análise de Sequência de DNA , Homologia de Sequência de Aminoácidos , Fatores de Tempo , Dedos de Zinco
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