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1.
Mem Inst Oswaldo Cruz ; 110(8): 996-1002, 2015 Dec.
Article in English | MEDLINE | ID: mdl-26692329

ABSTRACT

Chagas disease, which is caused by the intracellular protozoan Trypanosoma cruzi, is a serious health problem in Latin America. The heart is one of the major organs affected by this parasitic infection. The pathogenesis of tissue remodelling, particularly regarding cardiomyocyte behaviour after parasite infection, and the molecular mechanisms that occur immediately following parasite entry into host cells are not yet completely understood. Previous studies have reported that the establishment of parasitism is connected to the activation of the phosphatidylinositol-3 kinase (PI3K), which controls important steps in cellular metabolism by regulating the production of the second messenger phosphatidylinositol-3,4,5-trisphosphate. Particularly, the tumour suppressor PTEN is a negative regulator of PI3K signalling. However, mechanistic details of the modulatory activity of PTEN on Chagas disease have not been elucidated. To address this question, H9c2 cells were infected with T. cruzi Berenice 62 strain and the expression of a specific set of microRNAs (miRNAs) were investigated. Our cellular model demonstrated that miRNA-190b is correlated to the decrease of cellular viability rates by negatively modulating PTEN protein expression in T. cruzi-infected cells.


Subject(s)
Down-Regulation , MicroRNAs/physiology , Myocytes, Cardiac/parasitology , PTEN Phosphohydrolase/metabolism , Protein Biosynthesis , Trypanosoma cruzi/metabolism , Animals , Blotting, Western , Cell Line , Cell Survival , Formazans , Genes, Reporter , Myocytes, Cardiac/metabolism , PTEN Phosphohydrolase/genetics , Phosphorylation , RNA, Messenger/metabolism , Rats , Reverse Transcriptase Polymerase Chain Reaction , Tetrazolium Salts , Trypanosoma cruzi/classification
2.
Mem. Inst. Oswaldo Cruz ; 110(8): 996-1002, Dec. 2015. graf
Article in English | LILACS | ID: lil-769833

ABSTRACT

Chagas disease, which is caused by the intracellular protozoanTrypanosoma cruzi, is a serious health problem in Latin America. The heart is one of the major organs affected by this parasitic infection. The pathogenesis of tissue remodelling, particularly regarding cardiomyocyte behaviour after parasite infection, and the molecular mechanisms that occur immediately following parasite entry into host cells are not yet completely understood. Previous studies have reported that the establishment of parasitism is connected to the activation of the phosphatidylinositol-3 kinase (PI3K), which controls important steps in cellular metabolism by regulating the production of the second messenger phosphatidylinositol-3,4,5-trisphosphate. Particularly, the tumour suppressor PTEN is a negative regulator of PI3K signalling. However, mechanistic details of the modulatory activity of PTEN on Chagas disease have not been elucidated. To address this question, H9c2 cells were infected with T. cruzi Berenice 62 strain and the expression of a specific set of microRNAs (miRNAs) were investigated. Our cellular model demonstrated that miRNA-190b is correlated to the decrease of cellular viability rates by negatively modulating PTEN protein expression in T. cruzi-infected cells.


Subject(s)
Animals , Rats , Down-Regulation , MicroRNAs/physiology , Myocytes, Cardiac/parasitology , Protein Biosynthesis , PTEN Phosphohydrolase/metabolism , Trypanosoma cruzi/metabolism , Blotting, Western , Cell Line , Cell Survival , Formazans , Genes, Reporter , Myocytes, Cardiac/metabolism , Phosphorylation , PTEN Phosphohydrolase/genetics , Reverse Transcriptase Polymerase Chain Reaction , RNA, Messenger/metabolism , Tetrazolium Salts , Trypanosoma cruzi/classification
3.
Cell Biol Int ; 37(10): 1129-38, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23661609

ABSTRACT

Accumulating evidence demonstrates that chronic inflammation plays an important role in heart hypertrophy and cardiac diseases. However, the fine-tuning of cellular and molecular mechanisms that connect inflammatory process and cardiac diseases is still under investigation. Many reports have demonstrated that the overexpression of the cyclooxygenase-2 (COX-2), a key enzyme in the conversion of arachidonic acid to prostaglandins and other prostanoids, is correlated with inflammatory processes. Increased level of prostaglandin E2 was also found in animal model of left ventricle of hypertrophy. Based on previous observations that demonstrated a regulatory loop between COX-2 and the RNA-binding protein CUGBP2, we studied cellular and molecular mechanisms of a pro-inflammatory stimulus in a cardiac cell to verify if the above two molecules could be correlated with the inflammatory process in the heart. A cellular model of investigation was established and H9c2 was used. We also demonstrated a regulatory connection between COX-2 and CUGBP2 in the cardiac cells. Based on a set of different assays including gene silencing and fluorescence microscopy, we describe a novel function for the RNA-binding protein CUGBP2 in controlling the pro-inflammatory stimulus: subcellular trafficking of messenger molecules to specific cytoplasmic stress granules to maintain homeostasis.


Subject(s)
Inflammation/pathology , Myocytes, Cardiac/metabolism , Myocytes, Cardiac/pathology , RNA Transport , RNA-Binding Proteins/metabolism , Animals , CELF Proteins , Caspases/metabolism , Cyclooxygenase 2/genetics , Cyclooxygenase 2/metabolism , Gene Silencing/drug effects , Interleukin-1beta/pharmacology , Microscopy, Fluorescence , Models, Biological , Myocytes, Cardiac/enzymology , RNA Transport/drug effects , RNA, Messenger/genetics , RNA, Messenger/metabolism , RNA-Binding Proteins/genetics , Rats , Reproducibility of Results , Subcellular Fractions/drug effects , Subcellular Fractions/metabolism
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