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1.
Braz. j. med. biol. res ; 43(12): 1203-1214, Dec. 2010. ilus, tab
Article in English | LILACS | ID: lil-568995

ABSTRACT

The incidence of superficial or deep-seated infections due to Candida glabrata has increased markedly, probably because of the low intrinsic susceptibility of this microorganism to azole antifungals and its relatively high propensity to acquire azole resistance. To determine changes in the C. glabrata proteome associated with petite mutations, cytosolic extracts from an azole-resistant petite mutant of C. glabrata induced by exposure to ethidium bromide, and from its azole-susceptible parent isolate were compared by two-dimensional polyacrylamide gel electrophoresis. Proteins of interest were identified by peptide mass fingerprinting or sequence tagging using a matrix-assisted laser desorption/ionization tandem time-of-flight mass spectrometer. Tryptic peptides from a total of 160 Coomassie-positive spots were analyzed for each strain. Sixty-five different proteins were identified in the cytosolic extracts of the parent strain and 58 in the petite mutant. Among the proteins identified, 10 were higher in the mutant strain, whereas 23 were lower compared to the parent strain. The results revealed a significant decrease in the enzymes associated with the metabolic rate of mutant cells such as aconitase, transaldolase, and pyruvate kinase, and changes in the levels of specific heat shock proteins. Moreover, transketolase, aconitase and catalase activity measurements decreased significantly in the ethidium bromide-induced petite mutant. These data may be useful for designing experiments to obtain a better understanding of the nuclear response to impairment of mitochondrial function associated with this mutation in C. glabrata.


Subject(s)
Candida glabrata/chemistry , Fungal Proteins/analysis , Mutation/genetics , Proteome/analysis , Antifungal Agents/pharmacology , Azoles/pharmacology , Candida glabrata/drug effects , Candida glabrata/genetics , Drug Resistance, Fungal/genetics , Electrophoresis, Gel, Two-Dimensional , Fungal Proteins/genetics , Gene Expression Regulation, Fungal , Proteome/genetics , Spectrometry, Mass, Matrix-Assisted Laser Desorption-Ionization
2.
Braz. j. med. biol. res ; 36(8): 987-991, Aug. 2003. ilus
Article in English | LILACS | ID: lil-340792

ABSTRACT

Tissue factor is a transmembrane procoagulant glycoprotein and a member of the cytokine receptor superfamily. It activates the extrinsic coagulation pathway, and induces the formation of a fibrin clot. Tissue factor is important for both normal homeostasis and the development of many thrombotic diseases. A wide variety of cells are able to synthesize and express tissue factor, including monocytes, granulocytes, platelets and endothelial cells. Tissue factor expression can be induced by cell surface components of pathogenic microorganisms, proinflammatory cytokines and membrane microparticles released from activated host cells. Tissue factor plays an important role in initiating thrombosis associated with inflammation during infection, sepsis, and organ transplant rejection. Recent findings suggest that tissue factor can also function as a receptor and thus may be important in cell signaling. The present minireview will focus on the role of tissue factor in the pathogenesis of septic shock, infectious endocarditis and invasive aspergillosis, as determined by both in vivo and in vitro models


Subject(s)
Humans , Aspergillosis , Endocarditis, Bacterial , Endothelium , Shock, Septic , Thromboplastin , Blood Coagulation Factors
3.
Braz. j. med. biol. res ; 32(5): 651-7, May 1999.
Article in English | LILACS | ID: lil-233484

ABSTRACT

The pathogenic fungus Sporothrix schenckii is the causative agent of sporotrichosis. This subcutaneous mycosis may disseminate in immunocompromised individuals and also affect several internal organs and tissues, most commonly the bone, joints and lung. Since adhesion is the first step involved with the dissemination of pathogens in the host, we have studied the interaction between S. schenckii and several extracellular matrix (ECM) proteins. The binding of two morphological phases of S. schenckii, yeast cells and conidia, to immobilized type II collagen, laminin, fibronectin, fibrinogen and thrombospondin was investigated. Poly (2-hydroxyethyl methacrylate) (poly-HEMA) was used as the negative control. Cell adhesion was assessed by ELISA with a rabbit anti-S. schenckii antiserum. The results indicate that both morphological phases of this fungus can bind significantly to type II collagen, fibronectin and laminin in comparison to the binding observed with BSA (used as blocking agent). The adhesion rate observed with the ECM proteins (type II collagen, fibronectin and laminin) was statistically significant (P<0.05) when compared to the adhesion obtained with BSA. No significant binding of conidia was observed to either fibrinogen or thrombospondin, but yeast cells did bind to the fibrinogen. Our results indicate that S. schenckii can bind to fibronectin, laminin and type II collagen and also show differences in binding capacity according to the morphological form of the fungus


Subject(s)
Cell Adhesion , Extracellular Matrix Proteins/metabolism , Sporothrix/pathogenicity , Collagen/isolation & purification , Electrophoresis, Polyacrylamide Gel , Enzyme-Linked Immunosorbent Assay , Extracellular Matrix Proteins/physiology , Fibronectins , Laminin , Sporothrix/physiology , Sporotrichosis/microbiology , Thrombospondins
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