Search results for "Candida albicans"

showing 10 items of 312 documents

Cloning of cDNAs coding forCandida albicanscell surface proteins

1995

Two cDNA libraries were constructed from mRNAs obtained from yeast cells and germ-tubes of Candida albicans in lambda gt11. Immunoscreening with polyclonal antibodies raised against cell wall components allowed the detection of 29 positive clones. Two of these clones were selected for their specific reactivity with antisera either from yeast (clone 11Y) or germ-tubes (clone 24M). cDNA fragments were isolated by the digestion of lambda DNA with EcoRI. Southern blot analysis with these fragments as probes demonstrated homology with C. albicans DNA, and by Northern analysis two mRNAs transcripts were detected with sizes of approximately 1·5 kb for 11Y and 1·1 kb for 24M. Both transcripts were …

biologycDNA libraryGeneral MedicineMolecular cloningbiology.organism_classificationMolecular biologyInfectious DiseasesPolyclonal antibodiesComplementary DNAImmunoscreeningbiology.proteinGenomic libraryCandida albicansSouthern blotMedical Mycology
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The Candida albicans cell wall-associated glyceraldehyde-3-phosphate dehydrogenase activity increases in response to starvation and temperature upshi…

2002

We have determined the effect of environmental factors (mild thermal upshift and starvation) on the Candida albicans cell wall-associated glyceraldehyde-3-phosphate dehydrogenase (cwGAPDH) activity. Temperature upshift (from 28 to 37 degrees C) and/ or starvation (at 28 or 37 degrees C in water) of exponentially growing yeast cells caused an increase in cwGAPDH activity (3 to 5-, and 7 to 8-fold, respectively). This increase in activity did not correlate with an increase in the amount of cwGAPDH protein present, as determined by flow cytometry, immunoelectron microscopy and Western-blotting. These results indicate that thermal upshift and starvation cause an activation of the cwGAPDH in C. …

biologymedicine.diagnostic_testImmunoelectron microscopyTemperatureGlyceraldehyde-3-Phosphate DehydrogenasesDehydrogenaseGeneral Medicinebiology.organism_classificationYeastCorpus albicansFlow cytometryCell wallFungal ProteinsInfectious DiseasesBiochemistryCell WallCandida albicansbiology.proteinmedicineCandida albicansGlyceraldehyde 3-phosphate dehydrogenaseMedical mycology
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Action de la chlorhexidine sur l'expression de la virulence de

1999

Abstract Candida albicans is an opportunistic yeast. Its pathogenicity is linked to the susceptibility of the host surface as well as to particular factors of the strain: adhesion, filamentous growth and secretion of proteolytic enzymes. Chlorhexidine digluconate is an antiseptic with fungicidal properties. The action of the antiseptic on the growth of the yeast shows a minimal inhibitory concentration (MIC) at 50 μg·mL−1 and a minimal fungicidal concentration (MFC) at 100 μg·mL−1. The consequences of antiseptic treatment are studied using two indicators of pathogenicity: filamentation and the secretion of acid proteinase. Concerning the morphological indicator, a complete inhibition of fil…

biologymedicine.drug_classChlorhexidineProteolytic enzymesbiology.organism_classificationYeastMicrobiologyMinimum inhibitory concentrationAntisepticBiochemistryCaseinmedicinebiology.proteinBovine serum albuminCandida albicansEcology Evolution Behavior and Systematicsmedicine.drugCryptogamie Mycologie
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Possible Roles of Mannoproteins in the Construction of Candida Albicans Cell Wall

1993

The shape of Candida albicans cells depends on their cell walls and some of their mannoproteins may act as modulators of the final molecular architecture. If that were the case, the wall mannoproteins might form part of what could be called a “morphogenetic code”.

carbohydrates (lipids)Cell wallbiologyChemistryCandida albicansbiology.organism_classificationCell biology
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Relationships Between Dimorphism, Cell Wall Structure, and Surface Activities in Candida albicans

1991

Most cells are covered with a complex network of interacting molecules that form the extracellular matrix. These molecules (proteins and polysaccharides) are secreted locally and interact among themselves to form an organized structure outside the cell plasma membrane. In unicellular eukaryotic organisms and plant cells, this structure is reinforced to withstand osmotic changes in the external environment, giving rise to the so-called cell wall.

chemistry.chemical_classificationCell plasma membranebiologyfungiSchizophyllum communePlant cellbiology.organism_classificationPolysaccharideSexual dimorphismExtracellular matrixCell wallchemistryBiophysicsCandida albicans
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Synthesis and Assembly of Wall Polymers on Regenerating Yeast Protoplasts

1983

Accumulation of chitin and glucan on S. cerevisiae and C. albicans protoplasts begins shortly after resuspension in the regeneration medium, and mannoprotein molecules also appear retained by the regenerating wall after 30–60 minutes in S. cerevisiae or after a longer lag period in C. albicans. Nevertheless, a considerable fraction of the synthesized mannoproteins, which in SDS-acrylamide gels exhibit a different pattern from that of wall mannoproteins of cells, are still released to the growth medium during at least eight hours. De novo synthesis of chitin synthase, but not of glucan synthase, is observed in S. cerevisiae from about 30 minutes after initiation of the regeneration process. …

chemistry.chemical_classificationGrowth mediumbiologyfungiSaccharomyces cerevisiaeChitin synthaseCalcofluor-whitebiology.organism_classificationcarbohydrates (lipids)Cell wallchemistry.chemical_compoundBiochemistrychemistryChitinbiology.proteinCandida albicansGlucan
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Wall mannoproteins of the yeast and mycelial cells of Candida albicans: nature of the glycosidic bonds and polydispersity of their mannan moieties.

1988

SUMMARY: Zymolyase released between 20 and 25% of the total protein from purified walls of yeast (Y) and mycelial (M) cells of Candida albicans. The material released contained 92% carbohydrate (86% mannose and 6% glucose) and 7:< protein. Over 85% of the carbohydrate was N-glycosidically linked to the protein and the rest (less than 15%) was linked O-glycosidically. Highly polydisperse, high molecular mass mannoproteins, resolved by electrophoresis as four defined bands in Y cells and two bands in M cells, had both types of sugar chains. A 34 kDa species found in both types of cells had a single 2.5 kDa N-glycosidically linked sugar chain and a 3 1.5 kDa protein moiety. Polydispersity in t…

chemistry.chemical_classificationMembrane GlycoproteinsMolecular massbiologyHydrolasesProtoplastsMannoseGlycosidic bondCarbohydratebiology.organism_classificationMicrobiologyMolecular biologyYeastCell wallFungal ProteinsMannanschemistry.chemical_compoundchemistryBiochemistryCell WallCandida albicansChromatography GelGlycosidesCandida albicansMannanJournal of general microbiology
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Structural mannoproteins released by β-elimination fromCandida albicanscell walls

1994

Abstract Mild alkaline solutions (β-elimination), after removing the non-covalently bonded wall materials by hot SDS, released 13% and 26% of remaining wall proteins from mycelial and yeast cells of Candida albicans, respectively. When the β-elimination was carried out after digestion of the walls with chitinase, four-fold more proteinaceous materials were released from mycelium and a similar amount in yeast walls. The solubilized materials were shown to be highly polydisperse, and endo-glycosidase H reduced their polydispersity and molecular masses, revealing different electrophoretic patterns in yeast and mycelial cell walls. The solubilized mycelial proteins carried N-glycosidic sugar ch…

chemistry.chemical_classificationMembrane GlycoproteinsbiologyHydrolasesProtein HydrolysatesChitinasesAntibodies MonoclonalHydrogen-Ion Concentrationbiology.organism_classificationMicrobiologyCorpus albicansYeastCell wallchemistryBiochemistryCell WallCandida albicansChitinaseGeneticsbiology.proteinGlycoside hydrolaseCandida albicansGlycoproteinMolecular BiologyMyceliumFEMS Microbiology Letters
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Evidence for the involvement of acylglycerides on chitin synthetase activity inCandida albicans

1991

The effect of a lipase activity (EC 3.1.1.3) on the chitin synthetase from Candida albicans has been studied, both on the active and the trypsin activated enzyme. Removal of fatty acids from acylglycerides by lipase has an inhibitory effect on the activity as well as on the ‘in vitro’ activation process by trypsin in the membrane-bound enzyme and in the chitosomes. This would indicate that an adequate lipid environment is required for both the activation process and proper function of the synthetase activity.

chemistry.chemical_classificationTriacylglycerol lipaseChitin synthaseBiologyTrypsinbiology.organism_classificationMicrobiologyYeastMicrobiologychemistry.chemical_compoundEnzymechemistryBiochemistryChitinGeneticsmedicinebiology.proteinLipaseCandida albicansMolecular Biologymedicine.drugFEMS Microbiology Letters
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On the biochemical classification of yeast trehalases: Candida albicans contains two enzymes with mixed features of neutral and acid trehalase activi…

2009

Abstract Two enzymes endowed with trehalase activity are present in Candida albicans . The cytosolic trehalase (Ntc1p), displayed high activity in exponential phase regardless of the carbon source (glucose, trehalose or glycerol). Ntc1p activity was similar in neutral (pH 7.1) or acid (pH 4.5) conditions, strongly inhibited by ATP, weakly stimulated by divalent cations (Ca 2+ or Mn 2+ ) and unaffected in the presence of cyclic AMP. The Ntc1p activity decreased in stationary phase, except in glycerol-grown cultures, but the catalytic properties did not change. In turn, the cell wall-linked trehalase (Atc1p) showed elevated activity in resting cells or in cultures growing on trehalose or glyc…

chemistry.chemical_classificationbiologyBiophysicsTrehalase activityCell BiologyHydrogen-Ion Concentrationbiology.organism_classificationBiochemistryTrehaloseYeastDivalentFungal ProteinsIsoenzymesCytosolchemistry.chemical_compoundAdenosine TriphosphateEnzymechemistryBiochemistryCandida albicansCyclic AMPTrehalaseTrehalaseCandida albicansMolecular BiologyBiochemical and Biophysical Research Communications
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