Search results for "Fungal protein"

showing 10 items of 237 documents

Lipolytic activity of the yeast species associated with the fermentation/storage phase of ripe olive processing.

2010

9 páginas, 4 figuras, 5 tablas.-- El Pdf del artículo es la copia de autor.

Food HandlingSaccharomyces cerevisiaePopulationMolecular Sequence DataTriacylglycerol lipaseMicrobiologyFungal ProteinsOleaYeastsDNA Ribosomal SpacerFood scienceLipaseLipase activityeducationDNA FungalTable oliveseducation.field_of_studybiologyPichia membranifaciensfood and beveragesLipasebiology.organism_classificationYeastBiochemistryFruitFermentationbiology.proteinFermentationMolecular identificationBacteriaFood ScienceFood microbiology
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In Candida parapsilosis the ATC1 Gene Encodes for an Acid Trehalase Involved in Trehalose Hydrolysis, Stress Resistance and Virulence

2014

An ORF named CPAR2-208980 on contig 005809 was identified by screening a Candida parapsilosis genome data base. Its 67% identity with the acid trehalase sequence from C. albicans (ATC1) led us to designate it CpATC1. Homozygous mutants that lack acid trehalase activity were constructed by gene disruption at the two CpATC1 chromosomal alleles. Phenotypic characterization showed that atc1Δ null cells were unable to grow on exogenous trehalose as carbon source, and also displayed higher resistance to environmental challenges, such as saline exposure (1.2 M NaCl), heat shock (42°C) and both mild and severe oxidative stress (5 and 50 mM H2O2). Significant amounts of intracellular trehalose were …

Fungal PhysiologyMutantGlycobiologyTrehalase activitylcsh:MedicineMicrobiologiaPathogenesisPathology and Laboratory MedicineCandida parapsilosisBiochemistrychemistry.chemical_compoundNucleic AcidsMicrobial PhysiologyMedicine and Health SciencesTrehalaseTrehalaselcsh:ScienceFungal BiochemistryCandida albicansCandidaMultidisciplinaryVirulencebiologyOrganic CompoundsSalt ToleranceCatalaseEnzymesChemistryPhysical SciencesResearch ArticleGenes FungalMolecular Sequence DataCarbohydratesMycologyMicrobiologyMicrobiologyFungal ProteinsAmino Acid SequenceHeat shockGlycoproteinslcsh:ROrganismsFungiChemical CompoundsWild typeTrehaloseBiology and Life Sciencesbiology.organism_classificationTrehaloseYeastOxidative StressMetabolismchemistryProteolysisEnzymologylcsh:QHeat-Shock ResponsePLoS ONE
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Development of a FungalBraid Penicillium expansum-based expression system for the production of antifungal proteins in fungal biofactories

2022

Fungal antifungal proteins (AFPs) have attracted attention as novel biofungicides. Their exploitation requires safe and cost-effective producing biofactories. Previously, Penicillium chrysogenum and Penicillium digitatum produced recombinant AFPs with the use of a P. chrysogenum-based expression system that consisted of the paf gene promoter, signal peptide (SP)-pro sequence and terminator. Here, the regulatory elements of the afpA gene encoding the highly produced PeAfpA from Penicillium expansum were developed as an expression system for AFP production through the FungalBraid platform. The afpA cassette was tested to produce PeAfpA and P. digitatum PdAfpB in P. chrysogenum and P. digitatu…

Fungal ProteinsAntifungal AgentsPenicilliumBioengineeringalpha-FetoproteinsPenicillium chrysogenumApplied Microbiology and BiotechnologyBiochemistryBiotechnology
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Cell Wall and Secreted Proteins ofCandida albicans: Identification, Function, and Expression

1998

SUMMARYThe cell wall is essential to nearly every aspect of the biology and pathogenicity of Candida albicans. Although it was intially considered an almost inert cellular structure that protected the protoplast against osmotic offense, more recent studies have demonstrated that it is a dynamic organelle. The major components of the cell wall are glucan and chitin, which are associated with structural rigidity, and mannoproteins. The protein component, including both mannoprotein and nonmannoproteins, comprises some 40 or more moieties. Wall proteins may differ in their expression, secretion, or topological location within the wall structure. Proteins may be modified by glycosylation (prima…

Fungal proteinGlycosylationBiologyMicrobiologyArticleHsp70Fungal ProteinsCell wallchemistry.chemical_compoundInfectious DiseasesBiochemistrychemistryMembrane proteinCell WallCandida albicansOrganelleExtracellularSecretionMolecular BiologyMicrobiology and Molecular Biology Reviews
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Biofilm formation byCandida albicansmutants for genes coding fungal proteins exhibiting the eight-cysteine-containing CFEM domain

2006

Several features and functions of a Candida albicans gene, PGA10 (also designated as RBT51), coding for a putative polypeptide species belonging to a subset of fungal proteins containing an eight-cysteine domain referred as CFEM (Common in several Fungal Extracellular Membrane proteins), are described. The ORF of the gene (ORF19.5674) encoded a protein of 250 amino acids, with a predicted molecular mass of 25.17 kDa. The product of the PGA10 gene also exhibited some features reminiscent of a class II-type hydrophobin. Deletion of PGA10 resulted in a cascade of pleiotropic effects, mostly affecting cell-surface-related properties. Thus, the null pga10Delta mutant displayed an increased sensi…

Fungal proteinHydrophobinMutantBiofilmGeneral MedicineBiologybiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyCorpus albicansProtein Structure TertiaryMicrobiologyFungal ProteinsBiochemistryMembrane proteinBiofilmsCandida albicansMutationCloning MolecularCandida albicansGeneFEMS Yeast Research
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Changes in the cell wall glycoprotein composition of Candida albicans associated to the inhibition of germ tube formation by EDTA.

1994

Hyphal development in Candida albicans was blocked by EDTA. This effect was not due to a general growth inhibition since the chelator did not affect protein and DNA synthesis. Recovery of mycelial growth was observed when EDTA-grown cells were incubated at 37 degrees C in EDTA-free medium. High-molecular-weight mannoproteins (HMWM) that are mycelium-specific wall components, and particularly a 260-kDa species (HMWM-260), were absent in the wall of cells grown under germination conditions in the presence of EDTA. Synthesis of the HMWM-260 species was not inhibited but its incorporation (secretion) into the wall structure seemed to be blocked in EDTA-treated cells.

Fungal proteinMembrane GlycoproteinsHyphaDNA synthesisProtoplastsGerm tubeGeneral MedicineBiologybiology.organism_classificationBiochemistryMicrobiologyCell wallFungal ProteinsMolecular Weightchemistry.chemical_compoundBiochemistrychemistryCell WallCandida albicansGeneticsSecretionGrowth inhibitionCandida albicansMolecular BiologyEdetic AcidArchives of microbiology
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Some biological features of Candida albicans mutants for genes coding fungal proteins containing the CFEM domain

2011

Several biological features of Candida albicans genes (PGA10, RBT5 and CSA1) coding for putative polypeptide species belonging to a subset of fungal proteins containing an eight-cysteine domain referred as common in several fungal extracellular membrane (CFEM) are described. The deletion of these genes resulted in a cascade of pleiotropic effects. Thus, mutant strains exhibited higher cell surface hydrophobicity levels and an increased ability to bind to inert or biological substrates. Confocal scanning laser microscopy using concanavalin A-Alexafluor 488 (which binds to mannose and glucose residues) and FUN-1 (a cytoplasmic fluorescent probe for cell viability) dyes showed that mutant stra…

Fungal proteinMutantBiofilmGeneral MedicineBiologybiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyCorpus albicansCell biologyGene expressionExtracellularCandida albicansGeneFEMS Yeast Research
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Homozygous deletion of ATC1 and NTC1 genes in Candida parapsilosis abolishes trehalase activity and affects cell growth, sugar metabolism, stress res…

2015

A double homozygous atc1Δ/atc1Δ/ntc1Δ/ntc1Δ mutant (atc1Δ/ntc1Δ KO) was constructed in the pathogen opportunistic yeast Candida parapsilosis by disruption of the two chromosomal alleles coding for NTC1 gene (encoding a neutral trehalase) in a Cpatc1Δ/atc1Δ background (atc1Δ KO strain, deficient in acid trehalase). The Cpatc1Δ/ntc1Δ KO mutant failed to counteract the inability of Cpatc1Δ cells to metabolize exogenous trehalose and showed a similar growth pattern on several monosaccharides and disaccharides. However, upon prolonged incubation in either rich medium (YPD) or nutrient-starved medium the viability of Cpatc1Δ cells exhibited a sensitive phenotype, which was augmented by further Cp…

Fungal proteinVirulencebiologyMutantTrehalase activityTrehaloseCandida parapsilosisbiology.organism_classificationMicrobiologyTrehaloseYeastMicrobiologyFungal ProteinsOxidative Stresschemistry.chemical_compoundchemistryStress PhysiologicalBiofilmsGeneticsCarbohydrate MetabolismTrehalaseTrehalaseGene knockoutCandidaSequence DeletionFungal Genetics and Biology
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Rapid PCR-based test for identifying Candida albicans by using primers derived from the pH-regulated KER1 gene.

2006

A PCR-based method in combination with a simple, reliable and inexpensive DNA extraction procedure for rapid detection of Candida albicans clinical isolates is described here. The extraction protocol is based on a combination of chemical (NaOH and detergents) and physical (boiling) treatments, thus avoiding many of the problems inherent in the currently available DNA extraction protocols (basically the use of expensive and/or toxic chemical reagents), and may be useful for daily clinical routine. The PCR-based system described here uses a single pair of primers (SC1F and SC1R) deduced from the C. albicans-specific KER1 gene sequence. These primers amplify a 670-bp fragment of the KER1 gene.…

Fungal proteinbiologyInverse polymerase chain reactionLysineGenes FungalMultiple displacement amplificationGlutamic AcidMembrane ProteinsGeneral MedicineAmpliconHydrogen-Ion Concentrationbiology.organism_classificationApplied Microbiology and BiotechnologyMicrobiologyDNA extractionMolecular biologyPolymerase Chain ReactionCorpus albicanslaw.inventionFungal ProteinslawCandida albicansCandida albicansPolymerase chain reactionDNA PrimersFEMS yeast research
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RHO1(YlRHO1) is a non-essential gene inYarrowia lipolyticaand complementsrho1Δlethality inSaccharomyces cerevisiae

2003

The synthesis of beta-1,3-glucan, the structural component of the yeast cell wall that gives shape to the cell, occurs at the plasma membrane and is the result of the activity of at least a two-component complex. Fks1p is the catalytic subunit directly responsible for the synthesis of beta-1,3-glucan, whilst the second subunit, Rho1p, has a GTP-dependent regulatory role (Yamochi et al., 1994). RHO1 has been characterized in Saccharomyces cerevisiae (Yamochi et al., 1994), and in several other fungal species. In this work, we have used degenerate oligonucleotides derived from the conserved regions of Rho1ps to isolate the RHO1 gene of Yarrowia lipolytica. The gene isolated in this way, which…

Fungal proteinbiologySequence analysisProtein subunitSaccharomyces cerevisiaeBioengineeringYarrowiabiology.organism_classificationApplied Microbiology and BiotechnologyBiochemistryYeastBiochemistryEssential geneGeneticsPeptide sequenceBiotechnologyYeast
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