Search results for "Fongs"

showing 7 items of 17 documents

Structure and function of the vacuolar Ccc1/VIT1 family of iron transporters and its regulation in fungi

2020

Iron is an essential micronutrient for most living beings since it participates as a redox active cofactor in many biological processes including cellular respiration, lipid biosynthesis, DNA replication and repair, and ribosome biogenesis and recycling. However, when present in excess, iron can participate in Fenton reactions and generate reactive oxygen species that damage cells at the level of proteins, lipids and nucleic acids. Organisms have developed different molecular strategies to protect themselves against the harmful effects of high concentrations of iron. In the case of fungi and plants, detoxification mainly occurs by importing cytosolic iron into the vacuole through the Ccc1/V…

ISC Iron-sulfur lusterCS Consistency scoreCcc1Ribosome biogenesisVacuoleReview ArticleYRE Yap response elementsBiochemistryBiotecnologia0302 clinical medicineStructural BiologyCg Candida glabrata0303 health sciencesMAFFT Multiple Alignment using Fast Fourier TransformNRAMP Natural Resistance-Associated Macrophage ProteinbiologyVIT1ChemistryMBD Metal-binding domainPlantsComputer Science ApplicationsBiochemistry030220 oncology & carcinogenesisCRD Cysteine-rich domainEg Eucalyptus grandisIron detoxificationBiotechnologyCBC CCAAT-binding core complexlcsh:BiotechnologySaccharomyces cerevisiaeVTL Vacuolar iron transporter-likeBiophysicsVIT Vacuolar iron transporterbZIP basic leucine-zipper03 medical and health sciencesFongsLipid biosynthesislcsh:TP248.13-248.65GeneticsFe IronIron transportTranscription factor030304 developmental biologyComputingMethodologies_COMPUTERGRAPHICSBLOSUM BLOcks SUbstitution MatrixTMD Transmembrane domainML Maximum-likelihoodIron regulationDNA replicationFungibiology.organism_classificationYeastYeastMetabolic pathwayH HelixHap Heme activator proteinVacuoleROS Reactive oxygen speciesFerroComputational and Structural Biotechnology Journal
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Epidemiology of invasive candidiasis in a surgical intensive care unit: an observational study

2015

Background: Invasive candidiasis (IC) is a frequent and life-threatening infection in critically ill patients. The aim of this study was to evaluate the epidemiology of IC and the antifungal susceptibility of etiological agents in patients admitted to our surgical intensive care unit (SICU) in Spain. Methods: We designed a prospective, observational, single center, population-based study in a SICU. We included all consecutive adult patients (≥18 years old) who had documented IC, either on admission or during their stay, between January 2012 and December 2013. Results: There were a total of 22 episodes of IC in the 1149 patients admitted during the 24-month study. The overall IC incidence wa…

Malemedicine.medical_specialtyAntifungal AgentsPopulationMicrobiologiaMicrobial Sensitivity TestsCandida parapsilosisGeneral Biochemistry Genetics and Molecular Biologylaw.inventionCandida tropicalisDrug Resistance FungallawInternal medicineCandida kruseiAbdomenmedicineHumansSurgical Wound InfectionIntensive care unitCandidiasis InvasiveCandida albicanseducationEpidemiologiaAgedCandidaMedicine(all)education.field_of_studyCandida glabratabiologybusiness.industryBiochemistry Genetics and Molecular Biology(all)CandidemiaGeneral MedicineFongs patògensMiddle Agedbiology.organism_classificationIntensive care unitSurgeryInvasive candidiasisIntensive Care UnitsTreatment OutcomeSpainFemalebusinessAntifungal susceptibilitySurgery Department HospitalFluconazoleResearch Articlemedicine.drugBMC Research Notes
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Iron regulatory mechanisms in Saccharomyces cerevisiae

2020

Iron is an essential micronutrient for all eukaryotic organisms because it participates as a redox cofactor in many cellular processes. However, excess iron can damage cells since it promotes the generation of reactive oxygen species. The budding yeast Saccharomyces cerevisiae has been used as a model organism to study the adaptation of eukaryotic cells to changes in iron availability. Upon iron deficiency, yeast utilizes two transcription factors, Aft1 and Aft2, to activate the expression of a set of genes known as the iron regulon, which are implicated in iron uptake, recycling and mobilization. Moreover, Aft1 and Aft2 activate the expression of Cth2, an mRNA-binding protein that limits t…

Microbiology (medical)DNA damageSaccharomyces cerevisiaelcsh:QR1-502Saccharomyces cerevisiaeMicroorganismesyeastMicrobiologylcsh:Microbiology03 medical and health sciencesTranscriptional regulationiron deficiencyFongsiron metabolismPost-transcriptional regulationTranscription factorGene030304 developmental biology0303 health sciencesbiology030306 microbiologyChemistryPost-transcriptional regulationiron excessbiology.organism_classificationYeastCell biologyCytosolReguloniron homeostasisFerro
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Lack of Functional Trehalase Activity in Candida parapsilosis Increases Susceptibility to Itraconazole

2022

Central metabolic pathways may play a major role in the virulence of pathogenic fungi. Here, we have investigated the susceptibility of a Candida parapsilosis mutant deficient in trehalase activity (atc1Δ/ntc1Δ strain) to the azolic compounds Fluconazole and Itraconazole. A time-course exposure to Itraconazole but not Fluconazole induced a significant degree of cell-killing in mutant cells compared to the parental strain. Flow cytometry determinations indicated that Itraconazole was able to induce a marked production of endogenous ROS together with a simultaneous increase in membrane potential, these effects being irrelevant after Fluconazole addition. Furthermore, only …

Microbiology (medical)Medicaments antifúngicsbiology_otherPlant ScienceFongs patògensfluconazole; itraconazole; ROS; mitochondrial activity; trehalase; trehalose; <i>Candida parapsilosis</i>Ecology Evolution Behavior and Systematics
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Yeast Life Span and its Impact on Food Fermentations

2019

Yeasts are very important microorganisms for food production. The high fermentative capacity, mainly of the species of the genus Saccharomyces, is a key factor for their biotechnological use, particularly to produce alcoholic beverages. As viability and vitality are essential to ensure their correct performance in industry, this review addresses the main aspects related to the cellular aging of these fungi as their senescence impacts their proper functioning. Laboratory strains of S. cerevisiae have proven a very successful model for elucidating the molecular mechanisms that control life span. Those mechanisms are shared by all eukaryotic cells. S. cerevisiae has two models of aging, replic…

SenescenceAgingCell divisionMicroorganismSaccharomyces cerevisiaeLife spanyeastsSaccharomyces cerevisiaePlant ScienceBiologyBiochemistry Genetics and Molecular Biology (miscellaneous)<i>Saccharomyces cerevisiae</i>03 medical and health sciencesFongsYeastsFermentaciówine030304 developmental biologyWine0303 health scienceslcsh:TP500-660Life span030306 microbiologybusiness.industryagingBeerfood and beveragesbiology.organism_classificationlcsh:Fermentation industries. Beverages. AlcoholYeastBiotechnologyStationary phasebeerbusinesslife spanFood ScienceFermentation
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Loss of virulence in Ustilago maydis by Umchs6 gene disruption

2003

A gene encoding a sixth chitin synthase (Umchs6, sequence GenBank accession No. AF030554) from the plant pathogenic hemibasidiomycete Ustilago maydis (DC.) Cda. was isolated and characterized. The predicted protein is 1103 amino acids in length with a calculated molecular mass of 123.5 kDa. a2b2 null mutants were obtained by substitution of a central fragment of the Umchs6 gene with the hygromycin resistance cassette, and a1b1 null mutants were obtained by genetic recombination in plants of an a2b2Δch6 and a wild-type a1b1 strain. The mutation had no effect on the dimorphic transition in vitro or on mating, and growth rate of the mutants was only slightly reduced. On the other hand, they di…

UstilagoCèl·lulesCellsMutantGenes FungalVirulenceChitinCalcofluor-whiteMicrobiologyZea maysVirulència (Microbiologia)Fungal ProteinsVirulence (Microbiology)FongsGene Expression Regulation FungalUstilagoMolecular BiologyGeneGeneticsRegulation of gene expressionChitin SynthasebiologyVirulenceFungiGeneral MedicineChitin synthaseQuitinabiology.organism_classificationTransformation (genetics)Phenotypebiology.protein
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Successful Topical Application of Caspofungin in the Treatment of Fungal Keratitis Refractory to Voriconazole

2010

Fungal keratitis is an important ophthalmic problem because it leads to corneal blindness and sometimes to loss of the eye.1,2 There is no agreed protocol for the treatment of suspected fungal keratitis. Topical and oral voriconazole have now been reported to be effective.3 However, some cases do not respond to this treatment. New antifungal agents such as caspofungin acetate, 0.5%, are promising alternatives

Voriconazolemedicine.medical_specialtybusiness.industryEye diseaseFongs patògensmedicine.diseasecorneal ulcerCaspofungin AcetateKeratitisSurgeryOphthalmologychemistry.chemical_compoundRefractorychemistrymedicineFungal keratitisCaspofunginbusinessmedicine.drugArchives of Ophthalmology
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