Search results for "Osmotic Pressure"

showing 10 items of 63 documents

Cryopreservation of Escherichia coli K12TG1: Protection from the damaging effects of supercooling by freezing

2015

Injuries in living cells caused by water freezing during a freeze-thaw process have been extensively reported. In particular, intracellular water freezing has long been incriminated in cell death caused by a high cooling rate, but this supposition could not always be demonstrated. This work aims to discriminate the role of water freezing, dehydration and cold-induced injuries in cellular damage occuring during cryopreservation. For this purpose, Escherichia coli K12TG1 suspensions were maintained in a supercooled or frozen state at -20°C for times ranging from 10 min to 5 h. The supercooled state was maintained for a long period at -20°C by applying a non-injurious isostatic pressure (P<40 …

Cell Membrane PermeabilityCell SurvivalGeneral Biochemistry Genetics and Molecular BiologyCryopreservationchemistry.chemical_compoundCryoprotective AgentsFreezingmedicineOsmotic pressureDehydrationPropidium iodideSupercoolingFluorescent DyesCryopreservationChromatographyCell DeathDehydrationEscherichia coli K12ChemistryCell MembraneIceGeneral MedicineThiobarbituratesmedicine.diseaseMembraneBiophysicsGeneral Agricultural and Biological SciencesLaurdanIntracellularPropidiumCryobiology
researchProduct

Purification and characterization of a pore-forming protein from the marine sponge Tethya lyncurium

1992

A pore-forming protein was detected and purified for the first time from a marine sponge (Tethya lyncurium). The purified protein has a polypeptide molecular mass of 21 kDa and a pI of 6.4. Tethya pore-forming protein (also called Tethya hemolysin) rapidly lysed erythrocytes from a variety of organisms. After binding to target membranes, the hemolysin resisted elution with EDTA, salt or solutions of low ionic strength and hence resembled an integral membrane protein. Erythrocytes could be protected from hemolysis induced by Tethya hemolysin by addition of 30 mM dextran 4 (4-6 kDa; equivalent hydrodynamic diffusion radius, 1.75-2.3 nm) to the extracellular medium, but not by addition of unch…

Cell Membrane PermeabilityLysisChemical PhenomenaCarbohydratesHemolysisBiochemistryPore forming proteinHemolysin ProteinsAdenosine TriphosphateOsmotic PressureAnimalsHumansColloidsIntegral membrane proteinSheepbiologyMolecular massChemistry PhysicalErythrocyte MembraneDextransHemolysinMembrane transportbiology.organism_classificationPoriferaMolecular WeightMicroscopy ElectronMembraneBiochemistryChromatography GelPotassiumTethyaRabbits
researchProduct

Yeast mRNA cap-binding protein Cbc1/Sto1 is necessary for the rapid reprogramming of translation after hyperosmotic shock.

2011

Global translation is inhibited in Saccharomyces cerevisiae cells under osmotic stress; nonetheless, osmostress-protective proteins are synthesized. We found that translation mediated by the mRNA cap-binding protein Cbc1 is stress-resistant and necessary for the rapid translation of osmostress-protective proteins under osmotic stress.

Cell PhysiologySaccharomyces cerevisiae ProteinsOsmotic shockRNA StabilitySaccharomyces cerevisiaeCycloheximideBiology03 medical and health scienceschemistry.chemical_compoundGene Knockout TechniquesEukaryotic translationOsmotic PressureStress PhysiologicalPolysomeGene Expression Regulation FungalProtein biosynthesisRNA MessengerMolecular Biology030304 developmental biologyCell Nucleus0303 health sciencesMicrobial ViabilityOsmotic concentration030302 biochemistry & molecular biologyEIF4ENuclear ProteinsTranslation (biology)Cell BiologyArticlesAdaptation PhysiologicalProtein TransportEukaryotic Initiation Factor-4EchemistryBiochemistryRNA Cap-Binding ProteinsPolyribosomesProtein BiosynthesisProtein BindingMolecular biology of the cell
researchProduct

Micellization in Model Surfactant Systems

1999

Formation of micelles in model lattice surfactant systems was studied by a novel methodology based on grand-canonical Monte Carlo simulations. The methodology involves combining free-energy information from a series of simulations in small systems by histogram reweighting. The solution osmotic pressure as a function of overall volume fraction of surfactant shows a sharp break at the critical micelle concentration (cmc) at sufficiently low temperatures. Studies in larger systems at appropriate values of the surfactant chemical potential are used to investigate the size distribution of micellar aggregates. The methodology allows for a clear distiction between micellization and macroscopic pha…

ChemistryEnthalpyThermodynamics of micellizationMonte Carlo methodThermodynamicsSurfaces and InterfacesCondensed Matter PhysicsMicellePulmonary surfactantCritical micelle concentrationVolume fractionElectrochemistryOsmotic pressureGeneral Materials ScienceSpectroscopyLangmuir
researchProduct

1986

An osmotic pressure equation proposed over 50 years ago is found to be consistent with the des Cloizeaux scaling relation for semi-dilute polymer solutions in good solvents. With a physically plausible modification, the equation can also give a satisfactory representation of dilute solutions and of the cross-over to the semi-dilute regime.

Condensed Matter::Soft Condensed MatterQuantitative Biology::BiomoleculesScaling lawChemistryPolymer chemistryRepresentation (systemics)Osmotic pressureScalingDie Makromolekulare Chemie
researchProduct

Stress-controlled transcription factors, stress-induced genes and stress tolerance in budding yeast.

2000

The transcriptional response to environmental changes is a major topic in both basic and applied research. From a basic point of view, to understand this response includes unravelling how the stress signal is sensed and transduced to the nucleus, to identify which genes are induced under each stress condition and, finally, to establish the phenotypic consequences of this induction in stress tolerance. The possibility of using genetic approaches has made the yeast Saccharomyces cerevisiae a compelling model to study stress response at a molecular level. Moreover, this information can be used to isolate and characterise stress-related proteins in higher eukaryotes and to design strategies to …

GeneticsbiologySaccharomyces cerevisiaeGenes FungalTrehaloseSaccharomyces cerevisiaebiology.organism_classificationMicrobiologyPhenotypeYeastCell biologyOxidative StressInfectious DiseasesOsmotic PressureHeat shock proteinHeat shockSignal transductionGeneTranscription factorHeat-Shock ProteinsHeat-Shock ResponseSignal TransductionTranscription FactorsFEMS microbiology reviews
researchProduct

Effect of hypoosmotic stress by low salinity acclimation of Mediterranean mussels Mytilus galloprovincialis on biological parameters used for polluti…

2008

In the present study, we investigated the progressive acclimation of the mussel Mytilus galloprovincialis to different reduced seawater (SW) salinities and its effect on several biochemical markers and biotests. Mussels were purchased from a local mariculture facility during summer (SW temperature 27 degrees C, salinity 37.5 psu) and winter (13 degrees C, 37 psu) seasons, and transferred to the laboratory for acclimation to reduced SW salinities (37, 28, 18.5 and 11 psu). At the beginning and at the end of acclimation processes tests of mussel survival in air were provided. After 14 days of acclimation the DNA integrity, p38-MAPK activation, metallothionein induction, oxygen consumption rat…

GillGillsSalinityanimal structuresHealth Toxicology and MutagenesisMuscle ProteinsAquatic ScienceAcclimatizationp38 Mitogen-Activated Protein KinasesCondition indexAnimal scienceOxygen ConsumptionOsmotic PressureAnimalsMaricultureFluorometrySeawaterPhosphorylationMytilusPrincipal Component AnalysisbiologyEcologyfungiMusselMytilus galloprovincialis; biomarkers; salinity; temperature; environmental condition variations; hypoosmotic stressbiology.organism_classificationBivalviaMytilusSalinityElectrophoresis Polyacrylamide GelMetallothioneinSeasonsDNA DamageEnvironmental Monitoring
researchProduct

High osmolarity glycerol (HOG) signalling in Magnaporthe oryzae: Identification of MoYPD1 and its role in osmoregulation, fungicide action, and patho…

2015

AbstractThis study comprises a first functional analysis of an YPD1-homologue in filamentous phytopathogenic fungi and its role in the HOG signalling pathway. We generated a gene deletion mutant of the gene MoYPD1 in Magnaporthe oryzae and characterized the resulting mutant strain. We have shown that MoYpd1p is a component of the phosphorelay system acting in the HOG pathway due to its Y2H protein interaction with the HKs MoHik1p and MoSln1p as well as with the response regulator MoSsk1p. Fungicidal activity of fludioxonil was reported to be based on the inhibition of MoHik1p resulting in hyperactivation of the HOG signalling pathway and lethality. Western analysis proved that both, osmotic…

GlycerolFilamentous fungiOsmotic shockMutantVirulenceFludioxonilDioxolesPlant ScienceFludioxonilBiologyMicrobiologyFungal ProteinsOsmoregulationOsmotic PressureGeneticsPyrrolesPhosphotransferGeneEcology Evolution Behavior and SystematicsPlant DiseasesVirulenceOsmolar ConcentrationOryzaHedgehog signaling pathwayFungicides IndustrialCell biologyMagnaportheResponse regulatorInfectious DiseasesPhosphorylationSignal TransductionEnvironmental signallingFungal Biology
researchProduct

Specific stress-induced storage of trehalose, glycerol and D-arabitol in response to oxidative and osmotic stress in Candida albicans.

2012

Candida albicans exponential yeast cells are able to face environmental challenges by mounting a rapid and efficient "general stress response". Here we show that one of the main components of this response consists of the intracellular protective accumulation of the non-reducing disaccharide trehalose and two polyols, glycerol and D-arabitol, an accumulation that occurs in a stress-specific dependent manner. Thus, oxidative exposures promoted a marked increase in both trehalose and D-arabitol in the wild type strain, RM-100, whereas the glycerol content remained virtually unaffected with respect to basal levels. In contrast, osmotic challenges induced the significant storage of glycerol acc…

GlycerolOsmotic shockBiophysicsOxidative phosphorylationBiologyBiochemistrychemistry.chemical_compoundSugar AlcoholsOsmotic PressureCandida albicansGlycerolCandida albicansMolecular BiologyTrehaloseCell Biologybiology.organism_classificationTrehaloseYeastOxidative StresschemistryBiochemistryMitogen-activated protein kinasebiology.proteinMitogen-Activated Protein KinasesOxidation-ReductionIntracellularBiochemical and biophysical research communications
researchProduct

Msb2 is a Ste11 membrane concentrator required for full activation of the HOG pathway.

2015

The high osmolarity glycerol (HOG) pathway, composed of membrane-associated osmosensors, adaptor proteins and core signaling kinases, is essential for the survival of yeast cells under hyper-osmotic stress. Here, we studied how the MAPKKK Ste11 might change its protein interaction profile during acute stress exposure, with an emphasis on the sensory system of the so-called Sho1/Msb2 signaling branch. To characterize the transience of protein-protein interactions we utilized a recently described enzymatic in vivo protein proximity assay (M-track). Accordingly, interaction signals between Ste11 and many of its signaling partners can already be detected even under basal conditions. In most cas…

GlycerolSaccharomyces cerevisiae ProteinsOsmotic shockBiophysicsSaccharomyces cerevisiaeBiologyBiochemistryStructural BiologyOsmotic PressureNegative feedbackGeneticsProtein Interaction MapsMolecular Biologychemistry.chemical_classificationFeedback PhysiologicalMAP kinase kinase kinaseKinaseOsmolar ConcentrationIntracellular Signaling Peptides and ProteinsSignal transducing adaptor proteinMembrane ProteinsMAP Kinase Kinase KinasesYeastCell biologyEnzymechemistryFunction (biology)Signal TransductionBiochimica et biophysica acta
researchProduct