Search results for "trehalose"

showing 10 items of 114 documents

Transmission electron microscopical studies on some haemolymph proteins from the marine polychaete Nereis virens.

2001

Abstract The hexagonal bilayer haemoglobin molecule from Nereis virens has been investigated in a comparative study using several different negative stain electron microscopical specimen preparations (i.e. by conventional adsorption to continuous carbon support films, by the negative staining-carbon film technique and by negative staining across the holes of holey carbon support films with air-drying and rapid freezing/cryo-negative staining). The benefits and limitations of these different approaches are indicated, with the overall conclusion that negative staining with ammonium molybdate across holes creates the best possibilities for molecular imaging, and also has the potential for the …

LipoproteinsGeneral Physics and AstronomyNegative Staininglaw.inventionchemistry.chemical_compoundHemoglobinsStructural BiologylawHemolymphHemolymphAnimalsGeneral Materials ScienceAmmonium molybdatebiologyBilayerPolychaetaCell BiologyTrehaloseNegative stainStainingFerritinMicroscopy ElectronchemistryBiochemistryFerritinsbiology.proteinElectron microscopeMicron (Oxford, England : 1993)
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Myo-inositol as a main metabolite in overwintering flies: seasonal metabolomic profiles and cold stress tolerance in a northern drosophilid fly

2012

SUMMARY Coping with seasonal changes in temperature is an important factor underlying the ability of insects to survive over the harsh winter conditions in the northern temperate zone, and only a few drosophilids have been able to colonize sub-polar habitats. Information on their winter physiology is needed as it may shed light on the adaptive mechanisms of overwintering when compared with abundant data on the thermal physiology of more southern species, such as Drosophila melanogaster. Here we report the first seasonal metabolite analysis in a Drosophila species. We traced changes in the cold tolerance and metabolomic profiles in adult Drosophila montana flies that were exposed to thermope…

MalePhysiologyClimatekylmäkoomasta toipuminenvuodenaikaisuuschemistry.chemical_compoundkylmänkestävyyskylmään sopeutuminenFinlandOverwinteringphotoperiodismPrincipal Component Analysisbiologyseasonalitycryoprotectantcold acclimationTemperatureAdaptation PhysiologicalCold TemperatureHabitatMetabolomeDrosophilaFemaleSeasonsDrosophila melanogasterProlinePhotoperiodchill coma recoveryreproductive diapauseAquatic ScienceStress PhysiologicalBotanyTemperate climatemedicineCold acclimationAnimalsMetabolomicsHistidineLactic AcidMolecular BiologyEcology Evolution Behavior and Systematicsfungicold toleranceSeasonalitybiology.organism_classificationmedicine.diseaseTrehalosekryoprotektantitchemistrylisääntymisdiapaussiInsect Scienceta1181Animal Science and ZoologyInositol
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Long-term effects of the trehalase inhibitor trehazolin on trehalase activity in locust flight muscle.

2010

SUMMARY Trehalase (EC 3.2.1.28) hydrolyzes the main haemolymph sugar of insects, trehalose, into the essential cellular substrate glucose. Trehalase in locust flight muscle is bound to membranes that appear in the microsomal fraction upon tissue fractionation, but the exact location in vivo has remained elusive. Trehalase has been proposed to be regulated by a novel type of activity control that is based on the reversible transformation of a latent (inactive) form into an overt (active) form. Most trehalase activity from saline-injected controls was membrane-bound (95%) and comprised an overt form (∼25%) and a latent form (75%). Latent trehalase could be assayed only after the integrity of …

MalePhysiologyTrehalase activityLocusta migratoriaAquatic ScienceDisaccharideschemistry.chemical_compoundIn vivoHemolymphExtracellularAnimalsTrehalaseTrehalaseEnzyme InhibitorsMuscle SkeletalMolecular BiologyEcology Evolution Behavior and SystematicsbiologyBehavior Animalbiology.organism_classificationTrehalosechemistryBiochemistryInsect ScienceFlight AnimalMicrosomeAnimal Science and ZoologyLocustThe Journal of experimental biology
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Fate and effects of the trehalase inhibitor trehazolin in the migratory locust (Locusta migratoria).

2009

Abstract Trehalose is the main haemolymph sugar in many insect species. To be utilized trehalose must be hydrolysed into its glucose units by trehalase (EC 3.2.1.28). Inhibitors of trehalase have attracted interest as possible pesticides and tools for studying the regulation of trehalose metabolism in insects. To make full use of these inhibitors requires knowledge of their fate and effects in vivo. To this end we have measured trehazolin in locusts using a method based on the specific inhibition of a trehalase preparation. After injection of 20 μg, trehazolin decreased in haemolymph with a half-life of 2.6 days and after 10 days almost 95% had disappeared. Trehazolin did not reach the intr…

Maleanimal structuresPhysiologyTrehalase activityLocusta migratoriaDisaccharideschemistry.chemical_compoundEatingFecesHemolymphHemolymphAnimalsTrehalaseTrehalasechemistry.chemical_classificationbiologyMusclesMetabolismMigratory locustbiology.organism_classificationTrehaloseKineticsEnzymechemistryBiochemistryInsect ScienceLocustHalf-LifeJournal of insect physiology
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Antagonistic effects of hypertrehalosemic neuropeptide on the activities of 6-phosphofructo-1-kinase and fructose-1,6-bisphosphatase in cockroach fat…

2001

Hypertrehalosemic neuropeptides from the corpora cardiaca such as the decapeptide Bld HrTH bring about a profound switch in the metabolic activity of cockroach fat body during which production of the blood sugar trehalose is stimulated while the catabolism of carbohydrate (glycolysis) is inhibited. The mechanisms of the metabolic switch are not fully understood. Incubation of isolated fat body from the cockroach Blaptica dubia with 10(-8) M Bld HrTH, for 10-60 min, stimulated glycogen breakdown and increased the content of the substrates of both the glycolytic enzyme 6-phosphofructo-1-kinase (PFK, EC 2.7.1.11) and the gluconeogenic enzyme fructose-1,6-bisphosphatase (FBPase, EC 3.1.3.11) in…

Malemedicine.medical_specialtyBlaptica dubiaPhosphofructokinase-1Fat BodyFructose 16-bisphosphataseCockroachesIn Vitro TechniquesBiologyBiochemistryGene Expression Regulation Enzymologicchemistry.chemical_compoundInternal medicineFructosediphosphatesmedicineAnimalsGlycolysisPhosphofructokinase 1Molecular BiologyCatabolismNeuropeptidesTrehaloseFructosebiology.organism_classificationAdenosine MonophosphateFructose-BisphosphataseKineticsEndocrinologyFructose 26-bisphosphatechemistryBiochemistryInsect HormonesInsect Sciencebiology.proteinGlycogenPhosphofructokinaseInsect Biochemistry and Molecular Biology
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Proteins in amorphous saccharide matrices: Structural and dynamical insights on bioprotection

2013

Bioprotection by sugars, and in particular trehalose peculiarity, is a relevant topic due to the implications in several fields. The underlying mechanisms are not yet clearly elucidated, and remain the focus of current investigations. Here we revisit data obtained at our lab on binary sugar/water and ternary protein/sugar/water systems, in wide ranges of water content and temperature, in the light of the current literature. The data here discussed come from complementary techniques (Infrared Spectroscopy, Molecular Dynamics simulations, Small Angle X-ray Scattering and Calorimetry), which provided a consistent description of the bioprotection by sugars from the atomistic to the macroscopic …

Materials scienceBiophysicsComplex systemOligosaccharidesInfrared spectroscopyCalorimetryMolecular Dynamics SimulationMolecular dynamicsMatrix (mathematics)X-Ray DiffractionScattering Small AngleSpectroscopy Fourier Transform InfraredGeneral Materials ScienceSpectroscopytrehalosesaccharidemyoglobin spectroscopy simulationschemistry.chemical_classificationProtein StabilitySmall-angle X-ray scatteringBiomoleculeTemperatureProteinsWaterSurfaces and InterfacesGeneral ChemistrySettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)chemistryChemical physicsBiophysicsTernary operationBiotechnology
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Polyaspartamide-based nanoparticles loaded with fluticasone propionate and the in vitro evaluation towards cigarette smoke effects

2017

This paper describes the evaluation of polymeric nanoparticles (NPs) as a potential carrier for lung administration of fluticasone propionate (FP). The chosen polymeric material to produce NPs was a copolymer based on α,β-poly(N-2-hydroxyethyl)-d,l-aspartamide (PHEA) whose backbone was derivatised with different molecules, such as poly(lactic acid) (PLA) and polyethylenglycol (PEG). The chosen method to produce NPs from PHEA-PLA-PEG2000 was the method based on high-pressure homogenization and subsequent solvent evaporation by adding Pluronic F68 during the process and trehalose before lyophilisation. Obtained colloidal FP-loaded NPs showed a slightly negative surface charge and nanometric d…

Materials scienceFluticasone propionate (FP)General Chemical EngineeringNanoparticle02 engineering and technologyPolymeric nanoparticle010402 general chemistry01 natural sciencesαβ-poly-(N-2-hydroxyethyl)-DL-aspartamide (PHEA)Articlealpha beta-poly-(N-2-hydroxyethyl)-D L-aspartamide (PHEA)">dPoly(lactic acid) (PLA)lcsh:ChemistryColloidchemistry.chemical_compoundPEG ratioCopolymer?Organic chemistryGeneral Materials ScienceSurface charge?-poly-(N-2-hydroxyethyl)-dαβ-poly-(N-2-hydroxyethyl)-technology industry and agriculture">l-aspartamide (PHEA)Poly(ethylene glycol) (PEG)respiratory system021001 nanoscience & nanotechnologyTrehaloseIn vitro0104 chemical sciencesLactic acidαβ-poly-(<i>N</i>-2-hydroxyethyl)-<span style="font-variant: small-caps;">d</span><span style="font-variant: small-caps;">l</span>-aspartamide (PHEA); poly(lactic acid) (PLA); poly(ethylene glycol) (PEG); polymeric nanoparticles; fluticasone propionate (FP)polymeric nanoparticleschemistrylcsh:QD1-999l-aspartamide (PHEA); poly(lactic acid) (PLA); poly(ethylene glycol) (PEG); polymeric nanoparticles; fluticasone propionate (FP)0210 nano-technologyNuclear chemistry
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Routine preparation of air-dried negatively stained and unstained specimens on holey carbon support films: a review of applications.

2002

Several representative examples are given of the successful application of negative staining across the holes of holey carbon support films using 5% (w/v) ammonium molybdate solution containing trehalose. The inclusion of 0.1% (w/v) trehalose is considered to be most satisfactory, although good data have also been obtained in the presence of 0.01 and 1.0% (w/v) trehalose. The examples given fall into the following groups: protein molecules in the absence of polyethylene glycol (PEG), protein molecules in the presence of PEG (Mr 1000), lipoproteins, lipids and membranes, filaments and tubules, viruses in the absence of PEG, viruses in the presence of PEG, aqueous polymer solutions, and final…

Materials sciencePolymersLipoproteinsGeneral Physics and AstronomyPolyethylene glycolPolyethylene Glycolschemistry.chemical_compoundStructural BiologyPEG ratioAnimalsHumansGeneral Materials ScienceAmmoniumAmmonium molybdateOrganellesAqueous solutionStaining and LabelingHistological TechniquesProteinsTrehaloseCell BiologyNegative stainTrehaloseLipidsCarbonCrystallographyMicroscopy ElectronMembranechemistryHemocyaninsVirusesNuclear chemistryMicron (Oxford, England : 1993)
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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 (atc1&amp;Delta;/ntc1&amp;Delta; 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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Wine yeast peroxiredoxin TSA1 plays a role in growth, stress response and trehalose metabolism in biomass propagation

2020

This article belongs to the Special Issue Wine Yeast 1.0.

Microbiology (medical)Protein moonlightingperoxiredoxinsThioredoxin reductaseSaccharomyces cerevisiaeMutantWineSaccharomyces cerevisiaeMicrobiology<i>Saccharomyces cerevisiae</i>03 medical and health scienceschemistry.chemical_compoundVirologyoxidative stressBiomasswinelcsh:QH301-705.5030304 developmental biologychemistry.chemical_classification0303 health sciencesTsa1biologybiomass030306 microbiologyChemistryPeroxiredoxinsbiology.organism_classificationTrehaloseYeast in winemakingEnzymeBiochemistrylcsh:Biology (General)Oxidative stressPeroxiredoxinMicroorganisms
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