Search results for "Phosphates"

showing 10 items of 273 documents

Purification and characterization of two exopolyphosphatases from the marine sponge Tethya lyncurium

1995

Abstract Two exopolyphosphatases (exopolyphosphatase I and II; EC 3.6.1.11) which release orthophosphate from inorganic polyphosphates have been detected and purified for the first time from a marine sponge, Tethya lyncurium . Exopolyphosphatase I has a molecular mass of 45 kDa, a pH optimum of 5.0 and does not require divalent cations for activity, while exopolyphosphatase II has a molecular mass of 70 kDa, a pH optimum of 7.5 and displays optimal activity in the presence of Mg 2+ ions. Final purification of the enzymes could be achieved by affinity chromatography on polyphosphate-modified zirconia. The mode of action of both enzymes was found to be processive. Orthophosphate is the sole p…

Cations DivalentBiophysicsAdenylate kinaseBiochemistryPyrophosphateDivalentchemistry.chemical_compoundPolyphosphatesProtein purificationAnimalsMolecular BiologyExopolyphosphatasechemistry.chemical_classificationChromatographyMolecular massPolyphosphateTemperatureHydrogen-Ion ConcentrationAcid Anhydride HydrolasesPoriferaMolecular WeightKineticsEnzymechemistryBiochemistryAdenylyl Cyclase InhibitorsBiochimica et Biophysica Acta (BBA) - General Subjects
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Mammalian intestinal alkaline phosphatase acts as highly active exopolyphosphatase.

2001

Recent results revealed that inorganic polyphosphates (polyP), being energy-rich linear polymers of orthophosphate residues known from bacteria and yeast, also exist in higher eukaryotes. However, the enzymatic basis of their metabolism especially in mammalian cells is still uncertain. Here we demonstrate for the first time that alkaline phosphatase from calf intestine (CIAP) is able to cleave polyP molecules up to a chain length of about 800. The enzyme acts as an exopolyphosphatase degrading polyP in a processive manner. The pH optimum is in the alkaline range. Divalent cations are not required for catalytic activity but inhibit the degradation of polyP. The rate of hydrolysis of short-ch…

Cations DivalentBiophysicsBiologymedicine.disease_causeBiochemistryDivalentSubstrate SpecificityNitrophenolschemistry.chemical_compoundOrganophosphorus CompoundsStructural BiologyNickelPolyphosphatesmedicineAnimalsMagnesiumneoplasmsMolecular BiologyEscherichia coliEdetic AcidExopolyphosphatasechemistry.chemical_classificationPolyphosphateSubstrate (chemistry)MetabolismCobaltHydrogen-Ion ConcentrationAlkaline PhosphataseMolecular biologydigestive system diseasesAcid Anhydride HydrolasesIntestinesKineticsEnzymechemistryBiochemistryAlkaline phosphataseCattleBiochimica et biophysica acta
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Interaction of Neuronal Calcium Sensor-1 (NCS-1) with Phosphatidylinositol 4-Kinase β Stimulates Lipid Kinase Activity and Affects Membrane Trafficki…

2001

Phosphatidylinositol 4-kinases (PI4K) catalyze the first step in the synthesis of phosphatidylinositol 4,5-bisphosphate, an important lipid regulator of several cellular functions. Here we show that the Ca(2+)-binding protein, neuronal calcium sensor-1 (NCS-1), can physically associate with the type III PI4Kbeta with functional consequences affecting the kinase. Recombinant PI4Kbeta, but not its glutathione S-transferase-fused form, showed enhanced PI kinase activity when incubated with recombinant NCS-1, but only if the latter was myristoylated. Similarly, in vitro translated NCS-1, but not its myristoylation-defective mutant, was found associated with recombinant- or in vitro translated P…

Cell Membrane PermeabilityLipoproteinsNeuronal Calcium-Sensor ProteinsLipid kinase activityBiologyPhosphatidylinositolsbehavioral disciplines and activitiesBiochemistrychemistry.chemical_compoundsymbols.namesakePhosphatidylinositol PhosphatesChlorocebus aethiopsmental disordersAnimalsCalcium SignalingPhosphatidylinositol1-Phosphatidylinositol 4-KinaseMolecular BiologyCellular compartmentMyristoylationKinaseCalcium-Binding ProteinsCell MembraneNeuropeptidesBiological TransportCell BiologyTransfectionGolgi apparatusCell CompartmentationRatsCell biologychemistryBiochemistryNeuronal calcium sensor-1COS Cellssymbolsbiology.proteinCattleMyristic AcidsProtein Processing Post-TranslationalProtein BindingJournal of Biological Chemistry
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Polyphosphate, the physiological metabolic fuel for corneal cells: a potential biomaterial for ocular surface repair

2019

The regeneration of the epithelium, covering the avascular cornea, involves the processes of differentiation, proliferation and migration of cells originating from the corneal epithelial stem cells. We ask the question if these energy-consuming processes can be fueled by the physiological, inorganic polyphosphate (polyP), the main energy storage/donor molecule in the extracellular space. The ex vivo results reveal that addition of polyP, in the form of soluble Na-polyP, to the culture medium elicits a strong stimulatory effect on cell viability/growth and migration of corneal epithelial cells. Microscopic analyses of partially denuded cornea specimens show that in the presence of polyP, but…

Cell SurvivalCell Culture TechniquesBiomedical Engineering02 engineering and technology010402 general chemistry01 natural sciencesCorneaCorneal limbusCell MovementPolyphosphatesCorneaotorhinolaryngologic diseasesmedicineHumansRegenerationGeneral Materials ScienceViability assayCells CulturedCell ProliferationCorneal epitheliumTissue ScaffoldsChemistryRegeneration (biology)Mucin-1Epithelial Cells021001 nanoscience & nanotechnologyeye diseasesdigestive system diseasesEpitheliumCulture Media0104 chemical sciencesCell biologysurgical procedures operativemedicine.anatomical_structureSolubilityCell cultureCalciumsense organsStem cell0210 nano-technologyBiomaterials Science
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Central Modulatory Neurons Control Fuel Selection in Flight Muscle of Migratory Locust

2003

Insect flight is one of the most intense and energy-demanding physiological activities. High carbohydrate oxidation rates are necessary for take-off, but, to spare the limited carbohydrate reserves, long-distance flyers, such as locusts, soon switch to lipid as the main fuel. We demonstrate that before a flight, locust muscles are metabolically poised for take-off by the release of octopamine from central modulatory dorsal unpaired median (DUM) neurons, which increases the levels of the potent glycolytic activator fructose 2,6-bisphosphate in flight muscle. Because DUM neurons innervating the flight muscles are active during rest but selectively inhibited during flight, they stimulate carbo…

Central Nervous SystemMalemedicine.medical_specialtyGrasshoppersBrief CommunicationInsect flightCarbohydrate catabolismInternal medicinemedicineFructosediphosphatesPremovement neuronal activityAnimalsGlycolysisProtein kinase AMuscle SkeletalOctopamineNeuronsbiologyGeneral NeuroscienceMigratory locustbiology.organism_classificationCyclic AMP-Dependent Protein KinasesEndocrinologyFlight AnimalOctopamine (neurotransmitter)FemaleGlycolysisLocustSignal Transduction
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In vitro prediction of in vivo absorption of ibuprofen from suspensions through rational choice of dissolution conditions

2020

Two ibuprofen suspension formulations were investigated for their dissolution in various bicarbonate, phosphate and acetate buffers. Phosphate and acetate gave faster release than bicarbonate at comparable molarities. Nevertheless, mass transport modelling using the reversible non-equilibrium (RNE) approach enabled the calculation of phosphate molarities that gave good matches to physiological bicarbonate in terms of ibuprofen dissolution. This shows that developing surrogate buffers for bicarbonate that are devoid of the technical difficulties associated with the bicarbonate-CO2 systems is possible. In addition, the intestinal dissolution kinetics of the tested suspensions were determined …

Chemistry PharmaceuticalBicarbonateKineticsPharmaceutical ScienceIbuprofen02 engineering and technologyAcetatesBuffersModels Biological030226 pharmacology & pharmacyPhosphatesSuspension (chemistry)03 medical and health scienceschemistry.chemical_compound0302 clinical medicineSuspensionsPharmacokineticsIn vivomedicineHumansDissolutionChromatographyGeneral Medicine021001 nanoscience & nanotechnologyPhosphateIbuprofenBicarbonatesDrug LiberationSolubilitychemistry0210 nano-technologyBiotechnologymedicine.drugEuropean Journal of Pharmaceutics and Biopharmaceutics
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Retinol encapsulated into amorphous Ca2+ polyphosphate nanospheres acts synergistically in MC3T3-E1 cells

2015

Both the quality and quantity of collagen, the major structural component of the skin, decrease in aging skin. We succeeded to encapsulate retinol into amorphous inorganic polyphosphate (polyP) nanoparticles together with calcium ions ("aCa-polyP-NP"), under formation of amorphous Ca-polyP/retinol nanospheres ("retinol/aCa-polyP-NS"). The globular nanospheres are not cytotoxic, show an almost uniform size of ≈ 45 nm and have a retinol content of around 25%. Both components of those nanospheres, retinol and the aCa-polyP-NP, if administered together, caused a strong increase in proliferation of mouse calvaria MC3T3 cells. The expressions of collagen types I, II and III genes, but not the exp…

Chemistry PharmaceuticalRetinal bindingPharmaceutical ScienceEndocytosisCollagen Type IMiceCollagen Type IIIchemistry.chemical_compoundPolyphosphatesExtracellularAnimalsTechnology PharmaceuticalMC3T3Particle SizeVitamin ACollagen Type IICell ProliferationDrug CarriersDose-Response Relationship DrugCell growthSkullRetinolDrug Synergism3T3 CellsGeneral MedicineCalcium CompoundsEndocytosisUp-RegulationRetinol-Binding ProteinsRetinol binding proteinCollagen Type IIINanomedicineBiochemistrychemistryBiophysicsNanospheresProtein BindingBiotechnologyEuropean Journal of Pharmaceutics and Biopharmaceutics
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Spatio-temporal dynamics of a planktonic system and chlorophyll distribution in a 2D spatial domain: matching model and data

2017

AbstractField data on chlorophyll distribution are investigated in a two-dimensional spatial domain of the Mediterranean Sea by using for phytoplankton abundances an advection-diffusion-reaction model, which includes real values for physical and biological variables. The study exploits indeed hydrological and nutrients data acquired in situ, and includes intraspecific competition for limiting factors, i.e. light intensity and phosphate concentration. As a result, the model allows to analyze how both the velocity field of marine currents and the two components of turbulent diffusivity affect the spatial distributions of phytoplankton abundances in the Modified Atlantic Water, the upper layer…

Chlorophyll0301 basic medicineChlorophyll aScienceSpatial ecology; Marine ecosystems; Phytoplankton dynamics; Partial differential equationsAtmospheric sciencesArticlePhosphates03 medical and health scienceschemistry.chemical_compoundSpatio-Temporal AnalysisMediterranean seaWater columnPhytoplanktonMediterranean SeaMarine ecosystemSpatial ecologySeawaterTransectPhytoplankton dynamicMultidisciplinaryEcologyChlorophyll AQTemperatureRModels TheoreticalPlanktonPartial differential equationsSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Light intensity030104 developmental biologychemistryChlorophyllPhytoplanktonMedicineEnvironmental scienceSeasonsScientific Reports
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Deoxyxylulose 5-phosphate reductoisomerase is not a rate-determining enzyme for essential oil production in spike lavender

2014

[EN] Spike lavender (Lavandula latifolia) is an economically important aromatic plant producing essential oils, whose components (mostly monoterpenes) are mainly synthesized through the plastidial methylerythritol 4-phosphate (MEP) pathway. 1-Deoxy-d-xylulose-5-phosphate (DXP) synthase (DXS), that catalyzes the first step of the MEP pathway, plays a crucial role in monoterpene precursors biosynthesis in spike lavender. To date, however, it is not known whether the DXP reductoisomerase (DXR), that catalyzes the conversion of DXP into MEP, is also a rate-limiting enzyme for the biosynthesis of monoterpenes in spike lavender. To investigate it, we generated transgenic spike lavender plants con…

ChlorophyllPhysiologyTransgeneMonoterpeneLavandula latifoliaMonoterpeneGene ExpressionFlowersPlant ScienceEssential oillaw.inventionchemistry.chemical_compoundBiosynthesisTransferaseslawBIOQUIMICA Y BIOLOGIA MOLECULAROils VolatilePlant OilsArabidopsis thalianaAldose-Ketose IsomerasesEssential oilPlant ProteinsATP synthasebiologyArabidopsis ProteinsDXR enzymeDXS enzymeSpike lavenderPlants Genetically Modifiedbiology.organism_classificationCarotenoidsDXP reductoisomerasePlant LeavesErythritolLavandulaPhenotypechemistryBiochemistryMonoterpenesbiology.proteinSugar PhosphatesAgronomy and Crop ScienceJournal of Plant Physiology
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Determination of alternative and conventional chelating agents as copper(II) complexes by capillary zone electrophoresis—The first use of didecyldime…

2006

Abstract A capillary zone electrophoresis (CZE) method for analyzing 11 chelating agents [β-alaninediacetic acid (β-ADA), trans-1,2-diaminocyclohexane- N , N , N ′, N ′-tetraacetic acid (CDTA), diethylenetriaminepentaacetic acid (DTPA), ethylenediaminetetraacetic acid (EDTA), N -(2-hydroxyethyl)ethylenediamine- N , N ′, N ′-triacetic acid (HEDTA), N -(2-hydroxyethyl)iminodiacetic acid (HEIDA), iminodiacetic acid (IDA), methylglycinediacetic acid (MGDA), nitrilotriacetic acid (NTA), 1,3-diaminopropane- N , N , N ′, N ′-tetraacetic acid (PDTA) and triethylenetetraaminehexaacetic acid (TTHA)] as negatively charged copper(II) complexes has been established. Both conventional and alternative che…

ChromatographyIminodiacetic acidPentetic acidNitrilotriacetic acidElectrophoresis CapillaryEthylenediamineEthylenediaminetetraacetic acidHydrogen-Ion ConcentrationBiochemistryOrganophosphatesAnalytical ChemistryQuaternary Ammonium Compoundschemistry.chemical_compoundCapillary electrophoresischemistryReagentEnvironmental ChemistryIndicators and ReagentsChelationCopperSoftwareSpectroscopyChelating AgentsAnalytica Chimica Acta
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