Search results for "ATPASE"

showing 10 items of 196 documents

Cellular and tissue expression of DAPIT, a phylogenetically conserved peptide

2011

DAPIT (Diabetes Associated Protein in Insulin-sensitive Tissues) is a small, phylogenetically conserved, 58 amino acid peptide that was previously shown to be down-regulated at mRNA level in insulin-sensitive tissues of type 1 diabetes rats. In this study we characterize a custom made antibody against DAPIT and confirm the mitochondrial presence of DAPIT on cellular level. We also show that DAPIT is localized in lysosomes of HUVEC and HEK 293T cells. In addition, we describe the histological expression of DAPIT in several tissues of rat and man and show that it is highly expressed especially in cells with high aerobic metabolism and epithelial cells related to active transport of nutrients …

HistologyCellular respirationProtein subunitBiophysicsPeptideV-ATPaseBiologyMitochondrionAntibodiesMitochondrial ProteinsHuman Umbilical Vein Endothelial CellsV-ATPaseAnimalsHumansmitochondrionta315lcsh:QH301-705.5PhylogenyDAPIT mitochondrion V-ATPase type 1 diabeteschemistry.chemical_classificationRegulation of gene expressionOriginal Papertype 1 diabetes.HEK 293 cellsMembrane ProteinsCell BiologyProton PumpsCell biologyMitochondriaRatsHEK293 CellsMembrane proteinchemistryBiochemistryGene Expression Regulationlcsh:Biology (General)Organ SpecificityLysosomesDAPITEuropean Journal of Histochemistry
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Effect of serotonin and calcium in normal and sensitized guinea pig isolated trachea

1996

Tracheal strips from normal and actively sensitized guinea pigs were studied to determine the responses to serotonin (5-hydroxytryptamine, 5-HT ; 1 nM - 0.1 mM) and ouabain (0.1 μM - 0.1 mM), and the effects of increasing the extracellular calcium (Ca o ) concentration on tonic contractions elicited by 5-HT. Sensitized trachea exhibited an increased responsiveness and sensitivity to 5-HT and ouabain. Increases in Ca o to achieve final concentrations of 5, 10 and 20 mM caused concentration-related relaxations of normal and sensitized tissues contracted to a similar plateau level with 5-HT. Inhibition of the Na + /K + -ATPase by ouabain (10 μM) reversed the effects of Ca o from relaxation to …

Hypersensitivity ImmediateMaleSerotoninmedicine.medical_specialtyContraction (grammar)ATPaseGuinea Pigschemistry.chemical_elementIn Vitro TechniquesCalciumOuabainGuinea pigInternal medicinemedicineExtracellularAnimalsPharmacology (medical)Enzyme InhibitorsOuabain5-HT receptorPharmacologybiologyTracheaEndocrinologychemistrybiology.proteinCalciumSerotoninSodium-Potassium-Exchanging ATPaseMuscle Contractionmedicine.drug
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Failure to Sustain Recovery of Na,K ATPase Function Is a Possible Mechanism for Striatal Neuron Necrosis in Hypoxic-Ischemic Newborn Piglets

1999

Failure to Sustain Recovery of Na,K ATPase Function Is a Possible Mechanism for Striatal Neuron Necrosis in Hypoxic-Ischemic Newborn Piglets

Hypoxic ischemicmedicine.medical_specialtyNecrosisintegumentary systembiologyStriatal neuronChemistryMechanism (biology)animal diseasesATPasefluids and secretionsEndocrinologynervous systemAnesthesiaInternal medicinePediatrics Perinatology and Child Healthmedicinebiology.proteinNa+/K+-ATPasemedicine.symptomFunction (biology)Pediatric Research
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Identification of a Dynein Interacting Domain in the Papillomavirus Minor Capsid Protein L2

2006

ABSTRACT Papillomaviruses enter cells via endocytosis (H. C. Selinka et al., Virology 299:279-287, 2002). After egress from endosomes, the minor capsid protein L2 accompanies the viral DNA to the nucleus and subsequently to the subnuclear promyelocytic leukemia protein bodies (P. M. Day et al., Proc. Natl. Acad. Sci. USA 101:14252-14257, 2004), suggesting that this protein may be involved in the intracytoplasmic transport of the viral genome. We now demonstrate that the L2 protein is able to interact with the microtubule network via the motor protein dynein. L2 protein was found attached to microtubules after uncoating of incoming human papillomavirus pseudovirions. Based on immunofluoresce…

ImmunoprecipitationImmunologyDyneinActive Transport Cell NucleusGenome ViralMicrotubulesMicrobiologyMotor proteinPromyelocytic leukemia proteinMicrotubuleDynein ATPaseVirologyHumansPapillomaviridaebiologyPapillomavirus InfectionsDyneinsOncogene Proteins ViralMolecular biologyEndocytosisVirus-Cell InteractionsMicroscopy FluorescenceCapsidInsect ScienceDNA Viralbiology.proteinDynactinCapsid ProteinsIntranuclear SpaceHeLa CellsProtein BindingJournal of Virology
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Differential electrophysiologic and inotropic effects of phenylephrine in atrial and ventricular heart muscle preparations from rats.

1991

Stimulation of alpha 1-adrenoceptors evokes a different pattern of inotropic responses in atrial and ventricular heart muscle preparations from rats. The inotropic effects are accompanied by different changes in membrane potential. In an attempt to clarify the question whether or to which extent these events are causally related, the effects of phenylephrine on force of contraction, transmembrane potential, Ca2+ current (ICa) and K+ currents were comparatively studied in either tissue. In atrial preparations, phenylephrine 10 mumol/l caused an increase in force of contraction, a marked prolongation of the action potential duration and a depolarization of the membrane at rest. In the ventric…

InotropeMalemedicine.medical_specialtyContraction (grammar)Heart VentriclesAction PotentialsStimulationMembrane PotentialsContractilityPhenylephrineInternal medicineMedicineAnimalsHeart AtriaAtrium (heart)Na+/K+-ATPasePhenylephrinePharmacologybusiness.industryHeartRats Inbred StrainsGeneral MedicineMyocardial ContractionRatsElectrophysiologyElectrophysiologymedicine.anatomical_structureCardiologybusinessmedicine.drugNaunyn-Schmiedeberg's archives of pharmacology
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A proton-translocating H+-ATPase is involved in C6 glial pH regulation.

1998

AbstractGlial cells extrude acid equivalents to maintain pHi. Although four mechanisms have been described so far, pHi-control under physiological conditions is still not sufficiently explained. We therefore investigated whether a H+-translocating ATPase is involved in glial pHi homeostasis using an established glial cell line (C6 glioma). In the absence of bicarbonate, the inhibition of H+-ATPases by NEM led to a pHi decrease. The application of a more specific inhibitor (NBD-Cl) showed that the H+-ATPase involved is of the vacuolar type. Inhibition went along with delayed cell swelling. Together with the fact that glial acidification was far more pronounced in Na+-free media, this may ser…

Intracellular FluidBicarbonateATPaseBiophysicsStimulationpHi-regulationBiochemistrychemistry.chemical_compoundEquivalentCell volumemedicineTumor Cells CulturedAnimalsCell SizebiologyChemistryBiological TransportC6 gliomaVacuolar type H+-ATPaseCell BiologyGliomaHydrogen-Ion ConcentrationAmilorideCell biologyCulture MediaRatsProton-Translocating ATPasesmedicine.anatomical_structureCell culturebiology.proteinProtonsAstrocyteAcidsHomeostasismedicine.drugAstrocyteBiochimica et biophysica acta
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Effects of different agents on the contractile response elicited by extracellular calcium after depletion of internal calcium stores in rat isolated …

1993

Abstract Noradrenaline, 1 μm, induced a sustained contractile response in rat isolated aorta in the presence and in the absence of extracellular Ca2+. After depleting the noradrenaline-sensitive intracellular Ca2+ stores, an increase in the basal tone of the aorta was observed during the incubation period in the presence of Ca2+ and in the absence of the agonist. We have tested the possible pathways through which Ca2+ enters the cell to refill the previously depleted Ca2+ pools, a process that is accompanied by an increase in tension. The magnitude of this increase does not depend on the presence of Mg2+ in the extracellular medium nor on the temperature, suggesting that it is mediated by a…

Intracellular FluidMalemedicine.medical_specialtyATPasePharmaceutical Sciencechemistry.chemical_elementAorta ThoracicCalciumIn Vitro TechniquesMuscle Smooth Vascularchemistry.chemical_compoundNorepinephrineLanthanumInternal medicineCaffeinemedicineExtracellularAnimalsMagnesiumRats WistarPharmacologybiologyTemperatureRatsKineticsEndocrinologychemistryVerapamilMuscle Tonusbiology.proteinVerapamilCalciummedicine.symptomCaffeineExtracellular SpaceVasoconstrictionIntracellularmedicine.drugMuscle contractionMuscle ContractionThe Journal of pharmacy and pharmacology
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Tracking Ca

2019

We characterize thus-far elusive domain rearrangements of a calcium-transporting ATPase in the native membrane.

Ion TransportProtein ConformationBiophysicsQuantitative Structure-Activity RelationshipSciAdv r-articlesMolecular Dynamics SimulationCrystallography X-RaySarcoplasmic Reticulum Calcium-Transporting ATPasesKineticsStructural BiologyCalciumProtein Interaction Domains and MotifsResearch ArticlesProtein BindingResearch ArticleScience advances
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Glial ion transport and volume control.

1991

K(+)-induced glial swelling results from an intricate interaction of transport and diffusion processes and metabolic stimulation, with many open questions remaining. Our concept of the major mechanisms involved can be summarized as follows: high extracellular K+ causes a burst-like stimulation of Na+/K+ ATPase and, hence, increases the metabolic demands. Lactate is produced; the cell is slightly acidified. To maintain a normal intracellular pH, the Na+/K+ antiporter extrudes protons and supplies Na+ for further Na+/K+ exchange. In addition, K+ ions enter the cell via membrane channels or furosemide-inhibitable transport. K+, Cl-, and lactate- ions accumulate as the osmotic basis for cell sw…

IonsbiologyChemistryGeneral NeuroscienceATPaseAntiporterIntracellular pHStimulationBiological TransportFlow CytometryGeneral Biochemistry Genetics and Molecular BiologyHistory and Philosophy of ScienceBody WaterExtracellularbiology.proteinBiophysicsPotassiumTumor Cells CulturedMembrane channelQuercetinNeurogliaHomeostasisIon transporterAnnals of the New York Academy of Sciences
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Potassium-inhibited processing of IL-1 beta in human monocytes.

1995

Agents that deplete cells of K+ without grossly disrupting the plasma membrane were found to stimulate the cleavage of pro-interleukin (IL)-1 beta to mature IL-1 beta. Agents examined in this study included staphylococcal alpha-toxin and gramicidin, both of which selectively permeabilize plasma membranes for monovalent ions, the ionophores nigericin and valinomycin, and the Na+/K+ ATPase inhibitor ouabain. K+ depletion by brief hypotonic shock also triggered processing of pro-IL-1 beta. The central role of K+ depletion for inducing IL-1 beta maturation was demonstrated in cells permeabilized with alpha-toxin: processing of pro-IL-1 beta was totally blocked when cells were suspended in mediu…

LipopolysaccharidesCell Membrane PermeabilityNigericinATPaseEnzyme-Linked Immunosorbent AssayMonocytesGeneral Biochemistry Genetics and Molecular BiologyOuabainchemistry.chemical_compoundValinomycinAntibody SpecificityPotassium Channel BlockersExtracellularmedicineHumansChannel blockerProtein PrecursorsNa+/K+-ATPaseMolecular BiologyDose-Response Relationship DrugGeneral Immunology and MicrobiologybiologyGeneral NeurosciencechemistryBiochemistryType C PhospholipasesPotassiumBiophysicsbiology.proteinProtein Processing Post-TranslationalIntracellularResearch ArticleInterleukin-1medicine.drugThe EMBO Journal
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