Search results for "GTP-Binding Proteins"

showing 10 items of 117 documents

The binding of G-protein to rod outer segment phospholipids at the nitrogen–water interface

1989

In the visual process, one photoexcited rhodopsin (R*) catalyzes the activation of hundreds of G-proteins. It remains to be determined whether G-protein and R* find one another by membrane surface diffusion of these components (diffusion model) or by diffusion of G-protein through the aqueous phase (hopping model). A monolayer of each main rod outer segment (ROS) phospholipid interacting with a subphase containing G-protein, has been used to simulate the interaction of G-protein with the cytoplasmic surface of discal membranes. The possible diffusion of G-protein through the aqueous phase was then measured by observing its adsorption–desorption in the monolayer of each main ROS phospholipi…

biologyChemistryAqueous two-phase systemPhospholipidMembrane ProteinsCell BiologySurface pressureBiochemistryCrystallographychemistry.chemical_compoundMembraneGTP-Binding ProteinsCytoplasmRhodopsinMonolayerbiology.proteinAnimalsCattlePhotoreceptor CellsDiffusion (business)Molecular BiologyPhospholipidsBiochemistry and Cell Biology
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Stimulation with carbachol alters endomembrane distribution and plasma membrane expression of intracellular proteins in lacrimal acinar cells.

2000

The events that lead to Sjogren's autoimmune processes in the lacrimal gland remain poorly understood. The acinar cell's responses to acute cholinergic stimulation include release of secretory products across the apical plasma membrane (apm) and a number of processes related to traffic between endomembrane compartments and the basal-lateral plasma membranes (blm), such as recruitment of Na, K-ATPase, accelerated recycling, and accelerated transcytosis of secretory IgA. We tested the hypothesis that stimulation-induced acceleration of endomembrane traffic is accompanied by changes in compartmentation and increased blm expression of proteins that are normally sequestered in endomembrane compa…

medicine.medical_specialtyAcid PhosphataseImmunoblottingGolgi ApparatusStimulationBiologyCholinergic AgonistsCathepsin BCathepsin BCellular and Molecular Neurosciencesymbols.namesakeInternal medicinemedicineAcinar cellAnimalsEndomembrane systemCells Culturedrab5 GTP-Binding ProteinsDifferential centrifugationEnzyme PrecursorsCell MembraneHistocompatibility Antigens Class IIMembrane Proteinsalpha-GlucosidasesGolgi apparatusGalactosyltransferasesCathepsinsSensory SystemsStimulation Chemicalbeta-N-AcetylhexosaminidasesCell biologyOphthalmologyEndocrinologySjogren's SyndromeTranscytosisrab GTP-Binding ProteinssymbolsCarbacholElectrophoresis Polyacrylamide GelFemaleRabbitsSodium-Potassium-Exchanging ATPaseIntracellularExperimental eye research
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Adrenergic modulation of astroglial phospholipase D activity and cell proliferation.

1999

As phospholipase D (PLD) activation has been associated with mitogenic signalling in several cell types, we tested an association between adrenergic activation of PLD and cellular proliferation in primary cultures of rat cortical astrocytes. In 2-week old cultures, PLD activation by noradrenaline (EC50: 0.49 microM) was inhibited by prazosin, a specific antagonist at alpha1-adrenergic receptors (IC50: 0.23 microM). Adrenergic PLD activation was not affected by genistein, an inhibitor of tyrosine kinases, or by Ro 31-8220, an inhibitor of protein kinase C (PKC), but was dose-dependently depressed in the presence of brefeldin A (1-100 microg/ml), an inhibitor of ARF activation. In experiments…

medicine.medical_specialtyAdrenergic AntagonistsAdrenergicBiologyPharmacologychemistry.chemical_compoundNorepinephrineGTP-Binding ProteinsIsoprenalineInternal medicinemedicineAdrenergic antagonistPrazosinPhospholipase DPhospholipase D activityAnimalsMolecular BiologyProtein kinase CCells CulturedBrefeldin APhospholipase DGeneral NeurosciencePrazosinBrefeldin AAdrenergic AgonistsPropranololRatsReceptors AdrenergicEndocrinologychemistryAlcoholsAstrocyteslipids (amino acids peptides and proteins)Neurology (clinical)Cell DivisionDevelopmental Biologymedicine.drugSignal TransductionBrain research
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Can you blame cold feet on Epac (and Rap1A)? Focus on “Cyclic AMP-Rap1A signaling activates RhoA to induce α2C-adrenoceptor translocation to the cell…

2012

Intracellular signaling by the second messenger cyclic AMP (cAMP) activates the Ras-related small GTPase Rap1 through the guanine exchange factor Epac. This activation leads to effector protein interactions, activation, and biological responses in the vasculature, including vasorelaxation. In vascular smooth muscle cells derived from human dermal arterioles (microVSM), Rap1 selectively regulates expression of G protein-coupled α2C-adrenoceptors (α2C-ARs) through JNK-c-jun nuclear signaling. The α2C-ARs are generally retained in the trans-Golgi compartment and mobilize to the cell surface and elicit vasoconstriction in response to cellular stress. The present study used human microVSM to exa…

medicine.medical_specialtyRHOAPhysiologyMyocytes Smooth MuscleCellChromosomal translocationSmooth muscleReceptors Adrenergic alpha-2Internal medicineCyclic AMPmedicineAnimalsHumansReceptorbiologyrap1 GTP-Binding ProteinsArticlesCell Biologyα2c adrenoceptorCell biologyProtein Transportmedicine.anatomical_structureEndocrinologybiology.proteinmedicine.symptomrhoA GTP-Binding ProteinVasoconstrictionAmerican Journal of Physiology-Cell Physiology
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Regulation of the human bradykinin B2 receptor expressed in sf21 insect cells: A possible role for tyrosine kinases

2000

The functional regulation of the human bradykinin B2 receptor expressed in sf21 cells was studied. Human bradykinin B2 receptors were immunodetected as a band of 75–80 kDa in membranes from recombinant baculovirus-infected cells and visualized at the plasma membrane, by confocal microscopy, using an antibody against an epitope from its second extracellular loop. B2 receptors, detected in membranes by [3H-bradykinin] binding, showed a Kd of 0.66 nmol/L and an expression level of 2.57 pmol/mg of protein at 54 h postinfection. In these cells, bradykinin induced a transient increase of intracellular calcium ([Ca2+]i) in fura 2-AM loaded sf21 cells, and promoted [35S]-GTPγS binding to membranes.…

medicine.medical_specialtyReceptor Bradykinin B2G proteinGene Expressionchemistry.chemical_elementBradykininReceptors Cell SurfaceSpodopteraCalciumBiologyBradykininBiochemistryCalcium in biologychemistry.chemical_compoundGTP-Binding ProteinsInternal medicineHomologous desensitizationmedicineAnimalsHumansPhosphorylationBradykinin receptorPhosphoamino AcidsReceptorOctopamineMolecular BiologyBradykinin Receptor AntagonistsCells CulturedMicroscopy ConfocalReceptors BradykininCell MembraneCell BiologyProtein-Tyrosine KinasesTyrphostinsGenisteinMolecular biologyRecombinant ProteinsEndocrinologychemistryGuanosine 5'-O-(3-Thiotriphosphate)ThapsigarginCalciumBaculoviridaeTyrosine kinaseProtein BindingJournal of Cellular Biochemistry
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RAB18 Loss Interferes With Lipid Droplet Catabolism and Provokes Autophagy Network Adaptations

2020

Autophagy is dependent on appropriate lipid supply for autophagosome formation. The regulation of lipid acquisition and the autophagy network response to lipid-limiting conditions are mostly elusive. Here, we show that the knockout of the RAB GTPase RAB18 interferes with lipid droplet catabolism, causing an impaired fatty acid release. The resulting reduced lipid-droplet-derived lipid availability influences autophagy and provokes adaptive modifications of the autophagy network. These adjustments include increased expression and phosphorylation of ATG2B as well as augmented formation of the ATG12-ATG5 conjugate. Moreover, ATG9A shows an enhanced phosphorylation at amino acid residues tyrosi…

rab3 GTP-Binding ProteinsImmunoblottingGTPaseReal-Time Polymerase Chain Reaction03 medical and health sciences0302 clinical medicineMicroscopy Electron TransmissionStructural BiologyLipid dropletAutophagyHumansPhosphorylationTyrosineMolecular Biology030304 developmental biology0303 health sciencesMicroscopy ConfocalChemistryCatabolismAutophagyAutophagosomesLipid DropletsImmunohistochemistryCell biologyrab GTP-Binding ProteinsPhosphorylationlipids (amino acids peptides and proteins)RabCRISPR-Cas Systems030217 neurology & neurosurgeryRAB18HeLa CellsJournal of Molecular Biology
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Physical inactivity increases oxidative stress, endothelial dysfunction, and atherosclerosis.

2005

Objective— Sedentary lifestyle is associated with increased cardiovascular events. The underlying molecular mechanisms are incompletely understood. Reactive oxygen species (ROS) contribute to endothelial dysfunction and atherosclerosis. An important source of vascular ROS is the NADPH oxidase. Methods and Results— C57BL6 mice were subjected to regular housing (physical inactivity) or voluntary training on running wheels (6 weeks). Inactivity increased vascular lipid peroxidation to 148±9% and upregulated superoxide release to 176±17% (L-012 chemiluminescence) and 188±29% (cytochrome C reduction assay), respectively. ROS production was predominantly increased in the endothelium and the medi…

rac1 GTP-Binding Proteinmedicine.medical_specialtyEndotheliumNitric Oxide Synthase Type IIIArteriosclerosisNitric Oxide Synthase Type IIBiologymedicine.disease_causechemistry.chemical_compoundMiceApolipoproteins EInternal medicinePhysical Conditioning AnimalmedicineAnimalsNADH NADPH OxidoreductasesRNA MessengerEndothelial dysfunctionLife Stylechemistry.chemical_classificationReactive oxygen speciesNADPH oxidaseSuperoxideNeuropeptidesNADPH Oxidase 1NADPH Oxidasesmedicine.diseasePhosphoproteinsMice Mutant Strainsrac GTP-Binding ProteinsMice Inbred C57BLVasodilationOxidative Stressmedicine.anatomical_structureEndocrinologychemistryNOX1biology.proteinNADPH Oxidase 1Endothelium VascularNitric Oxide SynthaseCardiology and Cardiovascular MedicineReactive Oxygen SpeciesOxidative stressArteriosclerosis, thrombosis, and vascular biology
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Rho GTPases in human breast tumours: expression and mutation analyses and correlation with clinical parameters

2002

In the present study, we addressed the question of a putative relevance of Rho proteins in tumour progression by analysing their expression on protein and mRNA level in breast tumours. We show that the level of RhoA, RhoB, Rac1 and Cdc42 protein is largely enhanced in all tumour samples analysed (n=15) as compared to normal tissues originating from the same individual. The same is true for 32P-ADP-ribosylation of Rho proteins which is catalysed by Clostridium botulinum exoenzyme C3. Also the amount of Rho-GDI and ERK2 as well as the level of overall 32P-GTP binding acvitity was tumour-specific elevated, yet to a lower extent than Rho proteins. Although the amount of Rho proteins was enhance…

rac1 GTP-Binding Proteinrho GTP-Binding ProteinsCancer ResearchRHOAProliferation indexRHOBBlotting WesternDNA Mutational AnalysisRhoCGene ExpressionBreast NeoplasmsRAC1breast tumoursCDC42Polymerase Chain ReactionRho GTPasesRhoB GTP-Binding ProteinHumansBreastRNA Messengercdc42 GTP-Binding ProteinrhoB GTP-Binding Proteinmutation analysisADP Ribose TransferasesMitogen-Activated Protein Kinase 1biologyGenetics and GenomicsMolecular biologyOncologyCdc42 GTP-Binding ProteinMutationtumour progressionDisease Progressionbiology.proteinFemaleGuanosine TriphosphaterhoA GTP-Binding ProteinBritish Journal of Cancer
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Rac1 protein signaling is required for DNA damage response stimulated by topoisomerase II poisons.

2012

To investigate the potency of the topoisomerase II (topo II) poisons doxorubicin and etoposide to stimulate the DNA damage response (DDR), S139 phosphorylation of histone H2AX (γH2AX) was analyzed using rat cardiomyoblast cells (H9c2). Etoposide caused a dose-dependent increase in the γH2AX level as shown by Western blotting. By contrast, the doxorubicin response was bell-shaped with high doses failing to increase H2AX phosphorylation. Identical results were obtained by immunohistochemical analysis of γH2AX focus formation, comet assay-based DNA strand break analysis, and measuring the formation of the topo II-DNA cleavable complex. At low dose, doxorubicin activated ataxia telangiectasia m…

rac1 GTP-Binding Proteinrho GTP-Binding ProteinsDNA damageAntineoplastic AgentsBiochemistryPoisonsCell LineHistonesNeoplasmsmedicineAnimalsTopoisomerase II InhibitorsDoxorubicinMolecular BiologyEtoposidebiologyCell DeathTopoisomeraseCell BiologyMolecular biologyImmunohistochemistryRatsComet assayHistoneDNA Topoisomerases Type IIDNA Topoisomerases Type Ibiology.proteinPhosphorylationTopoisomerase-II InhibitorHydroxymethylglutaryl-CoA Reductase Inhibitorsmedicine.drugDNA DamageSignal TransductionThe Journal of biological chemistry
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Molecular Mechanisms of the Blockage of Glioblastoma Motility

2021

Glioblastoma (GBM) is the most common and lethal brain tumor. GBM has a remarkable degree of motility and is able to infiltrate the healthy brain. In order to perform a rationale-based drug-repositioning study, we have used known inhibitors of two small Rho GTPases, Rac1 and Cdc42, which are upregulated in GBM and are involved in the signaling processes underlying the orchestration of the cytoskeleton and cellular motility. The selected inhibitors (R-ketorolac and ML141 for Cdc42 and R-ketorolac and EHT 1864 for Rac1) have been successfully employed to reduce the infiltration propensity of GBM in live cell imaging studies. Complementarily, all-atom simulations have elucidated the molecular …

rac1 GTP-Binding Proteinrho GTP-Binding ProteinsGeneral Chemical EngineeringBrain tumorMotilityRAC1CDC42Library and Information SciencesBiologySettore BIO/09 - FisiologiaMicrotubules01 natural sciencesDownregulation and upregulationLive cell imaging0103 physical sciencesmedicineHumanscdc42 GTP-Binding Protein010304 chemical physicsDrug discoveryCancerGeneral Chemistrymedicine.disease0104 chemical sciencesComputer Science Applications010404 medicinal & biomolecular chemistrySettore CHIM/03 - Chimica Generale E InorganicaCancer researchGlioblastomaJournal of Chemical Information and Modeling
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