Search results for "Exocytosis"

showing 10 items of 56 documents

AMPA receptor complex constituents: Control of receptor assembly, membrane trafficking and subcellular localization

2018

Fast excitatory transmission at synapses of the central nervous system is mainly mediated by AMPA receptors (AMPARs). Synaptic AMPAR number and function correlates with synaptic strength. AMPARs are thus key proteins of activity-dependent plasticity in neuronal communication. Up- or down-regulation of synaptic AMPAR number is a tightly controlled dynamic process that involves export of receptors from the endoplasmic reticulum (ER) and Golgi apparatus, exocytosis and endocytosis as well as lateral diffusion of the receptors in the cell membrane. The four AMPAR subunits are embedded into a dynamic network of more than 30 interacting proteins. Many of these proteins are known to modulate recep…

0301 basic medicineAMPA receptorBiologyEndocytosisAxonal TransportExocytosis03 medical and health sciencesCellular and Molecular Neurosciencesymbols.namesakeAnimalsHumansReceptors AMPAReceptorMolecular BiologyNeuronsmusculoskeletal neural and ocular physiologyEndoplasmic reticulumCell BiologyGolgi apparatusSubcellular localizationCell biologyTransport proteinProtein Transport030104 developmental biologynervous systemSynapsessymbolsProtein MultimerizationGuanylate KinasesMolecular and Cellular Neuroscience
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Polyphosphate as a donor of high-energy phosphate for the synthesis of ADP and ATP.

2017

Here, we studied the potential role of inorganic polyphosphate (polyP) as an energy source for ADP and ATP formation in the extracellular space. In SaOS-2 cells, we show that matrix vesicles are released into the extracellular space after incubation with polyP. These vesicles contain both alkaline phosphatase (ALP) and adenylate kinase (AK) activities (mediated by ALPL and AK1 enzymes). Both enzymes translocate to the cell membrane in response to polyP. To distinguish the process(es) of AMP and ADP formation during ALP hydrolysis from the ATP generated via the AK reaction, inhibition studies with the AK inhibitor A(5')P5(5')A were performed. We found that ADP formation in the extracellular …

0301 basic medicineAdenylate kinaseBiologydigestive systemExocytosisCatalysisCell membrane03 medical and health scienceschemistry.chemical_compound0302 clinical medicineAdenosine TriphosphatePolyphosphatesExtracellularmedicineTumor Cells CulturedHumansPhosphorylationchemistry.chemical_classificationATP synthasePolyphosphateAdenylate KinaseCell BiologyAlkaline PhosphataseAdenosine DiphosphateKinetics030104 developmental biologyEnzymemedicine.anatomical_structurechemistryBiochemistry030220 oncology & carcinogenesisbiology.proteinEnergy sourceEnergy MetabolismExtracellular SpaceJournal of cell science
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Impaired Platelet Function in Sept8-Deficient Mice In Vitro.

2020

AbstractSeptins (Septs) are a widely expressed protein family of 13 mammalian members, recognized as a unique component of the cytoskeleton. In human platelets, we previously described that SEPT4 and SEPT8 are localized surrounding α-granules and move to the platelet surface after activation, indicating a possible role in platelet physiology. In this study, we investigated the impact of Sept8 on platelet function in vitro using Sept8-deficient mouse platelets. Deletion of Sept8 in mouse platelets caused a pronounced defect in activation of the fibrinogen receptor integrin αIIbβ3, α-granule exocytosis, and aggregation, especially in response to the glycoprotein VI agonist convulxin. In contr…

0301 basic medicineBlood PlateletsGenotypePlatelet AggregationFibrinogen receptorIntegrinPlatelet Glycoprotein GPIIb-IIIa Complex030204 cardiovascular system & hematologyFibrinogenCytoplasmic GranulesExocytosisExocytosis03 medical and health sciences0302 clinical medicineLysosomeCrotalid VenomsmedicineAnimalsPlateletLectins C-TypeLactadherinMice KnockoutbiologyChemistryThrombinFibrinogenConvulxinHematologyPlatelet ActivationCell biologyMice Inbred C57BL030104 developmental biologymedicine.anatomical_structurePhenotypebiology.proteinFemaleLysosomesSeptinsmedicine.drugThrombosis and haemostasis
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An Assay to Determine Mechanisms of Rapid Autoantibody-Induced Neurotransmitter Receptor Endocytosis and Vesicular Trafficking in Autoimmune Encephal…

2019

N-Methyl-D-aspartate (NMDA) receptors (NMDARs) are among the most important excitatory neurotransmitter receptors in the human brain. Autoantibodies to the human NMDAR cause the most frequent form of autoimmune encephalitis involving autoantibody-mediated receptor cross-linking and subsequent internalization of the antibody-receptor complex. This has been deemed to represent the predominant antibody effector mechanism depleting the NMDAR from the synaptic and extra-synaptic neuronal cell membrane. To assess in detail the molecular mechanisms of autoantibody-induced NMDAR endocytosis, vesicular trafficking, and exocytosis we transiently co-expressed rat GluN1-1a-EGFP and GluN2B-ECFP alone or…

0301 basic medicineEndosomeautoantibodiesmedia_common.quotation_subjectN-Methyl-D-aspartate receptorsEndocytosisExocytosislcsh:RC346-42903 medical and health sciences0302 clinical medicineNeurotransmitter receptorendocytosisInternalizationReceptorlcsh:Neurology. Diseases of the nervous systemmedia_commonOriginal ResearchChemistryAutoantibodyautoimmune encephalitisCell biology030104 developmental biologynervous systemNeurologyRabNeurology (clinical)exocytosisvesicular trafficking030217 neurology & neurosurgerycross-linkingFrontiers in neurology
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2019

VAMP2 encodes the vesicular SNARE protein VAMP2 (also called synaptobrevin-2). Together with its partners syntaxin-1A and synaptosomal-associated protein 25 (SNAP25), VAMP2 mediates fusion of synaptic vesicles to release neurotransmitters. VAMP2 is essential for vesicular exocytosis and activity-dependent neurotransmitter release. Here, we report five heterozygous de novo mutations in VAMP2 in unrelated individuals presenting with a neurodevelopmental disorder characterized by axial hypotonia (which had been present since birth), intellectual disability, and autistic features. In total, we identified two single-amino-acid deletions and three non-synonymous variants affecting conserved resid…

0301 basic medicineVesicle fusionVAMP2SynaptobrevinSNAP25Biologymedicine.diseaseSynaptic vesicleExocytosisCell biology03 medical and health scienceschemistry.chemical_compound030104 developmental biology0302 clinical medicinechemistryGeneticsmedicineSynaptopathysense organsNeurotransmitter030217 neurology & neurosurgeryGenetics (clinical)The American Journal of Human Genetics
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Disruption of otoferlin alters the mode of exocytosis at the mouse inner hair cell ribbon synapse

2019

Sound encoding relies on Ca2+-mediated exocytosis at the ribbon synapse between cochlear inner hair cells (IHCs) and type I spiral ganglion neurons (SGNs). Otoferlin, a multi-C-2 domain protein, is proposed to regulate Ca2+-triggered exocytosis at this synapse, but the precise mechanisms of otoferlin function remain to be elucidated. Here, performing whole-cell voltage-clamp recordings of excitatory postsynaptic currents (EPSCs) from SGNs in otoferlin mutant mice, we investigated the impact of Otof disruption at individual synapses with single release event resolution. Otof deletion decreased the spontaneous release rate and abolished the stimulus-secretion coupling. This was evident from f…

0301 basic medicinecochleaRibbon synapsehair cellExocytosislcsh:RC321-571Synapse03 medical and health sciencesCellular and Molecular Neuroscienceotoferlin0302 clinical medicinemedicineOTOFauditoryMolecular Biologylcsh:Neurosciences. Biological psychiatry. NeuropsychiatrySpiral ganglionOriginal Researchribbon synapsecalciumChemistryDepolarizationCell biology030104 developmental biologymedicine.anatomical_structureEPSCExcitatory postsynaptic potentialHair cellspiral ganglion neuron030217 neurology & neurosurgeryNeuroscience
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Age-dependent control of collagen-dependent platelet responses by thrombospondin-1 : Comparative analysis of platelets from neonates, children, adole…

2021

Platelet function is developmentally regulated. Healthy neonates do not spontaneously bleed, but their platelets are hypo-reactive to several agonists. The mechanisms underlying immature platelet function in neonates are incompletely understood. This critical issue remains challenging for the establishment of age-specific reference ranges. In this study, we evaluated platelet reactivity of five pediatric age categories, ranging from healthy full-term neonates up to adolescents (11–18 years) in comparison to healthy adults (&gt

0301 basic medicinecollagenAgingMedizin030204 cardiovascular system & hematologyImmature PlateletThrombospondin 10302 clinical medicinePlateletBiology (General)ChildSpectroscopyCD63medicine.diagnostic_testGeneral MedicineComputer Science ApplicationsAdenosine DiphosphateChemistryplateletsAgonistAdultBlood Plateletsmedicine.medical_specialtyAdolescentmedicine.drug_classQH301-705.5Receptors Proteinase-ActivatedCatalysisExocytosisArticleFlow cytometryInorganic Chemistry03 medical and health sciencesInternal medicineThrombospondin 1Crotalid VenomsmedicineHumansLectins C-TypePlatelet activationPhysical and Theoretical Chemistrythrombospondin-1Molecular BiologyQD1-999business.industryflow cytometryOrganic ChemistryInfant NewbornFibrinogen bindingInfantPlatelet Activationreference rangesneonates030104 developmental biologyEndocrinologybusinessPeptides
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Gamma delta T cells inhibit in vitro growth of the asexual blood stages of Plasmodium falciparum by a granule exocytosis-dependent cytotoxic pathway …

2004

Several reports have stated the ability of gamma delta T cells to inhibit the growth of the asexual blood stages of Plasmodium falciparum in vitro. However, little information is available about the mechanisms involved. In this study, in vitro systems were used to study the role of the granule exocytosis-dependent cytotoxic pathway in the growth inhibition/killing of P. falciparum by human gamma delta T cells. Our results show that the inhibition requires cell-to-cell contact and that gamma delta T cells kill the asexual blood stages of P. falciparum through a granule exocytosis-dependent cytotoxic pathway after recognition of certain ligands or molecules expressed on the surface of infecte…

Antigens Differentiation T-LymphocytePore Forming Cytotoxic ProteinsT-LymphocytesImmunologyPlasmodium falciparumReceptors Antigen T-CellCell CommunicationCytoplasmic GranulesExocytosischemistry.chemical_compoundImmunology and AllergyCytotoxic T cellAnimalsHumansRNA MessengerGranulysinMembrane GlycoproteinsbiologyPerforinDegranulationPlasmodium falciparumbiology.organism_classificationIn vitroCell biologyPerforinchemistrybiology.proteinGrowth inhibitionCD8European journal of immunology
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Clathrin-mediated constitutive endocytosis of PIN auxin efflux carriers in Arabidopsis.

2007

SummaryEndocytosis is an essential process by which eukaryotic cells internalize exogenous material or regulate signaling at the cell surface [1]. Different endocytic pathways are well established in yeast and animals; prominent among them is clathrin-dependent endocytosis [2, 3]. In plants, endocytosis is poorly defined, and no molecular mechanism for cargo internalization has been demonstrated so far [4, 5], although the internalization of receptor-ligand complexes at the plant plasma membrane has recently been shown [6]. Here we demonstrate by means of a green-to-red photoconvertible fluorescent reporter, EosFP [7], the constitutive endocytosis of PIN auxin efflux carriers [8] and their …

Auxin effluxmedia_common.quotation_subjectRecombinant Fusion ProteinseducationEndocytic cycleArabidopsisBiologyEndocytosisClathrinPlant RootsGeneral Biochemistry Genetics and Molecular BiologyExocytosisGenes ReporterPIN proteinsInternalizationmedia_commonAgricultural and Biological Sciences(all)Indoleacetic AcidsBiochemistry Genetics and Molecular Biology(all)Arabidopsis ProteinsProtoplastsCell MembraneClathrin-Coated VesiclesReceptor-mediated endocytosisClathrinEndocytosisCell biologyLuminescent Proteinsbiology.proteinCELLBIOGeneral Agricultural and Biological SciencesCurrent biology : CB
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Protein traffic is an intracellular target in alcohol toxicity

2011

Eukaryotic cells comprise a set of organelles, surrounded by membranes with a unique composition, which is maintained by a complex synthesis and transport system. Cells also synthesize the proteins destined for secretion. Together, these processes are known as the secretory pathway or exocytosis. In addition, many molecules can be internalized by cells through a process called endocytosis. Chronic and acute alcohol (ethanol) exposure alters the secretion of different essential products, such as hormones, neurotransmitters and others in a variety of cells, including central nervous system cells. This effect could be due to a range of mechanisms, including alcohol-induced alterations in the d…

BiologiaAntropologia físicaCellneuronsPharmaceutical ScienceReviewBiologyEndocytosisBioinformaticsExocytosisDrug DiscoverymedicineSecretionCytoskeletonSecretory pathwaynucleocytoplasmic transportastrocytesCell biologyVesicular transport proteinmedicine.anatomical_structurePsicobiologiaMolecular Medicineethanolintracellular trafficIntracellular
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