Search results for "multivesicular body"

showing 6 items of 6 documents

Permeability changes of integrin-containing multivesicular structures triggered by picornavirus entry.

2014

Cellular uptake of clustered α2β1-integrin induces the formation of membrane compartments that subsequently mature into a multivesicular body (MVB). Enhanced internalization mediated by clustered integrins was observed upon infection by the picornavirus echovirus 1 (EVI). We elucidated the structural features of virus-induced MVBs (vMVBs) in comparison to antibody-induced control MVBs (mock infection) by means of high-pressure cryo fixation of cells followed by immuno electron tomography during early entry of the virus. Three-dimensional tomograms revealed a marked increase in the size and complexity of these vMVBs and the intraluminal vesicles (ILVs) at 2 and 3.5 hours post infection (p.i.…

CytoplasmElectron Microscope TomographyEchovirusPicornaviruslcsh:MedicinePicornaviridaemedicine.disease_causeBiochemistryCell membrane2.1 Biological and endogenous factors2.2 Factors relating to the physical environmentAetiologylcsh:ScienceInternalizationmedia_common0303 health sciencesMicroscopyMicroscopy ConfocalMultidisciplinaryTumorbiology030302 biochemistry & molecular biologyMultivesicular Bodies3. Good healthCell biologymedicine.anatomical_structureInfectious DiseasesConfocalIntegrin alpha2beta1InfectionResearch ArticleBiotechnologyEndosomeGeneral Science & Technologymedia_common.quotation_subjectBiophysicsEndosomesMicrobiologyPermeabilityCell Line03 medical and health sciencesCell Line TumormedicineHumansMultivesicular BodyMolecular Biology030304 developmental biologyPicornaviridae Infectionslcsh:RVirus Uncoatingta1183Cell Membraneta1182Biology and Life SciencesComputational BiologyCell Biologybiology.organism_classificationEmerging Infectious DiseasesCytoplasmlcsh:Q
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Enterovirus-induced non-acidic entry pathway and its relation to the epidermal growth factor receptor pathway

2014

coxsackievirus A9echovirus 1enteroviruksetviruksetEGFRendocytosisendosomitECHO-viruksetepidermaalisen kasvutekijän reseptoriepidermal growth factor receptorendosytoosimultivesicular bodysolubiologia
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Exosomes as delivery vehicles: a commentary on "Amoxicillin haptenates intracellular proteins that can be transported in exosomes to target cells".

2017

Exosomes are lipoproteic nanosize vesicles of endocytic origin that are released in the extracellular space by several cell types when a multivesicular body fuses with the plasma membrane (1). To date, accumulating evidences highlight the potential of exosomes as messenger in intercellular communication. Indeed, several studies reported the presence of lipids, proteins, metabolites and nucleic acid (DNA, mRNA, microRNA, lncRNA) in exosomes and highlight their functional role in physiological and pathological processes (2).

030213 general clinical medicineCell typeVesicleEndocytic cyclemacromolecular substancesGeneral Medicine030204 cardiovascular system & hematologyBiologyMicrovesiclesCell biology03 medical and health sciencesExosomes amoxicillin protein hapten0302 clinical medicinemicroRNAExtracellularMultivesicular BodyIntracellularAnnals of translational medicine
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Development of novel probes for enterovirus B group to study uncoating and infection

2016

Enterovirus B group (EV-B) viruses are important human pathogens which cause a variety of diseases from mild respiratory illnesses to more severe acute infections such as myocarditis and meningitis. EV-Bs have also been associated with chronic infections and autoimmune diseases such as type I diabetes. Because of their significance, better and more accurate methods are necessary to track and visualize viruses in vitro and in vivo. This thesis focus on the development of novel probes to label viruses site-specifically and track infection in vitro. First, we established a covalent conjugation between gold nanocluster markers and EV-B viruses. We were able to visualize through electron microsc…

enteroviruksetvirus trackingviruksetgold nanoclusterhydrophobic pocketmarkkeritcoxsackievirus B1elektronimikroskopiananohiukkasetenterovirus B speciesinfektiotmultivesicular bodykapsidi
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γ2-Adaptin is functioning in the late endosomal sorting pathway and interacts with ESCRT-I and -III subunits.

2010

Abstractγ2-Adaptin is a clathrin adaptor-related protein with unclear physiological function. Previous studies indicated that γ2-adaptin might act within the multivesicular body (MVB) protein-sorting pathway that is central to receptor down-regulation, lysosome biogenesis, and budding of enveloped viruses. Here, we have analyzed the effects of excess and deficit γ2-adaptin on exogenous and endogenous MVB cargoes and on the MVB machinery itself. Foreign cargoes, like retroviral Gags, are entrapped by overexpressed γ2-adaptin in detergent-insoluble polymers and blocked in budding. When viral budding involves MVB/endosomal structures, excess γ2-adaptin acts by accelerating lysosomal Gag destru…

EndosomeViral buddingImmunoblottingGene Products gagmacromolecular substancesEndosomesTransfectionClathrinESCRTLysosomeCell Line TumormedicineBiomarkers TumorHumansMultivesicular bodyMultivesicular BodyMolecular BiologyAdaptor Protein Complex gamma SubunitsBuddingbiologyEndosomal Sorting Complexes Required for TransportCHMP2AVirus buddingMultivesicular BodiesVps28Cell BiologyLysosomeCell biologyLuminescent ProteinsProtein Transportmedicine.anatomical_structureRetroviridaeMicroscopy Fluorescencebiology.proteinRNA InterferenceLysosomesBiogenesisProtein BindingSignal TransductionBiochimica et biophysica acta
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Echovirus 1 infectious entry via novel multivesicular bodies

2011

integriinitmakropinosytoosiviruksetmacropinocytosisα2β1 integriiniubiquitinationmonirakkulaiset solurakenteetinfektiotmultivesicular bodyESCRTenteroviruksetubikitinaatioα2β1 integrinEV1integrinsendocytosisECHO-viruksetEchovirus 1endosytoosi
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