Search results for "Internalization"

showing 10 items of 159 documents

Telomeres and Telomerase During Human Papillomavirus-Induced Carcinogenesis

2018

Human papillomaviruses (HPVs) belong to a small spherical virus family and are transmitted through direct contact, most often through sexual behavior. More than 200 types of HPV are known, a dozen or so of which are classified as high-risk viruses (HR HPV) and may contribute to the development of cervical cancer. HPV is a small virus with a capsid composed of L1 and L2 proteins, which are crucial for entry to the cell. The infection begins at the basal cell layer and progresses to involve cells from higher layers of the cervical epithelium. E6 and E7 viral proteins are involved in the process of carcinogenesis. They interact with suppressors of oncogenesis, including p53 and Rb proteins. Th…

0301 basic medicineTelomeraseOncogene ProteinsCarcinogenesisCellReview ArticleBiologymedicine.disease_causeRetinoblastoma ProteinVirus03 medical and health sciences0302 clinical medicineGeneticsmedicineHumansTelomerase reverse transcriptasePapillomaviridaeTelomeraseTelomere ShorteningPharmacologyPapillomavirus InfectionsDNA replicationGeneral MedicineOncogene Proteins ViralVirus InternalizationCell Transformation ViralTelomere030104 developmental biologymedicine.anatomical_structure030220 oncology & carcinogenesisCancer researchDisease ProgressionMolecular MedicineRNAFemaleTumor Suppressor Protein p53CarcinogenesisMolecular Diagnosis & Therapy
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Exploring the Human-Nipah Virus Protein-Protein Interactome

2017

ABSTRACT Nipah virus is an emerging, highly pathogenic, zoonotic virus of the Paramyxoviridae family. Human transmission occurs by close contact with infected animals, the consumption of contaminated food, or, occasionally, via other infected individuals. Currently, we lack therapeutic or prophylactic treatments for Nipah virus. To develop these agents we must now improve our understanding of the host-virus interactions that underpin a productive infection. This aim led us to perform the present work, in which we identified 101 human-Nipah virus protein-protein interactions (PPIs), most of which (88) are novel. This data set provides a comprehensive view of the host complexes that are manip…

0301 basic medicineVirologiaParamyxoviridaeNipah virusviruses030106 microbiologyImmunologyComputational biologyBiologyMicrobiologyInteractomeMass SpectrometryVirusProtein–protein interactionViral Proteins03 medical and health sciencesVirologyAnimalsHumansProtein Interaction MapsHenipavirus InfectionsHost (biology)Transmission (medicine)Nipah VirusVirus Internalizationbiology.organism_classificationVirus-Cell Interactions030104 developmental biologyHenipavirus InfectionsInsect ScienceHost-Pathogen InteractionsInteraccions RNA-proteïna
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Exosomes as mediators of neuron-glia communication in neuroinflammation

2019

In recent years, a type of extracellular vesicles named exosomes has emerged that play an important role in intercellular communication under physiological and pathological conditions. These nanovesicles (30–150 nm) contain proteins, RNAs and lipids, and their internalization by bystander cells could alter their normal functions. This review focuses on recent knowledge about exosomes as messengers of neuron-glia communication and their participation in the physiological and pathological functions in the central nervous system. Special emphasis is placed on the role of exosomes under toxic or pathological stimuli within the brain, in which the glial exosomes containing inflammatory molecules…

0301 basic medicinemedia_common.quotation_subjectCentral nervous systemneuronsReviewexosomesBiologyExosomelcsh:RC346-429neuroinflammationPathogenesis03 medical and health sciences0302 clinical medicineDevelopmental NeuroscienceBystander effectmedicineInternalizationNeuroinflammationlcsh:Neurology. Diseases of the nervous systemmedia_commonbiomarkers; exosomes; glial cells; neuroinflammation; neuron-glia commuication; neurons; neuropathology; therapyneuropathologytherapyneuron-glia commuicationbiomarkersMicrovesiclesglial cells030104 developmental biologymedicine.anatomical_structureNeuronNeuroscience030217 neurology & neurosurgeryNeural Regeneration Research
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E-beam crosslinked nanogels conjugated with monoclonal antibodies in targeting strategies

2017

Abstract Poly(N-vinyl pyrrolidone)-based-nanogels (NGs), produced by e-beam irradiation, are conjugated with monoclonal antibodies (mAb) for active targeting purposes. The uptake of immuno-functionalized nanogels is tested in an endothelial cell line, ECV304, using confocal and epifluorescence microscopy. Intracellular localization studies reveal a faster uptake of the immuno-nanogel conjugate with respect to the ‘bare’ nanogel. The specific internalization pathway of these immuno-nanogels is clarified by selective endocytosis inhibition experiments, flow cytometry and confocal microscopy. Active targeting ability is also verified by conjugating a monoclonal antibody which recognizes the αv…

0301 basic medicinemedicine.drug_classConfocalmedia_common.quotation_subjecthigh-energy irradiationClinical BiochemistryNG[object Object]02 engineering and technologyMonoclonal antibodyBiochemistryCell LineFlow cytometrylaw.invention03 medical and health sciencesConfocal microscopylawFluorescence microscopemedicineHumansInternalizationMolecular Biologymedia_commonradiation-engineeredDrug Carriersmedicine.diagnostic_testChemistrywound healing assay.antiβ3 integrin antibodyAntibodies MonoclonalPovidoneactive-targetingBiological Transport021001 nanoscience & nanotechnologyMolecular biologyNanostructures030104 developmental biologyTargeted drug deliverynanogelpoly(N-vinyl pyrrolidone)Biophysics0210 nano-technologyGelswound healing assayNanogelBiological Chemistry
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Membrane-Associated Enteroviruses Undergo Intercellular Transmission as Pools of Sibling Viral Genomes

2019

Summary Some viruses are released from cells as pools of membrane-associated virions. By increasing the multiplicity of infection (MOI), this type of collective dispersal could favor viral cooperation, but also the emergence of cheater-like viruses such as defective interfering particles. To better understand this process, we examined the genetic diversity of membrane-associated coxsackievirus infectious units. We find that infected cells release membranous structures (including vesicles) that contain 8–21 infectious particles on average. However, in most cases (62%–93%), these structures do not promote the co-transmission of different viral genetic variants present in a cell. Furthermore, …

0301 basic medicinevirusesPopulationViral transmissionGenome ViralBiologyCoxsackievirusmedicine.disease_causeGenomeArticleGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicineMultiplicity of infectionMicroscopy Electron TransmissionmedicineHumanseducationlcsh:QH301-705.5social evolutionCollective infectious unitEnterovirusGeneticsSocial evolutionGenetic diversityeducation.field_of_studyenteroviruscollective infectious unitTransmission (medicine)viral transmissionCell MembraneVirionGenetic VariationVirus InternalizationExtracellular vesiclesbiology.organism_classification3. Good health030104 developmental biologylcsh:Biology (General)EnterovirusBiological dispersalextracellular vesicles030217 neurology & neurosurgeryHeLa CellsCell Reports
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Protoparvovirus Knocking at the Nuclear Door

2017

Protoparvoviruses target the nucleus due to their dependence on the cellular reproduction machinery during the replication and expression of their single-stranded DNA genome. In recent years, our understanding of the multistep process of the capsid nuclear import has improved, and led to the discovery of unique viral nuclear entry strategies. Preceded by endosomal transport, endosomal escape and microtubule-mediated movement to the vicinity of the nuclear envelope, the protoparvoviruses interact with the nuclear pore complexes. The capsids are transported actively across the nuclear pore complexes using nuclear import receptors. The nuclear import is sometimes accompanied by structural chan…

0301 basic medicinevirusesimportinsActive Transport Cell Nucleuslcsh:QR1-502Genome ViralReviewImportinKaryopherinsBiologyVirus Replicationlcsh:MicrobiologyParvovirusMice03 medical and health sciencesCapsidVirologynuclear pore complexmedicineAnimalsHumansInner membraneNuclear poreprotoparvovirusCell Nucleusnuclear localization sequence030102 biochemistry & molecular biologyta1182nuclear envelopeVirus InternalizationVirologynuclear importCell biologyCell nucleusnuclear envelope break down030104 developmental biologyInfectious Diseasesmedicine.anatomical_structureintracellular dynamicsEndosomal transportNuclear PoreentryCapsid ProteinsNucleoporinNuclear transportNuclear localization sequenceViruses
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A Bimolecular Multicellular Complementation System for the Detection of Syncytium Formation: A New Methodology for the Identification of Nipah Virus …

2019

Fusion of viral and cellular membranes is a key step during the viral life cycle. Enveloped viruses trigger this process by means of specialized viral proteins expressed on their surface, the so-called viral fusion proteins. There are multiple assays to analyze the viral entry including those that focus on the cell-cell fusion induced by some viral proteins. These methods often rely on the identification of multinucleated cells (syncytium) as a result of cell membrane fusions. In this manuscript, we describe a novel methodology for the study of cell-cell fusion. Our approach, named Bimolecular Multicellular Complementation (BiMuC), provides an adjustable platform to qualitatively and quanti…

0301 basic medicinevirusesmembrane fusionlcsh:QR1-502virusNipah virusBiologyGiant Cells01 natural scienceslcsh:MicrobiologySmall Molecule Libraries03 medical and health sciencesVirus entryViral envelopeViral life cycleViral entryVirologyDrug DiscoveryHumansSyncytiumDrug discoveryBrief ReportbiomolèculesHigh-throughput screeningLipid bilayer fusionVirus InternalizationFusion proteinHigh-Throughput Screening Assays0104 chemical sciencesCell biologyBimolecular complementation010404 medicinal & biomolecular chemistryMulticellular organismHEK293 Cells030104 developmental biologyInfectious DiseasesViruses
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Echovirus 1 infection depends on biogenesis of novel multivesicular bodies

2011

Summary Non-enveloped picornavirus echovirus 1 (EV1) clusters its receptor α2β1 integrin and causes their internalization and accumulation in α2β1 integrin enriched multivesicular bodies (α2-MVBs). Our results here show that these α2-MVBs are distinct from acidic late endosomes/lysosomes by several criteria: (i) live intra-endosomal pH measurements show that α2-MVBs are not acidic, (ii) they are not positive for the late endosomal marker LBPA or Dil-LDL internalized to lysosomes, and (iii) simultaneous stimulation of epidermal growth factor receptor (EGFR) and α2β1 integrin clustering leads to their accumulation in separate endosomes. EGFR showed downregulation between 15 min and 2 h, where…

0303 health sciencesbiologyEndosomemedia_common.quotation_subject030302 biochemistry & molecular biologyImmunologyIntegrinmacromolecular substancesMicrobiology3. Good healthCell biology03 medical and health sciencesDownregulation and upregulationVirologybiology.proteinTSG101Epidermal growth factor receptorReceptorInternalizationBiogenesis030304 developmental biologymedia_commonCellular Microbiology
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Viral entry, lipid rafts and caveosomes.

2005

Lipid rafts and caveolae are detergent-insoluble plasma membrane microdomains, involved in cellular endocytic processes and signalling. Several viruses, including a human pathogen, echovirus 1, and an extensively studied simian virus 40 utilize these domains for internalization into the host cells. Interaction of viruses with receptors on the cell surface triggers specific conformational changes of the virus particle and can give rise to signalling events, which determine the mechanisms of virus entry. After internalization via cell surface lipid rafts or caveolae, virus-containing vesicles can fuse with caveosomes, pre-existing cytoplasmic organelles, or dock on other intracellular organel…

0303 health sciencesvirusesmedia_common.quotation_subject030302 biochemistry & molecular biologyEndocytic cycleGeneral MedicineSimian virus 40BiologyEndocytosisEndocytosis3. Good healthCell biologyEnterovirus B Human03 medical and health sciencesMembrane MicrodomainsViral replicationCytoplasmViral entryCaveolaeInternalizationLipid raft030304 developmental biologymedia_commonAnnals of medicine
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Validation of the Weight Bias Internalization Scale for Mainland Chinese Children and Adolescents

2021

Weight stigma internalization among adolescents across weight categories leads to adverse psychological consequences. This study aims to adapt and validate a Chinese version of the Weight Bias Internalization Scale for Mainland Chinese children and adolescents(C-WBIS). A total of 464 individuals aged 9 to 15 years participated in the present study. Based on item response theory (IRT) and classical test theory (CTT), we selected the items for the C-WBIS and evaluated its reliability and validity. The item response theory yields support for the one-dimensional factor mode. All item parameters fit the IRT model (albeit within an adequate range), eight items were adopted. No evidence of signifi…

050103 clinical psychologyweight stigma internalizationChinese adolescentsmedia_common.quotation_subjectlcsh:BF1-990050109 social psychologypsychometric propertiesbehavioral disciplines and activitiesClassical test theoryItem response theoryclassical test theoryPsychology0501 psychology and cognitive sciencesInternalizationGeneral PsychologyReliability (statistics)media_commonOriginal Research05 social sciencesSocial anxietyitem response theoryDifferential item functioninglcsh:PsychologyScale (social sciences)Weight stigmaPsychologyClinical psychologyFrontiers in Psychology
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