Search results for "Viral Entry"

showing 10 items of 46 documents

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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Duck Hepatitis B Virus Requires Cholesterol for Endosomal Escape during Virus Entry

2008

ABSTRACT The identity and functionality of biological membranes are determined by cooperative interaction between their lipid and protein constituents. Cholesterol is an important structural lipid that modulates fluidity of biological membranes favoring the formation of detergent-resistant microdomains. In the present study, we evaluated the functional role of cholesterol and lipid rafts for entry of hepatitis B viruses into hepatocytes. We show that the duck hepatitis B virus (DHBV) attaches predominantly to detergent-soluble domains on the plasma membrane. Cholesterol depletion from host membranes and thus disruption of rafts does not affect DHBV infection. In contrast, depletion of chole…

AvihepadnavirusbiologyvirusesImmunologyDuck hepatitis B virusBiological membraneEndosomesVirus Internalizationbiology.organism_classificationMicrobiologyVirologyVirusHepatitis B Virus DuckVirus-Cell InteractionsCholesterolViral envelopeHepadnaviridaeViral entryCell Line TumorVirologyInsect ScienceHepatocytesHumanslipids (amino acids peptides and proteins)Lipid raftJournal of Virology
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Baculovirus entry into human hepatoma cells.

2005

ABSTRACT Autographa californica multiple nucleopolyhedrovirus (AcMNPV), a prototype member of the Baculoviridae family, has gained increasing interest as a potential vector candidate for mammalian gene delivery applications. AcMNPV is known to enter both dividing and nondividing mammalian cell lines in vitro, but the mode and kinetics of entry as well as the intracellular transport of the virus in mammalian cells is poorly understood. The general objective of this study was to characterize the entry steps of AcMNPV- and green fluorescent protein-displaying recombinant baculoviruses in human hepatoma cells. The viruses were found to bind and transduce the cell line efficiently, and electron …

BaculoviridaeCarcinoma HepatocellularEndosomeImmunoelectron microscopyvirusesImmunologyGenetic VectorsGreen Fluorescent ProteinsEndosomesBiologySpodopteraEndocytosisVirus ReplicationMicrobiologyClathrinCell Linesymbols.namesakeViral entryVirologyAnimalsHumansPinocytosisVirionGolgi apparatusbiology.organism_classificationNucleopolyhedrovirusesCell biologyVirus-Cell InteractionsInsect Sciencebiology.proteinsymbolsHepatocytesJournal of virology
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Single-Cell Analysis of RNA Virus Infection Identifies Multiple Genetically Diverse Viral Genomes within Single Infectious Units

2015

Summary Genetic diversity enables a virus to colonize novel hosts, evade immunity, and evolve drug resistance. However, viral diversity is typically assessed at the population level. Given the existence of cell-to-cell variation, it is critical to understand viral genetic structure at the single-cell level. By combining single-cell isolation with ultra-deep sequencing, we characterized the genetic structure and diversity of a RNA virus shortly after single-cell bottlenecks. Full-length sequences from 881 viral plaques derived from 90 individual cells reveal that sequence variants pre-existing in different viral genomes can be co-transmitted within the same infectious unit to individual cell…

Cancer Research[SDE.MCG]Environmental Sciences/Global ChangesvirusesGenome Viralmedicine.disease_causeMicrobiologyArticleVirus[SDV.EE.ECO]Life Sciences [q-bio]/Ecology environment/EcosystemsSingle-cell analysisViral entry[SDV.MHEP.MI]Life Sciences [q-bio]/Human health and pathology/Infectious diseasesCricetinaeVirologyImmunology and Microbiology(all)Genetic variationmedicineAnimalsMolecular BiologyCells CulturedComputingMilieux_MISCELLANEOUSGenetics[SDV.EE.SANT]Life Sciences [q-bio]/Ecology environment/HealthGenetic diversityMutation[SDV.MHEP.ME]Life Sciences [q-bio]/Human health and pathology/Emerging diseasesbiologyGenetic VariationHigh-Throughput Nucleotide SequencingEpithelial CellsRNA virusVesiculovirusbiology.organism_classification[SDV.MP.BAC]Life Sciences [q-bio]/Microbiology and Parasitology/Bacteriology3. Good healthGenetic structure[SDV.MP.VIR]Life Sciences [q-bio]/Microbiology and Parasitology/VirologyParasitologySingle-Cell Analysis[SDE.BE]Environmental Sciences/Biodiversity and Ecologyhuman activitiesCell Host & Microbe
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A Bimolecular Multicelular complementation system for the detection of syncytium formation: A new methodology for the identification of entry inhibit…

2019

AbstractFusion 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 Multicelular Complementation (BiMuC), provides an adjustable platform to investigate quali…

Cell membraneComplementationSyncytiummedicine.anatomical_structureViral envelopeViral life cycleChemistryViral entryDrug discoveryvirusesmedicineComputational biologySmall molecule
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Echovirus 1 Entry into Polarized Caco-2 Cells Depends on Dynamin, Cholesterol, and Cellular Factors Associated with Macropinocytosis

2013

ABSTRACT Enteroviruses invade their hosts by crossing the intestinal epithelium. We have examined the mechanism by which echovirus 1 (EV1) enters polarized intestinal epithelial cells (Caco-2). Virus binds to VLA-2 on the apical cell surface and moves rapidly to early endosomes. Using inhibitory drugs, dominant negative mutants, and small interfering RNAs (siRNAs) to block specific endocytic pathways, we found that virus entry requires dynamin GTPase and membrane cholesterol but is independent of both clathrin- and caveolin-mediated endocytosis. Instead, infection requires factors commonly associated with macropinocytosis, including amiloride-sensitive Na + /H + exchange, protein kinase C, …

DynaminsSodium-Hydrogen ExchangersEndosomeImmunologyEndocytic cycleEndocytosisMicrobiologyClathrinViral entryVirologyHumansTransport VesiclesProtein Kinase CDynaminbiologyPinocytosisEpithelial CellsVirus InternalizationIntestinal epitheliumEnterovirus B HumanVirus-Cell InteractionsCell biologyDNA-Binding ProteinsAlcohol OxidoreductasesCholesterolInsect ScienceHost-Pathogen Interactionsbiology.proteinPinocytosisCaco-2 CellsJournal of Virology
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Pathways of Cell Infection by Parvoviruses and Adeno-Associated Viruses

2004

Animal viruses have developed various strategies for infecting cells, and all begin with adsorption to cell surface receptors, penetration into the cytosol, uncoating or release of the viral genome, and targeting the genome and any required accessory proteins toward the correct cellular organelle or compartment for replication (26, 48, 63). Since genome delivery and release require the rearrangement of the viral structures, infection is normally a multistep process involving various viral and cellular components. Viruses that replicate in the nucleus must have mechanisms for transporting the genome and other components to the vicinity of the nuclear pore and into the nucleus (84). The endos…

EndosomevirusesImmunologyDependovirusBiologyMicrobiologyVirologyCell LineCell biologyParvoviridae InfectionsParvovirusMiceDogsViral envelopeViral replicationViral entryCytoplasmVirologyInsect ScienceAnimalsHumansMinireviewNuclear poreViral sheddingNuclear transportJournal of Virology
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The endocytic trafficking pathway of oncogenic papillomaviruses

2019

Over the last two decades many host cell proteins have been described to be involved in the process of infectious entry of oncogenic human papillomaviruses (HPV). After initial binding and priming of the capsid, a sequence of events on the cell surface precedes the formation of the HPV entry platform. It has been shown that the virus-associated entry complex consists of membrane organizers, tetraspanins CD151 and CD63, and their associated partner proteins such as integrins, growth factor receptors, and the annexin A2 heterotetramer. Further recruitment of cytoplasmic factors such as the obscurin-like protein 1 and actin results in a non-canonical clathrin-independent endocytosis of the vir…

EndosomevirusesIntegrinEndocytic cycleAnnexinEndocytosisArticlelcsh:Infectious and parasitic diseasesEntry receptor complex03 medical and health sciences0302 clinical medicineTetraspaninViral entryVirologyHumansMedicinelcsh:RC109-216030212 general & internal medicineHuman papillomavirus 16Traffickingbiologybusiness.industryPapillomavirus InfectionsBiological TransportVirus InternalizationTetraspaninEndocytosisVirusCell biologyInfectious DiseasesCapsid030220 oncology & carcinogenesisHost-Pathogen Interactionsbiology.proteinbusinessAnnexin A2Papillomavirus Research
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The Medicinal Chemistry of Zika Virus

2021

Arthropod-borne viruses, also known as arboviruses, are transmitted by bites of infected mosquito or tick vectors. In this context, the Flavivirus genus is mainly transmitted by mosquitoes from the Aedes genus, being the Ae. africanus, Ae. aegypti, and Ae. Albopictus species are responsible for transmitting the Zika virus (ZIKV). It is a lipid-enveloped virus constitute of an RNA genome, which is translated into a polyprotein encoding three structural proteins {(capsid (C), membrane (M), and envelope (E)} and seven non-structural proteins (NS1, NS2A, NS2B, NS3, NS4A, NS4B, and NS5). Several biological targets have been identified for developing antiviral agents against ZIKV, which could pre…

FlavivirusNS3biologyCapsidViral entryvirusesContext (language use)biology.organism_classificationMedicinal chemistryGenomeVirusZika virus
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Posttranslational N-glycosylation of the hepatitis B virus large envelope protein

2007

Abstract Background The addition of N-linked glycans to proteins is normally a cotranslational process that occurs during translocation of the nascent protein to the endoplasmic reticulum. Here, we report on an exception to this rule occurring on the hepatitis B virus (HBV) large L envelope protein that is a subject to co-plus posttranslational N-glycosylation. Results By using an improved detection system, we identified so far unrecognized, novel isoforms of L. Based on mutational analyses, the use of N-glycosylation inhibitors, and pulse-chase studies, we showed that these isoforms are due to posttranslational N-glycan addition to the asparagines 4 and 112 within the preS domain of L. Whi…

Gene Expression Regulation ViralHepatitis B virusGlycosylationGlycosylationViral transformationBiologymedicine.disease_causeHepatitis B virus PRE betaCell Linelcsh:Infectious and parasitic diseaseschemistry.chemical_compoundViral Envelope ProteinsN-linked glycosylationViral entryVirologymedicineHumansProtein Isoformslcsh:RC109-216Hepatitis B viruschemistry.chemical_classificationResearchEndoplasmic reticulumEpithelial CellsVirologyProtein Structure TertiaryCell biologycarbohydrates (lipids)Infectious DiseaseschemistryGlycoproteinProtein Processing Post-TranslationalVirology Journal
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