Search results for "Enterovirus B"

showing 10 items of 38 documents

A Novel Open and Infectious Form of Echovirus 1.

2016

ABSTRACT One of the hallmarks of enterovirus genome delivery is the formation of an uncoating intermediate particle. Based on previous studies of mostly heated picornavirus particles, intermediate particles were shown to have externalized the innermost capsid protein (VP4) and exposed the N terminus of VP1 and to have reduced infectivity. Here, in addition to the native and intact particle type, we have identified another type of infectious echovirus 1 (E1) particle population during infection. Our results show that E1 is slightly altered during entry, which leads to the broadening of the major virion peak in the sucrose gradient. In contrast, CsCl gradient separation revealed that in addit…

0301 basic medicineEchovirusPicornavirusvirusesImmunologyPopulationmedicine.disease_causeMicrobiology03 medical and health sciencesVirologymedicineEnterovirus InfectionsHumansgenome deliveryeducationInfectivityeducation.field_of_studybiologyVirionRNAbiology.organism_classificationVirologyEnterovirus B HumanVirus-Cell Interactionsenterovirukset030104 developmental biologyCapsidInsect Scienceintermediate particlesBiophysicsParticleRNA ViralCapsid ProteinsEchovirus 1Binding domainJournal of virology
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Molecular Characterization of Coxsackievirus B5 Isolates from Sewage, Italy 2016–2017

2019

Hereby, the partial Viral Protein 1 sequences of Coxsackievirus B5 (CV-B5) from sewage samples, collected in Italy from 2016 to 2017, were compared with those available in GenBank from clinical samples. Phylogenetic analysis highlighted: (I) the predominant circulation of CV-B5 genogroup B in Italy, and (II) the presence of two new sub-genogroups.

0301 basic medicineSettore MED/07 - Microbiologia E Microbiologia ClinicaEpidemiologyViral proteinHealth Toxicology and Mutagenesisviruses030106 microbiologySewage010501 environmental sciencesBiologyCoxsackievirusmedicine.disease_causeBrief Communication01 natural sciences03 medical and health sciencesViral ProteinsPhylogenetic analysiNon-polio enterovirusePhylogeneticsVirologymedicineCoxsackievirusPhylogeny0105 earth and related environmental sciencesPoliovirusePhylogenetic analysisCV-B5Phylogenetic treeSewagebusiness.industryvirus diseasesNon-polio enterovirusesbiology.organism_classificationVirologyEnterovirus B HumanItalyGenBankPoliovirusesCoxsackievirubusinessFood ScienceEnvironmental Monitoring
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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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Toxicological and bioactivity evaluation of blackcurrant press cake, sea buckthorn leaves and bark from Scots pine and Norway spruce extracts under a…

2021

Aqueous extracts from blackcurrant press cake (BC), Norway spruce bark (NS), Scots pine bark (SP), and sea buckthorn leaves (SB) were obtained using maceration and pressurized hot water and tested for their bioactivities. Maceration provided the extraction of higher dry matter contents, including total phenolics (TPC), anthocyanins, and condensed tannins, which also impacted higher antioxidant activity. NS and SB extracts presented the highest mean values of TPC and antioxidant activity. Individually, NS extract presented high contents of proanthocyanidins, resveratrol, and some phenolic acids. In contrast, SB contained a high concentration of ellagitannins, ellagic acid, and quercetin, exp…

Antioxidantmedicine.medical_treatmentAnti-Inflammatory AgentsToxicologyAntioxidantschemistry.chemical_compoundRibesAnti-Infective AgentsCandida albicansHippophaeFood sciencenatural resources0303 health sciencesbiologyChemistrybioaktiiviset yhdisteetPinus sylvestris04 agricultural and veterinary sciencesGeneral Medicine040401 food scienceEnterovirus B HumanProanthocyanidinvisual_artPlant Barkvisual_art.visual_art_mediumkiertotalousBarkQuercetinEllagic acidfree radicalsMicrobial Sensitivity Testsvapaat radikaalit03 medical and health sciences0404 agricultural biotechnologyindustrial by-productsCell Line TumormedicineMaceration (wine)HumansPress cakebiomassa (teollisuus)Picea030304 developmental biologyantioksidantitantimikrobiset yhdisteetbioactive compoundsBacteriaPlant Extractscircular economyScots pineGreen Chemistry Technologybiology.organism_classificationluonnonaineetextraction technologiesPlant Leavesuuttosivutuotteetmyrkylliset aineetFood Science
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Analysis of TCR Vbeta repertoire and cytokine gene expression in patients with idiopathic dilated cardiomyopathy

2001

Although the etiopathogenesis of idiopathic dilated cardiomyopathy (IDC) is still unclear, it is widely accepted that a complex interplay between viral infections and immune mechanisms is the basis of disease genesis. Previously, we showed that heart-infiltrating T cells of patients suffering from acute, fulminant Coxsackie virus B3+-IDC shared a preferential usage of three variable gene segments of the T cell receptor beta chain-(TCR-Vbeta) encoding families Vbeta3, 7 and 13.1. This indicated the possible presence of a superantigen-driven immune response. Here, we further investigated the IDC immunological scenario by analysing different phenotypes of heart-infiltrating cells: TCR repertoi…

Cardiomyopathy DilatedInterleukin 2MyocarditisCD8 AntigensReceptors Antigen T-Cell alpha-betaT cellImmunologyCardiomyopathyGene Expressionchemical and pharmacologic phenomenaPicornaviridaeBiologyHLA-DQ alpha-ChainsImmunoenzyme TechniquesInterferon-gammaImmune systemAntigenHLA-DQ AntigensIdiopathic dilated cardiomyopathymedicineHLA-DQ beta-ChainsHumansImmunology and AllergyRNA MessengerAntigens ViralInterleukin-6Reverse Transcriptase Polymerase Chain ReactionHistocompatibility TestingMyocardiumIDC cytokines immune mechanismsmedicine.diseaseEnterovirus B HumanMyocarditismedicine.anatomical_structureCD4 AntigensImmunologyLeukocytes MononuclearCytokinesInterleukin-2Interleukin-4CD8Interleukin-1medicine.drug
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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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Slow Infection due to Lowering the Amount of Intact versus Empty Particles Is a Characteristic Feature of Coxsackievirus B5 Dictated by the Structura…

2019

Enterovirus B species typically cause a rapid cytolytic infection leading to efficient release of progeny viruses. However, they are also capable of persistent infections in tissues, which are suggested to contribute to severe chronic states such as myocardial inflammation and type 1 diabetes. In order to understand the factors contributing to differential infection strategies, we constructed a chimera by combining the capsid proteins from fast-cytolysis-causing echovirus 1 (EV1) with nonstructural proteins from coxsackievirus B5 (CVB5), which shows persistent infection in RD cells. The results showed that the chimera behaved similarly to parental EV1, leading to efficient cytolysis in both…

EchovirusBiolääketieteet - BiomedicinevirusesImmunologyViral Nonstructural ProteinsCoxsackievirusVirus Replicationmedicine.disease_causeMicrobiologyVirusChimera (genetics)CapsidCell Line TumorVirologyEnterovirus InfectionsmedicineHumansviral structural proteinsvirus-host interactionsViral Structural Proteinsbiologyenterovirusviral nonstructural proteinsbiology.organism_classificationVirologyVirus-Cell InteractionsEnterovirus B HumanCytolysisCapsidLytic cycleKasvibiologia mikrobiologia virologia - Plant biology microbiology virologyInsect ScienceHost-Pathogen InteractionsEnterovirusinfection kinetics
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Coxsackievirus A9 Infects Cells via Nonacidic Multivesicular Bodies

2014

ABSTRACT Coxsackievirus A9 (CVA9) is a member of the human enterovirus B species in the Enterovirus genus of the family Picornaviridae . According to earlier studies, CVA9 binds to αVβ3 and αVβ6 integrins on the cell surface and utilizes β2-microglobulin, dynamin, and Arf6 for internalization. However, the structures utilized by the virus for internalization and uncoating are less well understood. We show here, based on electron microscopy, that CVA9 is found in multivesicular structures 2 h postinfection (p.i.). A neutral red labeling assay revealed that uncoating occurs mainly around 2 h p.i., while double-stranded RNA is found in the cytoplasm after 3 h p.i. The biogenesis of multivesicu…

EchovirusEndosomemedia_common.quotation_subjectImmunologyCoxsackievirusmedicine.disease_causeMicrobiologyVirusCell Linechemistry.chemical_compoundVirologymedicineHumansInternalizationmedia_commonDynaminbiologyPhospholipase CMultivesicular BodiesBafilomycinEpithelial CellsHydrogen-Ion ConcentrationVirus Internalizationbiology.organism_classificationVirologyEnterovirus B HumanVirus-Cell InteractionsCell biologyMicroscopy ElectronchemistryInsect ScienceJournal of Virology
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Hydrophobic pocket targeting probes for enteroviruses

2015

Visualization and tracking of viruses without compromising their functionality is crucial in order to understand virus targeting to cells and tissues, and to understand the subsequent subcellular steps leading to virus uncoating and replication. Enteroviruses are important human pathogens causing a vast number of acute infections, and are also suggested to contribute to the development of chronic diseases like type I diabetes. Here, we demonstrate a novel method to target site-specifically the hydrophobic pocket of enteroviruses. A probe, a derivative of Pleconaril, was developed and conjugated to various labels that enabled the visualization of enteroviruses under light and electron micros…

EchovirusEndosomevirusesCoxsackievirus InfectionsBiologyCoxsackievirusmedicine.disease_causeenterovirusesVirusCell Line TumormedicineHumansGeneral Materials Sciencemolecular probesta116OxazolesFluorescent DyesInfectivityOxadiazolesVirus Uncoatingta1182trackingbiology.organism_classificationMolecular biologyEnterovirus B HumanCapsidhydrophobic pocketCytoplasmBiophysicsGoldHydrophobic and Hydrophilic InteractionsNanoscale
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Early entry events in Echovirus 30 infection

2020

Echovirus 30 (E30), a member of the enterovirus B species, is a major cause of viral meningitis, targeting children and adults alike. While it is a frequently isolated enterovirus and the cause of several outbreaks all over the world, surprisingly little is known regarding its entry and replication strategy within cells. In this study, we used E30 strain Bastianni (E30B) generated from an infectious cDNA clone in order to study early entry events during infection in human RD cells. E30B required the newly discovered Fc echovirus receptor (FcRn) for successful infection, but not the coxsackievirus and adenovirus receptor (CAR) or decay-accelerating factor (DAF), although an interaction with …

EchovirusvirusesReceptors FcVirus Replicationmedicine.disease_causeDisease OutbreaksPhylogenyEnterovirus0303 health sciencesbiologyenterovirusechovirusEnterovirus B HumanVirus-Cell InteractionsenteroviruksetCapsidaivokalvotulehdusRNA ViralECHO-viruksetEndosomeImmunologyEchovirus InfectionsCHO CellsCoxsackievirusMicrobiologyClathrininfektiotVirusCell Line03 medical and health sciencesCricetulusVirologyEnterovirus InfectionsViral meningitismedicineAnimalsHumans030304 developmental biologyearly entry030306 microbiologySequence Analysis DNAVirus Internalizationmedicine.diseasebiology.organism_classificationVirologyaseptic meningitisA549 CellsInsect Sciencebiology.proteinEnterovirus
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