Search results for "parvovirukset"

showing 10 items of 29 documents

Parvovirus B19V Nonstructural Protein NS1 Induces Double-Stranded Deoxyribonucleic Acid Autoantibodies and End-Organ Damage in Nonautoimmune Mice

2018

Abstract Background Viral infection is implicated in development of autoimmunity. Parvovirus B19 (B19V) nonstructural protein, NS1, a helicase, covalently modifies self double-stranded deoxyribonucleic acid (dsDNA) and induces apoptosis. This study tested whether resulting apoptotic bodies (ApoBods) containing virally modified dsDNA could induce autoimmunity in an animal model. Methods BALB/c mice were inoculated with (1) pristane-induced, (2) B19V NS1-induced, or (3) staurosporine-induced ApoBods. Serum was tested for dsDNA autoantibodies by Crithidia luciliae staining and enzyme-linked immunosorbent assay. Brain, heart, liver, and kidney pathology was examined. Deposition of self-antigens…

0301 basic medicinePathogenesis and Host ResponseviruksetvirusesB19VKidney GlomerulusSLEApoptosisAutoimmunityanti-dsDNA antibodyViral Nonstructural Proteinsmedicine.disease_causeAutoimmunityautoimmuniteettiMice0302 clinical medicineGlomerulonephritisParvovirus B19 HumanImmunology and Allergy030212 general & internal medicineEnzyme InhibitorstolerancebiologyChemistryapoptosisBrainInfectious DiseasesLivervirustauditAntibodies AntinuclearmaksatulehdusFemaleAntibodyImmunosuppressive Agentsta3111infektiot03 medical and health sciencesohjelmoitunut solukuolemaMajor Articles and Brief ReportsExtracellular VesiclesAntigenmedicineCrithidia luciliaeAnimalsapoptotic bodiesparvoviruksetParvovirusTerpenesAnti-dsDNA antibodiesMyocardiumta1183parvovirusAutoantibodyta1182DNAbiology.organism_classificationStaurosporineMolecular biology030104 developmental biologyApoptosisbiology.proteinautovasta-aineetglomerulonephritisThe Journal of Infectious Diseases
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Viral highway to nucleus exposed by image correlation analyses.

2018

AbstractParvoviral genome translocation from the plasma membrane into the nucleus is a coordinated multistep process mediated by capsid proteins. We used fast confocal microscopy line scan imaging combined with image correlation methods including auto-, pair- and cross-correlation, and number and brightness analysis, to study the parvovirus entry pathway at the single-particle level in living cells. Our results show that the endosome-associated movement of virus particles fluctuates from fast to slow. Fast transit of single cytoplasmic capsids to the nuclear envelope is followed by slow movement of capsids and fast diffusion of capsid fragments in the nucleoplasm. The unique combination of …

0301 basic medicineparvovirusesviruseslcsh:MedicineGene ExpressionmikroskopiaMicroscopy Atomic Forcelaw.inventionXenopus laevisCytosollawImage Processing Computer-AssistedOrganic Chemicalslcsh:ScienceMultidisciplinaryMicroscopy ConfocalbiologyChemistryimagingbeta Karyopherinsmedicine.anatomical_structurekuvantaminenCapsidmicroscopyParvovirus CanineGreen Fluorescent ProteinsActive Transport Cell NucleusImportinVirusArticleCell Line03 medical and health sciencesCapsidConfocal microscopymedicineAnimalsparvoviruksetFluorescent DyesCell NucleusNucleoplasmParvoviruslcsh:RVirionEpithelial Cellsbiology.organism_classification030104 developmental biologySpectrometry FluorescenceCytoplasmBiophysicsCatsOocyteslcsh:QCapsid ProteinsNucleusScientific reports
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Parvovirus nonstructural protein 2 interacts with chromatin-regulating cellular proteins

2022

Autonomous parvoviruses encode at least two nonstructural proteins, NS1 and NS2. While NS1 is linked to important nuclear processes required for viral replication, much less is known about the role of NS2. Specifically, the function of canine parvovirus (CPV) NS2 has remained undefined. Here we have used proximity-dependent biotin identification (BioID) to screen for nuclear proteins that associate with CPV NS2. Many of these associations were seen both in noninfected and infected cells, however, the major type of interacting proteins shifted from nuclear envelope proteins to chromatin-associated proteins in infected cells. BioID interactions revealed a potential role for NS2 in DNA remodel…

11832 Microbiology and virologyparvovirusesvirusesvirus diseasesViral Nonstructural Proteinsbiochemical phenomena metabolism and nutritionVirus ReplicationinfektiotChromatinCell Linecellular proteinsParvoviridae InfectionsParvovirusHumans1182 Biochemistry cell and molecular biology3111 Biomedicineproteiinitparvovirukset
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Concepts to Reveal Parvovirus–Nucleus Interactions

2021

Parvoviruses are small single-stranded (ss) DNA viruses, which replicate in the nucleoplasm and affect both the structure and function of the nucleus. The nuclear stage of the parvovirus life cycle starts at the nuclear entry of incoming capsids and culminates in the successful passage of progeny capsids out of the nucleus. In this review, we will present past, current, and future microscopy and biochemical techniques and demonstrate their potential in revealing the dynamics and molecular interactions in the intranuclear processes of parvovirus infection. In particular, a number of advanced techniques will be presented for the detection of infection-induced changes, such as DNA modification…

Cell Nucleusanalysis of virus–chromatin interactionsHost Microbial InteractionsviruksetparvovirusesvirusesnucleusReviewmikroskopiaanalysis of protein–protein interactionsVirus ReplicationinfektiotMicrobiologyimaging of viral interactions and dynamicsQR1-502Parvoviridae InfectionsParvovirusMicekuvantaminentumaAnimalsHumansCapsid ProteinsproteiinitparvoviruksetViruses
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G2/M checkpoint regulation and apoptosis facilitate the nuclear egress of parvoviral capsids

2022

The nuclear export factor CRM1-mediated pathway is known to be important for the nuclear egress of progeny parvovirus capsids in the host cells with virus-mediated cell cycle arrest at G2/M. However, it is still unclear whether this is the only pathway by which capsids exit the nucleus. Our studies show that the nuclear egress of DNA-containing full canine parvovirus. capsids was reduced but not fully inhibited when CRM1-mediated nuclear export was prevented by leptomycin B. This suggests that canine parvovirus capsids might use additional routes for nuclear escape. This hypothesis was further supported by our findings that nuclear envelope (NE) permeability was increased at the late stages…

G2/M checkpointnuclear egress of capsidsgeenitisäntäsolutcyclin B1canine parvovirusapoptosisApoptosisCRM1Crm1bakteeritsolut1182 Biochemistry cell and molecular biology3111 BiomedicineCanine parvovirusparvoviruksetNuclear egress of capsidssolukiertosolubiologia
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Ihmisen parvoviruksen (B19) elinkierto ja autofagosytoosin rooli

2007

LC3autofagosytoosiihmisen parvovirus B19endosytoosiparvovirukset
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Persistence of Human Bocavirus 1 in Tonsillar Germinal Centers and Antibody-Dependent Enhancement of Infection

2021

Human bocavirus 1 (HBoV1), a common pediatric respiratory pathogen, can persist in airway secretions for months hampering diagnosis. It also persists in tonsils, providing potential reservoirs for airway shedding, with the exact location, host cell types, and virus activity unknown.

NASOPHARYNXviruksetPalatine TonsilFc receptorCHILDRENvirus persistenceMonocytesHuman bocavirusCONGENITAL INSENSITIVITYBokavirusChildviruspersistenssi11832 Microbiology and virology0303 health sciencesB-LymphocytesbiologyHuman bocavirusvasta-aineetDENGUE-VIRUS-INFECTIONrespiratory systemMiddle AgedQR1-5023. Good healthLymphatic systemB-CELLSChild PreschoolAntibodyCELL-LINE U937HUMAN PARVOVIRUSResearch ArticleAdultAdolescentEndosomesMicrobiologyinfektiotVirusHost-Microbe BiologyParvoviridae Infections03 medical and health sciencesYoung AdultImmune systemnielurisaVirologytonsilsHumansAntibody-dependent enhancementRESPIRATORY VIRUSESparvovirukset030304 developmental biologyAgedRECEPTOR030306 microbiologyparvovirusInfant NewbornGerminal centerInfantbiology.organism_classificationGerminal CenterAntibody-Dependent Enhancementrespiratory tract diseasesgerminal centerImmunologyDNA Viralbiology.protein1182 Biochemistry cell and molecular biology3111 Biomedicinein situ hybridizationADEB-soluTRACTmBio
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Functional roles of the membrane-associated AAV protein MAAP

2021

AbstractWith a limited coding capacity of 4.7 kb, adeno-associated virus (AAV) genome has evolved over-lapping genes to maximise the usage of its genome. An example is the recently found ORF in the cap gene, encoding membrane-associated accessory protein (MAAP), located in the same genomic region as the VP1/2 unique domain, but in a different reading frame. This 13 KDa protein, unique to the dependovirus genus, is not homologous to any known protein. Our studies confirm that MAAP translation initiates from the first CTG codon found in the VP1 ORF2. We have further observed MAAP localised in the plasma membrane, in the membranous structures in close proximity to the nucleus and to the nuclea…

SciencevirusesGenetic VectorsBiologyVirus ReplicationGenomeinfektiotArticleVirusViral Proteins03 medical and health scienceschemistry.chemical_compoundCapsidGene therapyPlasmidProtein sequencingHumansGeneparvovirukset030304 developmental biology0303 health sciencesMultidisciplinaryMolecular engineeringVirus Assembly030302 biochemistry & molecular biologyQVirionRMembrane ProteinsTranslation (biology)DependovirusCell biologyCapsidchemistryMedicineCapsid ProteinsproteiinitDNAPlasmidskapsidi
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Development of biotechnological tools for studying infectious pathways of canine and human parvoviruses

2005

Leona Gilbertin väitöskirjatyö antaa uutta tietoa parvovirusten pinnanmuokkauksesta ja hyödyllisyydestä virologian, geeniterapian ja biolääketieteen sovelluksissa. Parvovirukset ovat pieniä, yksisäikeistä DNA:ta sisältäviä eläinviruksia, jotka kykenevät infektoimaan isäntänsä soluja. Ihmisillä ne aiheuttavat ihottumaa sekä nivelkipuja. Tutkimuksessa tuotettiin bakuloviruksen avulla hyönteissoluissa sekä koiran että ihmisen parvoviruksen rakenneproteiineista fluoresloivia fuusioproteiineja. Selvisi, että parvoviruksen pinta sopii hyvin muokkaamiseen ja vieraiden molekyylien ilmentämiseen. Lisäksi havaittiin, että bakuloviruksia voidaan käyttää geeninsiirtovälineenä mm. parvovirusproteiinien …

bakuloviruksetviruksetvirusesbiotekniikkageenitekniikkaparvovirukset
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On dynamics of parvoviral replication protein NS1

2010

fluorescent fusion proteinshelicasesATPasescanine parvovirusfluoresenssifuusioproteiinitphotobleachingATP bindinghelikaasitkoiran parvovirusATP-molekyylitprotein dynamicsfluorescent recoveryparvovirukset
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