Search results for "virukset"

showing 10 items of 136 documents

Host Cell Calpains Can Cleave Structural Proteins from the Enterovirus Polyprotein

2019

Enteroviruses are small RNA viruses that cause diseases with various symptoms ranging from mild to severe. Enterovirus proteins are translated as a single polyprotein, which is cleaved by viral proteases to release capsid and nonstructural proteins. Here, we show that also cellular calpains have a potential role in the processing of the enteroviral polyprotein. Using purified calpains 1 and 2 in an in vitro assay, we show that addition of calpains leads to an increase in the release of VP1 and VP3 capsid proteins from P1 of enterovirus B species, detected by western blotting. This was prevented with a calpain inhibitor and was dependent on optimal calcium concentration, especially for calpa…

0301 basic medicineProteasesentsyymitRNA virusviruksetvirusesPeptideCleavage (embryo)infektiotMass SpectrometryArticle03 medical and health sciencesViral ProteinsCapsidVirologyCleaveEnterovirus InfectionsAnimalsHumansCells CulturedGlycoproteinsPolyproteinschemistry.chemical_classification030102 biochemistry & molecular biologybiologyChemistryCalpainenterovirusvirus diseasesRNA virusCalpainbiochemical phenomena metabolism and nutritionbiology.organism_classificationAmino acidRatspolyproteinenterovirukset030104 developmental biologyInfectious DiseasesBiochemistryCapsidproteolytic processingProteolysisbiology.proteinCapsid ProteinsproteiinitPeptidescalpain
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Additives for vaccine storage to improve thermal stability of adenoviruses from hours to months

2016

Up to 80% of the cost of vaccination programmes is due to the cold chain problem (that is, keeping vaccines cold). Inexpensive, biocompatible additives to slow down the degradation of virus particles would address the problem. Here we propose and characterize additives that, already at very low concentrations, improve the storage time of adenovirus type 5. Anionic gold nanoparticles (10−8–10−6 M) or polyethylene glycol (PEG, molecular weight ∼8,000 Da, 10−7–10−4 M) increase the half-life of a green fluorescent protein expressing adenovirus from ∼48 h to 21 days at 37 °C (from 7 to >30 days at room temperature). They replicate the known stabilizing effect of sucrose, but at several orders of…

0301 basic medicineSucroseSucroseTime FactorsvirusesGeneral Physics and AstronomyMetal Nanoparticles02 engineering and technologyvaccinationsvaccine storagePolyethylene Glycolschemistry.chemical_compoundMiceImmunogenicity VaccineDrug StabilityModelsAdenovirus Vaccinesvaccineta318ta317MultidisciplinaryChemistryImmunogenicityadenoviruksetQadenovirus021001 nanoscience & nanotechnologyImmunogenicityOrders of magnitude (mass)Cold Temperaturevaccine; adenovirus; additives; nanoparticlesInfectious DiseasesColloidal goldModels Animaladditives0210 nano-technologyInfectionBiotechnologyHalf-LifeScienceDrug StorageBioengineeringPolyethylene glycolModels BiologicalGeneral Biochemistry Genetics and Molecular BiologyArticleVaccine RelatedExcipients03 medical and health sciencesPEG ratioAnimalsThermal stabilityChromatographyAnimalPreventionRational designta1182General ChemistryBiologicalVirology030104 developmental biologyadenovirusesFeasibility StudiesImmunizationnanoparticlesGoldVaccine
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Optimized production and purification of Coxsackievirus B1 vaccine and its preclinical evaluation in a mouse model.

2017

Coxsackie B viruses are among the most common enteroviruses, causing a wide range of diseases. Recent studies have also suggested that they may contribute to the development of type 1 diabetes. Vaccination would provide an effective way to prevent CVB infections, and the objective of this study was to develop an efficient vaccine production protocol for the generation of novel CVB vaccines. Various steps in the production of a formalin-inactivated Coxsackievirus B1 (CVB1) vaccine were optimized including the Multiplicity Of Infection (MOI) used for virus amplification, virus cultivation time, type of cell growth medium, virus purification method and formulation of the purified virus. Safety…

0301 basic medicineformalin inactivationviruksetvirusesDrug Evaluation PreclinicalPolysorbatesmedicine.disease_causeAntibodies ViralMice0302 clinical medicineMultiplicity of infectionImmunogenicity VaccinevaccineChlorocebus aethiops030212 general & internal medicineImmunogenicityVaccinationVaccinationInfectious Diseasescoxsackievirus B1Molecular MedicineFemaleUltracentrifugeVirus CultivationCoxsackievirus InfectionsBiologyCoxsackievirusta3111VirusMicrobiology03 medical and health sciencesFormaldehydemedicineAnimalsCVB1Vero CellscoxsackievirusGeneral VeterinaryGeneral Immunology and Microbiologyrokotteetta1182Public Health Environmental and Occupational HealthViral Vaccinesbiology.organism_classificationVirologyAntibodies NeutralizingVirus CultivationEnterovirus A HumanDisease Models Animal030104 developmental biologyVaccines Inactivatedvirus purificationEnterovirusVaccine
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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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Lack of evidence of mimivirus replication in human PBMCs

2018

The Acanthamoeba polyphaga mimivirus (APMV) was first isolated during a pneumonia outbreak in Bradford, England, and since its discovery many research groups devoted efforts to understand whether this virus could be associated to human diseases, in particular clinical signs and symptoms of pneumonia. In 2013, we observed cytopathic effect in amoebas (rounding and lysis) inoculated with APMV inoculated PBMCs (peripheral blood mononuclear cell) extracts, and at that point we interpreted those results as mimivirus replication in human PBMCs. Based on these results we decided to further investigate APMV replication in human PBMCs, by transmission electron microscopy (TEM) and qPCR. No viral fac…

0301 basic medicinevirukset030106 microbiologyImmunologymimivirusReal-Time Polymerase Chain ReactionVirus ReplicationMicrobiologyPeripheral blood mononuclear cellVirus03 medical and health sciencesMultiplicity of infectionBacterial ProteinsMicroscopy Electron TransmissionacanthamoebaViral factoryHumansCytopathic effectMimivirusbiologyDNA Helicasesta1182biology.organism_classificationVirologyHelicase GeneAcanthamoeba030104 developmental biologyInfectious DiseasesDNA ViralPBMCsLeukocytes MononuclearMimiviridaeMicrobes and Infection
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Monitoring of ticks and tick-borne pathogens through a nationwide research station network in Finland.

2020

In 2015 a long-term, nationwide tick and tick-borne pathogen (TBP) monitoring project was started by the Finnish Tick Project and the Finnish Research Station network (RESTAT), with the goal of producing temporally and geographically extensive data regarding exophilic ticks in Finland. In the current study, we present results from the first four years of this collaboration. Ticks were collected by cloth dragging from 11 research stations across Finland in May September 2015-2018 (2012-2018 in Seili). Collected ticks were screened for twelve different pathogens by qPCR: Borrelia afzelii, Borrelia garinii, Borrelia valaisiana, Borrelia burgdorferi sensu stricto, Borrelia miyamotoi, Babesia sp…

0301 basic medicineviruksetPopulation DynamicsmonitorointiIxodes persulcatuspuutiaisetACARImedicine.disease_causeBURGDORFERI SENSU-LATODISEASEbakteeritTicks0302 clinical medicineINFECTIONPOPULATIONFinland11832 Microbiology and virologyTick-borne pathogensbiologylongitudinal studylevinneisyysPREVALENCEInfectious Diseasestaudinaiheuttajat1181 Ecology evolutionary biologyEpidemiological Monitoringtick-borne pathogensBartonella-bakteeritSeasonsLongitudinal studyNymphIxodes ricinusMonitoringBorrelia valaisiana030231 tropical medicineZoologyBabesiaLYME BORRELIOSISBorrelia miyamotoipitkittäistutkimusTickBorrelia afzeliiMicrobiologyticksEncephalitis Viruses Tick-Borne03 medical and health sciencesCOINFECTIONSparasitic diseasesGram-Negative BacteriamedicineAnimalsBorrelia burgdorferiIxodesIXODES-RICINUS TICKSbiology.organism_classificationbacterial infections and mycosespunkitBorrelia-bakteeritmonitoring030104 developmental biologyNationwideitiöeläimetInsect ScienceParasitologyBorrelia gariniinationwideCANDIDATUS NEOEHRLICHIA MIKURENSISTicks and tick-borne diseases
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Bacteriophage imaging : past, present and future

2018

The visualization of viral particles only became possible after the advent of the electron microscope. The first bacteriophage images were published in 1940 and were soon followed by many other publications that helped to elucidate the structure of the particles and their interaction with the bacterial hosts. As sample preparation improved and new technologies were developed, phage imaging became important approach to morphologically classify these viruses and helped to understand its importance in the biosphere. In this review we discuss the main milestones in phage imaging, how it affected our knowledge on these viruses and recent developments in the field. peerReviewed

0301 basic medicineviruksetviruses02 engineering and technologyComputational biologyvirusBiologymikroskopiaMicrobiologyHistory 21st CenturybakteriofagitBacteriophage03 medical and health sciencesbacteriophagephageAnimalsHumansBacteriophagesstructureMolecular BiologyMicroscopyBacteriaVirionGeneral MedicineHistory 20th Century021001 nanoscience & nanotechnologybiology.organism_classificationMolecular Imaging030104 developmental biologykuvantaminen0210 nano-technology
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Novel activities of safe-in-human broad-spectrum antiviral agents

2018

According to the WHO, there is an urgent need for better control of viral diseases. Re-positioning existing safe-in-human antiviral agents from one viral disease to another could play a pivotal role in this process. Here, we reviewed all approved, investigational and experimental antiviral agents, which are safe in man, and identified 59 compounds that target at least three viral diseases. We tested 55 of these compounds against eight different RNA and DNA viruses. We found novel activities for dalbavancin against echovirus 1, ezetimibe against human immunodeficiency virus 1 and Zika virus, as well as azacitidine, cyclosporine, minocycline, oritavancin and ritonavir against Rift valley feve…

0301 basic medicineviruksetviruses030106 microbiologyAPPROVED DRUGSHEPATITIS-C VIRUSINFLUENZA-A VIRUSBioinformaticsAntiviral AgentsArticle03 medical and health sciencesBroad spectrumVirologyHumansRNA VirusesvirusesCELL-CULTUREPharmacologyZIKA VIRUS-INFECTIONviral diseasesECHOVIRUS 1ta1183DNA VirusesDrug Repositioningta1182MOUSE MODELLIVER-TRANSPLANTATION3. Good healthDrug repositioning030104 developmental biology317 PharmacyVirus DiseasesvirustauditENTRY3111 BiomedicineViral diseaseINHIBITORSAntiviral Research
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Structural Studies Reveal that Endosomal Cations Promote Formation of Infectious Coxsackievirus A9 A-Particles, Facilitating RNA and VP4 Release

2022

Coxsackievirus A9 (CVA9), an enterovirus, is a common cause of pediatric aseptic meningitis and neonatal sepsis. During cell entry, enterovirus capsids undergo conformational changes leading to expansion, formation of large pores, externalization of VP1 N termini, and loss of the lipid factor from VP1. Factors such as receptor binding, heat, and acidic pH can trigger capsid expansion in some enteroviruses. Here, we show that fatty acid-free bovine serum albumin or neutral endosomal ionic conditions can independently prime CVA9 for expansion and genome release. Our results showed that CVA9 treatment with albumin or endosomal ions generated a heterogeneous population of virions, which could b…

11832 Microbiology and virologyalbumiinitviruksetImmunologyMicrobiologyendosomal ionic compositioncryoEMpicornavirusVirologyInsect Science1182 Biochemistry cell and molecular biologycryo-EMCryo-electron microscopyvirus structureA-particlealbumin
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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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