Search results for "capsid proteins"

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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Sentinel hospital-based surveillance for norovirus infection in children with gastroenteritis between 2015 and 2016 in Italy

2018

Noroviruses are one of the leading causes of gastro-enteric diseases worldwide in all age groups. Novel epidemic noroviruses with GII.P16 polymerase and GII.2 or GII.4 capsid type have emerged worldwide in late 2015 and in 2016. We performed a molecular epidemiological study of the noroviruses circulating in Italy to investigate the emergence of new norovirus strains. Sentinel hospital-based surveillance, in three different Italian regions, revealed increased prevalence of norovirus infection in children (<15 years) in 2016 (14.4% versus 9.8% in 2015) and the emergence of GII.P16 strains in late 2016, which accounted for 23.0% of norovirus infections. The majority of the strains with a GII.…

0301 basic medicineRNA virusesEuropean PeopleSettore MED/07 - Microbiologia E Microbiologia Clinicavirusesmedicine.disease_causePathology and Laboratory MedicinePediatricsGeographical locationsfluids and secretionsEpidemiologyGenotypePrevalenceMedicine and Health SciencesEthnicitiesChildCaliciviridae InfectionsMultidisciplinaryIncidence (epidemiology)Database and informatics methodsQRSequence analysisvirus diseasesGastroenteritisItalian PeopleEuropeCapsidItalyMedical MicrobiologyChild PreschoolViral PathogensVirusesMedicineRNA ViralPathogensPediatric InfectionsResearch Articlemedicine.medical_specialtyGenotypingGenotypeBioinformaticsScience030106 microbiologySequence DatabasesMicrobiologyCaliciviruses03 medical and health sciencesAge groupsmedicineHumansEuropean UnionMolecular Biology TechniquesGenotypingMicrobial PathogensMolecular BiologyBiochemistry Genetics and Molecular Biology (all)RNA sequence analysisBiology and life sciencesbusiness.industrySequence Analysis RNANorovirusOrganismsGenetic VariationRNA-Dependent RNA PolymeraseVirologydigestive system diseasesResearch and analysis methods030104 developmental biologyCaliciviridae InfectionsBiological DatabasesAgricultural and Biological Sciences (all)NorovirusCapsid ProteinsPopulation GroupingsPeople and placesbusinessSentinel Surveillance
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Increased RNA virus population diversity improves adaptability

2021

The replication machinery of most RNA viruses lacks proofreading mechanisms. As a result, RNA virus populations harbor a large amount of genetic diversity that confers them the ability to rapidly adapt to changes in their environment. In this work, we investigate whether further increasing the initial population diversity of a model RNA virus can improve adaptation to a single selection pressure, thermal inactivation. For this, we experimentally increased the diversity of coxsackievirus B3 (CVB3) populations across the capsid region. We then compared the ability of these high diversity CVB3 populations to achieve resistance to thermal inactivation relative to standard CVB3 populations in an…

0301 basic medicineSciencevirusesThermal StabilityBiologyMicrobiologíaArticleCell Line03 medical and health sciencesCapsidVirologyHumansRNA VirusesExperimental EvolutionGeneticsGenetic diversityExperimental evolutionMultidisciplinary030102 biochemistry & molecular biologyQRComputational BiologyGenetic VariationRNARNA virusBiodiversityDirected evolutionbiology.organism_classificationDeep Mutational ScanningBiological Evolution030104 developmental biologyAmino Acid SubstitutionExperimental evolutionCapsidMutationEpistasisMedicineCapsid ProteinsAdaptationhuman activities
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A simple method to estimate the isoelectric point of modified Tomato bushy stunt virus (TBSV) particles

2017

We present a simple method to estimate the isoelectric point (pI) of Tomato Bushy Stunt particles. We demonstrate that the combination of agarose gels with different pH buffers can be used to electrophorese the virus particles and their migration patterns can be compared. This method allows us to estimate the pI of the virus particles (wild type, wt, and genetically modified particles) and to monitor the effect of the pI of modified peptide side chains of the viral capsid subunit on the pI of the whole virus particle.

0301 basic medicineTombusvirusSurface PropertiesvirusesClinical BiochemistryBuffersBiologyBiochemistryVirusAnalytical ChemistryDiffusionTombusvirus03 medical and health sciencesIsoelectric PointElectrophoresis Agar GelIsoelectric focusingVirionfood and beveragesHydrogen-Ion Concentrationbiology.organism_classificationMolecular biologyElectrophoresis030104 developmental biologyIsoelectric pointCapsidBiophysicsParticleCapsid ProteinsPeptidesTomato bushy stunt virusELECTROPHORESIS
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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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ICTV Virus Taxonomy Profile: Solinviviridae

2019

Solinviviridae is a family of picorna/calici-like viruses with non-segmented, linear, positive-sense RNA genomes of approximately 10-11 kb. Unusually, their capsid proteins are encoded towards the 3'-end of the genome where they can be expressed both from a subgenomic RNA and as an extension of the replication (picorna-like helicase-protease-polymerase) polyprotein. Members of two species within the family infect ants, but related unclassified virus sequences derive from a large variety of insects and other arthropods. This is a summary of the International Committee on Taxonomy of Viruses (ICTV) Report on the Solinviviridae, which is available at www.ictv.global/report/solinviviridae.

0301 basic medicineviruses030106 microbiologyRNAGenome ViralBiologyVirus ReplicationVirologyGenomeVirus03 medical and health sciences030104 developmental biologyCapsidVirologyAnimalsRNA VirusesRNA ViralCapsid ProteinsTaxonomy (biology)ArthropodsVirus classificationSubgenomic mRNAJournal of General Virology
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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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Parvovirus capsid disorders cholesterol-rich membranes.

2008

In this study canine parvovirus, CPV, was found to induce disorder in DPPC:cholesterol membranes in acidic conditions. This acidicity-induced fluidizing effect is suggested to originate from the N-terminus of the viral capsid protein VP1. In accordance with the model membrane studies, a fluidizing effect was seen also in the endosomal membranes during CPV infection implying an important functional role of the fluidization in the endocytic entry of the virus.

12-DipalmitoylphosphatidylcholineParvovirus CanineEndosomeMembrane Fluidityanimal diseasesvirusesEndocytic cycleBiophysicsBiochemistryViruschemistry.chemical_compoundCapsidMolecular BiologybiologyCholesterolParvovirusCanine parvovirusMembranes ArtificialCell BiologyHydrogen-Ion Concentrationbiology.organism_classificationVirologyCell biologyMembraneCholesterolCapsidchemistryCapsid ProteinsBiochemical and biophysical research communications
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Effectiveness of Toki s criteria and determination of variables for identification of HPV L1 protein in oral lesions

2013

Objectives: To evaluate the effectiveness of Toki's criteria in identifying the HPV L1 protein in oral lesions with the use of immunohistochemistry (IHC) and to determine which criteria optimize such identification. Study Design: Retrospective study of 277 cases diagnosed as HPV lesions at 22 years. Tests of sensitivity, specificity, positive predictive value (PPV), negative predictive value (NPV), kappa coefficients, and chi 2 values, as well as two logistic regression analyses ( (p≤0.05), were conducted. Results: Of the lesions studied, 96.4% (267 of 277) were positive for HPV using Toki's criteria and 28.5% (79 of 277) were positive for L1 by IHC. Toki's criteria showed sensitivity=93.67…

AdultMalePathologymedicine.medical_specialtyAdolescentConcordanceOdontologíaPapillomatosisLogistic regressionSensitivity and SpecificityGastroenterologyYoung AdultInternal medicinemedicineHumansYoung adultChildGeneral DentistryAgedRetrospective StudiesAged 80 and overMouth neoplasmOral Medicine and Pathologybusiness.industryResearchPapillomavirus InfectionsMouth MucosaInfantRetrospective cohort studyRegression analysisOncogene Proteins ViralMiddle Aged:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludImmunohistochemistryOtorhinolaryngologyChild PreschoolUNESCO::CIENCIAS MÉDICASCapsid ProteinsFemaleMouth NeoplasmsSurgerymedicine.symptombusinessKappaMedicina Oral Patología Oral y Cirugia Bucal
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SARS‐CoV‐2 N‐antigenemia in critically ill adult COVID‐19 patients: Frequency and association with inflammatory and tissue‐damage biomarkers

2021

Abstract The current study aimed at characterizing the dynamics of SARS‐CoV‐2 nucleocapsid (N) antigenemia in a cohort of critically ill adult COVID‐19 patients and assessing its potential association with plasma levels of biomarkers of clinical severity and mortality. Seventy‐three consecutive critically ill COVID‐19 patients (median age, 65 years) were recruited. Serial plasma (n = 340) specimens were collected. A lateral flow immunochromatography assay and reverse‐transcription polymerase chain reaction (RT‐PCR) were used for SARS‐CoV‐2 N protein detection and RNA quantitation and in plasma, respectively. Serum levels of inflammatory and tissue‐damage biomarkers in paired specimens were …

AdultMalemedicine.medical_specialtyCritical IllnessInflammationSARS‐CoV‐2 N‐antigenemiaLogistic regressionSARS‐CoV‐2 RNAemiaGastroenterologyYoung AdultCOVID‐19VirologyInternal medicinemedicineCoronavirus Nucleocapsid ProteinsHumansProspective StudiesAntigens ViralResearch ArticlesAgedAged 80 and overInflammationbiologybusiness.industrySARS-CoV-2virus diseasesCOVID-19Odds ratioMiddle AgedPhosphoproteinsVirologymortalityConfidence intervalinflammation biomarkersFerritinTracheaInfectious DiseasesConcomitantCohortbiology.proteinBiomarker (medicine)RNA ViralFemalemedicine.symptombusinessBiomarkersResearch ArticleJournal of Medical Virology
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