Search results for "capsid"

showing 10 items of 248 documents

Characterization of the interaction between Rx and the potato virus X coat protein and identification of genes required for Rx-mediated resistance

2006

International audience

[SDV] Life Sciences [q-bio][SDV]Life Sciences [q-bio]GENE DE RESISTANCEPOTATO VIRUS XCONTOURNEMENTRXCAPSIDEPVXComputingMilieux_MISCELLANEOUSRESISTANCE
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Cytoplasmic Parvovirus Capsids Recruit Importin Beta for Nuclear Delivery

2019

Parvoviruses are an important platform for gene and cancer therapy. Their cell entry and the following steps, including nuclear import, are inefficient, limiting their use in therapeutic applications. Two models exist on parvoviral nuclear entry: the classical import of the viral capsid using nuclear transport receptors of the importin (karyopherin) family or the direct attachment of the capsid to the nuclear pore complex leading to the local disintegration of the nuclear envelope. Here, by laser scanning confocal microscopy and in situ proximity ligation analyses combined with coimmunoprecipitation, we show that infection requires importin β-mediated access to the nuclear pore complex and …

alpha KaryopherinsCytoplasmNuclear EnvelopevirusesImmunologyActive Transport Cell NucleusImportinKaryopherinsBiologyVirus ReplicationMicrobiologyCell LineParvoviridae InfectionsParvovirus03 medical and health sciencesCapsidCytosolViral entryVirologyAnimalsNuclear pore030304 developmental biologyKaryopherinCell Nucleuschemistry.chemical_classification0303 health sciencesNucleoplasm030302 biochemistry & molecular biologyVirus Internalizationbeta KaryopherinsVirus-Cell InteractionsCell biologychemistryCytoplasmInsect ScienceNuclear PoreCapsid ProteinsNucleoporinNuclear transportJournal of Virology
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Molecular Virology of Enteric Viruses (with Emphasis on Caliciviruses)

2006

Human caliciviruses are members of the family Caliciviridae and are responsible for a majority of the outbreaks of acute nonbacterial gastroenteritis. In fact, they now are considered a common cause of sporadic cases of diarrhea in the community (Glass et al., 2000b; Koopmans et al., 2002; Lopman et al., 2002; Hutson et al., 2004). These viruses were implicated in as many as 95% of the reported viral gastroenteritis outbreaks examined over a 4.5-year period in the United States (Fankhauser et al., 2002), and similar high incidence rates have been found in other studies (Maguire et al., 1999; Glass et al., 2000b; Koopmans et al., 2000; Lopman et al., 2003). Common features of the Calicivirid…

biologyvirusesSapporo VirusSapovirusmedicine.disease_causebiology.organism_classificationVirologyVirusCaliciviridaeCapsidNorovirusmedicineMolecular virologyNorwalk virus
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Icosahedral dsDNA Bacterial Viruses with an Internal Membrane

2008

The icosahedral double-stranded DNA bacteriophages containing an internal membrane belong to two families, the Tectiviridae and the Corticoviridae. Members of the Tectiviridae have a linear dsDNA genome (e.g., PRD1) and those of the Corticoviridae have a circular genome (the only example being PM2). The DNA is covered by a membrane which is in turn covered by a protein capsid. The infection cycle begins when spikes on the capsid recognize the host cell receptor and the virus starts the delivery of the genome into the cell cytoplasm. The replication of the virus genome occurs in the cytoplasm. The members of the Tectiviridae may be virulent or temperate; PM2 is virulent. Virulent bacteriopha…

chemistry.chemical_compoundCapsidchemistryLysogenic cycleVirulenceTectiviridaeBiologyBacterial virusGenomeVirologyVirusDNA
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Teschoviruses and sapeloviruses in faecal samples from wild boar in Spain

2013

Teschovirus and Sapelovirus are two genera of the Picornaviridae family, comprising highly variable and heterogeneous enteric viruses, commonly found in faecal samples from domestic pigs. Although both of them are also known to infect wild boar, studies on their presence in these wild suids are scarce. The present study aimed at determining the presence of porcine teschovirus (PTV) and sapelovirus (PSV) in free-living wild boar populations, as well as to study their relationships with similar viruses present in pigs. Fresh faecal samples (n = 63) from wild boar were collected in Doñana Biological Reserve (SW Spain) during 2007 and 2011, and analysed using multiplex RT-PCR for the simultaneo…

food.ingredientPicornavirusgenetic structuresTeschovirusSwineCharacterizationSus scrofaRT-PCRPicornaviridaeWild boarMicrobiologyFecesfoodWild boarPhylogeneticsbiology.animalAnimalsMultiplexSapelovirusPhylogenySwine DiseasesPicornaviridae InfectionsGeneral VeterinarybiologyCoinfectionPicornavirusGeneral MedicineAmpliconbiology.organism_classificationVirologyDomestic pigSpainTeschovirusCapsid ProteinsSapelovirus
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Thermus bacteriophage P23-77 : key member of a novel, but ancient family of viruses from extreme environments

2015

geenitviruksetviral selfsystematiikkaextreme environmentsvirus taxonomyääriolotbakteriofagitvirion assemblyviral lineagesmorfologiacapsid-associated proteinsproteiinitkuumat lähteetkapsidi
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Nuclear entry and egress of parvoviruses.

2022

Parvoviruses are small non-enveloped single-stranded DNA viruses, which depend on host cell nuclear transcriptional and replication machinery. After endosomal exposure of nuclear localization sequence and a phospholipase A2 domain on the capsid surface, and escape into the cytosol, parvovirus capsids enter the nucleus. Due to the small capsid diameter of 18–26 nm, intact capsids can potentially pass into the nucleus through nuclear pore complexes (NPCs). This might be facilitated by active nuclear import, but capsids may also follow an alternative entry pathway that includes activation of mitotic factors and local transient disruption of the nuclear envelope. The nuclear entry is followed b…

import and exportCell NucleusisäntäsolutviruksetparvovirusesNuclear Envelopenuclear pore complexesnucleusActive Transport Cell NucleusDNA Single-Strandednuclear envelopeVirus ReplicationMicrobiologyinfektiotParvovirusPhospholipasestumaNuclear PoreCapsid ProteinsMolecular BiologyparvoviruksetkapsidiMolecular microbiologyREFERENCES
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Crystallization and preliminary crystallographic analysis of the major capsid proteins VP16 and VP17 of bacteriophage P23-77.

2012

The major capsid proteins VP16 and VP17 of bacteriophage P23-77 have been crystallized using both recombinant and purified virus and preliminary diffraction analyses have been performed.

kapsidiproteiinitcongenital hereditary and neonatal diseases and abnormalitiesLineage (genetic)bacteriophagescrystallizationIcosahedral symmetryvirusesBiophysicsBacteriophage P23-77major coat proteinsCrystallography X-RayBiochemistrycapsid proteinsbakteriofagitlaw.inventionBacteriophage03 medical and health sciencesStructural BiologylawGeneticsCoat ProteinsCrystallizationskin and connective tissue diseasesdouble beta-barrel viral lineage030304 developmental biology0303 health sciencesbiologybakteriofaagit030306 microbiologyThermus thermophilusta1183ta1182Thermus thermophilusbiochemical phenomena metabolism and nutritionCondensed Matter Physicsbiology.organism_classification3. Good healthCrystallographyCapsidCrystallization CommunicationsRecombinant DNAhealth occupationsCapsid ProteinsCrystallization
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Structural characterization of site-modified nanocapsid with monodispersed gold clusters

2017

AbstractHepatitis E Virus-like particles self-assemble in to noninfectious nanocapsids that are resistant to proteolytic/acidic mucosal delivery conditions. Previously, the nanocapsid was engineered to specifically bind and enter breast cancer cells, where successful tumor targeting was demonstrated in animal models. In the present study, the nanocapsid surface was modified with a solvent-exposed cysteine to conjugate monolayer protected gold nanoclusters (AuNC). Unlike commercially available gold nanoparticles, AuNCs monodisperse in water and are composed of a discrete number of gold atoms, forming a crystalline gold core. Au102pMBA44 (Au102) was an ideal conjugate given its small 2.5 nm s…

lcsh:MedicineMetal NanoparticlesBioengineering02 engineering and technologyConjugated system010402 general chemistry01 natural sciencesElectronnanobiotechnologyArticleNanoclustersMaleimideschemistry.chemical_compoundMicroscopy Electron TransmissionMonolayerHepatitis E viruscapsidTransmissionNanotechnologylcsh:ScienceMaleimideCancerMicroscopyMultidisciplinaryLigandlcsh:RCryoelectron Microscopynanobiotekniikka021001 nanoscience & nanotechnologyCombinatorial chemistryRecombinant Proteins0104 chemical sciencesGood Health and Well BeingchemistryColloidal goldlcsh:QCapsid ProteinsnanohiukkasetnanoparticlesGold0210 nano-technologyLinkerConjugatekapsidi
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Analysis of type-restricted and cross-reactive epitopes on virus-like particles of human papillomavirus type 33 and in infected tissues using monoclo…

1994

A panel of six monoclonal antibodies recognizing at least three different antigenic regions has been raised against the L1 major capsid protein of human papillo-mavirus type 33 (HPV-33), which is associated with cervical carcinoma. The antigenic sites defined by these antibodies have been mapped and classified as type-restricted or broadly cross-reactive using bacterially expressed L1 fusion proteins of a variety of HPV types. Conformational and linear epitopes have been distinguished using native and denatured virus-like particles. HPV infection of genital lesions has been analysed using both monoclonal antibodies and DNA amplification by PCR. The antibodies obtained should be useful to pr…

medicine.drug_classRecombinant Fusion ProteinsMolecular Sequence DataUterine Cervical NeoplasmsCross ReactionsAntibodies ViralMonoclonal antibodyEpitopeVirusCapsidAntigenAntibody SpecificityVirologyEscherichia colimedicineHumansAmino Acid SequenceCloning MolecularAntigens ViralPapillomaviridaeBase SequencebiologyVirionHPV infectionAntibodies MonoclonalUterine Cervical Dysplasiamedicine.diseaseFusion proteinVirologyMolecular biologyCapsidCondylomata AcuminataDNA Viralbiology.proteinFemaleAntibodySequence AlignmentEpitope MappingJournal of General Virology
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