Search results for "Animal"

showing 10 items of 22159 documents

Occlusion-derived baculovirus: interaction with human cells and evaluation of the envelope protein P74 as a surface display platform.

2008

To develop complementary baculovirus-based tools for gene delivery and display technologies, the interaction of occlusion-derived baculovirus (ODV) with human cells, and the functionality of the P74 ODV envelope protein for display of the IgG-binding Z domains (ZZP74) were evaluated. The cellular binding of ODV was concentration-dependent and saturable. Only minority of the bound virions were internalized at both 37 and 4 degrees C, suggesting usage of direct membrane fusion as the entry mode. The intracellular transport of ODV was confined in vesicular structures peripheral to the plasma membrane, impeding subsequent nuclear entry and transgene expression. Transduction of ODV was not rescu…

virusesBlotting WesternVirus AttachmentBioengineeringBiologyGene deliverySpodopteraApplied Microbiology and BiotechnologyCell Linechemistry.chemical_compoundTransduction (genetics)Viral envelopeMicroscopy Electron TransmissionViral Envelope ProteinsCell Line TumorAnimalsHumansMicroscopy ConfocalfungiLipid bilayer fusionSodium butyrateGeneral MedicineMolecular biologyFusion proteinCell biologyNocodazolechemistryCell cultureElectrophoresis Polyacrylamide GelBaculoviridaeBiotechnologyJournal of biotechnology
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Mouse models of cytomegalovirus latency: overview.

2002

Abstract Background: The molecular regulation of viral latency and reactivation is a central unsolved issue in the understanding of cytomegalovirus (CMV) biology. Like human CMV (hCMV), murine CMV (mCMV) can establish a latent infection in cells of the myeloid lineage. Since mCMV genome remains present in various organs after its clearance from hematopoietic cells first in bone marrow and much later in blood, there must exist one or more widely distributed cell type(s) representing the cellular site(s) of enduring mCMV latency in host tissues. Endothelial cells and histiocytes are candidates, but the question is not yet settled. Another long debated problem appears to be solved: mCMV establ…

virusesCytomegalovirusBiologymedicine.disease_causeVirusHerpesviridaeImmediate-Early ProteinsTransactivationMiceViral ProteinsVirologyVirus latencymedicineCytotoxic T cellAnimalsHumansLatency (engineering)GeneMice Inbred BALB Cvirus diseasesmedicine.diseaseVirologyVirus LatencyHaematopoiesisDisease Models AnimalInfectious DiseasesImmunologyCytomegalovirus InfectionsTrans-ActivatorsVirus ActivationJournal of clinical virology : the official publication of the Pan American Society for Clinical Virology
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The endogenous retroviral insertion in the human complement C4 gene modulates the expression of homologous genes by antisense inhibition

2001

Intron 9 contains the complete endogenous retrovirus HERV-K(C4) as a 6.4-kb insertion in 60% of human C4 genes. The retroviral insertion is in reverse orientation to the C4 coding sequence. Therefore, expression of C4 could lead to the transcription of an antisense RNA, which might protect against exogenous retroviral infections. To test this hypothesis, open reading frames from the HERV sequence were subcloned in sense orientiation into a vector allowing expression of a beta-galactosidase fusion protein. Mouse L cells which had been stably transfected with either the human C4A or C4B gene both carrying the HERV insertion (LC4 cells), and L(Tk-) cells without the C4 gene were transiently tr…

virusesEndogenous RetrovirusesImmunologyIntronEndogenous retrovirusComplement C4TransfectionBiologyMolecular biologyFusion proteinAntisense RNAInterferon-gammaMiceL CellsGene Expression RegulationTranscription (biology)Sense (molecular biology)GeneticsAnimalsHumansRNA AntisenseGeneRetroviridae InfectionsImmunogenetics
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Infection-induced chromatin modifications facilitate translocation of herpes simplex virus capsids to the inner nuclear membrane

2021

Herpes simplex virus capsids are assembled and packaged in the nucleus and move by diffusion through the nucleoplasm to the nuclear envelope for egress. Analyzing their motion provides conclusions not only on capsid transport but also on the properties of the nuclear environment during infection. We utilized live-cell imaging and single-particle tracking to characterize capsid motion relative to the host chromatin. The data indicate that as the chromatin was marginalized toward the nuclear envelope it presented a restrictive barrier to the capsids. However, later in infection this barrier became more permissive and the probability of capsids to enter the chromatin increased. Thus, although …

virusesGene ExpressionVirus ReplicationPathology and Laboratory Medicineherpes simplex -virusChlorocebus aethiopsCapsidsMedicine and Health SciencesSimplexvirusBiology (General)Mass DiffusivityStainingChromosome BiologyPhysicsChromatinChemistryMedical MicrobiologyViral PathogensPhysical SciencesVirusesHerpes Simplex Virus-1EpigeneticsCellular Structures and OrganellesPathogenskapsidiResearch ArticleHerpesvirusesNuclear EnvelopeQH301-705.5Biological Transport ActiveViral StructureResearch and Analysis MethodsinfektiotMicrobiologydiffuusio (fysikaaliset ilmiöt)CapsidNuclear MembraneVirologyGeneticsAnimalsherpesviruksetVero CellsMicrobial PathogensCell NucleusChemical PhysicsOrganismsBiology and Life SciencesHerpes SimplexCell Biologybiochemical phenomena metabolism and nutritionRC581-607Viral ReplicationHerpes Simplex VirusNuclear StainingSpecimen Preparation and TreatmentImmunologic diseases. AllergyDNA viruses
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Baculovirus display strategies: Emerging tools for eukaryotic libraries and gene delivery

2004

Recombinant baculoviruses have been extensively used as vectors for abundant expression of a large variety of foreign proteins in insect cell cultures. The appeal of the system lies essentially in easy cloning techniques and virus propagation combined with the eukaryotic post-translational modification machinery of the insect cell. Recently, a novel molecular biology tool was established by the development of baculovirus surface display, using different strategies for presentation of foreign peptides and proteins on the surface of budded virions. This eukaryotic display system enables presentation of large complex proteins on the surface of baculovirus particles and has thereby become a ver…

virusesGenetic VectorsGreen Fluorescent ProteinsDNA RecombinantComputational biologyGene deliveryBiologyProteomicsBiochemistrychemistry.chemical_compoundPeptide LibraryGeneticsAnimalsHumansGenomic libraryTransgenesPeptide libraryMolecular BiologyGene LibraryCloningGene Transfer TechniquesGenetic TherapyVirologyLuminescent ProteinsCapsidchemistryDNA ViralBaculoviridaeFunctional genomicsDNABriefings in Functional Genomics and Proteomics
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The Nasal Epithelium as a Factory for Systemic Protein Delivery

2002

We have previously shown that recombinant Sendai virus (SeV) produces efficient in vivo airway epithelial gene transfer. The ability to produce therapeutic levels of circulating proteins following noninvasive gene transfer would have widespread clinical application. Here, we compared nose, lung, and skeletal muscle for the ability to produce circulating levels of the secreted mouse antiinflammatory cytokine interleukin-10 (IL10) following SeV-mediated gene transfer. High levels of serum IL10 were obtained from each site with a potency order of lung > nose > muscle for a given viral titer. Serum levels from each site were within the likely required range for anti-inflammatory effects. The co…

virusesGenetic enhancementmedicine.medical_treatmentMucous membrane of noseSendai virus03 medical and health sciences0302 clinical medicineIn vivoDrug DiscoverymedicineGeneticsAnimalsHumansMuscle SkeletalLungMolecular BiologyNose030304 developmental biologyPharmacology0303 health sciencesLungbiologyGene Transfer TechniquesSkeletal musclerespiratory systembiology.organism_classificationSendai virus3. Good healthInterleukin-10Nasal Mucosamedicine.anatomical_structureCytokine030220 oncology & carcinogenesisImmunologyCOS CellsMolecular MedicineHeLa CellsMolecular Therapy
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Genomic structure and promoter analysis of pathogen-inducedrepatgenes fromSpodoptera exigua

2009

The repat gene family encodes midgut proteins overexpressed in response to pathogen infection in the lepidopteran Spodoptera exigua. Up-regulation of repat genes has been observed after challenging the larvae with both Bacillus thuringiensis toxins and after infection with the baculovirus Autographa californica multiple nucleopolyhedrovirus. In our study, PCR amplification of the genomic region and genome walking were used to obtain the genomic structure and the sequence of the 5'-upstream region of repat1 and repat2, two of the most phylogenetically distant members of the repat family. A similar gene structure between repat1 and repat2 has been found, with conserved exon-intron positions a…

virusesGenome InsectMolecular Sequence DataGenes InsectSpodopteraBiologySpodopteraOpen Reading FramesGenes ReporterIntron-mediated enhancementGene expressionGeneticsPrimer walkingAnimalsGene familyCloning MolecularPromoter Regions GeneticMolecular BiologyGeneGeneticsBase SequencefungiIntronPromoterbiology.organism_classificationMolecular biologyInsect ScienceSequence AlignmentInsect Molecular Biology
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Modulation of Hepatitis C Virus NS5A Hyperphosphorylation by Nonstructural Proteins NS3, NS4A, and NS4B

1999

NS5A of the hepatitis C virus (HCV) is a highly phosphorylated protein involved in resistance against interferon and required most likely for replication of the viral genome. Phosphorylation of this protein is mediated by a cellular kinase(s) generating multiple proteins with different electrophoretic mobilities. In the case of the genotype 1b isolate HCV-J, in addition to the basal phosphorylated NS5A (designated pp56), a hyperphosphorylated form (pp58) was found on coexpression of NS4A (T. Kaneko, Y. Tanji, S. Satoh, M. Hijikata, S. Asabe, K. Kimura, and K. Shimotohno, Biochem. Biophys. Res. Commun. 205:320‐326, 1994). Using a comparative analysis of two full-length genomes of genotype 1b…

virusesHepatitis C virusHepacivirusMolecular Sequence DataImmunologyGene ExpressionReplicationHyperphosphorylationGenome ViralHepacivirusViral Nonstructural Proteinsmedicine.disease_causeMicrobiologyCell LineInterferonCricetinaeVirologymedicineAnimalsHumansPhosphorylationNS5ANS3Base SequencebiologyPestivirusvirus diseasesRNAbiochemical phenomena metabolism and nutritionbiology.organism_classificationVirologyMolecular biologydigestive system diseasesAmino Acid SubstitutionInsect ScienceDNA Viralmedicine.drugJournal of Virology
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Functional properties of a monoclonal antibody inhibiting the hepatitis C virus RNA-dependent RNA polymerase.

2001

The hepatitis C virus (HCV) RNA-dependent RNA polymerase (RdRp), represented by nonstructural protein 5B (NS5B), has recently emerged as a promising target for antiviral intervention. Here, we describe the isolation, functional characterization, and molecular cloning of a monoclonal antibody (mAb) inhibiting the HCV RdRp. This mAb, designated 5B-12B7, binds with high affinity to a conformational epitope in the palm subdomain of the HCV RdRp and recognizes native NS5B expressed in the context of the entire HCV polyprotein or subgenomic replicons. Complete inhibition of RdRp activity in vitro was observed at equimolar concentrations of NS5B and mAb 5B-12B7, whereas RdRp activities of classica…

virusesHepatitis C virusMolecular Sequence DataBiologyViral Nonstructural Proteinsmedicine.disease_causeBiochemistryAntiviral AgentsViruschemistry.chemical_compoundMiceRNA polymerasemedicineAnimalsAmino Acid SequenceMolecular BiologyNS5BImmunoglobulin FragmentsPolymeraseSubgenomic mRNAMice Inbred BALB CBase Sequencevirus diseasesRNAAntibodies MonoclonalCell BiologyVirologyMolecular biologydigestive system diseasesEpitope mappingchemistrybiology.proteinFemaleEpitope MappingThe Journal of biological chemistry
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Replication of herpes simplex virus type 1 and 2 in the medulla of the adrenal gland after vaginal infection of mice.

1996

After vaginal infections of mice with neuroinvasive strains of herpes simplex virus type 1 and 2 (HSV-1, HSV-2) virus replicates in the epithelium of the vagina, in the paravaginal ganglia, in the spinal cord and finally in the brain and in the adrenal glands. However, viral antigens could be demonstrated only in the medulla of the adrenal glands but not in the cortex, as assessed by immunohistochemistry (IHC). HSV could not be isolated from liver, spleen, uterus, and ovaries. This contrasts to the intraperitoneal (i.p) route of infection with replication in different visceral organs including the adrenal gland's cortex.

virusesHerpesvirus 2 HumanUterusSpleenHerpesvirus 1 HumanBiologymedicine.disease_causeVirus ReplicationHerpesviridaeVirusMiceVirologyChlorocebus aethiopsmedicineAnimalsHumansAntigens ViralVero CellsMedullaCerebral CortexMice Inbred BALB CAdrenal glandGeneral MedicineVirologymedicine.anatomical_structureHerpes simplex virusSpinal CordAdrenal MedullaVaginaVaginaFemaleArchives of virology
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