Search results for "Viral replication"

showing 10 items of 157 documents

Mutual antagonism between clock protein Period2 and hepatitis C virus replication in hepatocytes.

2013

Background: Hepatitis C virus (HCV) infects approximately 3% of the world population and is the leading cause of liver disease, impacting hepatocyte metabolism, depending on virus genotype. Hepatic metabolic functions show rhythmic fluctuations with 24-h periodicity (circadian), driven by molecular clockworks ticking through translational-transcriptional feedback loops, operated by a set of genes, called clock genes, encoding circadian proteins. Disruption of biologic clocks is implicated in a variety of disorders including fatty liver disease, obesity and diabetes. The relation between HCV replication and the circadian clock is unknown. Methods: We investigated the relationship between HCV…

Hepatitis C circadian clock viral replication interferon signaling.
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Interferon-γ inhibits replication of subgenomic and genomic hepatitis C virus RNAs

2002

Persistent infection with hepatitis C virus (HCV) is a major cause of chronic hepatitis, liver cirrhosis, and hepatocellular carcinoma. All treatments known so far rely on the antiviral activity of interferon alfa (IFN-alpha) that is given alone or in combination with ribavirin. Unfortunately, only a fraction of the patients clear the virus during therapy and for those who do not respond there is currently no alternative treatment. Selectable subgenomic HCV RNAs (replicons) have been recently used to investigate the effect of IFN-alpha on HCV replication. However, it has not yet been analyzed whether other cytokines also play a role in the innate immune response against HCV. Here we show th…

HepatologyHepatitis C virusvirus diseasesBiologymedicine.disease_causeVirologydigestive system diseasesVirusNS2-3 proteaseCell killingViral replicationmedicineInterferon gammaInterferon alfamedicine.drugSubgenomic mRNAHepatology
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ID: 37

2015

During the early phase of human cytomegalovirus (HCMV) infection, the Interferon- γ -Inducible factor 16 (IFI16) behaves as a pattern recognition receptor (PRR) sensing viral DNA and triggering antiviral cytokine release. Later on, it restricts virus replication by down-regulating expression of viral genes committed to DNA synthesis including UL54 and UL44. These activities are modulated by viral proteins including pUL83, a tegument protein involved in viral evasion. Here, we demonstrate that pUL83 interacts with IFI16 relieving its inhibitory activity on UL54 gene transcription. We also establish that, starting from 48 h post-infection, IFI16 is stabilized and protected from degradation by…

Human cytomegalovirusDNA synthesisIFI16virusesImmunologyMutantHematologyBiologymedicine.diseaseBiochemistryMolecular biologyViral replicationInterferonGene expressionmedicineProteasome inhibitorImmunology and AllergyMolecular Biologymedicine.drugCytokine
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The Complex Regulatory Role of Cytomegalovirus Nuclear Egress Protein pUL50 in the Production of Infectious Virus

2021

The regulation of the nucleocytoplasmic release of herpesviral capsids is defined by the process of nuclear egress. Due to their large size, nuclear capsids are unable to traverse via nuclear pores, so that herpesviruses evolved to develop a vesicular transport pathway mediating their transition through both leaflets of the nuclear membrane. This process involves regulatory proteins, which support the local distortion of the nuclear envelope. For human cytomegalovirus (HCMV), the nuclear egress complex (NEC) is determined by the pUL50-pUL53 core that initiates multicomponent assembly with NEC-associated proteins and capsids. Hereby, pUL50 serves as a multi-interacting determinant that recru…

Human cytomegalovirusGene Expression Regulation ViralProteomicsefficiency of infectious virus productionQH301-705.5Nuclear Envelope[SDV]Life Sciences [q-bio]virusesQuantitative proteomicsCytomegalovirusconditional expressionGenome Viralnuclear egress complex (NEC)Virus ReplicationArticleCell LineViral ProteinsCapsidNEC protein pUL50DNA PackagingmedicineHumansddc:610Biology (General)Nuclear poreNuclear membraneregulation of viral replicationGenes Immediate-EarlyCell Nucleusfunctional propertiesChemistryVirionGeneral MedicineFibroblastsmedicine.diseaseCell biologyVesicular transport protein[SDV] Life Sciences [q-bio]Kineticsmedicine.anatomical_structureLytic cycleCapsidhuman cytomegalovirusLamin
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In Vivo Replication of Recombinant Murine Cytomegalovirus Driven by the Paralogous Major Immediate-Early Promoter-Enhancer of Human Cytomegalovirus

1999

ABSTRACT Transcription of the major immediate-early (MIE) genes of cytomegaloviruses (CMV) is driven by a strong promoter-enhancer (MIEPE) complex. Transactivator proteins encoded by these MIE genes are essential for productive infection. Accordingly, the MIEPE is a crucial control point, and its regulation by activators and repressors is pertinent to virus replication. Since the MIEPE contains multiple regulatory elements, it was reasonable to assume that specific sequence motifs are irreplaceable for specifying the cell-type tropism and replication pattern. Recent work on murine CMV infectivity (A. Angulo, M. Messerle, U. H. Koszinowski, and P. Ghazal, J. Virol. 72:8502–8509, 1998) has do…

Human cytomegalovirusImmunologyReplicationCytomegalovirusBiologyVirus ReplicationRecombinant virusMicrobiologyMiceVirologymedicineAnimalsPromoter Regions GeneticEnhancerGenes Immediate-EarlyGeneIn Situ HybridizationTropismRecombination GeneticInfectivityMice Inbred BALB CPromotermedicine.diseaseVirologyEnhancer Elements GeneticLiverViral replicationInsect ScienceFemaleJournal of Virology
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Experimental Preemptive Immunotherapy of Murine Cytomegalovirus Disease with CD8 T-Cell Lines Specific for ppM83 and pM84, the Two Homologs of Human …

2001

ABSTRACTCD8 T cells are the principal antiviral effectors controlling cytomegalovirus (CMV) infection. For human CMV, the virion tegument protein ppUL83 (pp65) has been identified as a source of immunodominant peptides and is regarded as a candidate for cytoimmunotherapy and vaccination. Two sequence homologs of ppUL83 are known for murine CMV, namely the virion protein ppM83 (pp105) expressed late in the viral replication cycle and the nonstructural protein pM84 (p65) expressed in the early phase. Here we show that ppM83, unlike ppUL83, is not delivered into the antigen presentation pathway after virus penetration before or in absence of viral gene expression, while other virion proteins o…

Human cytomegalovirusMuromegalovirusmedicine.medical_treatmentImmunologyImmunodominanceCD8-Positive T-LymphocytesBiologyMicrobiologyCell LineViral Matrix ProteinsInterferon-gammaMiceImmune systemAntigenVirologyVaccines and Antiviral AgentsmedicineAnimalsCytotoxic T cellMice Inbred BALB CHerpesviridae InfectionsImmunotherapyPhosphoproteinsmedicine.diseaseAdoptive TransferVirologyPeptide FragmentsDisease Models AnimalViral replicationInsect ScienceImmunologyFemaleCytokine secretionImmunologic MemoryJournal of Virology
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Proteomic Analyses of Human Cytomegalovirus Strain AD169 Derivatives Reveal Highly Conserved Patterns of Viral and Cellular Proteins in Infected Fibr…

2014

Human cytomegalovirus (HCMV) particle morphogenesis in infected cells is an orchestrated process that eventually results in the release of enveloped virions. Proteomic analysis has been employed to reveal the complexity in the protein composition of these extracellular particles. Only limited information is however available regarding the proteome of infected cells preceding the release of HCMV virions. We used quantitative mass spectrometry to address the pattern of viral and cellular proteins in cells, infected with derivatives of the AD169 laboratory strain. Our analyses revealed a remarkable conservation in the patterns of viral and of abundant cellular proteins in cells, infected for 2…

Human cytomegalovirusTime FactorsProteomeviruseslcsh:QR1-502MorphogenesisCytomegalovirusBiologyVirus ReplicationProteomicslcsh:MicrobiologyMass SpectrometryArticleCell LineproteomicsVirologyExtracellularmedicineHumanshuman cytomegalovirus; proteomics; mass spectrometry; virions; expression patternProteinsViral tegumentFibroblastsmedicine.diseaseVirologyCell biologyInfectious DiseasesViral replicationhuman cytomegalovirusCell cultureexpression patternHost-Pathogen InteractionsProteomevirionsViruses
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Lack of association between the kinetics of human cytomegalovirus (HCMV) glycoprotein B (gB)-specific and neutralizing serum antibodies and developme…

2001

The kinetics of the gB-specific and neutralizing antibody responses to human cytomegalovirus (HCMV) were analyzed in 26 allogeneic stem-cell transplant recipients who either did (n = 20) or did not (n = 6) develop asymptomatic HCMV active infection during the study period. Antibody response profiles varied widely among individuals in both groups, irrespective of whether HCMV active infection did or did not occur. Development of HCMV active infection was not preceded by a decline in functional serum antibody levels. Neither the absence nor the presence of HCMV active infection correlated with either high or low serum levels of gB-specific and neutralizing antibodies, respectively. In most pa…

Human cytomegalovirusbiologybusiness.industryvirusesmedicine.diseaseVirologyAsymptomaticTiterInfectious DiseasesViral replicationVirologyImmunologybiology.proteinmedicineIn patientStem cellAntibodymedicine.symptomNeutralizing antibodybusinessJournal of Medical Virology
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Stalemating a clever opportunist: lessons from murine cytomegalovirus.

2003

Abstract Cytomegaloviruses and their specific hosts have come to an arrangement that avoids disease but allows the viruses to persist in the individual host and to spread in the host species. Recent work has uncovered some of the molecular details of this evolutionary “contract for mutual survival.” Cytomegaloviruses encode proteins, referred to as “immunoevasins,” which are specifically committed to subvert the immune defense of the host for evading virus elimination. In reply, the hosts have evolved countermeasures to overcome the viral immunoevasins and present antigenic peptides to an extent that is sufficient for confining virus replication to below a harmful level. Accordingly, cytome…

ImmunologyAntigen presentationCongenital cytomegalovirus infectionDown-RegulationDiseaseImmunodominanceBiologyCD8-Positive T-LymphocytesMajor histocompatibility complexInterferon-gammaMiceViral ProteinsViral Envelope ProteinsmedicineImmunology and AllergyCytotoxic T cellAnimalsImmunologic SurveillanceGlycoproteinsAntigen PresentationMembrane GlycoproteinsCytomegalic inclusion diseaseHistocompatibility Antigens Class IModels ImmunologicalGeneral Medicinemedicine.diseaseVirologyPeptide FragmentsProtein TransportViral replicationCytomegalovirus Infectionsbiology.proteinCarrier ProteinsHuman immunology
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Interferon-λ and interleukin 22 act synergistically for the induction of interferon-stimulated genes and control of rotavirus infection.

2015

The epithelium is the main entry point for many viruses, but the processes that protect barrier surfaces against viral infections are incompletely understood. Here we identified interleukin 22 (IL-22) produced by innate lymphoid cell group 3 (ILC3) as an amplifier of signaling via interferon-λ (IFN-λ), a synergism needed to curtail the replication of rotavirus, the leading cause of childhood gastroenteritis. Cooperation between the receptor for IL-22 and the receptor for IFN-λ, both of which were 'preferentially' expressed by intestinal epithelial cells (IECs), was required for optimal activation of the transcription factor STAT1 and expression of interferon-stimulated genes (ISGs). These d…

ImmunologyImmunoblottingMolecular Sequence DataGene ExpressionMice Transgenicmedicine.disease_causeRotavirus InfectionsCell LineMadin Darby Canine Kidney CellsInterleukin 22DogsInterferonRotavirusChlorocebus aethiopsmedicineImmunology and AllergyAnimalsHumansSTAT1Intestinal MucosaReceptors CytokineVero CellsMice KnockoutbiologyReverse Transcriptase Polymerase Chain ReactionInterleukinsInnate lymphoid cellInterleukinDrug SynergismEpithelial CellsVirology3. Good healthIntestinesMice Inbred C57BLSTAT1 Transcription FactorViral replicationImmunologybiology.proteinVero cellCytokinesCaco-2 CellsHT29 Cellsmedicine.drugNature immunology
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