Search results for "Viral protein"

showing 10 items of 182 documents

Gene encoding capsid protein VP1 of foot-and-mouth disease virus A quasispecies model of molecular evolution

1988

A phylogenetic tree relating the VP1 gene of 15 isolates of foot-and-mouth disease virus (FMDV) of serotypes A, C, and O has been constructed. The most parsimonious tree shows that FMDV subtypes and isolates within subtypes constitute sets of related, nonidentical genomes, in agreement with a quasispecies mode of evolution of this virus. The average number of nucleotide replacements per site for all possible pairs of VP1 coding segments is higher among representatives of serotype A than serotype C or O. In comparing amino acid sequences, the values of dispersion index (variance/mean value) are greater than 1, with the highest values scored when all sequences are considered. This indicates a…

Geneticseducation.field_of_studyMultidisciplinaryPhylogenetic treebiologyNucleotidesvirusesPopulationQuasispecies modelViral quasispeciesbiology.organism_classificationViral ProteinsAphthovirusCapsidPhylogeneticsMolecular evolutionMutationAmino AcidsFoot-and-mouth disease viruseducationGenePhylogenyResearch Article
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Homologous recombination as a mechanism of genetic changes in bovine parainfluenza-3 virus

2021

Bovine parainfluenza-3 virus (BPIV-3) is one of the main viruses associated with bovine respiratory disease complex (BRDC) worldwide. BPIV-3 infect the bovine respiratory tract causing from subclinical infections to severe pneumonia with significant economic losses in the cattle industry. BPIV-3 is a RNA virus with high genetic variability, nevertheless, the contribution of recombination events to its variability has not been assessed so far. In this study the 25 complete genome sequences (CGS) reported so far and 215 partial sequences of different viral genes of BPIV-3 were analyzed to determine their genotypes and subgenotypes, distribution, and the existence of potential recombination ev…

GenotypeCattle DiseasesSheep DiseasesBiologyRespirovirus InfectionsMicrobiologyGenomeVirusViral ProteinsAnimalsGenetic variabilityHomologous RecombinationGeneParainfluenza Virus 3 BovinePhylogenyGeneticsSheepGeneral VeterinaryPhylogenetic treeGenetic VariationRNA virusGeneral Medicinebiology.organism_classificationBovine Respiratory Disease ComplexCattleHomologous recombinationVeterinary Microbiology
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Heterogeneity of HVR-1 quasispecies is predictive of early but not sustained virological response in genotype 1b-infected patients undergoing combine…

2003

ISDR mutation pattern and HVR-1 quasispecies were analyzed in HCV genotype 1b-infected patients treated with either PEG- or STD-IFN plus ribavirin, in order to find virological correlates of therapy outcome. ISDR region analysis, performed at baseline (T0) and at 4 weeks of therapy (T1), indicated that ISDR mutation pattern was not predictive of response to treatment. Moreover, no selection of putative resistant strains in the first month of therapy was observed. Viral load was not correlated with any parameter of HVR-1 heterogeneity. Among the HVR-1 heterogeneity parameters considered, complexity was inversely correlated to viral load decline at T1. In univariate analysis, complexity, prop…

GenotypeHepacivirusInterferon alpha-2Viral Nonstructural ProteinsAntiviral AgentsPolyethylene GlycolsViral ProteinsGenetic HeterogeneityRibavirinHumansViral ProteinPhylogenyAntiviral AgentHepaciviruViral Nonstructural ProteinInterferon-alphaSequence Analysis DNAHepatitis C ChronicRecombinant ProteinViral LoadRecombinant ProteinsTreatment OutcomeLinear ModelsLinear ModelDrug Therapy CombinationSequence AlignmentHuman
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The sf32 unique gene of Spodoptera frugiperda multiple nucleopolyhedrovirus (SfMNPV) is a non-essential gene that could be involved in nucleocapsid o…

2013

A recombinant virus lacking the sf32 gene (Sf32null), unique to the Spodoptera frugiperda multiple nucleopolyhedrovirus (SfMNPV), was generated by homologous recombination from a bacmid comprising the complete viral genome (Sfbac). Transcriptional analysis revealed that sf32 is an early gene. Occlusion bodies (OBs) of Sf32null contained 62% more genomic DNA than viruses containing the sf32 gene, Sfbac and Sf32null-repair, although Sf32null DNA was three-fold less infective when injected in vivo. Sf32null OBs were 18% larger in diameter and contained 17% more nucleocapsids within ODVs than those of Sfbac. No significant differences were detected in OB pathogenicity (50% lethal concentration)…

GenotypevirusesScienceGenome ViralSpodopteraSpodopteraVirus ReplicationOcclusion-derived virionsRecombinant virusHomology (biology)VirusViral Proteins03 medical and health sciencesAnimalsNucleocapsidSpodoptera frugiperda multiple nucleopolyhedrovirus (SfMNPV)Gene030304 developmental biology0303 health sciencesGenes Essential[SDV.BA.MVSA]Life Sciences [q-bio]/Animal biology/Veterinary medicine and animal HealthMultidisciplinaryNucleocapsid organizationbiology030306 microbiologyfungiQVirionRbiology.organism_classificationVirologyNucleopolyhedroviruses3. Good healthViral replicationEssential geneLarvaDNA Viral[SDV.MP.VIR]Life Sciences [q-bio]/Microbiology and Parasitology/VirologyMedicinesf32Homologous recombinationResearch ArticlePLoS ONE
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Genotyping of a nosocomial outbreak of pandemic influenza A/H1N1 2009

2011

Background: Epidemiological surveys have revealed outbreaks of pandemic influenza A (H1N1) 2009 in several different contexts. Molecular characterization of the influenza virus could help to provide a more accurate description of these outbreaks. Objective: To genotype pandemic influenza A (H1N1) 2009 isolates from an epidemiologically defined nosocomial outbreak. Study design: We sequenced the neuraminidase (NA) and hemagglutinin (HA) influenza A (H1N1) 2009 genes from ten HIV-positive patients involved in an epidemiologically defined outbreak in the Clinical Microbiology and Infectious Diseases (CMID) Department. Sequences were aligned to search for specific genetic features of the involv…

Genotyping TechniquesGenotypeMolecular Sequence DataNeuraminidaseHemagglutinin Glycoproteins Influenza VirusContext (language use)medicine.disease_causePandemic H1N1Disease OutbreaksViral ProteinsInfluenza A Virus H1N1 SubtypeVirologyPandemicHIV SeropositivityInfluenza HumanInfluenza A virusmedicineHumansViral ProteinSequencingHemagglutinin Glycoproteins Influenza ViruPandemicsGenotypingPhylogenyCross InfectionDisease OutbreakbiologyPandemicCoinfectionTransmissibilityOutbreakvirus diseasesOutbreakVirologyInfluenza A virus subtype H5N1Infectious DiseasesAmino Acid SubstitutionMutationbiology.proteinHuman mortality from H5N1Genotyping TechniqueNeuraminidaseHuman
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Viral membrane protein topology is dictated by multiple determinants in its sequence.

2009

The targeting, insertion, and topology of membrane proteins have been extensively studied in both prokaryotes and eukaryotes. However, the mechanisms used by viral membrane proteins to generate the correct topology within cellular membranes are less well understood. Here, the effect of flanking charges and the hydrophobicity of the N-terminal hydrophobic segment on viral membrane protein topogenesis are examined systematically. Experimental data reveal that the classical topological determinants have only a minor effect on the overall topology of p9, a plant viral movement protein. Since only a few individual sequence alterations cause an inversion of p9 topology, its topological stability …

GlycosylationViral proteinProtein ConformationMolecular Sequence DataMembrane ProteinsComputational biologyBiologyViral membranemedicine.disease_causeTransloconViral ProteinsProtein structureBiochemistryMembrane proteinStructural BiologyMembrane topologymedicineAmino Acid SequenceProtein topologyMolecular BiologyTopology (chemistry)Journal of molecular biology
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Membrane insertion and topology of the p7B movement protein of Melon Necrotic Spot Virus (MNSV)

2007

AbstractCell-to-cell movement of the Melon Necrotic Spot Virus (MNSV) is controlled by two small proteins working in trans, an RNA-binding protein (p7A) and an integral membrane protein (p7B) separated by an amber stop codon. p7B contains a single hydrophobic region. Membrane integration of this region was observed when inserted into model proteins in the presence of microsomal membranes. Furthermore, we explored the topology and targeting mechanisms of full-length p7B. Here we present evidence that p7B integrates in vitro into the ER membrane cotranslationally and with an Nt-cytoplasmic/Ct-luminal orientation. The observed topology was monitored in vivo by fusing GFP to the Ct of p7B, enab…

Green Fluorescent ProteinsPlant virusBiologyTopologyEndoplasmic ReticulumGreen fluorescent proteinViral ProteinsVirologyMovement proteinIntegral membrane proteinMelon necrotic spot virusEndoplasmic reticulumCarmovirusProteïnes de membranaMembrane Proteinsbiology.organism_classificationMembrane integrationMembrane protein topologyVirusPlant Viral Movement ProteinsMovement proteinsCucurbitaceaeMembraneMembrane proteinCarmovirusMNSVVirology
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Hepatitis B virus maturation is sensitive to functional inhibition of ESCRT-III, Vps4, and gamma 2-adaptin.

2007

ABSTRACT Hepatitis B virus (HBV) is an enveloped DNA virus that presumably buds at intracellular membranes of infected cells. HBV budding involves two endocytic host proteins, the ubiquitin-interacting adaptor γ2-adaptin and the Nedd4 ubiquitin ligase. Here, we demonstrate that HBV release also requires the cellular machinery that generates internal vesicles of multivesicular bodies (MVBs). In order to perturb the MVB machinery in HBV-replicating liver cells, we used ectopic expression of dominant-negative mutants of different MVB components, like the ESCRT-III complex-forming CHMP proteins and the Vps4 ATPases. Upon coexpression of mutated CHMP3, CHMP4B, or CHMP4C forms, as well as of ATPa…

Hepatitis B virusVacuolar Proton-Translocating ATPasesEndosomeImmunologyEndocytic cycleVesicular Transport Proteinsmacromolecular substancesEndosomesmedicine.disease_causeMicrobiologyESCRTVirusCell LineViral ProteinsVirologymedicineHumansAdaptor Protein Complex gamma SubunitsHepatitis B virusAdenosine TriphosphatasesMicroscopy ConfocalbiologyEndosomal Sorting Complexes Required for TransportVirus AssemblyDNA virusMolecular biologyUbiquitin ligaseCell biologyGenome Replication and Regulation of Viral Gene ExpressionMicroscopy FluorescenceInsect Sciencebiology.proteinHepatocytesATPases Associated with Diverse Cellular ActivitiesEctopic expressionJournal of virology
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Characterization of cell lines carrying self-replicating hepatitis C virus RNAs.

2001

ABSTRACT Subgenomic selectable RNAs of the hepatitis C virus (HCV) have recently been shown to self-replicate to high levels in the human hepatoma cell line Huh-7 (V. Lohmann, F. Körner, J. O. Koch, U. Herian, L. Theilmann, and R. Bartenschlager, Science 285:110–113, 1999). Taking advantage of this cell culture system that allows analyses of the interplay between HCV replication and the host cell, in this study we characterized two replicon-harboring cell lines that have been cultivated for more than 1 year. During this time, we observed no signs of cytopathogenicity such as reduction of growth rates or ultrastructural changes. High levels of HCV RNAs were preserved in cells passaged under…

Hepatitis C virusImmunoelectron microscopyImmunologyHepacivirusBiologyViral Nonstructural Proteinsmedicine.disease_causeVirus ReplicationMicrobiologyViral ProteinsVirologymedicineTumor Cells CulturedHumansRepliconPhosphorylationNS5ARNAVirologyMolecular biologyVirus-Cell InteractionsNS2-3 proteaseViral replicationCell cultureInsect ScienceRNA ViralRepliconJournal of virology
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Looking for pathways related to COVID-19 phenotypes: Confirmation of pathogenic mechanisms by SARS-CoV-2 - Host interactome

2020

AbstractIn the last months, many studies have clearly described several mechanisms of SARS-CoV-2 infection at cell and tissue level. Host conditions and comorbidities were identified as risk factors for severe and fatal disease courses, but the mechanisms of interaction between host and SARS-CoV-2 determining the grade of COVID- 19 severity, are still unknown.We provide a network analysis on protein–protein interactions (PPI) between viral and host proteins to better identify host biological responses, induced by both whole proteome of SARS-CoV-2 and specific viral proteins. A host-virus interactome was inferred on published PPI, using an explorative algorithm (Random Walk with Restart) tri…

Host (biology)Viral proteinvirusesCellComputational biologyBiologymedicine.disease_causePhenotypeInteractomePathogenesismedicine.anatomical_structureProteomemedicineViral Accessory Proteins
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