Search results for "Host cell surface"

showing 6 items of 6 documents

Anti-HIV-1 activity of inorganic polyphosphates.

1997

Human blood plasma, serum, peripheral blood mononuclear cells, and erythrocytes contain significant amounts of inorganic polyphosphates (ranging from 53 to 116 microM, in terms of phosphate residues). Here we demonstrate that at higher concentrations linear polyphosphates display cytoprotective and antiviral activity. Sodium tetrapolyphosphate and the longer polymers, with average chain lengths of 15, 34, and 91 phosphate residues, significantly inhibited human immunodeficiency virus type 1 (HIV-1) infection of cells in vitro at concentrations > or = 33.3 microg/ml (> or = 283-324 microM phosphate residues), whereas sodium tripolyphosphate was ineffective. In the tested concentration range,…

ErythrocytesCell SurvivalSodiumT-LymphocytesImmunologychemistry.chemical_elementBiologyPeripheral blood mononuclear cellGiant CellsCell LineCell Fusionchemistry.chemical_compoundDrug StabilityPolyphosphatesVirologyImmunology and AllergyHumansHost cell surfaceSyncytiumCell fusionDose-Response Relationship DrugPolyphosphateBiological activityPhosphateBiochemistrychemistryHIV-1Leukocytes MononuclearCell DivisionJournal of acquired immune deficiency syndromes and human retrovirology : official publication of the International Retrovirology Association
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In situ structural analysis of SARS-CoV-2 spike reveals flexibility mediated by three hinges

2020

Flexible spikes The severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) spike protein enables viral entry into host cells by binding to the angiotensin-converting enzyme 2 (ACE2) receptor and is a major target for neutralizing antibodies. About 20 to 40 spikes decorate the surface of virions. Turoňová et al. now show that the spike is flexibly connected to the viral surface by three hinges that are well protected by glycosylation sites. The flexibility imparted by these hinges may explain how multiple spikes act in concert to engage onto the flat surface of a host cell. Science, this issue p. 203

In situElectron Microscope TomographyGlycanGlycosylationFlexibility (anatomy)virusesProtein domainPneumonia ViralHingeMolecular Dynamics SimulationBiologylaw.inventionBetacoronavirusProtein DomainslawTarget identificationmedicineHumansPandemicsResearch ArticlesHost cell surfaceMultidisciplinarySARS-CoV-2R-ArticlesCryoelectron MicroscopyBiochemCOVID-19MicrobioResearch HighlightCell biologymedicine.anatomical_structureSpike Glycoprotein Coronavirusbiology.proteinRecombinant DNASpike (software development)Protein MultimerizationStructural biologyCoronavirus InfectionsResearch ArticleScience (New York, N.y.)
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In situ structural analysis of SARS-CoV-2 spike reveals flexibility mediated by three hinges

2020

AbstractThe spike (S) protein of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is required for cell entry and is the major focus for vaccine development. We combine cryo electron tomography, subtomogram averaging and molecular dynamics simulations to structurally analyze Sin situ. Compared to recombinant S, the viral S is more heavily glycosylated and occurs predominantly in a closed pre-fusion conformation. We show that the stalk domain of S contains three hinges that give the globular domain unexpected orientational freedom. We propose that the hinges allow S to scan the host cell surface, shielded from antibodies by an extensive glycan coat. The structure of native S contr…

In situHost cell surfaceGlycanFlexibility (anatomy)biologyChemistrySevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)HingeComputational biologymedicine.anatomical_structuremedicinebiology.proteinCryo-electron tomographySpike (software development)
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Entry of Human Parechovirus 1

2001

ABSTRACT Human parechovirus 1 (HPEV-1) is a prototype member of parechoviruses, a recently established picornavirus genus. Although there is preliminary evidence that HPEV-1 recognizes α V integrins as cellular receptors, our understanding of early events during HPEV-1 infection is still very limited. The aim of this study was to clarify the entry mechanisms of HPEV-1, including the attachment of the virus onto the host cell surface and subsequent internalization. In blocking experiments with monoclonal antibodies against different receptor candidates, antibodies against α V and β 3 integrin subunits, in particular in combination, appeared to be the most efficient ones in preventing the HPE…

PicornavirusEndosomeImmunologyEndocytic cycleGolgi ApparatusHuman parechovirus 1EndosomesPicornaviridaePlatelet Membrane GlycoproteinsEndoplasmic ReticulumVirus ReplicationCaveolinsMicrobiologyClathrinEEA103 medical and health sciencessymbols.namesakeCapsidAntigens CDVirologyTumor Cells CulturedHumans030304 developmental biologyHost cell surface0303 health sciencesbiology030302 biochemistry & molecular biologyIntegrin beta3Clathrin-Coated VesiclesIntegrin alphaVGolgi apparatusbiology.organism_classificationVirologyClathrinEndocytosisVirus-Cell Interactions3. Good healthCell biologyInsect Sciencesymbolsbiology.proteinReceptors VirusJournal of Virology
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An unexpected biomaterial against SARS-CoV-2: Bio-polyphosphate blocks binding of the viral spike to the cell receptor.

2021

Graphical abstract

PopulationSpike proteinmedicine.disease_causeVirusInorganic polyphosphate03 medical and health scienceschemistry.chemical_compoundResearch (Mid Blue)0302 clinical medicineNanoparticleViral envelopemedicineGeneral Materials ScienceReceptoreducation030304 developmental biologyCoronavirusComputingMethodologies_COMPUTERGRAPHICSHost cell surfacechemistry.chemical_classification0303 health scienceseducation.field_of_studySARS-CoV-2Mechanical EngineeringPolyphosphateCondensed Matter Physics3. Good healthCell biologyAmino acidchemistryMechanics of Materials030220 oncology & carcinogenesisPolyanionMaterials today (Kidlington, England)
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Lactococcal 949 group phages recognize a carbohydrate receptor on the host cell surface

2015

ABSTRACT Lactococcal bacteriophages represent one of the leading causes of dairy fermentation failure and product inconsistencies. A new member of the lactococcal 949 phage group, named WRP3, was isolated from cheese whey from a Sicilian factory in 2011. The genome sequence of this phage was determined, and it constitutes the largest lactococcal phage genome currently known, at 130,008 bp. Detailed bioinformatic analysis of the genomic region encoding the presumed initiator complex and baseplate of WRP3 has aided in the functional assignment of several open reading frames (ORFs), particularly that for the receptor binding protein required for host recognition. Furthermore, we demonstrate th…

Virus geneticsvirusesMolecular Sequence DataCarbohydratesGenetics and Molecular BiologyGenome ViralBiologyApplied Microbiology and BiotechnologyCarbohydrate receptorGenomeHost SpecificityCheesePhage groupBacteriophagesORFSHost cell surfaceWhole genome sequencingGeneticsPhages; CheeseEcologyLactococcus lactisOpen reading frameCarbohydrate MetabolismReceptors VirusPhageFood ScienceBiotechnologyProtein BindingSettore AGR/16 - Microbiologia Agraria
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