Search results for "RGD motif"

showing 8 items of 8 documents

The fibronectin synergy site re-enforces cell adhesion and mediates a crosstalk between integrin classes

2017

Fibronectin (FN), a major extracellular matrix component, enables integrin-mediated cell adhesion via binding of α5β1, αIIbβ3 and αv-class integrins to an RGD-motif. An additional linkage for α5 and αIIb is the synergy site located in close proximity to the RGD motif. We report that mice with a dysfunctional FN-synergy motif (Fn1syn/syn) suffer from surprisingly mild platelet adhesion and bleeding defects due to delayed thrombus formation after vessel injury. Additional loss of β3 integrins dramatically aggravates the bleedings and severely compromises smooth muscle cell coverage of the vasculature leading to embryonic lethality. Cell-based studies revealed that the synergy site is dispensa…

0301 basic medicineMouseQH301-705.5extracellular matrixScienceExtracellular matrix componentIntegrinHemorrhageGeneral Biochemistry Genetics and Molecular BiologyExtracellular matrixMice03 medical and health sciencesfibronectinAnimalsBiology (General)Cell adhesionRGD motifMice KnockoutGeneral Immunology and MicrobiologybiologyCell adhesion moleculeChemistryGeneral NeuroscienceQRThrombosiscell adhesionCell BiologyGeneral MedicineFibronectinsCell biologyFibronectinCrosstalk (biology)030104 developmental biologymechanosignalingImmunologyintegrinsbiology.proteinMedicineResearch ArticleeLife
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αv-Class integrin binding to fibronectin is solely mediated by RGD and unaffected by an RGE mutation.

2020

Fibronectin (FN) is an essential glycoprotein of the extracellular matrix; binds integrins, syndecans, collagens, and growth factors; and is assembled by cells into complex fibrillar networks. The RGD motif in FN facilitates cell binding and fibrillogenesis through binding to α5β1 and αv-class integrins. However, whether RGD is the sole binding site for αv-class integrins is unclear. Most notably, substituting aspartate with glutamate (RGE) was shown to eliminate integrin binding in vitro, while mouse genetics revealed that FNRGE preserves αv-class integrin binding and fibrillogenesis. To address this conflict, we employed single-cell force spectroscopy, engineered cells, and RGD motif–defi…

BioquímicaBiologiaIntegrin02 engineering and technologyBiologyBiochemistryArticleFocal adhesion03 medical and health sciencesMiceAnimalsReceptors VitronectinBinding siteCell adhesion030304 developmental biologyIntegrin bindingRGD motif0303 health sciencesCorrectionFibrillogenesisCell Biology021001 nanoscience & nanotechnologyMice Mutant StrainsCell biologyFibronectinMutationAdhesionbiology.protein0210 nano-technologyOligopeptidesThe Journal of cell biology
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A peptide inhibiting the collagen binding function of integrin alpha2I domain.

1999

Integrin alpha2 subunit forms in the complex with the beta1 subunit a cell surface receptor binding extracellular matrix molecules, such as collagens and laminin-1. It is a receptor for echovirus-1, as well. Ligands are recognized by the special "inserted" domain (I domain) in the integrin alpha2 subunit. Venom from a pit viper, Bothrops jararaca, has been shown to inhibit the interaction of platelet alpha2beta1 integrin with collagen because of the action of a disintegrin/metalloproteinase named jararhagin. The finding that crude B. jararaca venom could prevent the binding of human recombinant ralpha2I domain to type I collagen led us to study jararhagin further. Synthetic peptides represe…

EGF-like domainIntegrinIntegrin alpha2PeptideBiologyBiochemistryPeptides CyclicEuropiumAntigens CDCrotalid VenomsDisintegrinHumansAmino Acid SequenceMolecular BiologyRGD motifDNA Primerschemistry.chemical_classificationBase SequenceCell MembraneMetalloendopeptidasesCell BiologyCyclic peptideRecombinant ProteinsBiochemistrychemistryJararhaginbiology.proteinCollagenBinding domainThe Journal of biological chemistry
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α5β1 integrin-mediated adhesion to fibronectin is required for axis elongation and somitogenesis in mice.

2011

The arginine-glycine-aspartate (RGD) motif in fibronectin (FN) represents the major binding site for α5β1 and αvβ3 integrins. Mice lacking a functional RGD motif in FN (FN(RGE/RGE)) or α5 integrin develop identical phenotypes characterized by embryonic lethality and a severely shortened posterior trunk with kinked neural tubes. Here we show that the FN(RGE/RGE) embryos arrest both segmentation and axis elongation. The arrest is evident at about E9.0, corresponding to a stage when gastrulation ceases and the tail bud-derived presomitic mesoderm (PSM) induces α5 integrin expression and assumes axis elongation. At this stage cells of the posterior part of the PSM in wild type embryos are tight…

IntegrinsMesodermIntegrinEmbryonic Developmentlcsh:MedicineApoptosisBiochemistryMiceSomitogenesisMolecular Cell BiologyCell AdhesionParaxial mesodermmedicineAnimalsSignaling in Cellular ProcessesReceptors VitronectinCell adhesionlcsh:ScienceBiologyAxis elongationCell ProliferationRGD motifMultidisciplinarybiologyGastrulationlcsh:RGene Expression Regulation DevelopmentalCell DifferentiationMolecular DevelopmentFibronectinsExtracellular MatrixCell biologyFibronectinmedicine.anatomical_structureSomitesCytochemistrybiology.proteinlcsh:QOligopeptidesCell Movement SignalingProtein BindingResearch ArticleDevelopmental BiologySignal TransductionPLoS ONE
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RGD motifs on the surface of baculovirus enhance transduction of human lung carcinoma cells.

2006

Baculovirus vectors have been shown to enter a variety of mammalian cell lines and gene transfer with wild-type baculovirus (WT) has been demonstrated both in vitro and in vivo. Different protein motifs have been displayed on the viral surface to serve as ligands for cell-specific receptor molecules. We have generated recombinant baculovirus vectors displaying an RGD-motif, recognized by alphaV integrin, on the viral surface. The RGD motifs within the C-terminus of coxsackie virus A9 and human parechovirus 1 VP1 proteins were fused to the N-terminus of the major envelope glycoprotein, gp64, of Autographa californica multiple nucleopolyhedrovirus. The recombinant RGD-presenting viruses bound…

Lung NeoplasmsvirusesRecombinant Fusion ProteinsIntegrinBlotting WesternGenetic VectorsBioengineeringPlasma protein bindingTransfectionApplied Microbiology and Biotechnologylaw.inventionTransduction (genetics)lawCell Line TumorAnimalsHumansCells CulturedRGD motifMicroscopy ConfocalbiologyModels GeneticGeneral MedicineTransfectionMolecular biologyIntegrin alphaVbiology.proteinRecombinant DNALight emissionElectrophoresis Polyacrylamide GelBaculoviridaeOligopeptidesBiotechnologyProtein BindingJournal of biotechnology
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NMR Solution Structure of the Non-RGD Disintegrin Obtustatin

2003

The solution structure of obtustatin, a novel non-RGD disintegrin of 41 residues isolated from Vipera lebetina obtusa venom, and a potent and selective inhibitor of the adhesion of integrin alpha(1)beta(1) to collagen IV, has been determined by two-dimensional nuclear magnetic resonance. Almost the whole set of chemical shifts for 1H, 13C and 15N were assigned at natural abundance from 2D homonuclear and heteronuclear 500 MHz, 600 MHz and 800 MHz spectra at pH 3.0 recorded at 298 K and 303 K. Final structural constraints consisted of 302 non-redundant NOE (95 long-range, 60 medium, 91 sequential and 56 intra-residue), four disulfide bond distances, five chi1 dihedral angles and four hydroge…

Models MolecularProtein ConformationStereochemistryDisintegrinsMolecular Sequence DataStatic ElectricityViper VenomsDihedral angleCrystallography X-RayStructural BiologyDisintegrinAnimalsAmino Acid SequenceNuclear Magnetic Resonance BiomolecularMolecular BiologyProtein secondary structureConformational isomerismRGD motifMolecular StructureSequence Homology Amino AcidbiologyHydrogen bondChemistryCircular DichroismChemical shiftHydrogen BondingHydrogen-Ion ConcentrationSolutionsKineticsHeteronuclear moleculebiology.proteinOligopeptidesJournal of Molecular Biology
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Conformation and concerted dynamics of the integrin-binding site and the C-terminal region of echistatin revealed by homonuclear NMR

2005

Copyright © by Portland Press. The final version of record is available at http://www.biochemj.org/bj/default.htm

Protein ConformationStereochemistryIntegrinNMR protein dynamics determinationTripeptideBiochemistryHomonuclear moleculeOff-resonance rotating-frame Overhauser enhancement spectroscopy (off-resonance ROESY)Protein structureSide chainAnimalsNuclear Magnetic Resonance BiomolecularMolecular BiologyIntegrin bindingRGD motifchemistry.chemical_classificationBinding Sites:CIENCIAS DE LA VIDA::Bioquímica [UNESCO]ChemistryEchistatin integrinSnakesUNESCO::CIENCIAS DE LA VIDA::BioquímicaCell BiologyRGD disintegrin; Echistatin; Integrin; NMR protein dynamics determination; Off-resonance rotating-frame Overhauser enhancement spectroscopy (off-resonance ROESY)Protein Structure TertiaryAmino acidRGD disintegrinDocking (molecular)EchistatinIntercellular Signaling Peptides and ProteinsPeptidesResearch ArticleProtein Binding
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Improving baculovirus transduction of mammalian cells by surface display of a RGD-motif

2006

An RGD-containing peptide, comprising 23 amino acids from the foot-and-mouth disease virus (FMDV) VP1 protein was engineered into the envelope of Autographa californica nuclear polyhedrosis virus surface (AcNPV) using two different display strategies. The RGD-motif is a well-described tripeptide, that by binding to cell surface integrins facilitates virus entry into cells. This epitope was displayed, either by directly modifying the native major envelope protein gp64 of AcNPV, or by incorporating a second, modified version of gp64 onto the virus surface. Transduction efficiencies of four mammalian cell lines were compared by detecting the expression of the reporter gene green fluorescent pr…

Reporter genebiologyvirusesAmino Acid MotifsGenetic VectorsBioengineeringGeneral Medicinebiology.organism_classificationApplied Microbiology and BiotechnologyMolecular biologyRecombinant ProteinsVirusEpitopeGreen fluorescent proteinViral ProteinsTransduction (genetics)Autographa californicaTransduction GeneticViral entryAnimalsHumansBaculoviridaeOligopeptidesBiotechnologyRGD motifJournal of Biotechnology
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