Search results for "Membrane Lipids"

showing 10 items of 80 documents

Energy-Linked Reactions Catalyzed by the Purified ATPase Complex (F0F1) from Rhodospirillum rubrum Chromatophores

1980

1. The isolation of the F0F1-ATPase complex from Rhodospirillum rubrum chromatophores by the use of taurodeoxycholate is described. 2. The enzyme preparation contains about 12 polypeptides; five are subunits of the F1 moiety. 3. The ATPase activity of the purified enzyme is dependent on the addition of phospholipids. 4. Km-vales for Mg2+-ATP and Ca2+-ATP are similar to the values obtained for the membrane-bound enzyme. 5. The F0F1-ATPase complex is more than 70% inhibited by oligomycin and N,N′-dicyclohexyl-carbodiimide. 6. The F0F1-ATPase complex was integrated into liposomes. The reconstituted proteoliposomes catalyzed energy transduction as shown by ATP-dependent quenching of acridine dy…

OligomycinMacromolecular SubstancesBiologyRhodospirillum rubrumBiochemistryFluorescenceMembrane Lipidschemistry.chemical_compoundAdenosine TriphosphateMoietyAdenosine Triphosphataseschemistry.chemical_classificationLiposomeQuenching (fluorescence)Cell-Free SystemUncoupling AgentsATPase complexRhodospirillum rubrumMembrane ProteinsBacterial Chromatophoresbiology.organism_classificationFluorescenceMolecular WeightEnzymeSolubilitychemistryBiochemistryLiposomesEuropean Journal of Biochemistry
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Filipin labelling and intramembrane particles on the membranes of early and later autophagic vacuoles in Ehrlich ascites cells

1987

Cholesterol and intramembrane particle distribution on autophagic vacuole membranes was studied in Ehrlich ascites cells using filipin labelling and freeze-fracture electron microscopy. Unsaturated fatty acids were stained using imidazole-buffered osmium tetroxide. Autophagocytosis was induced with vinblastine, and early autophagic vacuoles were accumulated by lowering the ATP level in the cells with iodoacetate. Filipin labelling was observed in the limiting membranes of later, apparently hydrolase-containing autophagic vacuoles, whereas the most newly-formed, doublemembrane limited vacuoles were not labelled. The limiting membranes of late, residual body-type vacuoles either showed patchy…

Osmium TetroxideIodoacetatesPolyenesVacuoleBiologyVinblastineFilipinlaw.inventionMembrane LipidsMice03 medical and health scienceschemistry.chemical_compoundPhagocytosislawAutophagyAnimalsFreeze FracturingFilipinCarcinoma Ehrlich Tumor030304 developmental biology0303 health sciencesStaining and LabelingCholesterolEndoplasmic reticulum030302 biochemistry & molecular biologyAutophagyImidazolesMembrane ProteinsIntracellular MembranesCell biologyOrganoidsMicroscopy ElectronCholesterolMembranechemistryOsmium tetroxideVacuolesElectron microscopeVirchows Archiv B Cell Pathology Including Molecular Pathology
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Lipid nanoparticles as delivery vehicles for the Parietaria judaica major allergen Par j 2

2011

Maria Luisa Bondì1,*, Giovanna Montana2,*, Emanuela Fabiola Craparo3, Roberto Di Gesù3, Gaetano Giammona3, Angela Bonura2, Paolo Colombo21Istituto per lo Studio dei Materiali Nanostrutturati, 2Istituto di Biomedicina ed Immunologia Molecolare, Consiglio Nazionale delle Ricerche, 3Laboratory of Biocompatible Polymers, Dipartimento di Scienze e Tecnologie Molecolari e Biomolecolari Stembio, Università di Palermo, Palermo, Italy *These authors contributed equally to this workAbstract: Parietaria pollen is one of the major causes of allergic reaction in southern Europe, affecting about 30% of all allergic patients in this area. Specific immunotherapy is the only…

ParietariaMembrane lipidsBiophysicsPharmaceutical Sciencerecombinant allergensEnzyme-Linked Immunosorbent AssayBioengineeringmedicine.disease_causelaw.inventionBiomaterialsMembrane LipidsAllergenlawInternational Journal of NanomedicineParietaria judaica (Par j)Drug DiscoverySolid lipid nanoparticlemedicineHumansParticle SizePyrophosphatasesOriginal ResearchPlant ProteinsDrug Carriersallergic rhinitisbiologyPhosphoric Diester HydrolasesChemistryOrganic ChemistryRhinitis Allergic SeasonalGeneral MedicineAllergensbiology.organism_classificationMolecular biologyRecombinant ProteinsBasophilssolid lipid nanoparticlesBiochemistrySettore CHIM/09 - Farmaceutico Tecnologico Applicativodrug deliveryDrug deliveryParietaria judaicaRecombinant DNAsolid lipid nanoparticles Parietaria judaica (Par j) drug delivery recombinant allergens specific immunotherapy allergic rhinitis.NanoparticlesEmulsionsImmunotherapyDrug carrierspecific immunotherapyInternational Journal of Nanomedicine
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A lipocentric view of peptide-induced pores

2010

Although lipid membranes serve as effective sealing barriers for the passage of most polar solutes, nonmediated leakage is not completely improbable. A high activation energy normally keeps unassisted bilayer permeation at a very low frequency, but lipids are able to self-organize as pores even in peptide-free and protein-free membranes. The probability of leakage phenomena increases under conditions such as phase coexistence, external stress or perturbation associated to binding of nonlipidic molecules. Here, we argue that pore formation can be viewed as an intrinsic property of lipid bilayers, with strong similarities in the structure and mechanism between pores formed with participation …

Pore Forming Cytotoxic ProteinsCell Membrane PermeabilityMembrane permeabilityMembrane lipidsPore energeticsBiophysicsThermal fluctuationsReviewMolecular Dynamics SimulationSurface tensionMembrane LipidsAnti-Infective AgentsLipid bilayerChemistryBilayerLipidic poreGeneral MedicinePermeationCrystallographyMembrane permeabilityMembraneBiophysicsAntimicrobial peptidePore structurePorosityPore-forming proteinsEuropean Biophysics Journal
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Correct oligomerization is a prerequisite for insertion of the central molecular domain of staphylococcal α-toxin into the lipid bilayer

1995

Staphylococcal alpha-toxin is a primarily hydrophilic molecule that binds as a monomer to target membranes and then aggregates to form amphiphilic oligomers that represent water-filled transmembrane channels. Current evidence indicates that a region located in the center of the molecule inserts deeply into the bilayer. In the present study, we sought to determine whether membrane insertion was triggered by the oligomerization process, and whether insertion correlated with pore formation. Double mutants of alpha-toxin were prepared in which His-35 was replaced by Arg, and cysteine residues were introduced at positions 69, 130 and 186. Substitution of His-35 with Arg rendered the toxin molecu…

Pore formationBacterial ToxinsLipid BilayersMolecular ConformationBiophysics(Staphylococcus)Arginineα-ToxinBiochemistryHemolysin ProteinsMembrane Lipidschemistry.chemical_compound2-NaphthylamineAmphiphileOligomerizationCysteineLipid bilayerFluorescent DyesTransmembrane channelsPore-forming toxinBilayerCell BiologyMembraneMonomerchemistryBiochemistryMutationPore-forming toxinBiophysicsMembrane insertionCysteineBiochimica et Biophysica Acta (BBA) - Biomembranes
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The membrane environment modulates self-association of the human GpA TM domain--implications for membrane protein folding and transmembrane signaling.

2010

Abstract The influence of lipid bilayer properties on a defined and sequence-specific transmembrane helix–helix interaction is not well characterized yet. To study the potential impact of changing bilayer properties on a sequence-specific transmembrane helix–helix interaction, we have traced the association of fluorescent-labeled glycophorin A transmembrane peptides by fluorescence spectroscopy in model membranes with varying lipid compositions. The observed changes of the glycophorin A dimerization propensities in different lipid bilayers suggest that the lipid bilayer thickness severely influences the monomer–dimer equilibrium of this transmembrane domain, and dimerization was most effici…

Protein FoldingLipid BilayersMolecular Sequence DataBiophysicsGpABiochemistryFluorescenceMembrane LipidsOrientations of Proteins in Membranes databaseMembrane fluidityFluorescence Resonance Energy TransferHumansAmino Acid SequenceGlycophorinsBilayerLipid bilayerIntegral membrane proteinBinding SitesChemistryBilayerPeripheral membrane proteinTemperatureMembrane ProteinsCell BiologyTransmembrane proteinCell biologyTransmembrane domainCholesterolSpectrometry FluorescenceFRETPhosphatidylcholineslipids (amino acids peptides and proteins)Transmembrane helix–helix interactionProtein MultimerizationPeptidesHydrophobic and Hydrophilic InteractionsSignal TransductionBiochimica et biophysica acta
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Clathrin-independent entry of baculovirus triggers uptake of E. coli in non-phagocytic human cells

2008

The prototype baculovirus, Autographa californica multiple nucleopolyhedrovirus, an insect pathogen, holds great potential as a gene therapy vector. To develop transductional targeting and gene delivery by baculovirus, we focused on characterizing the nature and regulation of its uptake in human cancer cells. Baculovirus entered the cells along fluid-phase markers from the raft areas into smooth-surfaced vesicles devoid of clathrin. Notably, regulators associated with macropinocytosis, namely EIPA, Pak1, Rab34, and Rac1, had no significant effect on viral transduction, and the virus did not induce fluid-phase uptake. The internalization and nuclear uptake was, however, affected by mutants o…

RHOASciencevirusesmedia_common.quotation_subjecteducationGene deliveryClathrinCell LineMembrane Lipids03 medical and health sciencesPhagocytosisCell Biology/Membranes and SortingViral entryVirologyEscherichia coliBiochemistry/Cell Signaling and Trafficking StructuresHumansInternalization030304 developmental biologymedia_commonAdenosine Triphosphatases0303 health sciencesMultidisciplinaryBase SequencebiologyADP-Ribosylation FactorsQ030302 biochemistry & molecular biologyHEK 293 cellsRTransfectionMolecular biologyClathrinEndocytosisNucleopolyhedroviruses3. Good healthCell biologyvirologiaADP-Ribosylation Factor 6Cell culturebiology.proteinMedicineRNA InterferenceResearch Article
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Lipid and phase specificity of α-toxin from S. aureus

2013

AbstractThe pore forming toxin Hla (α-toxin) from Staphylococcus aureus is an important pathogenic factor of the bacterium S. aureus and also a model system for the process of membrane-induced protein oligomerisation and pore formation. It has been shown that binding to lipid membranes at neutral or basic pH requires the presence of a phosphocholine-headgroup. Thus, sphingomyelin and phosphatidylcholine may serve as interaction partners in cellular membranes. Based on earlier studies it has been suggested that rafts of sphingomyelin are particularly efficient in toxin binding. In this study we compared the oligomerisation of Hla on liposomes of various lipid compositions in order to identif…

Staphylococcus aureusPore formationLiquid ordered phaseBacterial ToxinsLipid BilayersBiophysicsBiologyBiochemistryPhase Transitionchemistry.chemical_compoundHemolysin ProteinsMembrane LipidsMembrane MicrodomainsPhosphatidylcholineBinding siteLipid raftUnilamellar LiposomesPore-forming toxinLiposomeArtificial membranesBinding SitesCell MembraneOligomerisationCell BiologyS. aureusSphingomyelinsMembraneBiochemistrychemistryMicroscopy FluorescenceMutationPhosphatidylcholineslipids (amino acids peptides and proteins)Protein MultimerizationToxinSphingomyelinBiochimica et Biophysica Acta (BBA) - Biomembranes
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Surface topography of membrane domains

2010

金沢大学理工研究域数物科学系

Surface (mathematics)Supported lipid bilayerMaterials scienceLipid BilayersBiophysicsNanotechnologyMicroscopy Atomic ForceBiochemistryMembrane LipidsAtomic force microscopyMembrane MicrodomainsAnimalsHumansMesoscopic physicsSphingolipidsAtomic force microscopyLipid microdomainMicroscopic levelMembrane ProteinsBiological membraneCell BiologyLangmuir Blodgett filmCharacterization (materials science)MembraneCholesterolMembrane domainBiochimica et Biophysica Acta - Biomembranes
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The effect of long-chain bases on polysialic acid-mediated membrane interactions

2011

AbstractNegatively-charged polysialic acid (polySia) chains are usually membrane-bound and are often expressed on the surface of neuroinvasive bacterial cells, neural cells, and tumor cells. PolySia can mediate both repulsive and attractive cis interactions between membrane components, and trans interactions between membranes. Positively-charged long-chain bases are widely present in cells, are often localized in membranes and can function as bioactive lipids. Here we use Langmuir monolayer technique, fluorescence spectroscopy and electron microscopy of lipid vesicles to study the role of a simple long-chain base, octadecylamine (ODA), in both cis and trans interactions mediated by polySia …

Time FactorsLipid BilayersBiophysicsPolysialic acidPhospholipid monolayerBiochemistryFluorescenceMembrane LipidsMicroscopy Electron TransmissionMonolayerPressureElectron microscopyMoleculeAminesLipid bilayerLiposomeModels StatisticalChemistryPolysialic acidVesicleCell MembraneOctadecylamineCell BiologyHydrogen-Ion ConcentrationHydrocarbonsLiposomeMicroscopy ElectronSpectrometry FluorescenceMembraneBiochemistryLiposomesPhosphatidylcholinesSialic AcidsBiophysicsThermodynamicsCis–trans isomerismBiochimica et Biophysica Acta (BBA) - Biomembranes
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