Search results for "BILAYER"

showing 10 items of 391 documents

Computer Simulations of the Electric Interactions between the Phospholipid Head-Groups and Ionic Admixtures in the Membrane Surface

2001

Some phospholipids (e.g. lecithin) form a system of electric dipoles on the membrane surface layer. In the case of lecithin the positive dipole charge is located on the choline and the negative one on the phosphoric molecule group. These dipoles are arranged almost parallel to the membrane surface. Taking the dipole membrane structure as a base for further investigations, a computer model of the electrostatic interaction between the dipole system and the ionic admixture was investigated. The model presumes hexagonal centered or a rectangular flat geometry of the 121 dipoles distribution. The dipoles may rotate freely around round the motionless symmetry axis perpendicular to the system surf…

Thermodynamic equilibriumChemistryLipid BilayersStatic ElectricityBinding energyAnalytical chemistryIonic bondingCharge (physics)Models TheoreticalModels BiologicalMolecular physicsGeneral Biochemistry Genetics and Molecular BiologyIonKineticsElectric dipole momentDipolePhosphatidylcholinesThermodynamicsMoleculeComputer SimulationPhospholipidsZeitschrift für Naturforschung C
researchProduct

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
researchProduct

Cholesterol Modulates the Interaction of β-Amyloid Peptide with Lipid Bilayers

2009

The interaction of an amphiphilic, 40-amino acid beta-amyloid (Abeta) peptide with liposomal membranes as a function of sterol mole fraction (X(sterol)) was studied based on the fluorescence anisotropy of a site-specific membrane sterol probe, dehydroergosterol (DHE), and fluorescence resonance energy transfer (FRET) from the native Tyr-10 residue of Abeta to DHE. Without Abeta, peaks or kinks in the DHE anisotropy versus X(sterol) plot were detected at X(sterol) approximately 0.25, 0.33, and 0.53. Monomeric Abeta preserved these peaks/kinks, but oligomeric Abeta suppressed them and created a new DHE anisotropy peak at X(sterol) approximately 0.38. The above critical X(sterol) values coinci…

Time FactorsLipid BilayersMolecular Sequence DataBiophysicsPeptideFluorescence Polarization7. Clean energy03 medical and health scienceschemistry.chemical_compound0302 clinical medicineAlzheimer DiseaseErgosterolFluorescence Resonance Energy TransferAmino Acid SequenceLipid bilayer030304 developmental biologychemistry.chemical_classification0303 health sciencesLiposomeAmyloid beta-PeptidesChemistryCholesterolSterolPeptide FragmentsCrystallographyFörster resonance energy transferMembraneCholesterolCell BiophysicsTyrosinelipids (amino acids peptides and proteins)030217 neurology & neurosurgeryFluorescence anisotropyProtein BindingBiophysical Journal
researchProduct

Partially Reversible Adsorption of Annexin A1 on POPC/POPS Bilayers Investigated by QCM Measurements, SFM, and DMC Simulations

2005

The kinetics of annexin A1 binding to solid-supported lipid bilayers consisting of 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC)/1-palmitoyl-2-oleoyl-sn-glycero-3-phosphoserine (POPS; 4:1) has been investigated as a function of the calcium ion concentration in the bulk phase. Quartz crystal microbalance measurements in conjunction with scanning force microscopy, fluorescence microscopy, and computer simulations indicate that at a given Ca2+ concentration annexin A1 adsorbs irreversibly on membrane domains enriched in POPS. By contrast, annexin A1 adsorbs reversibly on the POPC-enriched phase, which is composed of single POPS molecules embedded within a POPC matrix. The overall are…

Time FactorsSurface PropertiesLipid BilayersKineticsAnalytical chemistryBiosensing TechniquesPhosphatidylserinesMicroscopy Atomic ForceBiochemistrychemistry.chemical_compoundAdsorptionPhase (matter)MicroscopyComputer SimulationParticle SizeLipid bilayerMolecular BiologyPOPCAnnexin A1ChemistryOrganic Chemistrytechnology industry and agricultureMembranes ArtificialQuartz crystal microbalanceMembraneMicroscopy FluorescencePhosphatidylcholinesMolecular Medicinelipids (amino acids peptides and proteins)AdsorptionStress MechanicalMonte Carlo MethodChemBioChem
researchProduct

Interaction of an odorant lactone with model phospholipid bilayers and its strong fluidizing action in yeast membrane

2003

International audience; Some odorant lactones are naturally present in fruits or in fermented products; they can also be used as food additives and can be produced by microorganisms at the industrial scale by biotechnological processes. Gamma-decalactone was previously shown to have antimicrobial properties. We determined by infrared spectroscopy measurements that this compound rapidly diffused into model phospholipid bilayers (within 2 min), modifying the general physical state of a dimyristoyl-L-alpha-phosphatidylcholine (DMPC) film. In vivo, the lactone strongly increased membrane fluidity in the model yeast Yarrowia lipolytica, as evaluated by fluorescence anisotropy measurements. This …

Time Factors[SDV.BIO]Life Sciences [q-bio]/BiotechnologyLipid BilayersYarrowiaMESH : Models BiologicalLactonesMESH : Spectroscopy Fourier Transform InfraredMESH: Dimyristoylphosphatidylcholinechemistry.chemical_compoundMESH : DimyristoylphosphatidylcholineSpectroscopy Fourier Transform InfraredMembrane fluidityOrganic chemistryMESH : Anti-Bacterial Agents[INFO.INFO-BT]Computer Science [cs]/BiotechnologyAntibacterial agentMESH : Spectrometry FluorescencebiologyMESH: Lipid BilayersMESH: Indicators and Reagentsfood and beveragesGeneral MedicineAnti-Bacterial AgentsMESH : LactonesMembraneBenzyl alcoholDimyristoylphosphatidylcholine[ INFO.INFO-BT ] Computer Science [cs]/BiotechnologyMESH: LactonesMESH: Spectrometry FluorescenceMESH : Time FactorsMESH : YarrowiaPhospholipid[SDV.BC]Life Sciences [q-bio]/Cellular BiologyModels BiologicalMicrobiologyMESH: Spectroscopy Fourier Transform InfraredMESH : Indicators and ReagentsMESH: Anti-Bacterial Agents[ SDV.BC ] Life Sciences [q-bio]/Cellular BiologyMESH: Time FactorsMESH: Models Biological[ SDV.BIO ] Life Sciences [q-bio]/BiotechnologyYarrowiaBiological membranebiology.organism_classificationYeastSpectrometry FluorescencechemistryIndicators and ReagentsMESH: YarrowiaMESH : Lipid BilayersFood ScienceInternational Journal of Food Microbiology
researchProduct

Receptors Linked to Hydrolysis of Choline Phospholipids: the Role of Phospholipase D in a Putative Mechanism of Signal Transduction

1990

The structure and basic functions of biomembranes are essentially determined by the lipid bilayer. In contrast, specific membrane functions, such as signal recognition and transduction and transport processes, have been preferentially attributed to proteins that are embedded in the outer or inner leaflet of this bilayer or may span the membrane up to five times or more, as in the case of receptor molecules. The segregating view of membrane protein and lipid functions may have delayed a broad research interest in the dynamic interactions between these components of the membrane. The present review is devoted to such a recently discovered interaction: the coupling of receptor activation and h…

Transduction (biophysics)MembraneMembrane proteinPhospholipase DChemistryBilayerSignal transductionGlycerophospholipidsLipid bilayerCell biology
researchProduct

Lipids of the Plant Plasma Membrane

2010

The plasma membrane (PM) is arguably the most diverse membrane of the plant cell. Furthermore, the protein and lipid composition of the PM varies with cell type, developmental stage, and environment. Physical properties of lipids and associate proteins allow the formation of a barrier that is selectively permeable to macromolecules and solutes. As the plasma membrane delineates the interface between the cell and the environment, it is the primary part of signal recognition and transduction into intracellular responses for nutritional uptake/distribution, environmental responses, and developmental signaling. Many essential PM functions are carried out by proteinaceous components. However, PM…

Transduction (genetics)medicine.anatomical_structureMembraneCellmedicineMembrane fluidityMembrane raftSemipermeable membraneBiologyLipid bilayerIntracellularCell biology
researchProduct

Lipid phase transition in saccharide-coated cholate-containing liposomes: coupling to the surrounding matrix.

2005

We performed FTIR measurements on cholate-containing liposomes (CCL) embedded in saccharide (trehalose or sucrose) matrixes with different contents of residual water. We obtained information on the CCL phase transition following the thermal evolution (310-70 K) of the IR spectrum of the carbonyl moieties of phospholipids in the frequency range 4225-4550 cm(-1). Furthermore, we simultaneously followed the thermal evolution of the water association band, which gave information on the behavior of the surrounding water-saccharide matrix. The analysis revealed a small sub-band of the water association band present in CCL but not in cholate-free liposomes, the thermal evolution of which is tightl…

Trehalose Liposomes Thermal behaviourSucroseSucroseSurface PropertiesLipid BilayersPhospholipidInfrared spectroscopydigestive systemPermeabilityPhase Transitionchemistry.chemical_compoundDrug Delivery Systemsstomatognathic systemHydrophilySpectroscopy Fourier Transform InfraredElectrochemistryGeneral Materials ScienceLipid bilayer phase behaviorFourier transform infrared spectroscopySpectroscopyPhospholipidsLiposomeChromatographydigestive oral and skin physiologyTemperatureTrehaloseWaterSurfaces and InterfacesCondensed Matter PhysicsTrehaloseSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)chemistryLiposomesCholatesHydrophobic and Hydrophilic InteractionsLangmuir : the ACS journal of surfaces and colloids
researchProduct

Effect of tin and lead chlorotriphenyl analogues on fruit fly Drosophila hydei and liposomes membrane

2011

This article presents the results of a study investigating the biological activity of triphenyltin chloride (TPhT) and two metalloorganic compounds, triphenyllead chloride (TPhL) and triphenylmethane chloride (TPhC), in their interaction with model membranes and the living organisms of fruit flies Drosophila hydei. The study of model membranes (sonicated liposomes) was conducted using the electron spin resonance (ESR) spin probe technique, whereas the experiment on fruit flies involved investigating their viability on media containing the studied compounds. The test results clearly demonstrate that TPhT affects fruit flies more actively than TPhL (complete lethality after 7 days of culture …

Triphenyltin chlorideHealth Toxicology and MutagenesisToxicologyBiochemistryChloridechemistry.chemical_compoundOrganometallic CompoundsOrganotin CompoundsmedicineAnimalsLipid bilayerMolecular BiologyDrosophilaLiposomeTriphenylmethanebiologyCell MembranefungiElectron Spin Resonance SpectroscopyTrityl CompoundsGeneral Medicinebiology.organism_classificationMembraneLeadBiochemistrychemistryTinLiposomesModels AnimalDrosophila hydeiMolecular MedicineDrosophilamedicine.drugJournal of Biochemical and Molecular Toxicology
researchProduct

Effect of Chlorotriphenyl Derivatives of Sn and Pb upon Biophysical Properties of Membranes

2009

Biophysical activity of two twin organometallic compounds Triphenyltin chloride (TPhT) and Triphenyllead chloride (TPhL) in their interreaction with model membranes, as well as with yeast cellsSaccharomyces cerevisiae, was investigated. Four measurement methods were used in the experiments: two physical methods (spin probes method and the electric method); two biological methods (minimal inhibitory concentration /MIC/ and yeast survival test). It has been found that the activity of TPhT in interaction with model membranes and yeast cells is distinctly greater than that of TPhL. The activity manifests itself by considerable increase in the fluidity of the middle part of liposome bilayer, cha…

Triphenyltin chlorideTime FactorsArticle SubjectCell SurvivalHealth Toxicology and Mutagenesislcsh:BiotechnologySaccharomyces cerevisiaelcsh:MedicineSaccharomyces cerevisiaelcsh:Chemical technologylcsh:TechnologyBiophysical PhenomenaMembrane PotentialsCell membranechemistry.chemical_compoundlcsh:TP248.13-248.65GeneticsmedicineOrganometallic CompoundsOrganotin Compoundslcsh:TP1-1185Molecular BiologyLiposomebiologyChemistrylcsh:TBilayerCell Membranelcsh:RElectron Spin Resonance SpectroscopyLauric AcidsGeneral Medicinebiology.organism_classificationLauric acidYeastMembranemedicine.anatomical_structureBiochemistryLiposomesBiophysicsMolecular MedicineBiotechnologyResearch ArticleJournal of Biomedicine and Biotechnology
researchProduct