Search results for "fluorescent dye"

showing 10 items of 264 documents

Filling the “green gap” of the major light-harvesting chlorophyll a/b complex by covalent attachment of Rhodamine Red

2009

AbstractThe major light-harvesting chlorophyll a/b complex (LHCII) greatly enhances the efficiency of photosynthesis in green plants. Recombinant LHCII can be assembled in vitro from its denatured, bacterially expressed apoprotein and plant pigments. This makes it an interesting candidate for biomimetic light-harvesting in photovoltaic applications. Due to its almost 20 pigments bound per apoprotein, LHCII absorbs efficiently in the blue and red spectral domains of visible light but less efficiently in the green domain, the so-called “green gap” in its absorption spectrum. Here we present a hybrid complex of recombinant LHCII with organic dyes that add to LHCII absorption in the green spect…

ChlorophyllLHCIIProtein FoldingFRET (Förster resonance energy transfer)Chlorophyll aAbsorption spectroscopyBiophysicsPhotosynthesisPhotochemistryBiochemistryRhodamineLight-harvesting complexchemistry.chemical_compoundPhotosynthesisFluorescent DyesRhodaminesChlorophyll Afood and beveragesSite-specific labelingCell BiologyMaleimide dyeB vitaminsSolar spectrumchemistryChlorophyllVisible spectrumBiochimica et Biophysica Acta (BBA) - Bioenergetics
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Cholesterol reporter molecules.

2007

Cholesterol is a major constituent of the membranes in most eukaryotic cells where it fulfills multiple functions. Cholesterol regulates the physical state of the phospholipid bilayer, affects the activity of several membrane proteins, and is the precursor for steroid hormones and bile acids. Cholesterol plays a crucial role in the formation of membrane microdomains such as “lipid rafts” and caveolae. However, our current understanding on the membrane organization, intracellular distribution and trafficking of cholesterol is rather poor. This is mainly due to inherent difficulties to label and track this small lipid. In this review, we describe different approaches to detect cholesterol in …

Cholesterol oxidaseBacterial ToxinsBiophysicsBiologyBiochemistryFilipinchemistry.chemical_compoundHemolysin ProteinsMembrane MicrodomainsCaveolaeAnimalsHumansFilipinLipid bilayerMolecular BiologyLipid raftFluorescent DyesCholesterolCholesterol OxidaseCholesterol bindingCell BiologyCholesterolEukaryotic CellschemistryMembrane proteinBiochemistryMolecular Probeslipids (amino acids peptides and proteins)Bioscience reports
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A new selective fluorogenic probe for trivalent cations.

2012

[EN] A new selective chromo-fluorogenic probe for Fe 3+, Cr 3+ and Al 3+ is reported. Detection limits are in the ¿M range and the fluorogenic sensing ability could be observed by the naked eye when illuminated with UV-light. No response is observed with divalent cations. © 2012 The Royal Society of Chemistry.

ChromiumAcetonitrilesIronComplex formationInorganic chemistryLithiumPhotochemistryArticleCatalysisDivalentSynthesischemistry.chemical_compoundQUIMICA ORGANICAUltraviolet visible spectroscopyChemical structureNickelUltraviolet spectroscopyFerric ionMaterials ChemistryFerrous ionFluoresceinFluorescent Dyeschemistry.chemical_classificationDetection limitChemistryZinc ionFerric ionQUIMICA INORGANICACopper ionMetals and AlloysComplex formationCobaltMercuryGeneral ChemistrySurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsIlluminationSpectrometry FluorescenceZinc ionCeramics and CompositesFluoresceinSpectrophotometry UltravioletNaked eyeCadmiumAluminumChemical communications (Cambridge, England)
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Amyloid fibrils formation and amorphous aggregation in Concanavalin A

2007

We here report an experimental study on the thermal aggregation process of concanavalin A, a protein belonging to the legume lectins family. The aggregation process and the involved conformational changes of the protein molecules were followed by means of fluorescence techniques, light scattering, circular dichroism, zeta potential measurements and atomic force microscopy. Our results show that the aggregation process of concanavalin A may evolve through two distinct pathways leading, respectively, to the formation of amyloids or amorphous aggregates. The relative extent of the two pathways is determined by pH, as amyloid aggregation is favored at high pH values ( approximately 9), while th…

Circular dichroismAmyloidLightBiophysicsProtein aggregationCircular dichroismMicroscopy Atomic ForceBiochemistryFluorescenceAtomic force microscopyZeta potentialConcanavalin AScattering RadiationBenzothiazolesProtein Structure QuaternaryFluorescent DyesbiologyChemistryAtomic force microscopyOrganic ChemistryThioflavin T fluorescenceHydrogen-Ion ConcentrationAmyloid fibrilFluorescenceAmorphous solidKineticsThiazolesCrystallographyConcanavalin Abiology.proteinProtein aggregation
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Characterization of the interaction between Actinin-Associated LIM Protein (ALP) and the rod domain of α-actinin

2009

Abstract Background The PDZ-LIM proteins are a family of signalling adaptors that interact with the actin cross-linking protein, α-actinin, via their PDZ domains or via internal regions between the PDZ and LIM domains. Three of the PDZ-LIM proteins have a conserved 26-residue ZM motif in the internal region, but the structure of the internal region is unknown. Results In this study, using circular dichroism and nuclear magnetic resonance (NMR), we showed that the ALP internal region (residues 107–273) was largely unfolded in solution, but was able to interact with the α-actinin rod domain in vitro, and to co-localize with α-actinin on stress fibres in vivo. NMR analysis revealed that the ti…

Circular dichroismPDZ domaineducationAmino Acid MotifsMolecular Sequence DataPlasma protein bindingActininmacromolecular substancesBiology03 medical and health sciences0302 clinical medicineCell Line TumorHumansActininAmino Acid Sequencelcsh:QH573-671Peptide sequenceActin030304 developmental biologyLIM domainFluorescent Dyes0303 health scienceslcsh:CytologyMicrofilament ProteinsCell BiologyLIM Domain ProteinsSurface Plasmon Resonancemusculoskeletal systemRecombinant ProteinsCell biologyProtein Structure TertiaryLHX3Peptides030217 neurology & neurosurgeryResearch ArticleProtein BindingBMC Cell Biology
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Structural characterisation of the natural membrane-bound state of melittin: a fluorescence study of a dansylated analogue

1997

Abstract The binding of a dansylated analogue of melittin (DNC–melittin) to natural membranes is described. The cytolytic peptide from honey bee venom melittin was enzymatically labelled in its glutamine-25 with the fluorescent probe monodansylcadaverine using guinea pig liver transglutaminase. The labelled peptide was characterised functionally in cytolytic assays, and spectroscopically by circular dichroism and fluorescence. The behaviour of DNC–melittin was, in all respects, indistinguishable from that of the naturally occurring peptide. We used resonance energy transfer to measure the state of aggregation of melittin on the membrane plane in synthetic and natural lipid bilayers. When bo…

Circular dichroismProtein ConformationGlutamineGuinea PigsLipid BilayersBiophysicsPeptideHemolysiscomplex mixturesBiochemistryMelittinchemistry.chemical_compoundCadaverinePhosphatidylcholineAnimalsHumansLipid bilayerFluorescent Dyeschemistry.chemical_classificationBinding SitesTransglutaminasesCircular DichroismDansyl labelingtechnology industry and agricultureMembrane structureMelittinFluorescence energy transferCell BiologyMelittenFluorescenceSpectrometry FluorescenceMembraneEnergy TransferLiverBiochemistrychemistryBiophysicslipids (amino acids peptides and proteins)Natural membraneLipid-protein interactionProtein BindingBiochimica et Biophysica Acta (BBA) - Biomembranes
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Organelle pH studies using targeted avidin and fluorescein–biotin

2000

Abstract Background: Mammalian organelles of the secretory pathway are of differing pH. The pH values form a decreasing gradient: the endoplasmic reticulum (ER) is nearly neutral, the Golgi is mildly acidic and the secretory granules are more acidic still (∼pH 5). The mechanisms that regulate pH in these organelles are still unknown. Results: Using a novel method, we tested whether differences in H + ‘leak' and/or counterion conductances contributed to the pH difference between two secretory pathway organelles. A pH-sensitive, membrane-permeable fluorescein–biotin was targeted to endoplasmic-reticulum- and Golgi-localized avidin-chimera proteins in HeLa cells. In live, intact cells, ER pH (…

Clinical BiochemistryBiotinGolgi ApparatusEndoplasmic ReticulumBiochemistrysymbols.namesakechemistry.chemical_compoundChloridesBiotinOrganelleDrug DiscoveryHumansMicroscopy ImmunoelectronMolecular BiologySecretory pathwayFluorescent DyesOrganellesPharmacologyIon TransportFlubi-2ChemistryEndoplasmic reticulumBafilomycinIntracellular MembranesGeneral MedicineHydrogen-Ion ConcentrationProton PumpsGolgi apparatusAvidinCytosolTargeted fluorescenceMembraneBiochemistryH+ pumpPotassiumsymbolsMolecular MedicineFluoresceinHeLa CellsH+ leakChemistry & Biology
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Probes for studying cholesterol binding and cell biology.

2011

Cholesterol is a multifunctional lipid in eukaryotic cells. It regulates the physical state of the phospholipid bilayer, is crucially involved in the formation of membrane microdomains, affects the activity of many membrane proteins, and is the precursor for steroid hormones and bile acids. Thus, cholesterol plays a profound role in the physiology and pathophysiology of eukaryotic cells. The cholesterol molecule has achieved evolutionary perfection to fulfill its different functions in membrane organization. Here, we review basic approaches to explore the interaction of cholesterol with proteins, with a particular focus on the high diversity of fluorescent and photoreactive cholesterol prob…

Clinical BiochemistryLipid BilayersBiologyBiochemistryCell membranechemistry.chemical_compoundEndocrinologyMembrane MicrodomainsmedicineAnimalsHumansLipid bilayerMolecular BiologyPhospholipidsG protein-coupled receptorFluorescent DyesPharmacologyCyclodextrinsBinding SitesCholesterolOrganic ChemistryCholesterol bindingCell MembraneMembrane ProteinsSterolSterol regulatory element-binding proteinCell biologymedicine.anatomical_structureCholesterolEukaryotic CellsMembrane proteinBiochemistrychemistryMolecular Probeslipids (amino acids peptides and proteins)Steroids
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In Vivo Imaging of Enteric Neuronal Networks in Humans Using Confocal Laser Endomicroscopy

2012

Confocal laser endomicroscopyPathologymedicine.medical_specialtyMicroscopy ConfocalHepatologyGastrointestinal Diseasesbusiness.industryConfocalGastroenterologyColonic PolypsMyenteric PlexusColonoscopySubmucous PlexusMicroscopymedicineHumansEnteric nervous systemAcriflavineNerve NetGastrointestinal MotilitybusinessPreclinical imagingFluorescent DyesGastroenterology
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Interaction ofEscherichia colihemolysin with biological membranes

2001

Escherichia coli hemolysin (HlyA) is a membrane-permeabilizing protein belonging to the family of RTX-toxins. Lytic activity depends on binding of Ca2(+) to the C-terminus of the molecule. The N-terminus of HlyA harbors hydrophobic sequences that are believed to constitute the membrane-inserting domain. In this study, 13 HlyA cysteine-replacement mutants were constructed and labeled with the polarity-sensitive fluorescent probe 6-bromoacetyl-2-dimethylaminonaphthalene (badan). The fluorescence emission of the label was examined in soluble and membrane-bound toxin. Binding effected a major blue shift in the emission of six residues within the N-terminal hydrophobic domain, indicating inserti…

Conformational changeProtein ConformationPlasma protein bindingBiologymedicine.disease_causeHemolysisBiochemistryHemolysin ProteinsProtein structureBacterial Proteins2-NaphthylamineEscherichia colimedicineCysteineCloning MolecularLipid bilayerEscherichia coliFluorescent DyesEscherichia coli ProteinsCell MembraneErythrocyte MembraneBiological membraneProtein Structure TertiarySpectrometry FluorescenceMembraneBiochemistryMutagenesisLiposomesChromatography GelCalciumElectrophoresis Polyacrylamide GelProtein BindingBinding domainEuropean Journal of Biochemistry
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