Search results for "binding"

showing 10 items of 3896 documents

ChIP-Seq from Limited Starting Material of K562 Cells and Drosophila Neuroblasts Using Tagmentation Assisted Fragmentation Approach

2019

Chromatin immunoprecipitation is extensively used to investigate the epigenetic profile and transcription factor binding sites in the genome. However, when the starting material is limited, the conventional ChIP-Seq approach cannot be implemented. This protocol describes a method that can be used to generate the chromatin profiles from as low as 100 human or 1,000 Drosophila cells. The method employs tagmentation to fragment the chromatin with concomitant addition of sequencing adaptors. The method generates datasets with high signal to noise ratio and can be subjected to standard tools for ChIP-Seq analysis.

Strategy and ManagementMechanical EngineeringSystems biologyMetals and AlloysGenomicsComputational biologyGenomeIndustrial and Manufacturing EngineeringDNA sequencingChromatinDNA binding siteEpigenetic ProfileMethods ArticleChromatin immunoprecipitation
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High-resolution crystal structure of an avidin-related protein: insight into high-affinity biotin binding and protein stability.

2004

The chicken avidin gene belongs to an extended gene family encoding seven avidin-related genes (AVRs), of which only avidin is expressed in the chicken. The sequences of AVR4 and AVR5 are identical and the common protein (AVR4) has been expressed both in insect and bacterial systems. The recombinant proteins are similarly hyperthermostable and bind biotin with similarly high affinities. AVR4 was crystallized in the apo and biotin-complexed forms and their structures were determined at high resolution. Its tertiary and quaternary structures are very similar to those of avidin and streptavidin. Its biotin-binding site shows only a few alterations compared with those of avidin and streptavidin…

StreptavidinBiotin bindingHot TemperatureBiotinBiologylaw.inventionchemistry.chemical_compoundBiotinStructural BiologylawAnimalsProtein Structure QuaternaryThermostabilityBacteriaHydrogen BondingGeneral MedicineAvidinAffinitiesBiochemistrychemistryBiotinylationData Interpretation StatisticalBiophysicsRecombinant DNAbiology.proteinStreptavidinCrystallizationBaculoviridaeChickensAvidinProtein BindingActa crystallographica. Section D, Biological crystallography
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Specific interaction of desthiobiotin lipids and water-soluble biotin compounds with streptavidin

1991

As shown for biotin lipids (Ref. 1), the formation of perfect 2-D crystalline streptavidin domains can also be observed in the plane of desthiobiotin lipid monolayers. The binding constant of streptavidin with desthiobiotin (Ka = 5·1013 mol−1) is lower than that with biotin (Ka = 1015 mol−1) (Ref. 2). By adding free biotin into the subphase a competitive replacement and a detaching of the streptavidin domains from the desthiobiotin lipid monolayer takes place. Streptavidin domains built at receptor lipid monolayers are still functional. As could be shown, there are two biotin binding sites at each protein molecule that are fully accessible to biotin (Ref. 1). This can be proven by the inter…

StreptavidinBiotin bindingPolymers and PlasticsOrganic Chemistryfood and beveragesCondensed Matter PhysicsBinding constantchemistry.chemical_compoundBiochemistryBiotinchemistryBiotinylationMonolayerMaterials ChemistryBiophysicsBifunctionalLinkerMakromolekulare Chemie. Macromolecular Symposia
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Specific recognition and formation of two- dimensional streptavidin domains in monolayers: applications to molecular devices

1989

Abstract By virtue of the high-affinity specific interaction between the vitamin, biotin, and the protein, streptavidin, monolayers of synthetic lipids with biotin headgroups can tightly bind streptavidin at the lipid-water interface. Through this specific recognition fluorescently-labelled streptavidin spontaneously organizes in the plane of the interface to form large protein domains, directly visible in situ by fluorescence microscopy and exhibiting optical anisotropy. Further structural characterization has shown that these domains are two-dimensional protein crystals. Correlation with the known three-dimensional crystal structure of streptavidin indicates that two of streptavidin's fou…

StreptavidinBiotin bindingProtein domaintechnology industry and agricultureMetals and AlloysSurfaces and InterfacesSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundCrystallographyBiotinchemistryBiotinylationMonolayerMaterials ChemistryFluorescence microscopeProtein crystallizationThin Solid Films
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Production of Hev b5 as a fluorescent biotin-binding tripartite fusion protein in insect cells

2005

The presented green fluorescent protein and streptavidin core-based tripartite fusion system provides a simple and efficient way for the production of proteins fused to it in insect cells. This fusion protein forms a unique tag, which serves as a multipurpose device enabling easy optimization of production, one-step purification via streptavidin-biotin interaction, and visualization of the fusion protein during downstream processing and in applications. In the present study, we demonstrate the successful production, purification, and detection of a natural rubber latex allergen Hev b5 with this system. We also describe the production of another NRL allergen with the system, Hev b1, which fo…

StreptavidinBiotin bindingRecombinant Fusion ProteinsGreen Fluorescent ProteinsBiophysicsBiotinEnzyme-Linked Immunosorbent AssayNanotechnologySpodopteraBiologyBiochemistryChromatography AffinityGreen fluorescent protein03 medical and health scienceschemistry.chemical_compoundBiotinAnimalsMolecular BiologyDNA PrimersPlant Proteins030304 developmental biology0303 health sciencesInsect cellDownstream processingBase Sequence030302 biochemistry & molecular biologyCell BiologyAllergensAntigens PlantFusion proteinFluorescencechemistryBiochemistryBaculoviridaeBiochemical and Biophysical Research Communications
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Mutation of a critical tryptophan to lysine in avidin or streptavidin may explain why sea urchin fibropellin adopts an avidin-like domain

1999

Sea urchin fibropellins are epidermal growth factor homologues that harbor a C-terminal domain, similar in sequence to hen egg-white avidin and bacterial streptavidin. The fibropellin sequence was used as a conceptual template for mutation of designated conserved tryptophan residues in the biotin-binding sites of the tetrameric proteins, avidin and streptavidin. Three different mutations of avidin, Trp-110-Lys, Trp-70-Arg and the double mutant, were expressed in a baculovirus-infected insect cell system. A mutant of streptavidin, Trp-120-Lys, was similarly expressed. The homologous tryptophan to lysine (W--K) mutations of avidin and streptavidin were both capable of binding biotin and bioti…

StreptavidinBiotin bindingTime FactorsFunctional dimerLysineMutantBiophysicsBiotinEnzyme-Linked Immunosorbent AssayBiologyBiochemistrychemistry.chemical_compoundBiotinTetramerStructural BiologyGeneticsAnimalsMolecular BiologyExtracellular Matrix ProteinsBinding SitesEpidermal Growth FactorLysineAvidin-biotin technologyTemperatureTryptophanCell BiologyAvidinRecombinant ProteinsKineticsReversiblechemistryBiochemistryBiotinylationSea UrchinsMutationbiology.proteinRecombinant avidin and streptavidinStreptavidinBiotin-bindingAvidinChromatography LiquidProtein BindingFEBS Letters
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Engineering of chicken avidin: a progressive series of reduced charge mutants.

1998

Avidin, a positively charged egg-white glycoprotein, is a widely used tool in biotechnological applications because of its ability to bind biotin strongly. The high pI of avidin (approximately 10.5), however, is a hindrance in certain applications due to non-specific (charge-related) binding. Here we report a construction of a series of avidin charge mutants with pIs ranging from 9.4 to 4.7. Rational design of the avidin mutants was based on known crystallographic data together with comparative sequence alignment of avidin, streptavidin and a set of avidin-related genes which occur in the chicken genome. All charge mutants retained the ability to bind biotin tightly according to optical bio…

StreptavidinDNA ComplementaryHot TemperatureMutantBiophysicsBiotinSequence alignmentBiologySpodopteraProtein EngineeringBiochemistrychemistry.chemical_compoundstomatognathic systemBiotinStructural BiologyGeneticsAnimalsMolecular BiologyCharge mutantAvidin-biotin technologyRational designCell BiologyProtein engineeringrespiratory systemAvidinDNA-Binding ProteinschemistryBiochemistryBiotinylationbiology.proteinMutagenesis Site-DirectedChickensAvidinFEBS letters
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Recombinant NeutraLite Avidin: a non-glycosylated, acidic mutant of chicken avidin that exhibits high affinity for biotin and low non-specific bindin…

2000

AbstractA recombinant non-glycosylated and acidic form of avidin was designed and expressed in soluble form in baculovirus-infected insect cells. The mutations were based on the same principles that guided the design of the chemically and enzymatically modified avidin derivative, known as NeutraLite Avidin. In this novel recombinant avidin derivative, five out of the eight arginine residues were replaced with neutral amino acids, and two of the lysine residues were replaced by glutamic acid. In addition, the carbohydrate-bearing asparagine-17 residue was altered to an isoleucine, according to the known sequences of avidin-related genes. The resultant mutant protein, termed recombinant Neutr…

StreptavidinGlycosylationMolecular Sequence DataBiophysicsBiotinChick EmbryoNon-specific bindingBiochemistrylaw.inventionchemistry.chemical_compoundBiotinstomatognathic systemStructural BiologylawMutant proteinNon-glycosylated mutantGeneticsAnimalsHumansAmino Acid SequenceIsoelectric PointProtein Structure QuaternaryMolecular BiologyCells CulturedbiologyAvidin-biotin technologyDNACell BiologyProtein engineeringrespiratory systemAvidinRecombinant ProteinsKineticsAmino Acid SubstitutionchemistryBiochemistryBiotinylationMutationbiology.proteinRecombinant DNAThermodynamicsProtein engineeringEndopeptidase KIsoleucineBaculoviridaeProtein BindingAvidinFEBS Letters
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Characterization of poultry egg-white avidins and their potential as a tool in pretargeting cancer treatment.

2003

Chicken avidin and bacterial streptavidin are proteins used in a wide variety of applications in the life sciences due to their strong affinity for biotin. A new and promising use for them is in medical pretargeting cancer treatments. However, their pharmacokinetics and immunological properties are not always optimal, thereby limiting their use in these applications. To search for potentially beneficial new candidates, we screened egg white from four different poultry species for avidin. Avidin proteins, isolated from the duck, goose, ostrich and turkey, showed a similar tetrameric structure, similar glycosylation and stability against both temperature and proteolytic activity of proteinase…

StreptavidinGlycosylationanimal structuresBiotinBiochemistryAntibodiesBirds03 medical and health scienceschemistry.chemical_compound0302 clinical medicineGooseBiotinstomatognathic systemSequence Analysis Proteinbiology.animalNeoplasmsAnimalsMolecular BiologyPhylogeny030304 developmental biologyPretargeting0303 health sciencesbiologyCell Biologyrespiratory systemProteinase KAvidinMolecular biology3. Good healthchemistryBiochemistry030220 oncology & carcinogenesisbiology.proteinAvidinEgg whiteResearch ArticleProtein Binding
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Formation of protein multilayers and their competitive replacement based on self-assembled biotinylated phospholipids.

1994

Based on specific recognition processes the build-up of protein multilayers was achieved using streptavidin layers as a docking matrix. For this purpose, streptavidin was organized at biotin-containing monolayers, liposomes, and self-assembled layers on gold. Thus, mixed double and triple layers of streptavidin, Con A, Fab fragments, and hormones were prepared and characterized by fluorescence microscopy and plasmon spectroscopy. Using biotin analogues with lower binding constants several cycles of multilayer formation followed by competitive replacement could be achieved.

StreptavidinLiposomeSurface Propertiestechnology industry and agricultureBiomedical EngineeringBiophysicsBiotinProteinsBioengineeringBinding CompetitiveBiomaterialsCrystallographychemistry.chemical_compoundMolecular recognitionBiotinchemistryBacterial ProteinsDocking (molecular)BiotinylationMonolayerFluorescence microscopeStreptavidinPhospholipidsJournal of biomaterials science. Polymer edition
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