Search results for "binding site"

showing 10 items of 856 documents

Interaction of Circadian Clock Proteins CRY1 and PER2 Is Modulated by Zinc Binding and Disulfide Bond Formation

2014

SummaryPeriod (PER) proteins are essential components of the mammalian circadian clock. They form complexes with cryptochromes (CRY), which negatively regulate CLOCK/BMAL1-dependent transactivation of clock and clock-controlled genes. To define the roles of mammalian CRY/PER complexes in the circadian clock, we have determined the crystal structure of a complex comprising the photolyase homology region of mouse CRY1 (mCRY1) and a C-terminal mouse PER2 (mPER2) fragment. mPER2 winds around the helical mCRY1 domain covering the binding sites of FBXL3 and CLOCK/BMAL1, but not the FAD binding pocket. Our structure revealed an unexpected zinc ion in one interface, which stabilizes mCRY1-mPER2 int…

Models Molecularendocrine systemanimal structuresPeriod (gene)Molecular Sequence DataCircadian clockBiologyCrystallography X-RayGeneral Biochemistry Genetics and Molecular BiologyMiceCryptochromeAnimalsProtein Interaction Domains and MotifsAmino Acid SequenceCircadian rhythmBinding siteBiochemistry Genetics and Molecular Biology(all)F-Box ProteinsPeriod Circadian ProteinsRecombinant ProteinsCryptochromesPER2ZincBiochemistryFAD bindingBiophysicsPeriod Circadian ProteinsSequence AlignmentCell
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Cloning, tissue distribution, pharmacology and three-dimensional modelling of melanocortin receptors 4 and 5 in rainbow trout suggest close evolution…

2004

The rainbow trout (Oncorhynchus mykiss) is one of the most widely used fish species in aquaculture and physiological research. In the present paper, we report the first cloning, 3D (three-dimensional) modelling, pharmacological characterization and tissue distribution of two melanocortin (MC) receptors in rainbow trout. Phylogenetic analysis indicates that these receptors are orthologues of the human MC4 and MC5 receptors. We created 3D molecular models of these rainbow trout receptors and their human counterparts. These models suggest greater divergence between the two human receptors than between their rainbow trout counterparts. The pharmacological analyses demonstrated that ACTH (adreno…

Models Molecularendocrine systemmedicine.medical_specialtyanimal structuresanimal diseasesMolecular Sequence DataAdrenocorticotropic hormoneBiologyKidneyBinding Competitivedigestive systemBiochemistryCell LineEvolution MolecularInternal medicinemedicineAnimalsHumansAmino Acid SequenceCloning MolecularBinding siteReceptorMolecular BiologyPhylogenyPharmacologyCloningBinding Sitesurogenital systemReceptors MelanocortinSequence Analysis DNACell BiologyCell biologyZincEndocrinologyReceptors CorticotropinOrgan SpecificityHypothalamusHormone receptorOncorhynchus mykissReceptor Melanocortin Type 4Rainbow troutMelanocortinSequence AlignmentResearch ArticleBiochemical Journal
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Entropy–enthalpy compensation at the single protein level: pH sensing in the bacterial channel OmpF

2014

The pH sensing mechanism of the OmpF channel operates via ligand modification: increasing acidity induces the replacement of cations with protons in critical binding sites decreasing the channel conductance. Aside from the change in enthalpy associated with the binding, there is also a change in the microscopic arrangements of ligands, receptors and the surrounding solvent. We show that the pH-modulation of the single channel conduction involves small free energy changes because large enthalpic and entropic contributions change in opposite ways, demonstrating an approximate enthalpy–entropy compensation for different salts and concentrations. We wish to acknowledge the support from the Span…

Models Molecularentropy-enthalpy compensationChemistryLigandEntropyEnthalpyBinding energyElectric ConductivitypH sensingPorinsConductanceThermodynamicsHydrogen-Ion ConcentrationThermal conductionbinding energyPotassium ChlorideSolventModels ChemicalComputer SimulationGeneral Materials Sciencesense organsBinding siteskin and connective tissue diseasesentropyEntropy (order and disorder)
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Experimental and theoretical NMR studies of interaction between phenylalanine derivative and egg yolk lecithin

2014

The interaction of phenylalanine diamide (Ac-Phe-NHMe) with egg yolk lecithin (EYL) in chloroform was studied by 1H and 13C NMR. Six complexes EYL–Ac-Phe-NHMe, stabilized by N–H···O or/and C–H···O hydrogen bonds, were optimized at M06-2X/6-31G(d,p) level. The assignment of EYL and Ac-Phe-NHMe NMR signals was supported using GIAO (gauge including atomic orbital) NMR calculations at VSXC and B3LYP level of theory combined with STO-3Gmag basis set. Results of our study indicate that the interaction of peptides with lecithin occurs mainly in the polar ‘head’ of the lecithin. Additionally, the most probable lecithin site of H-bond interaction with Ac-Phe-NHMe is the negatively charged oxygen in …

Models Molecularfood.ingredientMagnetic Resonance SpectroscopyPhenylalanineMolecular ConformationPhenylalanineLecithinDFTchemistry.chemical_compoundfoodYolkLecithinsMaterials TestingOrganic chemistryAnimalsGeneral Materials ScienceComputer Simulationhydrogen bondChloroformBinding Sitesintermolecular interactionsHydrogen bondIntermolecular forceGeneral ChemistryCarbon-13 NMREgg YolkpeptideNMR3. Good healthCrystallographylecithinchemistryModels ChemicalChickensDerivative (chemistry)Magnetic Resonance in Chemistry
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Structural and functional consequences of the replacement of proximal residues Cys172 and Cys192 in the large subunit of ribulose-1,5-bisphosphate ca…

2008

Proximal Cys(172) and Cys(192) in the large subunit of the photosynthetic enzyme Rubisco (ribulose-1,5-bisphosphate carboxylase/oxygenase; EC 4.1.1.39) are evolutionarily conserved among cyanobacteria, algae and higher plants. Mutation of Cys(172) has been shown to affect the redox properties of Rubisco in vitro and to delay the degradation of the enzyme in vivo under stress conditions. Here, we report the effect of the replacement of Cys(172) and Cys(192) by serine on the catalytic properties, thermostability and three-dimensional structure of Chlamydomonas reinhardtii Rubisco. The most striking effect of the C172S substitution was an 11% increase in the specificity factor when compared wi…

Models Molecularinorganic chemicalsOxygenaseRibulose-Bisphosphate CarboxylaseProtein subunitSpecificity factorChlamydomonas reinhardtiiCrystallography X-RayBiochemistryCatalysischemistry.chemical_compoundEnzyme StabilityAnimalsCysteineMolecular BiologyBinding SitesRibulose 15-bisphosphatebiologyfungiRuBisCOTemperaturefood and beveragesCell Biologybiology.organism_classificationLyaseMolecular biologyProtein Structure TertiaryPyruvate carboxylaseKineticsProtein SubunitsBiochemistrychemistryMutationbiology.proteinChlamydomonas reinhardtiiBiochemical Journal
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Identification and relevance of the CD95-binding domain in the N-terminal region of ezrin.

2003

The CD95 (Fas/APO-1) linkage to the actin cytoskeleton through ezrin is an essential requirement for susceptibility to the CD95-mediated apoptosis in CD4+ T cells. We have previously shown that moesin was not involved in the binding to CD95. Here we further support the specificity of the ezrin/CD95 binding, showing that radixin did not bind CD95. The ezrin region specifically and directly involved in the binding to CD95 was located in the middle lobe of the ezrin FERM domain, between amino acids 149 and 168. In this region, ezrin, radixin, and moesin show 60-65% identity, as compared with the 86% identity in the whole FERM domain. Transfection of two different human cell lines with a green …

Moesinchemical and pharmacologic phenomenaApoptosismacromolecular substancesBiologyBiochemistryEzrinRadixinhemic and lymphatic diseasesHumansfas ReceptorMolecular BiologyActinBinding SitesFERM domainhemic and immune systemsCell BiologyTransfectionActin cytoskeletonPhosphoproteinsActinsCell biologyProtein Structure TertiaryCytoskeletal ProteinsMutationbiological phenomena cell phenomena and immunityBinding domainHeLa CellsProtein BindingSignal TransductionThe Journal of biological chemistry
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Interspecies comparison of neuroglobin, cytoglobin and myoglobin: Sequence evolution and candidate regulatory elements

2003

Neuroglobin and cytoglobin are two novel members of the vertebrate globin family. Their physiological role is poorly understood, although both proteins bind oxygen reversibly and may be involved in cellular oxygen homeostasis. Here we investigate the selective constraints on coding and non-coding sequences of the neuroglobin and cytoglobin genes in human, mouse, rat and fish. Neuroglobin and cytoglobin are highly conserved, displaying very low levels of non-synonymous nucleotide substitutions. An oxygen supply function predicts distinct modes of gene regulation, involving hypoxia-responsive transcription factors. To detect conserved candidate regulatory elements, we compared the neuroglobin…

Molecular Sequence DataNeuroglobinNerve Tissue ProteinsSequence alignmentRegulatory Sequences Nucleic AcidBiologyMiceSpecies SpecificityGeneticsAnimalsHumansGlobinMolecular BiologyGeneGenetics (clinical)MammalsGeneticsRegulation of gene expressionBinding SitesBase SequenceMyoglobinCytoglobinFishesDNAMRNA stabilizationBiological EvolutionGlobinsRatsOxygenGene Expression RegulationRegulatory sequenceNeuroglobinSequence AlignmentTranscription FactorsCytogenetic and Genome Research
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Binding Sites for Neurotoxins and Cholinergic Ligands in Peripheral and Neuronal Nicotinic Receptors Studies with Synthetic Receptor Sequencesa

1995

Molecular Sequence DataNeurotoxinsIn Vitro TechniquesReceptors NicotinicLigandsBinding CompetitiveGeneral Biochemistry Genetics and Molecular BiologyStructure-Activity RelationshipGanglion type nicotinic receptorSpecies SpecificityHistory and Philosophy of ScienceConsensus SequenceEnzyme-linked receptorAnimalsAmino Acid SequenceBinding siteReceptorNeuronsBinding SitesSequence Homology Amino AcidChemistryGeneral NeuroscienceAntibodies MonoclonalPeripheralCell biologyNicotinic agonistCholinergicAlpha-4 beta-2 nicotinic receptorPeptidesSequence AlignmentAnnals of the New York Academy of Sciences
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Mapping of a binding site for ATP within the extracellular region of the Torpedo nicotinic acetylcholine receptor beta-subunit.

1997

Using 2,8,5'-[H-3]ATP as a direct photoaffinity label for membrane-bound nicotinic acetylcholine receptor (nAChR) from Torpedo marmorata, we have identified a binding site for ATP in the extracellular region of the beta-subunit of the receptor. Photolabeling was completely inhibited in the presence of saturating concentrations of nonradioactive ATP, whereas neither the purinoreceptor antagonists suramin, theophyllin, and caffeine nor the nAChR antagonists alpha-bungarotoxin and d-tubocurarine affected the labeling reaction. Competitive and noncompetitive nicotinic agonists and Ca2+ increased the yield of the photoreaction by up to 50%, suggesting that the respective binding sites are allost…

Molecular Sequence DataPhotoaffinity LabelsReceptors NicotinicTorpedoTritiumBiochemistryPeptide Mappingchemistry.chemical_compoundGanglion type nicotinic receptorAdenosine TriphosphateAdenine nucleotideAnimalsChymotrypsinTrypsinAmino Acid SequenceBinding siteBinding SitesbiologyHydrolysisCell MembranePeptide FragmentsNicotinic acetylcholine receptorNicotinic agonistBiochemistrychemistrybiology.proteinAlpha-4 beta-2 nicotinic receptorExtracellular SpaceAdenosine triphosphateSequence AnalysisATP synthase alpha/beta subunitsBiochemistry
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Inhibition of Eimeria tenella CDK-related kinase 2: From target identification to lead compounds.

2010

Apicomplexan parasites encompass several human- and animal-pathogenic protozoans such as Plasmodium falciparum, Toxoplasma gondii, and Eimeria tenella. E. tenella causes coccidiosis, a disease that afflicts chickens, leading to tremendous economic losses to the global poultry industry. The considerable increase in drug resistance makes it necessary to develop new therapeutic strategies against this parasite. Cyclin-dependent kinases (CDKs) are key molecules in cell-cycle regulation and are therefore prominent target proteins in parasitic diseases. Bioinformatics analysis revealed four potential CDK-like proteins, of which one—E. tenella CDK-related kinase 2 (EtCRK2)—has already been charact…

Molecular Sequence DataProtozoan ProteinsBiochemistryEimeriaArticleAdenosine TriphosphateCyclin-dependent kinaseDrug Discoveryparasitic diseasesAnimalsHumansComputer SimulationHomology modelingAmino Acid SequenceGeneral Pharmacology Toxicology and PharmaceuticsProtein Kinase InhibitorsPharmacologyVirtual screeningBinding SitesbiologyDrug discoveryKinaseCoccidiosisOrganic ChemistryCyclin-dependent kinase 2Cyclin-Dependent Kinase 2Plasmodium falciparumbiology.organism_classificationMolecular biologyBiochemistrybiology.proteinMolecular MedicineBenzimidazolesChickensSequence AlignmentEimeria tenellaChemMedChem
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