Search results for " Homology"

showing 10 items of 633 documents

The Parkinson Disease Gene LRRK2: Evolutionary and Structural Insights

2006

Mutations in the human leucine-rich repeat kinase 2 (LRRK2) gene are associated with both familial and sporadic Parkinson disease (PD). LRRK2 belongs to a gene family known as Roco. Roco genes encode for large proteins with several protein domains. Particularly, all Roco proteins have a characteristic GTPase domain, named Roc, plus a domain of unknown function called COR. In addition, LRRK2 and several other Roco proteins also contain a protein kinase domain. In this study, I use a combination of phylogenetic and structural analyses of the COR, Roc, and kinase domains present in Roco proteins to describe the origin and evolutionary history of LRRK2. Phylogenetic analyses using these domains…

Models MolecularProtein ConformationMolecular Sequence DataProtein domainGTPaseProtein Serine-Threonine KinasesBiologyLeucine-Rich Repeat Serine-Threonine Protein Kinase-2MAP3K7SH3 domainGTP PhosphohydrolasesEvolution MolecularGeneticsAnimalsHumansDictyosteliumAmino Acid Sequencec-RafMolecular BiologyPhylogenyEcology Evolution Behavior and SystematicsGeneticsSequence Homology Amino AcidParkinson DiseaseLRRK2Protein Structure Tertiarynervous system diseasesDisease Models AnimalProtein kinase domainRabProtein KinasesMolecular Biology and Evolution
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NMR Solution Structure of the Non-RGD Disintegrin Obtustatin

2003

The solution structure of obtustatin, a novel non-RGD disintegrin of 41 residues isolated from Vipera lebetina obtusa venom, and a potent and selective inhibitor of the adhesion of integrin alpha(1)beta(1) to collagen IV, has been determined by two-dimensional nuclear magnetic resonance. Almost the whole set of chemical shifts for 1H, 13C and 15N were assigned at natural abundance from 2D homonuclear and heteronuclear 500 MHz, 600 MHz and 800 MHz spectra at pH 3.0 recorded at 298 K and 303 K. Final structural constraints consisted of 302 non-redundant NOE (95 long-range, 60 medium, 91 sequential and 56 intra-residue), four disulfide bond distances, five chi1 dihedral angles and four hydroge…

Models MolecularProtein ConformationStereochemistryDisintegrinsMolecular Sequence DataStatic ElectricityViper VenomsDihedral angleCrystallography X-RayStructural BiologyDisintegrinAnimalsAmino Acid SequenceNuclear Magnetic Resonance BiomolecularMolecular BiologyProtein secondary structureConformational isomerismRGD motifMolecular StructureSequence Homology Amino AcidbiologyHydrogen bondChemistryCircular DichroismChemical shiftHydrogen BondingHydrogen-Ion ConcentrationSolutionsKineticsHeteronuclear moleculebiology.proteinOligopeptidesJournal of Molecular Biology
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Homology models of melatonin receptors: challenges and recent advances

2013

Melatonin exerts many of its actions through the activation of two G protein-coupled receptors (GPCRs), named MT1 and MT2. So far, a number of different MT1 and MT2 receptor homology models, built either from the prototypic structure of rhodopsin or from recently solved X-ray structures of druggable GPCRs, have been proposed. These receptor models differ in the binding modes hypothesized for melatonin and melatonergic ligands, with distinct patterns of ligand-receptor interactions and putative bioactive conformations of ligands. The receptor models will be described, and they will be discussed in light of the available information from mutagenesis experiments and ligand-based pharmacophore …

Models MolecularProtein Conformationhomology modelingMolecular Sequence DataDruggabilityReviewComputational biologyLigandsBioinformaticsCatalysisInorganic Chemistrylcsh:ChemistryStructure-Activity Relationshipmelatonin receptorsAnimalsHumansAmino Acid SequenceHomology modelingmelatonin receptors; MT1; MT2; homology modeling; structure-activity relationships; docking; molecular dynamics simulationsPhysical and Theoretical ChemistryReceptorMolecular Biologylcsh:QH301-705.5SpectroscopyMelatoninG protein-coupled receptorBinding SitesSequence Homology Amino AcidbiologyReceptor Melatonin MT2Receptor Melatonin MT1MT1Organic ChemistryMT2structure-activity relationshipsGeneral Medicinemolecular dynamics simulationsComputer Science ApplicationsMelatonergiclcsh:Biology (General)lcsh:QD1-999Structural Homology ProteinDocking (molecular)RhodopsindockingMutagenesis Site-Directedbiology.proteinPharmacophore
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Genomic determinants of protein folding thermodynamics in prokaryotic organisms.

2004

Here we investigate how thermodynamic properties of orthologous proteins are influenced by the genomic environment in which they evolve. We performed a comparative computational study of 21 protein families in 73 prokaryotic species and obtained the following main results. (i) Protein stability with respect to the unfolded state and with respect to misfolding are anticorrelated. There appears to be a trade-off between these two properties, which cannot be optimized simultaneously. (ii) Folding thermodynamic parameters are strongly correlated with two genomic features, genome size and G+C composition. In particular, the normalized energy gap, an indicator of folding efficiency in statistical…

Models MolecularProtein DenaturationProtein FoldingProtein familyArchaeal ProteinsThermodynamicsdeleterious mutationsthermophilic proteinsBiologymonte-carlo algorithmGenomeNegative selectionBacterial ProteinsStructural BiologyMolecular evolutionGenome ArchaealevolutionbuchneraMolecular BiologyGenome sizeGeneticsPrincipal Component Analysisacid side-chainsBacteriaSequence Homology Amino Acidreplica approachComputational BiologystabilityGenetic codeArchaeaPRI BioscienceFolding (chemistry)endosymbiotic bacteriacation-pi interactionsThermodynamicsProtein foldingHydrophobic and Hydrophilic InteractionsGenome BacterialJournal of molecular biology
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The death-domain fold of the ASC PYRIN domain, presenting a basis for PYRIN/PYRIN recognition.

2003

The PYRIN domain is a conserved sequence motif identified in more than 20 human proteins with putative functions in apoptotic and inflammatory signalling pathways. The three-dimensional structure of the PYRIN domain from human ASC was determined by NMR spectroscopy. The structure determination reveals close structural similarity to death domains, death effector domains, and caspase activation and recruitment domains, although the structural alignment with these other members of the death-domain superfamily differs from previously predicted amino acid sequence alignments. Two highly positively and negatively charged surfaces in the PYRIN domain of ASC result in a strong electrostatic dipole …

Models MolecularProtein FoldingMagnetic Resonance SpectroscopyCARD Signaling Adaptor ProteinsProtein ConformationProtein domainMolecular Sequence DataStatic ElectricityBiologyPyrin domainProtein Structure SecondaryConserved sequenceProtein structureStructural BiologyAnimalsHumansAmino Acid SequenceCloning MolecularMolecular BiologyPeptide sequenceZebrafishDeath domainGeneticsModels StatisticalSequence Homology Amino AcidProteinsPyrinZebrafish ProteinsCell biologyProtein Structure TertiaryCARD Signaling Adaptor ProteinsCytoskeletal ProteinsSpectrometry Mass Matrix-Assisted Laser Desorption-IonizationProtein foldingProtein BindingSignal TransductionJournal of molecular biology
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The crystal structure of a cockroach pheromone-binding protein suggests a new ligand binding and release mechanism.

2003

Pheromone-binding proteins (PBPs) are small helical proteins found in sensorial organs, particularly in the antennae, of moth and other insect species. They were proposed to solubilize and carry the hydrophobic pheromonal compounds through the antennal lymph to receptors, participating thus in the peri-receptor events of signal transduction. The x-ray structure of Bombyx mori PBP (BmorPBP), from male antennae, revealed a six-helix fold forming a cavity that contains the pheromone bombykol. We have identified a PBP (LmaPBP) from the cockroach Leucophaea maderae in the antennae of the females, the gender attracted by pheromones in this species. Here we report the crystal structure of LmaPBP a…

Models MolecularProtein FoldingProtein ConformationMolecular Sequence DataCockroachesCrystallography X-RayLigandsBiochemistryBombykolchemistry.chemical_compoundBombyx moribiology.animalAnimalsAmino Acid SequenceCloning MolecularMolecular BiologyFluorescent DyesCockroachbiologySequence Homology Amino AcidCell BiologyHydrogen-Ion Concentrationbiology.organism_classificationLigand (biochemistry)BombyxButanonesTransport proteinKineticschemistryBiochemistryHelixBiophysicsPheromoneInsect ProteinsFemalePheromone binding proteinCarrier ProteinsProtein BindingThe Journal of biological chemistry
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A3 adenosine receptor: Homology modeling and 3D-QSAR studies

2012

Adenosine receptors (AR) belong to the superfamily of G-protein-coupled receptors (GPCRs). They are divided into four subtypes (A1, A2A, A2B, and A3) [1], and can be distinguished on the basis of their distinct molecular structures, distinct tissues distribution, and selectivity for adenosine analogs [2,3]. The hA3R, the most recently identified adenosine receptor, is involved in a variety of intracellular signaling pathways and physiological functions [4]. Expression of A3R was reported to be elevated in cancerous tissues [5], and A3 antagonists have been proposed for therapeutic treatments of cancer. The recent literature availability of crystal structure of hA2A adenosine receptor (PDB c…

Models MolecularQuantitative structure–activity relationshipReceptor Adenosine A2AAdenosine A3 Receptor AntagonistsQuantitative Structure-Activity RelationshipComputational biologyBiologyPharmacologyDrug DiscoveryMolecular dynamics simulationMaterials ChemistrymedicineHumansAmino Acid SequenceHomology modelingPhysical and Theoretical ChemistryReceptorA3 INHIBITORS HOMOLOGY MODELING 3D-QSARSpectroscopyG protein-coupled receptorA3 ReceptorBinding SitesTriazinesReceptor Adenosine A3Intracellular Signaling Peptides and ProteinsTriazolesA3 ADENOSINE RECEPTORComputer Graphics and Computer-Aided DesignAdenosine receptorAdenosineSettore CHIM/08 - Chimica FarmaceuticaPharmacophoresHomology modellingPharmacophoreProtein Bindingmedicine.drug
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IKK-β inhibitors: An analysis of drug–receptor interaction by using Molecular Docking and Pharmacophore 3D-QSAR approaches

2010

Abstract The IKK kinases family represents a thrilling area of research because of its importance in regulating the activity of NF-kB transcription factors. The discovery of the central role played by IKK-β in the activation of transcription in response to apoptotic or inflammatory stimuli allowed to considerate its modulation as a promising tool for the treatment of chronic inflammation and cancer. To date, several IKK-β inhibitors have been discovered and tested. In this work, an analysis of the interactions between different classes of inhibitors and their biological target was performed, through the application of Molecular Docking and Pharmacophore/3D-QSAR approaches to a set of 141 in…

Models MolecularQuantitative structure–activity relationshipReceptors DrugMolecular Sequence DataQuantitative Structure-Activity RelationshipIκB kinaseComputational biologyPharmacologyBiologyMaterials ChemistryHumansAmino Acid SequenceNF-kBHomology modelingPhysical and Theoretical ChemistryProtein Kinase InhibitorsTranscription factorSpectroscopyIKK-betaIKK-beta inhibitors Molecular Docking Pharmacophore 3D-QSAR approachesBinding SitesPharmacophoreKinaseHomology modelingSettore CHIM/08 - Chimica FarmaceuticaComputer Graphics and Computer-Aided DesignI-kappa B KinaseMolecular DockingStructural Homology ProteinBiological targetDrug receptorPharmacophoreJournal of Molecular Graphics and Modelling
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Structural requirements for V2 vasopressin receptor proteolytic cleavage.

1999

The ligand-induced proteolytic cleavage of the V2 vasopressin receptor transiently expressed in COS cells was investigated. After incubation of the cell membranes with a photoreactive ligand possessing full agonistic properties for V2 receptors, approximately 90% of the porcine and bovine V2 vasopressin receptors were cleaved in the upper part of transmembrane helix 2 at a heptapeptide sequence conserved in both vasopressin and oxytocin receptors. The oxytocin receptor was completely resistant to proteolysis after binding the same photoreactive ligand, which is only a partial agonist for this receptor. Chimeric V2/oxytocin receptors obtained by transfer of extracellular domains of the oxyto…

Models MolecularReceptors VasopressinDNA ComplementaryTime FactorsProtein ConformationSwineMolecular Sequence DataBiologyLigandsTransfectionBiochemistryArginine vasopressin receptor 2Enzyme-linked receptorCyclic AMPAnimalsHumansPoint Mutation5-HT5A receptorAmino Acid SequenceCloning MolecularReceptorProtease-activated receptor 2Vasopressin receptorArginine vasopressin receptor 1BDose-Response Relationship DrugSequence Homology Amino AcidProteinsOxytocin receptorProtein Structure TertiaryEnzyme ActivationBiochemistryMicroscopy FluorescenceReceptors OxytocinType C PhospholipasesCOS CellsMutagenesis Site-DirectedCattlehormones hormone substitutes and hormone antagonistsAdenylyl CyclasesProtein BindingEuropean journal of biochemistry
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Atomic structure of the major capsid protein of rotavirus: implications for the architecture of the virion

2001

The structural protein VP6 of rotavirus, an important pathogen responsible for severe gastroenteritis in children, forms the middle layer in the triple-layered viral capsid. Here we present the crystal structure of VP6 determined to 2 A resolution and describe its interactions with other capsid proteins by fitting the atomic model into electron cryomicroscopic reconstructions of viral particles. VP6, which forms a tight trimer, has two distinct domains: a distal beta-barrel domain and a proximal alpha-helical domain, which interact with the outer and inner layer of the virion, respectively. The overall fold is similar to that of protein VP7 from bluetongue virus, with the subunits wrapping …

Models MolecularRotavirusCations DivalentViral proteinvirusesMolecular Sequence DataHemagglutinins ViralTrimerCrystal structureBiologyCrystallography X-Raymedicine.disease_causeProtein Structure SecondaryArticleGeneral Biochemistry Genetics and Molecular BiologyVirus03 medical and health sciencesCapsidRotavirusAtomic modelmedicineAnimalsAmino Acid SequenceAntigens ViralMolecular BiologyPeptide sequence030304 developmental biology0303 health sciencesSequence Homology Amino AcidGeneral Immunology and Microbiology030306 microbiologyViral Core ProteinsGeneral NeuroscienceVirionvirus diseasesMolecular biologyZincCapsidSolventsBiophysicsCapsid ProteinsCattleThe EMBO Journal
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