Search results for "Structure-Activity Relationship"

showing 10 items of 743 documents

Stereoselective synthesis of the published structure of feigrisolide A. Structural revision of feigrisolides A and B.

2006

The total synthesis of the proposed structure of feigrisolide A is reported. Ethyl (S)-3-hydroxybutyrate was the chiral starting material. A Brown asymmetric allylation and an Evans aldol reaction were key steps of the synthesis. The NMR data of the synthetic product are different from those of the natural product. The published structure of feigrisolide A is therefore erroneous. A subsequent comparison of spectral data strongly suggests that feigrisolides A and B are identical with (-)-nonactic acid and (+)-homononactic acid, respectively.

Models MolecularMagnetic Resonance SpectroscopyStereochemistryMolecular ConformationStereoisomerismChemical synthesischemistry.chemical_compoundLactonesStructure-Activity RelationshipAldol reactionSpectral dataNatural productMolecular StructureChemistryorganic chemicalsOrganic ChemistryEnantioselective synthesisTotal synthesisStereoisomerismGeneral MedicineNuclear magnetic resonance spectroscopyNmr dataAnti-Bacterial AgentsProduct (mathematics)Aldol condensationStereoselectivityThe Journal of organic chemistry
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Pyrazolobenzotriazinones Derivatives as COX Inhibitors: Synthesis Biological Activity and Molecular Modeling Studies

2010

Pyrazolylbenzotriazinones are endowed with structural analogy with the COX-2 selective inhibitor celecoxib. Considering that our research group has long been interested in the 3-pyrazolyl-substituted benzotriazinones as anti-inflammatory agents, six new pyrazolylbenzotriazinone derivatives 16a-c and 18a-c have been prepared by reacting the opportune ethyl 5-(2-aminobenzamido)-1-(pyridin-2-yl)-1H-pyrazole-4-carboxylate or 5-(2-aminobenzamido)-1-(pyridin-2-yl)-1H-pyrazole-4-carboxyic acid with sodium nitrite in glacial acetic acid. The biological studies revealed a good pharmacological profile for some pyrazolylbenzotriazinones and, in the case of the ethyl 5-(4-oxo-1,2,3-benzotriazin-3(4H)-y…

Models MolecularMolecular modelAnti-Inflammatory AgentsPharmaceutical Science2-(1H-pyrazol-1-yl)pyridines 4(3H)-Benzotriazinones docking COX-2 inhibitorsCOX-2 inhibitorschemistry.chemical_compoundAcetic acidStructure-Activity Relationship4(3H)-BenzotriazinonesDrug DiscoverymedicineStructure–activity relationshipOrganic chemistryHumansSodium nitriteSulfonamidesCyclooxygenase 2 InhibitorsTriazinesBiological activitySettore CHIM/08 - Chimica FarmaceuticachemistryDocking (molecular)CelecoxibCelecoxibSettore BIO/14 - FarmacologiaPyrazolesSelectivitymedicine.drug
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Limulus polyphemus Hemocyanin: 10 Å Cryo-EM Structure, Sequence Analysis, Molecular Modelling and Rigid-body Fitting Reveal the Interfaces Between th…

2007

Abstract The blue copper protein hemocyanin from the horseshoe crab Limulus polyphemus is among the largest respiratory proteins found in nature (3.5 MDa) and exhibits a highly cooperative oxygen binding. Its 48 subunits are arranged as eight hexamers (1×6mers) that form the native 8×6mer in a nested hierarchy of 2×6mers and 4×6mers. This quaternary structure is established by eight subunit types (termed I, IIA, II, IIIA, IIIB, IV, V, and VI), of which only type II has been sequenced. Crystal structures of the 1×6mer are available, but for the 8×6mer only a 40 A 3D reconstruction exists. Consequently, the structural parameters of the 8×6mer are not firmly established, and the molecular inte…

Models MolecularMolecular modelCryo-electron microscopyCopper proteinProtein subunitmedicine.medical_treatmentMolecular Sequence DataStructure-Activity RelationshipStructural BiologyHorseshoe CrabsmedicineAnimalsAmino Acid SequenceProtein Structure QuaternaryMolecular BiologyPhylogenySequence Homology Amino AcidbiologyCryoelectron MicroscopyHemocyaninbiology.organism_classificationProtein Structure TertiaryCrystallographyLimulusHemocyaninsProtein quaternary structureOxygen bindingJournal of Molecular Biology
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Dopaminergic isoquinolines with hexahydrocyclopenta[ ij ]-isoquinolines as D 2 -like selective ligands

2016

Dopamine receptors (DR) ligands are potential drug candidates for treating neurological disorders including schizophrenia or Parkinson's disease. Three series of isoquinolines: (E)-1-styryl-1,2,3,4-tetrahydroisoquinolines (series 1), 7-phenyl-1,2,3,7,8,8a-hexahydrocyclopenta[ij]-IQs (HCPIQs) (series 2) and (E)-1-(prop-1-en-1-yl)-1,2,3,4- tetrahydroisoquinolines (series 3), were prepared to determine their affinity for both D1and D2-like DR. The effect of different substituents on the nitrogen atom (methyl or allyl), the dioxygenated function (methoxyl or catechol), the substituent at the β-position of the THIQ skeleton, and the presence or absence of the cyclopentane motif, were studied. We…

Models MolecularMolecular modelProtein ConformationStereochemistryDopamine AgentsSubstituentCyclopentanesLigands010402 general chemistry01 natural sciencesSubstrate SpecificityStructure-Activity Relationshipchemistry.chemical_compoundDrug DiscoveryHuman Umbilical Vein Endothelial CellsmedicineHumansStructure–activity relationshipCYTOTOXICITYMOLECULAR MODELINGCyclopentaneSTRUCTURE-ACTIVITY RELATIONSHIPSTETRAHYDROISOQUINOLINESPharmacologyCatecholReceptors Dopamine D2010405 organic chemistryOtras Ciencias QuímicasOrganic ChemistryDopaminergicCiencias QuímicasGeneral MedicineIsoquinolines0104 chemical sciencesOxygenDOPAMINERGICchemistryTHIQHEXAHYDROCYCLOPENTAISOQUINOLINESSelectivityCIENCIAS NATURALES Y EXACTASmedicine.drugEuropean Journal of Medicinal Chemistry
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DesMol2, an Effective Tool for the Construction of Molecular Libraries and Its Application to QSAR Using Molecular Topology

2019

A web application, DesMol2, which offers two main functionalities, is presented: the construction of molecular libraries and the calculation of topological indices. These functionalities are explained through a practical example of research of active molecules to the formylpeptide receptor (FPR), a receptor associated with chronic inflammation in systemic amyloidosis and Alzheimer&rsquo

Models MolecularMultilinear mapQuantitative structure–activity relationshiplinear discriminant analysisComputer scienceQuantitative Structure-Activity RelationshipPharmaceutical ScienceComputational biology01 natural sciencesArticleAnalytical ChemistrySmall Molecule Librarieslcsh:QD241-44103 medical and health scienceslcsh:Organic chemistryDrug DiscoveryPhysical and Theoretical ChemistryPiperazineDesMol2030304 developmental biology0303 health sciencesMolecular Structure010405 organic chemistryOrganic Chemistrymolecular librariesBase (topology)Linear discriminant analysisReceptors Formyl PeptideSystemic amyloidosis0104 chemical sciencestopology descriptorsmultilinear regression analysisDiscriminantChemistry (miscellaneous)Molecular MedicineMultiple linear regression analysisMolecular topologyAlzheimer’s diseaseDatabases ChemicalSoftwareProtein BindingMolecules
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Synthesis of GABAA receptor agonists and evaluation of their alpha-subunit selectivity and orientation in the GABA binding site.

2008

Drugs used to treat various disorders target GABA A receptors. To develop alpha subunit selective compounds, we synthesized 5-(4-piperidyl)-3-isoxazolol (4-PIOL) derivatives. The 3-isoxazolol moiety was substituted by 1,3,5-oxadiazol-2-one, 1,3,5-oxadiazol-2-thione, and substituted 1,2,4-triazol-3-ol heterocycles with modifications to the basic piperidine substituent as well as substituents without basic nitrogen. Compounds were screened by [(3)H]muscimol binding and in patch-clamp experiments with heterologously expressed GABA A alpha ibeta 3gamma 2 receptors (i = 1-6). The effects of 5-aminomethyl-3 H-[1,3,4]oxadiazol-2-one 5d were comparable to GABA for all alpha subunit isoforms. 5-pipe…

Models MolecularPatch-Clamp TechniquesStereochemistryAlpha (ethology)gamma-Aminobutyric acidArticleGABAA-rho receptorCell Linechemistry.chemical_compoundStructure-Activity RelationshipXenopus laevisPiperidinesDrug DiscoverymedicineAnimalsHumansGABA-A Receptor AgonistsBinding siteReceptorgamma-Aminobutyric AcidG alpha subunitBinding SitesMolecular StructureChemistryGABAA receptorMuscimolBrainIsoxazolesReceptors GABA-ARatsElectrophysiologyProtein SubunitsBiochemistryMuscimolMutationOocytesMolecular MedicineFemalemedicine.drugJournal of medicinal chemistry
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Porphyrin-Based Design of Bioinspired Multitarget Quadruplex Ligands

2014

Secondary nucleic acid structures, such as DNA and RNA quadruplexes, are potential targets for cancer therapies. Ligands that interact with these targets could thus find application as anticancer agents. Synthetic G-quartets have recently found numerous applications, including use as bioinspired G-quadruplex ligands. Herein, the design, synthesis and preliminary biophysical evaluation of a new prototype multitarget G-quadruplex ligand, (PNA)PorphySQ, are reported, where peptidic nucleic acid guanine ((PNA)G) was incorporated in the porphyrin-templated synthetic G-quartet (PorphySQ). Using fluorescence resonance energy transfer (FRET)-melting experiments, PorphySQ was shown to possess enhanc…

Models MolecularPeptide Nucleic AcidsGuaninePorphyrinsStereochemistryGuanineLigands010402 general chemistryG-quadruplex01 natural sciencesBiochemistryStructure-Activity Relationship03 medical and health scienceschemistry.chemical_compoundDrug Discovery[CHIM]Chemical SciencesStructure–activity relationshipheterocyclic compoundsGeneral Pharmacology Toxicology and PharmaceuticsBinding siteComputingMilieux_MISCELLANEOUS030304 developmental biologyPharmacology0303 health sciencesBinding SitesChemistryLigandOrganic ChemistryDNA0104 chemical sciencesG-QuadruplexesFörster resonance energy transferNucleic acidNucleic Acid ConformationRNAMolecular MedicineDNAChemMedChem
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DNA minor groove binders: an overview on molecular modeling and QSAR approaches

2007

Molecular recognition of DNA by small molecules and proteins is a fundamental problem in structural biology and drug design. Understanding of recognition in both sequence-selective and sequence neutral ways at the level of successful prediction of binding modes and site selectivity will be instrumental for improvements in the design and synthesis of new molecules as potent and selective gene-regulatory drugs. Minor groove is the target of a large number of non-covalent binding agents. DNA binding with specific sequences, mostly AT, takes place by means of a combination of directed hydrogen bonding to base pair edges, van der Waals interactions with the minor groove walls and generalized ele…

Models MolecularPharmacologyDNA minor groove binders (mGBs) in silico techniques molecular modeling ab initio methods docking molecular dynamics simulations (MDS) QSAR QSPR.Molecular modelBase pairStereochemistryChemistryIn silicoOrganic ChemistryQuantitative Structure-Activity RelationshipDNAComputational biologyBiochemistrySmall moleculechemistry.chemical_compoundMolecular recognitionPharmaceutical PreparationsStructural biologyDocking (molecular)Drug DesignDrug DiscoveryNucleic Acid ConformationMolecular MedicineDNA
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Flavonoids as noncompetitive inhibitors of Dengue virus NS2B-NS3 protease: Inhibition kinetics and docking studies

2014

NS2B-NS3 is a serine protease of the Dengue virus considered a key target in the search for new antiviral drugs. In this study flavonoids were found to be inhibitors of NS2B-NS3 proteases of the Dengue virus serotypes 2 and 3 with IC50 values ranging from 15 to 44 μM. Agathisflavone (1) and myricetin (4) turned out to be noncompetitive inhibitors of dengue virus serotype 2 NS2B-NS3 protease with Ki values of 11 and 4.7 μM, respectively. Docking studies propose a binding mode of the flavonoids in a specific allosteric binding site of the enzyme. Analysis of biomolecular interactions of quercetin (5) with NT647-NHS-labeled Dengue virus serotype 3 NS2B-NS3 protease by microscale thermophoresis…

Models MolecularProteasesSerine Proteinase Inhibitorsvirusesmedicine.medical_treatmentClinical BiochemistryPharmaceutical ScienceDengue virusmedicine.disease_causeAntiviral AgentsBiochemistryStructure-Activity Relationshipchemistry.chemical_compoundDrug DiscoverymedicineMolecular BiologyFlavonoidsSerine proteaseNS3ProteasebiologyMicroscale thermophoresisSerine EndopeptidasesOrganic ChemistryDengue VirusVirologyMolecular Docking SimulationKineticschemistryBiochemistryDocking (molecular)biology.proteinMolecular MedicineMyricetinBioorganic & Medicinal Chemistry
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Synthesis and Inhibitory Studies of Phosphonic Acid Analogues of Homophenylalanine and Phenylalanine towards Alanyl Aminopeptidases.

2020

A library of novel phosphonic acid analogues of homophenylalanine and phenylalanine, containing fluorine and bromine atoms in the phenyl ring, have been synthesized. Their inhibitory properties against two important alanine aminopeptidases, of human (hAPN, CD13) and porcine (pAPN) origin, were evaluated. Enzymatic studies and comparison with literature data indicated the higher inhibitory potential of the homophenylalanine over phenylalanine derivatives towards both enzymes. Their inhibition constants were in the submicromolar range for hAPN and the micromolar range for pAPN, with 1-amino-3-(3-fluorophenyl) propylphosphonic acid (compound 15c) being one of the best low-molecular inhibitors …

Models MolecularProtein Conformation alpha-HelicalMolecular modelStereochemistryPhosphorous AcidsSwinePhenylalaninelcsh:QR1-502PhenylalanineCD13 Antigenscomputer-aided simulationsInhibitory postsynaptic potential01 natural sciencesBiochemistrylcsh:MicrobiologyArticlePhenylalanine derivativesSubstrate SpecificitySmall Molecule Libraries03 medical and health sciencesStructure-Activity RelationshipAnimalsHumansProtein Interaction Domains and MotifsEnzyme Inhibitorsphosphonic acid inhibitorsMolecular Biology030304 developmental biologyAlaninechemistry.chemical_classification0303 health sciencesInhibitory potentialBinding Sites010405 organic chemistryChemistryAminobutyratesFluorineBromine0104 chemical sciencesIsoenzymesKineticsEnzymehuman and porcine alanine aminopeptidasefluorine and bromine substitutionThermodynamicsProtein Conformation beta-StrandProtein BindingBiomolecules
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