Search results for "13C NMR"

showing 10 items of 30 documents

The New Structure of Core Oligosaccharide Presented by Proteus penneri 40A and 41 Lipopolysaccharides

2018

The new type of core oligosaccharide in Proteus penneri 40A and 41 lipopolysaccharides has been investigated by 1H and 13C NMR spectroscopy, electrospray ionization mass spectrometry and chemical methods. Core oligosaccharides of both strains were chosen for structural analysis based on the reactivity of LPSs with serum against P. penneri 40A core oligosaccharide–diphtheria toxoid conjugate. Structural analyses revealed that P. penneri 40A and 41 LPSs possess an identical core oligosaccharide.

0301 basic medicineLipopolysaccharidesSpectrometry Mass Electrospray IonizationMagnetic Resonance SpectroscopyStereochemistryElectrospray ionizationOligosaccharidesanti-conjugate serum; core oligosaccharide; lipopolysaccharide; NMR spectroscopy; ESI MS; <i>Proteus penneri</i>Immune seraProteus penneriCatalysisArticleInorganic Chemistrycore oligosaccharidelcsh:Chemistry03 medical and health sciencesStructure-Activity Relationship13c nmr spectroscopyNMR spectroscopyMoleculePhysical and Theoretical ChemistryESI MSMolecular Biologylcsh:QH301-705.5SpectroscopyAntigens Bacterial030102 biochemistry & molecular biologybiologyMolecular StructureChemistryCore oligosaccharideImmune Seraanti-conjugate serumOrganic ChemistrylipopolysaccharideGeneral MedicineNuclear magnetic resonance spectroscopybiology.organism_classificationProteus penneriComputer Science Applicationslcsh:Biology (General)lcsh:QD1-999ConjugateInternational Journal of Molecular Sciences
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Experimental and theoretical NMR and IR studies of the side‐chain orientation effects on the backbone conformation of dehydrophenylalanine residue

2011

Conformation of N‐acetyl‐(E)‐dehydrophenylalanine N′, N′‐dimethylamide (Ac‐(E)‐ΔPhe‐NMe2) in solution, a member of (E)‐α, β‐dehydroamino acids, was studied by NMR and infrared spectroscopy and the results were compared with those obtained for (Z) isomer. To support the spectroscopic interpretation, the ϕ, ψ potential energy surfaces were calculated at the MP2/6‐31 + G(d,p) level of theory in chloroform solution modeled by the self‐consistent reaction field‐polarizable continuum model method. All minima were fully optimized by the MP2 method and their relative stabilities were analyzed in terms of π‐conjugation, internal H‐bonds and dipole interactions between carbonyl groups. The obtained N…

13C NMRDFT‐GIAO calculationsIR spectroscopytheoretical conformational analysisH NMRdehydrophenylalanineZE isomersMagnetic Resonance in Chemistry
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The metabolites of the genus onopordum (asteraceae): Chemistry and biological properties

2011

Onopordum is an interesting genus belonging to the tribe Cardueae (Asteraceae family), and the species of this genus are used as food and in the popular medicine of several countries. The present paper reviews all the metabolites present in all the species of this genus, reported up to 2009, and several chemotaxonomic consideration have been made. Furthermore, the occurrence in other genus, the spectral data, the synthetic approaches, the chemical modifications and the biological properties of the sesquiterpenes of genus Onopor- dum have been reviewed.

13C NMRbiologyOnopordumBiological activitySesquiterpenoidOrganic ChemistryZoologySettore CHIM/06 - Chimica OrganicaAsteraceaebiology.organism_classificationTribe (biology)Steroids and triterrpeneSynthesisGenusBiological propertyBotanyFlavonoidChemcial modificationSpectral data
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1,3-Dipolar Cycloaddition Reactions of Indan-1-one Enamines across Arylnitrile Oxides Leading to Novel Cyclic Isoxazoline Derivatives

2013

Synthesis of a series of cyclic fused-isoxazolines has been accomplished by regioselective and diastereoselective 1,3-dipolar cycloaddition of 3-methylindan-1-one enamines (1a, 1b, 1c) and 3-phenylindan-1-one enamines (2a, 2b, 2c) to arylnitrile oxides (3d, 3e, 3f, 3g, 3h). The structure of the cycloadducts was elucidated by 1H and 13C NMR spectroscopy. The proposed regio- and stereochemistry of fused-compounds (4) and (5) has also been corroborated by two single-crystal X-ray diffraction studies carried out on 4-methyl-8b-morpholinyl-3-(p-tolyl)-4H-3a,8b-dihydroindeno[2,3-d]isoxazoline (4be) and 3-(p-anisyl)-4-phenyl-8b-pyrrolidinyl-4H-3a,8b-dihydroindeno[2,3-d]isoxazoline (5af) and by mea…

13c nmr spectroscopy010405 organic chemistryStereochemistryChemistryOrganic Chemistry13-Dipolar cycloadditionRegioselectivityDensity functional theory010402 general chemistry01 natural sciencesMedicinal chemistryCycloaddition0104 chemical sciencesJournal of Heterocyclic Chemistry
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Thermal transformation of micro-crystalline cellulose in phosphoric acid

2011

Use of crude oil derivatives such as diesel and gasoline is becoming unsuitable due to their detriment to environment and to the increasing worldwide energy demand which is driving crude oil reservoirs towards exhaustion. Replacement of diesel and gasoline with biofuels (i.e. biodiesel and bioethanol, respectively) is very desirable. In fact, biofuels are not only environmentally sustainable, but also potentially inexhaustible due to the large amounts of waste biomasses from which they can be retrieved. In the present study, a model compound (micro-crystalline cellulose) was dissolved in phosphoric acid and converted at 80 °C to glucose, thereby providing the possible substrate for fermenta…

Biodiesel13C NMRMaterials sciencePolymers and PlasticsSettore AGR/13 - Chimica AgrariaBioethanol1H T1 NMR relaxometryPulp and paper industrycomplex mixtureschemistry.chemical_compoundDiesel fuelCellulose degradationchemistryBiochemistryBiofuelBiofuelLevulinic acidFermentationGasolineCellulosePhosphoric acid
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Complete 1H and 13C NMR assignments of clerodane diterpenoids of Salvia splendens.

2006

Unambiguous and complete assignments of 1H and 13C NMR chemical shifts for five clerodane diterpenes, four of them isolated from Salvia splendens (salviarin, splendidin and splenolides A and B) and one obtained by acetylation of splenolide A, are presented. The assignments are based on 2D shift-correlated [1H,1H–COSY, 1H,13C-gHSQC–1J(C,H) and 1H,13C-gHMBC-nJ(C,H) (n = 2 and 3)] and nuclear Overhauser effect (NOE) experiments. The conformation of the rings of these compounds is supported by the 3J(H,H) values and NOE results. Copyright © 2006 John Wiley & Sons, Ltd.

Carbon IsotopesMagnetic Resonance SpectroscopybiologyStereochemistryChemistryChemical shiftAcetylationGeneral ChemistryNuclear Overhauser effectCarbon-13 NMRSalviabiology.organism_classificationDiterpenes ClerodaneUnambiguous and complete assignments of 1H and 13C NMR chemical shifts for five clerodane diterpenes four of them isolated from Salvia splendens (salviarin splendidin and splenolides A and B) and one obtained by acetylation of splenolide A are presented. The assignments are based on 2D shiftcorrelated [1H1H–COSY 1H13C-gHSQC–1J(CH) and 1H13C-gHMBC-nJ(CH) (n = 2 and 3)] and nuclear Overhauser effect (NOE) experiments. The conformation of the rings of these compounds is supported by the 3J(HH) values and NOE results. Copyright  2006 John Wiley & Sons LtdClerodane DiterpenesProton NMRGeneral Materials ScienceSalviaHydrogenMagnetic resonance in chemistry : MRC
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13C NMR spectroscopy of four tertiary methyl norbornenols and norbornanols

1975

Carbon chemical shifts and direct 13C1H coupling constants of 2-endo-methyl-5-norbornen-2-exo-ol, 2-exo-methyl-5-norbornen-2-endo-ol, 2-endo-methylnorbornan-2-exo-ol and 2-exo-methylnorbornan-2-endo-ol have been measured from single samples using a dual probe pulse Fourier transform method.

Coupling constantCarbon-13 NMR satelliteChemistryChemical shiftAnalytical chemistrychemistry.chemical_elementGeneral ChemistryFluorine-19 NMRsymbols.namesakeFourier transform13c nmr spectroscopysymbolsGeneral Materials ScienceTransverse relaxation-optimized spectroscopyCarbonOrganic Magnetic Resonance
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Additional Proof for the Structure of the New Flavone Galangustin (Bucegin) Obtained by 13C-NMR Spectroscopy

2010

Crystallography13c nmr spectroscopyChemistryGeneral ChemistryBulletin des Sociétés Chimiques Belges
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3-(4-Fluorophenyl)-1-methyl-4-(4-pyridyl)quinolin-2(1H)-one

2007

The title compound, C21H15FN2O, was synthesized in the course of our studies of p38 mitogen-activated protein kinase inhibitors. It has been investigated by 1H and 13C NMR spectroscopy and was proven by X-ray crystallographic analysis to be the N-methyl rather than the O-methyl isomer. In the crystal structure, a three-dimensional network is formed consisting of quinolinone aromatic stacking inter­actions and weak C—H⋯O and C—H⋯N hydrogen bonds.

Crystallography13c nmr spectroscopyHydrogen bondStereochemistryChemistryStackingGeneral Materials ScienceGeneral ChemistryCrystal structureCondensed Matter PhysicsProtein kinase AActa Crystallographica Section E Structure Reports Online
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Impact of the ΔPhe configuration on the Boc-Gly-ΔPhe-NHMe conformation: experiment and theory

2019

Conformational propensities of N-t-butoxycarbonyl-glycine-(E/Z)-dehydrophenylalanine N′-methylamides (Boc-Gly-(E/Z)-ΔPhe-NHMe) in chloroform were investigated by NMR and IR techniques. The low-temperature crystal structure of the E isomer was determined by single crystal X-ray diffraction and the experimental data were elaborated by theoretical calculations using DFT (B3LYP, M06-2X) and MP2 approaches. The β-turn tendencies for both isomers were determined in the gas phase and in the presence of solvent. The obtained results reveal that the configuration of ΔPhe residue significantly affects the conformations of the studied dehydropeptides. The tendency to adopt β-turn conformations is sign…

Diffractionβ-turn tendencyCrystal structure010402 general chemistry01 natural sciencesGas phaseX-ray crystal structure analysischemistry.chemical_compoundResidue (chemistry)Peptide conformational analysisZ isomer0103 physical sciencesPhysical and Theoretical Chemistry13C NMRChloroform010304 chemical physicsDehydrophenylalanineE isomer1H NMRCondensed Matter Physics0104 chemical sciencesSolventCrystallographychemistryIR spectroscopyDFT-GIAO calculationsSingle crystalStructural Chemistry
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