1QZP

NMR structure of the human dematin headpiece domain


SOLUTION NMR
NMR Experiment
ExperimentTypeSample ContentsSolventIonic StrengthpHPressureTemperature (K)Spectrometer
13D_13C-separated_NOESY1 mM DHP U-15N,13C10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
2HNCA1 mM DHP U-15N,13C10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
3HNCOCA1 mM DHP U-15N,13C10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
4HNCO1 mM DHP U-15N,13C10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
5HNCACO1 mM DHP U-15N,13C10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
63D_15N-separated_NOESY0.7 mM DHP 10% 13C, U-15N10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
73D_15N-separated_TOCSY0.7 mM DHP 10% 13C, U-15N10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
8HCCH-COSY1 mM DHP U-15N,13C10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
92D NOESY0.7 mM DHP 10% 13C, U-15N10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
102D TOCSY0.7 mM DHP 10% 13C, U-15N10 mM phosphate, 0.5 mM TMSP, pH 6.0, 10% D2O, and 0.01% sodium azide10 mM phosphate6.0ambient293
NMR Spectrometer Information
SpectrometerManufacturerModelField Strength
1BrukerDMX500
NMR Refinement
MethodDetailsSoftware
Distance geometry / simulated annealingthe structures are based on a total of 1241 restraints: 1129 are NOE-derived distance constraints, 92 are dihedral angle restraints, and 20 are distance restraints from hydrogen bonds.CNS
NMR Ensemble Information
Conformer Selection Criteriastructures with the lowest energy
Conformers Calculated Total Number50
Conformers Submitted Total Number13
Representative Model1 (minimized average structure)
Additional NMR Experimental Information
DetailsThe structure was determined using triple-resonance NMR spectroscopy.
Computation: NMR Software
#ClassificationVersionSoftware NameAuthor
1structure solutionCNS1.0Brunger
2processingNMRPipesgi6xDelaglio
3collectionXwinNMR3.1Bruker
4data analysisNMRView4.1.2Johnson
5refinementMOLMOL2k.2Koradi