SOLUTION NMR
NMR Experiment
ExperimentTypeSample ContentsSolventIonic StrengthpHPressureTemperature (K)Spectrometer
12D 1H-1H NOESY90% WATER/10% D2O100 mM6.51.0 atm295.0
23D 1H-15N NOESY90% WATER/10% D2O100 mM6.51.0 atm295.0
33D 1H-13C NOESY (ALIPHATIC CARBONS)90% WATER/10% D2O100 mM6.51.0 atm295.0
43D 1H- 13C NOESY (AROMATIC CARBONS)90% WATER/10% D2O100 mM6.51.0 atm295.0
NMR Spectrometer Information
SpectrometerManufacturerModelField Strength
1BrukerAVANCE600
2BrukerAVANCE900
3BrukerAVANCE900
4BrukerAVANCE900
NMR Refinement
MethodDetailsSoftware
simulated annealingDISTANCE RESTRAINTS DERIVED FROM THE CYANA CALCULATIONS, TORSION ANGLE RESTRAINTS DERIVED FROM TALOS BASED ON SECONDARY CHEMICAL SHIFTS, AND RDC RESTRAINTS WERE APPLIED FOR A WATER REFINEMENT CALCULATION USING A SIMULATED ANNEALING PROTOCOL IN CNS. THE ZINC COORDINATION GEOMETRY WAS DEFINED AND MAINTAINED BY DISTANCE AND ANGLE CONSTRAINTS. .CNS-ARIA
NMR Ensemble Information
Conformer Selection CriteriaLOWEST ENERGY
Conformers Calculated Total Number100
Conformers Submitted Total Number20
Representative Model1 (n/a)
Additional NMR Experimental Information
DetailsTHE CHEMICAL SHIFTS OF THE DEAF-1 MYND DOMAIN WERE ASSIGNED USING STANDARD HETERONUCLEAR EXPERIMENTS ACQUIRED AT 295 K ON A 1 MM UNIFORMLY 15N,13C LABELED SAMPLE. EXPERIMENTS WERE CARRIED OUT ON BRUKER SPECTROMETERS OPERATING AT A PROTON FREQUENCY BETWEEN 500 AND 900 MHZ. ALL SPECTRA WERE PROCESSED USING THE PACKAGE NMRPIPE- NMRDRAW
Computation: NMR Software
#ClassificationVersionSoftware NameAuthor
1refinementCNS-ARIANILGES
2structure solutionNMRPipe
3structure solutionTALOS
4structure solutionSparky
5structure solutionCYANA
6structure solutionARIA-CNS