2I3E

Solution structure of catalytic domain of goldfish RICH protein


SOLUTION NMR
NMR Experiment
ExperimentTypeSample ContentsSolventIonic StrengthpHPressureTemperature (K)Spectrometer
115N-edited NOESY1 mM RICH protein U-15N,13C; 50 mM MES buffer, 90% H2O, 10% D2O90% H2O/10% D2O150 mM NaCl6.01 atm307
213C-edited NOESY1 mM RICH protein U-15N,13C; 50 mM MES buffer, 90% H2O, 10% D2O90% H2O/10% D2O150 mM NaCl6.01 atm307
3HNCA1 mM RICH protein U-15N,13C; 50 mM MES buffer, 90% H2O, 10% D2O90% H2O/10% D2O150 mM NaCl6.01 atm307
4HNCACB1 mM RICH protein U-15N,13C; 50 mM MES buffer, 90% H2O, 10% D2O90% H2O/10% D2O
5CBCA(CO)NH1 mM RICH protein U-15N,13C; 50 mM MES buffer, 90% H2O, 10% D2O90% H2O/10% D2O
NMR Spectrometer Information
SpectrometerManufacturerModelField Strength
1VarianUNITY800
2BrukerDRX600
NMR Refinement
MethodDetailsSoftware
simulated annealingstructure was refined by using standard protocol in CNS with restraints from NOE distances, backbone torsion angles and hydrogen bondsXwinNMR
NMR Ensemble Information
Conformer Selection Criteriastructures with the lowest energy and the least restraint violations
Conformers Calculated Total Number150
Conformers Submitted Total Number10
Representative Model1 (lowest energy)
Additional NMR Experimental Information
DetailsThe structure was determined using multi-resonance NMR spectroscopy
Computation: NMR Software
#ClassificationVersionSoftware NameAuthor
1collectionXwinNMR3.5Bruker
2processingNMRPipe2.0Delargio et al.
3data analysisXEASY1.3.13Bartels et al.
4refinementCNS1.1Brunger et al.
5data analysisARIA1.1Nilges et al.
6data analysisTALOS2003Cornilescu et al.