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Two homologous rat cellular retinol-binding proteins differ in local structure and flexibility
SOLUTION NMR
NMR Experiment
Experiment
Type
Sample Contents
Solvent
Ionic Strength
pH
Pressure
Temperature (K)
Spectrometer
1
3D_13C-separated_NOESY
1.0mM cellular retinol-binding
protein I U-[99% 15N, 99% 13C] in complex with
all-trans retinol (natural isotope abundance);
20mM phosphate buffer, 50mM potassium chloride,
0.05% sudium azide, 5mM beta-mecaptoethanol-d6;
95% H2O, 5% D2O
95% H2O/5% D2O
0.34
7.4
ambient
298
2
3D_15N-separated_NOESY
1.0mM cellular retinol-binding
protein I U-[99% 15N, 99% 13C] in complex with
all-trans retinol (natural isotope abundance);
20mM phosphate buffer, 50mM potassium chloride,
0.05% sudium azide, 5mM beta-mecaptoethanol-d6;
95% H2O, 5% D2O
95% H2O/5% D2O
0.34
7.4
ambient
298
NMR Spectrometer Information
Spectrometer
Manufacturer
Model
Field Strength
1
Varian
INOVA
500
2
Varian
INOVA
600
3
Varian
UNITYPLUS
500
4
Varian
UNITY
600
NMR Refinement
Method
Details
Software
distance geometry
simulated annealing
VNMR
NMR Ensemble Information
Conformer Selection Criteria
target function
Conformers Calculated Total Number
50
Conformers Submitted Total Number
25
Representative Model
1 (minimized average structure)
Additional NMR Experimental Information
Details
Triple resonance experiments for
the 1H, 15N and 13C resonance
assignments included the following:
HNCO
CBCACONNH
HNCACB
CBCACOCAHA
HCCH-TOCSY
15N-resolved TOCSY-HSQC;
The intra-ligand NOE constraints
as well as ligand-protein NOE
constraints were obtained from
2D 13C and 15N double half-filtered
experiment