1DK2

REFINED SOLUTION STRUCTURE OF THE N-TERMINAL DOMAIN OF DNA POLYMERASE BETA


SOLUTION NMR
NMR Experiment
ExperimentTypeSample ContentsSolventIonic StrengthpHPressureTemperature (K)Spectrometer
12D NOESY1.4 MM RAT DNA POLYMERASE BETA N-TERMINAL DOMAIN (2-87); 5MM TRIS-D11; 400MM NACL400 mM NACL6.7AMBIENT300
23D_15N-SEPARATED_NOESY2 MM RAT DNA POLYMERASE BETA N-TERMINAL DOMAIN (2-87) U-15N; 5MM TRIS-D11; 100MM NACL100 mM NACL6.8AMBIENT298
33D_13C-SEPARATED_NOESY2.8 MM RAT DNA POLYMERASE BETA N-TERMINAL DOMAIN (2-87) U-15N,13C; 5MM TRIS- D11; 400MM NACL400 mM NACL6.7AMBIENT300
4HMQC-J4 MM RAT DNA POLYMERASE BETA N-TERMINAL DOMAIN (2-87) U-15N; 5MM TRIS-D11; 400MM NACL400 mM NACL6.7AMBIENT300
NMR Spectrometer Information
SpectrometerManufacturerModelField Strength
1GEGN500500
2VarianUNITYPLUS600
NMR Refinement
MethodDetailsSoftware
TORSION ANGLE DYNAMICS AND SIMULATED ANNEALINGTHE NMR RESTRAINTS INCLUDED 921 USEFUL NOE DETERMINED UPPER DISTANCE RESTRAINTS, 41 HYDROGEN BONDS, AND 135 PHI AND CHI TORSION ANGLE RESTRAINTS. STRUCTURES WERE CALCULATED IN THE PROGRAM DYANA USING TORSION ANGLE DYNAMICS. THE CALCULATION STARTED WITH 100 RANDOMIZED STRUCTURES. THE 50 STRUCTURES WITH THE LOWEST TARGET FUNCTION WERE THEN REFINED WITHIN XPLOR USING SIMULATED ANNEALING. THE 25 LOWEST ENERGY STRUCTURAL CONFORMERS WERE SELECTED TO REPRESENT THE ENSEMBLE.THE 25 REFINED STRUCTURAL CONFORMERS DISPLAYED NO NOE VIOLATIONS >0.3 ANGSTROMS AND NO DIHEDRAL ANGLE VIOLATIONS >3 DEGREES. THE MINIMIZED AVERAGE STRUCTURE WAS CALCULATED FROM THE MEAN POSITION OF THE COORDINATES FOR THE 25 STRUCTURAL CONFORMERS AND WAS REFINED BY POWELL ENERGY MINIMIZATION IN XPLOR USING FULL NMR RESTRAINTS.VNMR
NMR Ensemble Information
Conformer Selection CriteriaTHE SELECTION UTILIZED THE LOWEST ENERGY STRUCTURES WITH NO NOE VIOLATIONS EXCEEDING 0.3 ANGSTROMS AND NO DIHEDRAL VIOLATIONS EXCEEDING 0.3 DEGREES.
Conformers Calculated Total Number100
Conformers Submitted Total Number25
Representative Model10 (lowest energy)
Additional NMR Experimental Information
DetailsPROTEOLYTIC PROCESSING REMOVES THE N-TERMINAL MET IN A BACTERIAL EXPRESSION SYSTEM (SEE KUMAR ET AL., (1990) J. BIOL. CHEM. 265, 2124-2131).
Computation: NMR Software
#ClassificationVersionSoftware NameAuthor
1collectionVNMR4.3VARIAN
2processingFelix95HARE, BIOSYM
3data analysisXEASY1.3.13BARTELS
4structure solutionDYANA1.5GUENTERT
5refinementX-PLOR4.0BRUNGER