1TVF
Crystal Structure of penicillin-binding protein 4 (PBP4) from Staphylococcus aureus
X-RAY DIFFRACTION
Starting Model(s)
Initial Refinement Model(s) | |||
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Type | Source | Accession Code | Details |
experimental model | PDB | 1HD8 | Arp/Warp autobuilt model using phases from two Ta6Br12 clusters and a poor molecular replacement solution. MR was carried out using a model derived from PDB entry 1HD8, which is a mutant of PBP5, sharing ~26% identity with PBP4 over a 245 residue range. Phase combination with MR solution was necessary, as Ta6Br12 clusters occupied positions on the symmetry planes resulting in centrosymmetric phases and hence uninterpretable maps. |
Crystallization
Crystalization Experiments | ||||
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ID | Method | pH | Temperature | Details |
1 | VAPOR DIFFUSION, HANGING DROP | 5.6 | 291 | 24% PEG 4000, 100mM citrate buffer, 200mM Ammonium Sulfate, pH 5.6, VAPOR DIFFUSION, HANGING DROP, temperature 291K |
Crystal Properties | |
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Matthews coefficient | Solvent content |
2.58 | 51.95 |
Crystal Data
Unit Cell | |
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Length ( Å ) | Angle ( ˚ ) |
a = 48.713 | α = 90 |
b = 140.189 | β = 90 |
c = 145.775 | γ = 90 |
Symmetry | |
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Space Group | P 21 21 21 |
Diffraction
Diffraction Experiment | ||||||||||||||
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ID # | Crystal ID | Scattering Type | Data Collection Temperature | Detector | Detector Type | Details | Collection Date | Monochromator | Protocol | |||||
1 | 1 | x-ray | 100 | CCD | MARRESEARCH | 2001-10-23 | M | SINGLE WAVELENGTH | ||||||
2 | 1 | x-ray | 100 | M | SINGLE WAVELENGTH |
Radiation Source | |||||
---|---|---|---|---|---|
ID # | Source | Type | Wavelength List | Synchrotron Site | Beamline |
1 | SYNCHROTRON | NSLS BEAMLINE X9A | 0.98 | NSLS | X9A |
2 | SYNCHROTRON | NSLS BEAMLINE X9A | 1.25 | NSLS | X9A |
Data Collection
Overall | |||||||||||||||||||
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ID # | Resolution (High) | Resolution (Low) | Percent Possible (Observed) | R Sym I (Observed) | Net I Over Average Sigma (I) | Redundancy | Number Reflections (All) | Number Reflections (Observed) | Observed Criterion Sigma (F) | Observed Criterion Sigma (I) | B (Isotropic) From Wilson Plot | ||||||||
1,2 | 2 | 30 | 98.9 | 0.058 | 17.1 | 3.5 | 67865 | 67865 | 9.5 |
Highest Resolution Shell | |||||||||||||||||||
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ID # | Resolution (High) | Resolution (Low) | Percent Possible (All) | Percent Possible (Observed) | R-Sym I (Observed) | Mean I Over Sigma (Observed) | Redundancy | Number Unique Reflections (All) | |||||||||||
2 | 2.07 | 98.7 | 0.196 | 5.5 |
Refinement
Statistics | |||||||||||||||||||
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Diffraction ID | Structure Solution Method | Cross Validation method | Starting model | Resolution (High) | Resolution (Low) | Number Reflections (All) | Number Reflections (Observed) | Number Reflections (R-Free) | Percent Reflections (Observed) | R-Factor (Observed) | R-Work | R-Free | R-Free Selection Details | Mean Isotropic B | |||||
X-RAY DIFFRACTION | SIRAS, MOLECULAR REPLACEMENT | THROUGHOUT | Arp/Warp autobuilt model using phases from two Ta6Br12 clusters and a poor molecular replacement solution. MR was carried out using a model derived from PDB entry 1HD8, which is a mutant of PBP5, sharing ~26% identity with PBP4 over a 245 residue range. Phase combination with MR solution was necessary, as Ta6Br12 clusters occupied positions on the symmetry planes resulting in centrosymmetric phases and hence uninterpretable maps. | 2 | 23.68 | 67366 | 67366 | 3423 | 98.4 | 0.166 | 0.166 | 0.205 | RANDOM | 19.8 |
Temperature Factor Modeling | ||||||
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Anisotropic B[1][1] | Anisotropic B[1][2] | Anisotropic B[1][3] | Anisotropic B[2][2] | Anisotropic B[2][3] | Anisotropic B[3][3] | |
-3.66 | 2.23 | 1.43 |
RMS Deviations | |
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Key | Refinement Restraint Deviation |
c_dihedral_angle_d | 23.8 |
c_scangle_it | 3.09 |
c_scbond_it | 2.25 |
c_angle_deg | 2.1 |
c_mcangle_it | 1.81 |
c_improper_angle_d | 1.37 |
c_mcbond_it | 1.28 |
c_bond_d | 0.024 |
Non-Hydrogen Atoms Used in Refinement | |
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Non-Hydrogen Atoms | Number |
Protein Atoms | 5796 |
Nucleic Acid Atoms | |
Solvent Atoms | 781 |
Heterogen Atoms | 43 |
Software
Software | |
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Software Name | Purpose |
CNS | refinement |
DENZO | data reduction |
SCALEPACK | data scaling |
MLPHARE | phasing |