4BGC
T1 domain of the renal potassium channel Kv1.3
Experimental procedure
Experimental method | SINGLE WAVELENGTH |
Source type | SYNCHROTRON |
Source details | SLS BEAMLINE X10SA |
Synchrotron site | SLS |
Beamline | X10SA |
Temperature [K] | 100 |
Detector technology | CCD |
Collection date | 2005-04-18 |
Detector | MARRESEARCH |
Spacegroup name | I 4 |
Unit cell lengths | 59.740, 59.740, 62.330 |
Unit cell angles | 90.00, 90.00, 90.00 |
Refinement procedure
Resolution | 18.970 - 1.200 |
R-factor | 0.16499 |
Rwork | 0.163 |
R-free | 0.20463 |
Structure solution method | MOLECULAR REPLACEMENT |
Starting model (for MR) | 1qdw |
RMSD bond length | 0.028 |
RMSD bond angle | 2.205 |
Data reduction software | XDS |
Data scaling software | XSCALE |
Phasing software | PHASER |
Refinement software | REFMAC (5.2.0019) |
Data quality characteristics
Overall | Outer shell | |
Low resolution limit [Å] | 45.000 | 1.300 |
High resolution limit [Å] | 1.200 | 1.200 |
Rmerge | 0.050 | 0.160 |
Number of reflections | 33942 | |
<I/σ(I)> | 17 | 8.6 |
Completeness [%] | 99.2 | 98.5 |
Redundancy | 3.7 | 3 |
Crystallization Conditions
crystal ID | method | pH | temperature | details |
1 | 6.5 | WE WANTED TO USE THE PROTEIN IN 150 MM POTASSIUM PHOSPHATE BUFFER PH 6.5 IN 5 MM NMR TUBES FOR CHARACTERIZATION USING NMR SPECTROSCOPY. DURING TESTING, WE OBSERVED THE FORMATION OF CRYSTALS IN THE NMR TUBES. AN INITIAL TEST OF THE CRYSTALS SHOWED AN EXCELLENT DIFFRACTION PATTERN, SO WE DECIDED TO CONTINUE WITH CRYSTALLIZATION OPTIMIZATION IN NMR TUBES, RESULTING IN VERY GOOD CRYSTALS |