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TUBULIN ALPHA-BETA DIMER, ELECTRON DIFFRACTION
Crystallization Crystalization Experiments ID Method pH Temperature Details 1 TWO-DIMENSIONAL SHEETS ARE FORMED UNDER NORMAL POLYMERIZING CONDITIONS WITH THE ADDITION OF 1 MM ZNCL2
Crystal Data Unit Cell Length ( Å ) Angle ( ˚ ) a = 80 α = 90 b = 92 β = 90 c = 90 γ = 90
Symmetry Space Group P 1 21 1
Diffraction Diffraction Experiment ID # Crystal ID Scattering Type Data Collection Temperature Detector Detector Type Details Collection Date Monochromator Protocol 1 1 electron 1996-09-18
Refinement Statistics Diffraction ID Structure Solution Method Resolution (High) Resolution (Low) Number Reflections (R-Free) Percent Reflections (Observed) R-Work (Depositor) R-Work (DCC) R-Free (Depositor) Mean Isotropic B ELECTRON CRYSTALLOGRAPHY 3.7 0.5367
Temperature Factor Modeling Anisotropic B[1][1] Anisotropic B[1][2] Anisotropic B[1][3] Anisotropic B[2][2] Anisotropic B[2][3] Anisotropic B[3][3]
Non-Hydrogen Atoms Used in Refinement Non-Hydrogen Atoms Number Protein Atoms 6789 Nucleic Acid Atoms Solvent Atoms Heterogen Atoms 118
Sample alpha-beta tubulin sheets
Specimen Preparation Sample Aggregation State 2D ARRAY Embedding Material tannin-glucose Embedding Details
3D Reconstruction Reconstruction Method CRYSTALLOGRAPHY
Data Acquisition Detector Type GENERIC FILM Electron Dose (electrons/Å**2)
Imaging Experiment 1 2 Date of Experiment Temperature (Kelvin) Microscope Model JEOL 4000 JEOL 4000 Minimum Defocus (nm) Maximum Defocus (nm) Minimum Tilt Angle (degrees) Maximum Tilt Angle (degrees) Nominal CS Imaging Mode DIFFRACTION BRIGHT FIELD Specimen Holder Model Nominal Magnification Calibrated Magnification Source FIELD EMISSION GUN FIELD EMISSION GUN Acceleration Voltage (kV) 400 400 Imaging Details