See Abstracts:
The current version of SQUEEZE has been designed, dimensioned and tested for small moiety structures containing disordered solvent molecules of the type toluene, CH2Cl2, tetrahydrofurane, water, methanol etc.. Anions may be treated in the same way. However, take care of the problem of uncertainty of charge balance.
Large voids currently require significant computing in the stage where the size and shape of the solvent accessible void is determined. All calculations are done in the triclinic system (data are expanded automatically when appropriate). Reflection data and FFT-array are stored in memory i.e. large structures (and high symmetry) may require large amounts of memory (change parameter NP21, that defines the available scratch area, globally to a larger value).
SQUEEZE has been implemented as the 'SQUEEZE option' in the program PLATON.
PLATON/SQUEEZE should be compatible with small-moiety structure refinement usage of the program SHELXL-97.
The program is used as a filter. Input files are
- shelxl.hkl - (HKLF type 4) - shelxl.res - (complete set of refined model parameters, including hydrogen atoms but excluding any dummy atoms used to describe the disorder region)
invoke the program with:
platon shelxl.res
give on the prompt >> (or click on the menu) the instruction:
CALC SQUEEZE
- shelxl.lis: a listing file giving details of the calculations - shelxl.hkp: a modified reflection file against which the ordered structure parameters can be refined (the solvent contribution has been eliminated from the reflection data.)
In order to run SHELXL-97 on the 'solvent-free' Fo^2 data:
(Note: save all files you want to keep)
- cp shelxl.res shelxl.ins - cp shelxl.hkp shelxl.hkl - run shelxl
In order to get an .fcf style file (Fo^2 + Fc^2 (model + solvent)) you will need shelxl.hkl (= shelxl.hkp) and shelxl.res
run: platon shelxl.res
with the interactive option: CALC FCF
Final R-values are reported on the basis of the WGHT parameters in the shelxl.res file.
There will be a difference in reflection count as compaired to the SHELXL-run due to the differing number of surviving 'observed'reflections.
The procedure (starting from the original reflection data) can be repeated using the newly refined parameters when desired (This may define a 'refined' void area. However, there will be rarely a need to repeat the procedure).
The general procedure (based on a preliminary implementation of the technique) has been described in more detail in: Acta Cryst. (1990), A46, 194 as the 'BYPASS procedure' P. v.d. Sluis & A.L. Spek)
The 'difference-map' improvement potential of this technique has been demonstrated for small molecule structures. The technique should also work for protein data. However, this has not been tested by us as yet with PLATON/SQUEEZE. Current design features may cause problems when tried.
A directory containing test-examples is in
pub/unix/platon/TEST/SQUEEZE_EXAMPLE
20-9-98