Division of Molecular Biology, Department of Bioinformatics, University of Salzburg, Hellbrunnerstraße 34, 5020 Salzburg, Austria.
Structure. 2011 Dec 7;19(12):1739-43. doi: 10.1016/j.str.2011.10.011.
Recurring groups of atoms in molecules are surrounded by specific canonical distributions of electrons. Deviations from these distributions reveal unrealistic molecular geometries. Here, we show how canonical electron densities can be combined with classical electron densities derived from X-ray diffraction experiments to drive the real space refinement of crystal structures. The refinement process generally yields superior molecular models with reduced excess electron densities and improved stereochemistry without compromising the agreement between molecular models and experimental data.
分子中反复出现的原子群被特定的电子正则分布所包围。这些分布的偏差揭示了不现实的分子几何形状。在这里,我们展示了如何将正则电子密度与从 X 射线衍射实验中得出的经典电子密度结合起来,推动晶体结构的实空间精修。该精修过程通常可以产生更好的分子模型,减少多余的电子密度,改善立体化学,同时又不影响分子模型与实验数据之间的一致性。