Cowtan K D, Main P
Department of Chemistry, University of York, Heslington, England.
Acta Crystallogr D Biol Crystallogr. 1996 Jan 1;52(Pt 1):43-8. doi: 10.1107/S090744499500761X.
A variety of density-modification techniques are now available for improving electron-density maps in accordance with known chemical information. This modification must, however, always be constrained by consistency with the experimental data. This is conventionally achieved by alternating cycles of map modification in real space with recombination with the experimental data in reciprocal space. The phase recombination is based upon the assumption that the density-modified map may be treated as a partial model of the structure which contains information independent of the experimentally derived phases. This assumption is shown to be incorrect, and an alternative procedure is investigated which as a side effect allows calculation of a free R factor.
现在有多种密度修正技术可用于根据已知化学信息改进电子密度图。然而,这种修正必须始终受到与实验数据一致性的限制。传统上,这是通过在实空间中交替进行图修正循环与在倒易空间中与实验数据重新组合来实现的。相位重新组合基于这样的假设:密度修正图可被视为结构的部分模型,其中包含独立于实验得出的相位的信息。结果表明这个假设是不正确的,并且研究了一种替代程序,其附带效应是可以计算自由R因子。