Gao Haixiao, Frank Joachim
Howard Hughes Medical Institute, Health Research, Inc. at the Wadsworth Center, Empire State Plaza, Albany, New York 12201, USA.
Structure. 2005 Mar;13(3):401-6. doi: 10.1016/j.str.2005.01.004.
Real-space refinement has been previously introduced as a flexible fitting method to interpret medium-resolution cryo-EM density maps in terms of atomic structures. In this way, conformational changes related to functional processes can be analyzed on the molecular level. In the application of the technique to the ribosome, quasiatomic models have been derived that have advanced our understanding of translocation. In this article, the choice of parameters for the fitting procedure is discussed. The quality of the fitting depends critically on the number of rigid pieces into which the model is divided. Suitable quality indicators are crosscorrelation, R factor, and density residual, all of which can also be locally applied. The example of the ribosome may provide some guidelines for general applications of real-space refinement to flexible fitting problems.
实空间精修先前已作为一种灵活的拟合方法被引入,用于根据原子结构解释中等分辨率的冷冻电镜密度图。通过这种方式,可以在分子水平上分析与功能过程相关的构象变化。在将该技术应用于核糖体时,已经推导出了准原子模型,这些模型加深了我们对转位的理解。在本文中,讨论了拟合过程中参数的选择。拟合质量关键取决于模型被划分成的刚性片段数量。合适的质量指标是互相关、R因子和密度残差,所有这些指标也都可以局部应用。核糖体的例子可能为实空间精修在灵活拟合问题上的一般应用提供一些指导方针。