Jogl G, Tao X, Xu Y, Tong L
Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
Acta Crystallogr D Biol Crystallogr. 2001 Aug;57(Pt 8):1127-34. doi: 10.1107/s0907444901006783. Epub 2001 Jul 23.
The combined molecular-replacement protocol uses a limited six-dimensional search to solve a structure by the molecular-replacement method, with the sampling of the rotational degrees of freedom guided by the rotation function. This protocol therefore automatically combines the information on the rotational and translational parameters of the search model. The combined molecular-replacement protocol has been implemented in a new computer program, COMO. The calculation of the Patterson correlation translation function has been optimized to improve its speed performance. A packing check is implemented that automatically removes impossible solutions and thereby increases the signal in the calculation. A family of atomic models can be used as the search model; the program will automatically select the model that gives the best result. The command interface is well organized and requires the definition of only a few critical parameters by the user. In addition, a graphical user interface has been constructed for the program. The program has been used to solve several difficult molecular-replacement problems. A case is presented where the program automatically determined the orientation and position of five copies of a search model in a high-symmetry space group.
组合分子置换协议使用有限的六维搜索,通过分子置换方法来解析结构,其旋转自由度的采样由旋转函数引导。因此,该协议自动结合了搜索模型旋转和平移参数的信息。组合分子置换协议已在一个新的计算机程序COMO中实现。对帕特森相关平移函数的计算进行了优化,以提高其速度性能。实施了一个堆积检查,自动去除不可能的解,从而增加计算中的信号。一族原子模型可用作搜索模型;程序将自动选择给出最佳结果的模型。命令界面组织良好,用户只需定义几个关键参数。此外,还为该程序构建了一个图形用户界面。该程序已用于解决几个困难的分子置换问题。给出了一个案例,该程序在一个高对称空间群中自动确定了一个搜索模型的五个拷贝的取向和位置。