Terwilliger Thomas C, Read Randy J, Adams Paul D, Brunger Axel T, Afonine Pavel V, Grosse-Kunstleve Ralf W, Hung Li-Wei
Bioscience Division and Los Alamos Institutes, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Acta Crystallogr D Biol Crystallogr. 2012 Jul;68(Pt 7):861-70. doi: 10.1107/S0907444912015636. Epub 2012 Jun 19.
An approach is presented for addressing the challenge of model rebuilding after molecular replacement in cases where the placed template is very different from the structure to be determined. The approach takes advantage of the observation that a template and target structure may have local structures that can be superimposed much more closely than can their complete structures. A density-guided procedure for deformation of a properly placed template is introduced. A shift in the coordinates of each residue in the structure is calculated based on optimizing the match of model density within a 6 Å radius of the center of that residue with a prime-and-switch electron-density map. The shifts are smoothed and applied to the atoms in each residue, leading to local deformation of the template that improves the match of map and model. The model is then refined to improve the geometry and the fit of model to the structure-factor data. A new map is then calculated and the process is repeated until convergence. The procedure can extend the routine applicability of automated molecular replacement, model building and refinement to search models with over 2 Å r.m.s.d. representing 65-100% of the structure.
本文提出了一种方法,用于应对在分子置换后进行模型重建时所面临的挑战,即在已放置的模板与待确定结构差异很大的情况下。该方法利用了这样一个观察结果:模板和目标结构可能具有局部结构,这些局部结构比它们的完整结构能更紧密地叠加。引入了一种基于密度引导的程序,用于对正确放置的模板进行变形。基于优化每个残基中心半径6 Å范围内模型密度与主-开关电子密度图的匹配,计算结构中每个残基坐标的位移。这些位移经过平滑处理后应用于每个残基中的原子,导致模板的局部变形,从而改善图与模型的匹配。然后对模型进行优化,以改善几何结构以及模型与结构因子数据的拟合。接着计算新的图,并重复该过程,直到收敛。该程序可以将自动分子置换、模型构建和优化的常规适用性扩展到搜索与待确定结构有超过2 Å均方根偏差且代表65%-100%结构的模型。