Zwart Peter H, Afonine Pavel V, Grosse-Kunstleve Ralf W, Hung Li-Wei, Ioerger Thomas R, McCoy Airlie J, McKee Erik, Moriarty Nigel W, Read Randy J, Sacchettini James C, Sauter Nicholas K, Storoni Laurent C, Terwilliger Thomas C, Adams Paul D
Lawrence Berkeley National Laboratory, Berkeley, CA, USA.
Methods Mol Biol. 2008;426:419-35. doi: 10.1007/978-1-60327-058-8_28.
Significant time and effort are often required to solve and complete a macromolecular crystal structure. The development of automated computational methods for the analysis, solution, and completion of crystallographic structures has the potential to produce minimally biased models in a short time without the need for manual intervention. The PHENIX software suite is a highly automated system for macromolecular structure determination that can rapidly arrive at an initial partial model of a structure without significant human intervention, given moderate resolution, and good quality data. This achievement has been made possible by the development of new algorithms for structure determination, maximum-likelihood molecular replacement (PHASER), heavy-atom search (HySS), template- and pattern-based automated model-building (RESOLVE, TEXTAL), automated macromolecular refinement (phenix. refine), and iterative model-building, density modification and refinement that can operate at moderate resolution (RESOLVE, AutoBuild). These algorithms are based on a highly integrated and comprehensive set of crystallographic libraries that have been built and made available to the community. The algorithms are tightly linked and made easily accessible to users through the PHENIX Wizards and the PHENIX GUI.
解析和完成一个大分子晶体结构通常需要耗费大量的时间和精力。开发用于晶体结构分析、解析和完成的自动化计算方法,有可能在短时间内生成偏差最小的模型,而无需人工干预。PHENIX软件套件是一个用于大分子结构测定的高度自动化系统,在中等分辨率和高质量数据的情况下,无需大量人工干预即可快速得出结构的初始部分模型。结构测定新算法的开发促成了这一成果,这些算法包括最大似然分子置换(PHASER)、重原子搜索(HySS)、基于模板和模式的自动模型构建(RESOLVE、TEXTAL)、自动大分子精修(phenix.refine)以及可在中等分辨率下运行的迭代模型构建、密度修正和精修(RESOLVE、AutoBuild)。这些算法基于一套高度集成且全面的晶体学库,这些库已构建完成并向社区开放。这些算法紧密相连,并通过PHENIX向导和PHENIX图形用户界面方便用户使用。