Molecular Biophysics and Integrated Bioimaging Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.
Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, Houston, TX 77030, USA.
Acta Crystallogr D Struct Biol. 2019 Oct 1;75(Pt 10):861-877. doi: 10.1107/S2059798319011471. Epub 2019 Oct 2.
Diffraction (X-ray, neutron and electron) and electron cryo-microscopy are powerful methods to determine three-dimensional macromolecular structures, which are required to understand biological processes and to develop new therapeutics against diseases. The overall structure-solution workflow is similar for these techniques, but nuances exist because the properties of the reduced experimental data are different. Software tools for structure determination should therefore be tailored for each method. Phenix is a comprehensive software package for macromolecular structure determination that handles data from any of these techniques. Tasks performed with Phenix include data-quality assessment, map improvement, model building, the validation/rebuilding/refinement cycle and deposition. Each tool caters to the type of experimental data. The design of Phenix emphasizes the automation of procedures, where possible, to minimize repetitive and time-consuming manual tasks, while default parameters are chosen to encourage best practice. A graphical user interface provides access to many command-line features of Phenix and streamlines the transition between programs, project tracking and re-running of previous tasks.
X 射线、中子和电子衍射以及电子晶体学显微镜是确定三维大分子结构的强大方法,这是理解生物过程和开发针对疾病的新疗法所必需的。这些技术的整体结构解决方案流程相似,但存在细微差别,因为实验数据的性质不同。因此,结构确定软件工具应针对每种方法进行定制。Phenix 是一个用于大分子结构确定的综合软件包,可处理来自这些技术中的任何一种的数据。Phenix 执行的任务包括数据质量评估、图谱改进、模型构建、验证/重建/精炼循环和存储。每个工具都针对特定类型的实验数据进行设计。Phenix 的设计强调尽可能自动化过程,以最小化重复和耗时的手动任务,同时选择默认参数以鼓励最佳实践。图形用户界面提供对 Phenix 的许多命令行功能的访问,并简化了程序之间、项目跟踪和以前任务的重新运行之间的过渡。