利用IPCAS(迭代蛋白质晶体结构自动解决方案)完成蛋白质复合体结构。

Weizhe Zhang, Hongmin Zhang, Tao Zhang, Haifu Fan, Quan Hao
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引用次数: 8

摘要

蛋白质复合物是许多细胞过程的重要组成部分。在这项研究中,使用直接方法辅助的双空间迭代相位和模型构建程序套件IPCAS(迭代蛋白质晶体结构自动解决方案)演示了从部分分子替代(MR)溶液中确定蛋白质复合物结构的过程。IPCAS迭代过程包括(i)真实空间模型的构建和改进,(ii)直接方法辅助的往复式空间阶段改进和(iii)通过密度修改进行阶段改进。该程序已经在四种蛋白质复合物中进行了测试,其中包括两种以前未知的结构。一旦分子替代方法能够给出部分解决方案,就可以使用IPCAS从一个或少于一个亚基构建整个复杂结构。在最具挑战性的情况下,IPCAS能够从不到30%的复杂结构扩展到全长,而传统的模型构建程序则不成功。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Protein-complex structure completion using IPCAS (Iterative Protein Crystal structure Automatic Solution).

Protein complexes are essential components in many cellular processes. In this study, a procedure to determine the protein-complex structure from a partial molecular-replacement (MR) solution is demonstrated using a direct-method-aided dual-space iterative phasing and model-building program suite, IPCAS (Iterative Protein Crystal structure Automatic Solution). The IPCAS iteration procedure involves (i) real-space model building and refinement, (ii) direct-method-aided reciprocal-space phase refinement and (iii) phase improvement through density modification. The procedure has been tested with four protein complexes, including two previously unknown structures. It was possible to use IPCAS to build the whole complex structure from one or less than one subunit once the molecular-replacement method was able to give a partial solution. In the most challenging case, IPCAS was able to extend to the full length starting from less than 30% of the complex structure, while conventional model-building procedures were unsuccessful.

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