...
首页> 外文期刊>Proteins: Structure, Function, and Genetics >Improving NMR protein structure quality by Rosetta refinement: a molecular replacement study.
【24h】

Improving NMR protein structure quality by Rosetta refinement: a molecular replacement study.

机译:通过Rosetta改良提高NMR蛋白质结构质量:一项分子替代研究。

获取原文
获取原文并翻译 | 示例

摘要

The structure of human protein HSPC034 has been determined by both solution nuclear magnetic resonance (NMR) spectroscopy and X-ray crystallography. Refinement of the NMR structure ensemble, using a Rosetta protocol in the absence of NMR restraints, resulted in significant improvements not only in structure quality, but also in molecular replacement (MR) performance with the raw X-ray diffraction data using MOLREP and Phaser. This method has recently been shown to be generally applicable with improved MR performance demonstrated for eight NMR structures refined using Rosetta (Qian et al., Nature 2007;450:259-264). Additionally, NMR structures of HSPC034 calculated by standard methods that include NMR restraints have improvements in the RMSD to the crystal structure and MR performance in the order DYANA, CYANA, XPLOR-NIH, and CNS with explicit water refinement (CNSw). Further Rosetta refinement of the CNSw structures, perhaps due to more thorough conformational sampling and/or a superior force field, was capable of finding alternative low energy protein conformations that were equally consistent with the NMR data according to the Recall, Precision, and F-measure (RPF) scores. On further examination, the additional MR-performance shortfall for NMR refined structures as compared with the X-ray structure were attributed, in part, to crystal-packing effects, real structural differences, and inferior hydrogen bonding in the NMR structures. A good correlation between a decrease in the number of buried unsatisfied hydrogen-bond donors and improved MR performance demonstrates the importance of hydrogen-bond terms in the force field for improving NMR structures. The superior hydrogen-bond network in Rosetta-refined structures demonstrates that correct identification of hydrogen bonds should be a critical goal of NMR structure refinement. Inclusion of nonbivalent hydrogen bonds identified from Rosetta structures as additional restraints in the structure calculation results in NMR structures with improved MR performance.
机译:人蛋白HSPC034的结构已通过溶液核磁共振(NMR)光谱和X射线晶体学确定。在没有NMR约束的情况下,使用Rosetta协议对NMR结构集合进行改进,不仅可以显着改善结构质量,而且可以显着改善使用MOLREP和Phaser进行的原始X射线衍射数据的分子置换(MR)性能。最近已经显示出该方法普遍适用,并且对于使用Rosetta精制的八个NMR结构已证明具有改善的MR性能(Qian等人,Nature 2007; 450:259-264)。此外,通过标准方法(包括NMR约束)计算出的HSPC034的NMR结构具有显着的水精制(CNSw)的DYANA,CYANA,XPLOR-NIH和CNS顺序,从而改善了RMSD的晶体结构和MR性能。根据Recall,Precision和F-,进一步的Roset精修CNSw结构,也许是由于更彻底的构象采样和/或更好的力场,能够找到与NMR数据同等的替代低能蛋白质构象。测量(RPF)分数。在进一步检查中,与X射线结构相比,NMR精制结构的其他MR性能不足部分归因于晶体堆积效应,实际结构差异以及NMR结构中的氢键较弱。埋入的不满意氢键供体的数量减少与MR性能改善之间的良好相关性表明,氢键项在力场中对改善NMR结构的重要性。罗塞塔精制结构中优越的氢键网络表明,正确鉴定氢键应该是NMR结构改进的关键目标。从Rosetta结构中鉴定出的非二价氢键作为结构计算中的附加限制,导致NMR结构的MR性能得到改善。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号