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基于TASSER的核磁共振结构优化。

TASSER-based refinement of NMR structures.

作者信息

Lee Seung Yup, Zhang Yang, Skolnick Jeffrey

机构信息

Center of Excellence in Bioinformatics, University at Buffalo, Buffalo, New York, USA.

出版信息

Proteins. 2006 May 15;63(3):451-6. doi: 10.1002/prot.20902.

Abstract

The TASSER structure prediction algorithm is employed to investigate whether NMR structures can be moved closer to their corresponding X-ray counterparts by automatic refinement procedures. The benchmark protein dataset includes 61 nonhomologous proteins whose structures have been determined by both NMR and X-ray experiments. Interestingly, by starting from NMR structures, the majority (79%) of TASSER refined models show a structural shift toward their X-ray structures. On average, the TASSER refined models have a root-mean-square-deviation (RMSD) from the X-ray structure of 1.785 A (1.556 A) over the entire chain (aligned region), while the average RMSD between NMR and X-ray structures (RMSD(NMR_X-ray)) is 2.080 A (1.731 A). For all proteins having a RMSD(NMR_X-ray) >2 A, the TASSER refined structures show consistent improvement. However, for the 34 proteins with a RMSD(NMR_X-ray) <2 A, there are only 21 cases (60%) where the TASSER model is closer to the X-ray structure than NMR, which may be due to the inherent resolution of TASSER. We also compare the TASSER models with 12 NMR models in the RECOORD database that have been recalculated recently by Nederveen et al. from original NMR restraints using the newest molecular dynamics tools. In 8 of 12 cases, TASSER models show a smaller RMSD to X-ray structures; in 3 of 12 cases, where RMSD(NMR_X-ray) <1 A, RECOORD does better than TASSER. These results suggest that TASSER can be a useful tool to improve the quality of NMR structures.

摘要

采用TASSER结构预测算法来研究通过自动优化程序,核磁共振(NMR)结构是否能更接近其对应的X射线晶体结构。基准蛋白质数据集包含61种非同源蛋白质,其结构已通过NMR和X射线实验确定。有趣的是,从NMR结构开始,TASSER优化后的大多数模型(79%)显示出向其X射线结构的结构转变。平均而言,TASSER优化后的模型在整个链(比对区域)上与X射线结构的均方根偏差(RMSD)为1.785 Å(1.556 Å),而NMR和X射线结构之间的平均RMSD(RMSD(NMR_X射线))为2.080 Å(1.731 Å)。对于所有RMSD(NMR_X射线) >2 Å的蛋白质,TASSER优化后的结构显示出一致的改进。然而,对于34种RMSD(NMR_X射线) <2 Å的蛋白质,只有21例(60%)TASSER模型比NMR模型更接近X射线结构,这可能是由于TASSER的固有分辨率所致。我们还将TASSER模型与RECOORD数据库中的12个NMR模型进行了比较,这些模型最近由Nederveen等人使用最新的分子动力学工具根据原始NMR约束重新计算得出。在12例中的8例中,TASSER模型对X射线结构的RMSD较小;在12例中的3例中,RMSD(NMR_X射线) <1 Å,RECOORD比TASSER表现更好。这些结果表明,TASSER可以成为提高NMR结构质量的有用工具。

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