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代理分辨率:一种用于评估和比较 NMR 蛋白质结构整体质量的简单方法。

Resolution-by-proxy: a simple measure for assessing and comparing the overall quality of NMR protein structures.

机构信息

Department of Computing Science, University of Alberta, Edmonton, AB, Canada.

出版信息

J Biomol NMR. 2012 Jul;53(3):167-80. doi: 10.1007/s10858-012-9637-2. Epub 2012 Jun 8.

Abstract

In protein X-ray crystallography, resolution is often used as a good indicator of structural quality. Diffraction resolution of protein crystals correlates well with the number of X-ray observables that are used in structure generation and, therefore, with protein coordinate errors. In protein NMR, there is no parameter identical to X-ray resolution. Instead, resolution is often used as a synonym of NMR model quality. Resolution of NMR structures is often deduced from ensemble precision, torsion angle normality and number of distance restraints per residue. The lack of common techniques to assess the resolution of X-ray and NMR structures complicates the comparison of structures solved by these two methods. This problem is sometimes approached by calculating "equivalent resolution" from structure quality metrics. However, existing protocols do not offer a comprehensive assessment of protein structure as they calculate equivalent resolution from a relatively small number (<5) of protein parameters. Here, we report a development of a protocol that calculates equivalent resolution from 25 measurable protein features. This new method offers better performance (correlation coefficient of 0.92, mean absolute error of 0.28 Å) than existing predictors of equivalent resolution. Because the method uses coordinate data as a proxy for X-ray diffraction data, we call this measure "Resolution-by-Proxy" or ResProx. We demonstrate that ResProx can be used to identify under-restrained, poorly refined or inaccurate NMR structures, and can discover structural defects that the other equivalent resolution methods cannot detect. The ResProx web server is available at http://www.resprox.ca.

摘要

在蛋白质 X 射线晶体学中,分辨率通常被用作结构质量的良好指标。蛋白质晶体的衍射分辨率与用于结构生成的 X 射线可观察数密切相关,因此与蛋白质坐标误差相关。在蛋白质 NMR 中,没有与 X 射线分辨率完全对应的参数。相反,分辨率通常被用作 NMR 结构质量的同义词。NMR 结构的分辨率通常从集合精度、扭转角正态性和每个残基的距离约束数推断得出。缺乏评估 X 射线和 NMR 结构分辨率的通用技术,使得这两种方法得到的结构比较变得复杂。这个问题有时通过从结构质量指标计算“等效分辨率”来解决。然而,现有的方案并没有提供对蛋白质结构的全面评估,因为它们是从相对较少的(<5)蛋白质参数计算等效分辨率的。在这里,我们报告了一种从 25 个可测量的蛋白质特征计算等效分辨率的方案的发展。这种新方法的性能优于现有的等效分辨率预测器(相关系数为 0.92,平均绝对误差为 0.28 Å)。由于该方法使用坐标数据作为 X 射线衍射数据的代理,我们将其称为“代理分辨率”或 ResProx。我们证明 ResProx 可用于识别约束不足、精修不良或不准确的 NMR 结构,并可发现其他等效分辨率方法无法检测到的结构缺陷。ResProx 网络服务器可在 http://www.resprox.ca 上获得。

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