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蛋白质结构中核Overhauser效应(NOE)的完整性:核磁共振的统计分析

Completeness of NOEs in protein structure: a statistical analysis of NMR.

作者信息

Doreleijers J F, Raves M L, Rullmann T, Kaptein R

机构信息

Bijvoet Center for Biomolecular Research, Utrecht University, The Netherlands.

出版信息

J Biomol NMR. 1999 Jun;14(2):123-32. doi: 10.1023/a:1008335423527.

Abstract

The completeness of experimentally observed NOE restraints of a set of 97 NMR protein structures deposited in the PDB has been assessed. Completeness is defined as the ratio of the number of experimentally observed NOEs and the number of 'expected NOEs'. A practical definition of 'expected NOEs' based on inter-proton distances in the structures up to a given cut-off distance is proposed. The average completeness for the set of 97 structures is 68, 48, and 26% up to 3, 4, and 5 A cut-off distances, respectively. For recent state-of-the-art structures these numbers are approximately 90, 75, and 45%. Almost 20% of the observed NOEs are between atoms that are further than 5 A apart in the final structures. The completeness is independent of the relative surface accessibility and does not depend strongly on residue type, secondary structure or local precision, although the number of observed NOEs in these classes varies considerably. The completeness of NOE restraints is a useful quality criterion in the course of structure refinement. The completeness per residue is more informative than the number of NOEs per residue, which makes it a useful tool to assess the quality of the NMR data set in relation to the resulting structures.

摘要

已对存入蛋白质数据库(PDB)的一组97个核磁共振(NMR)蛋白质结构实验观察到的核Overhauser效应(NOE)约束的完整性进行了评估。完整性定义为实验观察到的NOE数量与“预期NOE”数量之比。提出了基于结构中质子间距离直至给定截止距离的“预期NOE”的实际定义。对于这组97个结构,在截止距离为3、4和5埃时,平均完整性分别为68%、48%和26%。对于最近的先进结构,这些数字分别约为90%、75%和45%。在最终结构中,近20%观察到的NOE存在于相距超过5埃的原子之间。完整性与相对表面可及性无关,并且虽然这些类别中观察到的NOE数量差异很大,但它并不强烈依赖于残基类型、二级结构或局部精度。在结构优化过程中,NOE约束的完整性是一个有用的质量标准。每个残基的完整性比每个残基的NOE数量更具信息性,这使其成为评估与所得结构相关的NMR数据集质量的有用工具。

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