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[晶体学和核磁共振光谱法测定的蛋白质结构:残基间相互作用]

[Crystallographic and NMR spectroscopic protein structures: the inter-residue contacts].

作者信息

Abaturov L V, Nosova N G

出版信息

Mol Biol (Mosk). 2012 Mar-Apr;46(2):317-34.

PMID:22670528
Abstract

Inter-residue pair contacts have been analyzed in detail for the four pairs of protein structures determined both by X-ray analysis (X-ray) and nuclear magnetic resonance (NMR). At contact distances < or = 4.0 angstroms in the four NMR structures the overall number of pair contacts are less by 4-9% and pair contacts are in average shorter by 0.02-0.16 angstroms than those in corresponding X-ray structures. In each of four structure pairs 83-94% of common pair contacts are formed by the same residues in both structures and rest 6-17% ones are longer own pair contacts formed by the different residues in the NMR and X-ray structures. The amount of the longer own contacts is higher in the X-ray structure of the pair. In the each NMR structure there are three types of common pair contacts, which are shorter, longer or equal length in comparison with identical pair contacts in the X-ray structure of the same protein. The methodological different shortened common pair contacts predominate in the known distant dependence of the inter-residue contact densities of the 60-61 pair of the NMR/X-ray structure. Among four pairs analyzed the contact shortening proceeds upon the energy minimization of the crambin NMR structure and upon the resolving by the program X-PLOR with decreased atom van der Waals radius of the NMR structures of ubiquitin, hen lysozyme and monomeric hemoglobin. An extent of the NMR contact shortening decreased as the amount of NMR information upon the calculation of the NMR structures increased. Among 60-61 pairs of NMR/X-ray structures the main difference between alpha-helical and beta-structural proteins on the inter-residue distant dependence of the average contact densities arises from the strong alpha/beta difference in the local backbone geometry.

摘要

对于通过X射线分析(X射线)和核磁共振(NMR)确定的四对蛋白质结构,已详细分析了残基间的配对接触。在四个NMR结构中,接触距离≤4.0埃时,配对接触的总数比相应X射线结构中的少4 - 9%,且配对接触的平均长度短0.02 - 0.16埃。在四对结构中的每一对中,83 - 94%的共同配对接触由两种结构中的相同残基形成,其余6 - 17%是由NMR和X射线结构中的不同残基形成的较长的自身配对接触。在该对结构的X射线结构中,较长的自身接触数量更多。在每个NMR结构中,有三种类型的共同配对接触,与同一蛋白质的X射线结构中的相同配对接触相比,它们的长度较短、较长或相等。在已知的60 - 61对NMR/X射线结构的残基间接触密度的远距离依赖性中,方法学上不同的缩短共同配对接触占主导。在分析的四对结构中,接触缩短发生在胰凝乳蛋白酶NMR结构的能量最小化过程中,以及在使用X - PLOR程序解析时,通过减小泛素、鸡溶菌酶和单体血红蛋白的NMR结构中原子的范德华半径来实现。随着计算NMR结构时NMR信息的增加,NMR接触缩短的程度降低。在60 - 61对NMR/X射线结构中,α - 螺旋和β - 结构蛋白质在残基间平均接触密度的远距离依赖性上的主要差异源于局部主链几何结构中强烈的α/β差异。

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