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蛋白质侧链电子密度的统计与构象分析

Statistical and conformational analysis of the electron density of protein side chains.

作者信息

Shapovalov Maxim V, Dunbrack Roland L

机构信息

Institute for Cancer Research, Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, USA.

出版信息

Proteins. 2007 Feb 1;66(2):279-303. doi: 10.1002/prot.21150.

Abstract

Protein side chains make most of the specific contacts between proteins and other molecules, and their conformational properties have been studied for many years. These properties have been analyzed primarily in the form of rotamer libraries, which cluster the observed conformations into groups and provide frequencies and average dihedral angles for these groups. In recent years, these libraries have improved with higher resolution structures and using various criteria such as high thermal factors to eliminate side chains that may be misplaced within the crystallographic model coordinates. Many of these side chains have highly non-rotameric dihedral angles. The origin of side chains with high B-factors and/or with non-rotameric dihedral angles is of interest in the determination of protein structures and in assessing the prediction of side chain conformations. In this paper, using a statistical analysis of the electron density of a large set of proteins, it is shown that: (1) most non-rotameric side chains have low electron density compared to rotameric side chains; (2) up to 15% of chi1 non-rotameric side chains in PDB models can clearly be fit to density at a single rotameric conformation and in some cases multiple rotameric conformations; (3) a further 47% of non-rotameric side chains have highly dispersed electron density, indicating potentially interconverting rotameric conformations; (4) the entropy of these side chains is close to that of side chains annotated as having more than one chi(1) rotamer in the crystallographic model; (5) many rotameric side chains with high entropy clearly show multiple conformations that are not annotated in the crystallographic model. These results indicate that modeling of side chains alternating between rotamers in the electron density is important and needs further improvement, both in structure determination and in structure prediction.

摘要

蛋白质侧链构成了蛋白质与其他分子之间的大部分特异性相互作用,并且其构象性质已被研究多年。这些性质主要以旋转异构体文库的形式进行分析,该文库将观察到的构象聚类成组,并为这些组提供频率和平均二面角。近年来,随着更高分辨率结构的出现以及使用各种标准(如高热因子)来消除可能在晶体学模型坐标中位置不当的侧链,这些文库得到了改进。许多这些侧链具有高度非旋转异构体的二面角。具有高B因子和/或非旋转异构体二面角的侧链的起源在蛋白质结构的确定以及评估侧链构象的预测方面具有重要意义。在本文中,通过对大量蛋白质的电子密度进行统计分析,结果表明:(1)与旋转异构体侧链相比,大多数非旋转异构体侧链具有较低的电子密度;(2)PDB模型中高达15%的χ1非旋转异构体侧链可以在单一旋转异构体构象下,在某些情况下在多个旋转异构体构象下清晰地拟合到密度;(3)另外47%的非旋转异构体侧链具有高度分散的电子密度,表明可能存在旋转异构体构象的相互转换;(4)这些侧链的熵与晶体学模型中注释为具有多个χ(1)旋转异构体的侧链的熵接近;(5)许多具有高熵的旋转异构体侧链清楚地显示出晶体学模型中未注释的多种构象。这些结果表明,在电子密度中对旋转异构体之间交替的侧链进行建模很重要,并且在结构确定和结构预测方面都需要进一步改进。

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