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通过不同晶体环境中的结构对肌红蛋白天然构象集合进行采样。

Sampling of the native conformational ensemble of myoglobin via structures in different crystalline environments.

作者信息

Kondrashov Dmitry A, Zhang Wei, Aranda Roman, Stec Boguslaw, Phillips George N

机构信息

Department of Biochemistry, University of Wisconsin - Madison, Madison, Wisconsin 53706, USA.

出版信息

Proteins. 2008 Feb 1;70(2):353-62. doi: 10.1002/prot.21499.

Abstract

Proteins sample multiple conformational substates in their native environment, but the process of crystallization selects the conformers that allow for close packing. The population of conformers can be shifted by varying the environment through a range of crystallization conditions, often resulting in different space groups and changes in the packing arrangements. Three high resolution structures of myoglobin (Mb) in different crystal space groups are presented, including one in a new space group P6(1)22 and two structures in space groups P2(1)2(1)2(1) and P6. We compare coordinates and anisotropic displacement parameters (ADPs) from these three structures plus an existing structure in space group P2(1). While the overall changes are small, there is substantial variation in several external regions with varying patterns of crystal contacts across the space group packing arrangements. The structural ensemble containing four different crystal forms displays greater conformational variance (Calpha rmsd of 0.54-0.79 A) in comparison to a collection of four Mb structures with different ligands and mutations in the same crystal form (Calpha rmsd values of 0.28-0.37 A). The high resolution of the data enables comparison of both the magnitudes and directions of ADPs, which are found to be suppressed by crystal contacts. A composite dynamic profile of Mb structural variation from the four structures was compared with an independent structural ensemble developed from NMR refinement. Despite the limitations and biases of each method, the ADPs of the crystallographic ensemble closely match the positional variance from the solution NMR ensemble with linear correlation of 0.8. This suggests that crystal packing selects conformers representative of the solution ensemble, and several different crystal forms give a more complete view of the plasticity of a protein structure.

摘要

蛋白质在其天然环境中会呈现多种构象亚态,但结晶过程会选择那些能够紧密堆积的构象。通过一系列结晶条件改变环境,可以改变构象群体,这通常会导致不同的空间群以及堆积排列的变化。本文展示了肌红蛋白(Mb)在不同晶体空间群中的三种高分辨率结构,包括一种新的空间群P6(1)22中的结构以及空间群P2(1)2(1)2(1)和P6中的两种结构。我们比较了这三种结构以及空间群P2(1)中一个现有结构的坐标和各向异性位移参数(ADPs)。虽然总体变化较小,但在几个外部区域存在显著差异,这些区域在不同空间群堆积排列中的晶体接触模式各不相同。与具有相同晶体形式但不同配体和突变的四个Mb结构的集合(α碳原子均方根偏差值为0.28 - 0.37 Å)相比,包含四种不同晶体形式的结构集合显示出更大的构象差异(α碳原子均方根偏差为0.54 - 0.79 Å)。数据的高分辨率使得能够比较ADPs的大小和方向,结果发现它们受到晶体接触的抑制。将这四个结构的Mb结构变化的复合动态轮廓与通过核磁共振精修得到的独立结构集合进行了比较。尽管每种方法都有局限性和偏差,但晶体学集合的ADPs与溶液核磁共振集合的位置差异紧密匹配,线性相关系数为0.8。这表明晶体堆积选择了代表溶液集合的构象,并且几种不同的晶体形式能够更全面地展现蛋白质结构的可塑性。

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