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蛋白质晶体结构分析中的准确性和精密度:杨树质体蓝素在173K时结构的两次独立精修

Accuracy and precision in protein crystal structure analysis: two independent refinements of the structure of poplar plastocyanin at 173 K.

作者信息

Fields B A, Bartsch H H, Bartunik H D, Cordes F, Guss J M, Freeman H C

机构信息

Department of Inorganic Chemistry, University of Sydney, Australia.

出版信息

Acta Crystallogr D Biol Crystallogr. 1994 Sep 1;50(Pt 5):709-30. doi: 10.1107/S0907444994003021.

Abstract

The structure of the copper protein plastocyanin from poplar leaves (Populus nigra var. italica) at 173 K has been subjected to two independent refinements, using a single set of synchrotron X-ray data at 1.6 A resolution. Energy-restrained refinement using the program EREF resulted in lower root-mean-square deviations from ideal geometry (e.g. 0.011 A for bond lengths) but a higher residual R (0.153) than restrained least-squares refinement using the program PROLSQ (0.014 A, 0.132). Electron-density difference maps in both refinements provided evidence for disorder at some side chains and solvent atoms, and the PROLSQ refinement made allowance for this disorder. The number of solvent sites identified at the 4sigma(rho) level was 171 in the EREF refinement and 189 in the PROLSQ refinement; 159 of the solvent sites are common to both refinements within 1 A. The root-mean-square differences between the atomic positions produced by the two refinements are 0.08 A for C(alpha) atoms, 0.08 A for backbone atoms and 0.12 A for all non-H atoms (excluding six obvious outliers) of the protein molecule. The two sets of Cu-ligand bond lengths differ by up to 0.07 A, and the ligand-Cu-ligand angles by up to 7 degrees. At 173 K the volume of the unit cell is 4.2% smaller than at 295 K. Greater order in the solvent region is indicated by the location of 79 more solvent sites, the identification of extensive networks of hydrogen-bonded rings of solvent molecules, and a general decrease in the thermal parameters. Within the unit cell, the protein molecules are significantly translated and rotated from their positions at ambient temperature. An important structural change at low temperature is a 180 degrees flip of the peptide group at Ser48-Gly49. Nearly all other significant differences between the structures of the protein at 173 and 295 K occur at exposed side chains. If the backbone atoms in the 173 and 295 K structures are superposed, excluding atoms involved in the peptide flip, the root-mean- square difference between the positions of 393 atoms is 0.25 A. Two internal water molecules, not included in previous descriptions of poplar plastocyanin, have been located. The plastocyanin Cu-site geometry at 173 K is not significantly different from that at 295 K. If plastocyanin undergoes a change in Cu-site geometry at low temperature, as has been suggested on the basis of resonance Raman spectroscopic evidence, then the change is not detected within the limits of precision of the present results.

摘要

利用1.6埃分辨率的单组同步辐射X射线数据,对来自杨树(意大利黑杨变种)叶片的铜蛋白质体蓝素在173K时的结构进行了两次独立精修。使用程序EREF进行能量约束精修,得到的与理想几何结构的均方根偏差较低(例如键长为0.011埃),但残余R值(0.153)高于使用程序PROLSQ进行的约束最小二乘精修(0.014埃,0.132)。两次精修中的电子密度差图都为一些侧链和溶剂原子的无序提供了证据,PROLSQ精修考虑了这种无序。在4σ(ρ)水平识别出的溶剂位点数量,EREF精修中有171个,PROLSQ精修中有189个;在1埃范围内,两次精修共有159个溶剂位点相同。两次精修产生的原子位置之间的均方根差异,对于蛋白质分子的C(α)原子为0.08埃,主链原子为0.08埃,所有非H原子(不包括六个明显异常值)为0.12埃。两组铜配体键长相差可达0.07埃,配体-铜-配体角度相差可达7度。在173K时,晶胞体积比295K时小4.2%。溶剂区域更大的有序性表现为多了79个溶剂位点的定位、溶剂分子氢键环广泛网络的识别以及热参数的普遍降低。在晶胞内,蛋白质分子相对于其在室温下的位置有显著的平移和旋转。低温下一个重要的结构变化是Ser48-Gly49处肽基的180度翻转。蛋白质在173K和295K结构之间几乎所有其他显著差异都发生在暴露的侧链上。如果将173K和295K结构中的主链原子进行叠加(不包括参与肽翻转的原子),393个原子位置之间的均方根差异为0.25埃。定位到了两个之前杨树质体蓝素描述中未包含的内部水分子。173K时质体蓝素铜位点的几何结构与295K时没有显著差异。如果质体蓝素在低温下铜位点几何结构发生变化,正如基于共振拉曼光谱证据所推测的那样,那么在本结果的精度范围内未检测到这种变化。

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