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逆势而为?通过硫单波长反常散射法从头测定含两个半胱氨酸残基的菌毛蛋白结构

Against the odds? De novo structure determination of a pilin with two cysteine residues by sulfur SAD.

作者信息

Gorgel Manuela, Bøggild Andreas, Ulstrup Jakob Jensen, Weiss Manfred S, Müller Uwe, Nissen Poul, Boesen Thomas

机构信息

Department of Molecular Biology and Genetics, Aarhus University, Gustav Wieds Vej 10C, DK-8000 Aarhus C, Denmark.

Macromolecular Crystallography (HZB-MX), Helmholtz Zentrum Berlin für Materialien und Energie, Albert-Einstein-Strasse 15, D-12489 Berlin, Germany.

出版信息

Acta Crystallogr D Biol Crystallogr. 2015 May;71(Pt 5):1095-101. doi: 10.1107/S1399004715003272. Epub 2015 Apr 24.

Abstract

Exploiting the anomalous signal of the intrinsic S atoms to phase a protein structure is advantageous, as ideally only a single well diffracting native crystal is required. However, sulfur is a weak anomalous scatterer at the typical wavelengths used for X-ray diffraction experiments, and therefore sulfur SAD data sets need to be recorded with a high multiplicity. In this study, the structure of a small pilin protein was determined by sulfur SAD despite several obstacles such as a low anomalous signal (a theoretical Bijvoet ratio of 0.9% at a wavelength of 1.8 Å), radiation damage-induced reduction of the cysteines and a multiplicity of only 5.5. The anomalous signal was improved by merging three data sets from different volumes of a single crystal, yielding a multiplicity of 17.5, and a sodium ion was added to the substructure of anomalous scatterers. In general, all data sets were balanced around the threshold values for a successful phasing strategy. In addition, a collection of statistics on structures from the PDB that were solved by sulfur SAD are presented and compared with the data. Looking at the quality indicator R(anom)/R(p.i.m.), an inconsistency in the documentation of the anomalous R factor is noted and reported.

摘要

利用内在硫原子的反常信号来确定蛋白质结构相位具有优势,因为理想情况下仅需一块能良好衍射的天然晶体。然而,在用于X射线衍射实验的典型波长下,硫是一种较弱的反常散射体,因此硫单波长反常散射数据集需要以高冗余度记录。在本研究中,尽管存在诸如反常信号较弱(在1.8 Å波长下理论比沃伊特比率为0.9%)、辐射损伤导致半胱氨酸还原以及冗余度仅为5.5等诸多障碍,但仍通过硫单波长反常散射确定了一种小菌毛蛋白的结构。通过合并来自单晶不同体积的三个数据集提高了反常信号,冗余度达到17.5,并向反常散射体的亚结构中添加了一个钠离子。总体而言,所有数据集都围绕成功的相位确定策略的阈值进行了平衡。此外,还展示了通过硫单波长反常散射解析的PDB结构的统计数据,并与这些数据进行了比较。查看质量指标R(anom)/R(p.i.m.)时,注意到并报告了反常R因子文档中的不一致性。

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