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蛋白自旋标记在溶剂暴露的β-折叠中的高分辨率结构及与 DEER 光谱学的比较。

High-resolution structure of a protein spin-label in a solvent-exposed β-sheet and comparison with DEER spectroscopy.

机构信息

Department of Chemistry, University of Pittsburgh, 219 Parkman Avenue, Pittsburgh, PA 15260, USA.

出版信息

Biochemistry. 2012 Aug 14;51(32):6350-9. doi: 10.1021/bi300328w. Epub 2012 Aug 1.

Abstract

X-ray crystallography has been a useful tool in the development of site-directed spin labeling by resolving rotamers of the nitroxide spin-label side chain in a variety of α-helical environments. In this work, the crystal structure of a doubly spin-labeled N8C/K28C mutant of the B1 immunoglobulin-binding domain of protein G (GB1) was solved. The double mutant formed a domain-swapped dimer under crystallization conditions. Two rotameric states of the spin-label were resolved at the solvent-exposed α-helical site, at residue 28; these are in good agreement with rotamers previously reported for helical structures. The second site, at residue 8 on an interior β-strand, shows the presence of three distinct solvent-exposed side-chain rotamers. One of these rotamers is rarely observed within crystal structures of R1 sites and suggests that the H(α) and S(δ) hydrogen bond that is common to α-helical sites is absent at this interior β-strand residue. Variable temperature continuous wave (CW) experiments of the β-strand site showed two distinct components that were correlated to the rotameric states observed in crystallography. Interestingly, the CW data at room temperature could be fit without the use of an order parameter, which is consistent with the lack of the H(α) and S(δ) interaction. Additionally, double electron electron resonance (DEER) spectroscopy was performed on the GB1 double mutant in its monomeric form and yielded a most probable interspin distance of 25 ± 1 Å. In order to evaluate the accuracy of the measured DEER distance, the rotamers observed in the crystal structure of the domain-swapped GB1 dimer were modeled into a high-resolution structure of the wild type monomeric GB1. The distances generated in the resulting GB1 structural models match the most probable DEER distance within ~2 Å. The results are interesting as they indicate by direct experimental measurement that the rotameric states of R1 found in this crystal provide a very close match to the most probable distance measured by DEER.

摘要

X 射线晶体学在通过解析各种α-螺旋环境中氮氧自由基侧链的旋转异构体,成为一种有用的工具,用于开发定点自旋标记。在这项工作中,解决了蛋白 G(GB1)B1 免疫球蛋白结合域的双自旋标记 N8C/K28C 突变体的晶体结构。双突变体在结晶条件下形成了一个结构交换二聚体。在溶剂暴露的α-螺旋位置,即残基 28 处,解析出了自旋标记的两种旋转异构体状态;这些状态与以前报道的螺旋结构的旋转异构体状态非常一致。第二个位置位于内部β-折叠上的残基 8 处,显示出三种不同的溶剂暴露的侧链旋转异构体。其中一种旋转异构体在 R1 位点的晶体结构中很少观察到,这表明在该内部β-链段残基处不存在常见于α-螺旋位点的 H(α)和 S(δ)氢键。β-折叠位点的变温连续波(CW)实验显示出两个不同的成分,与结晶学中观察到的旋转异构体状态相关。有趣的是,在室温下的 CW 数据可以拟合而无需使用顺序参数,这与缺乏 H(α)和 S(δ)相互作用一致。此外,对单体形式的 GB1 双突变体进行了双电子电子共振(DEER)光谱学实验,得到了 25±1 Å 的最可能的自旋间距离。为了评估测量的 DEER 距离的准确性,将在结构交换的 GB1 二聚体晶体结构中观察到的旋转异构体模型拟合到野生型单体 GB1 的高分辨率结构中。在所得的 GB1 结构模型中生成的距离与最可能的 DEER 距离相差约 2 Å。这些结果很有趣,因为它们通过直接实验测量表明,在该晶体中发现的 R1 旋转异构体状态与通过 DEER 测量的最可能距离非常吻合。

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