Consentius Philipp, Gohlke Ulrich, Loll Bernhard, Alings Claudia, Heinemann Udo, Wahl Markus C, Risse Thomas
Freie Universität Berlin, Institute of Chemistry and Biochemistry, Takustr. 3, 14195 Berlin, Germany.
Phys Chem Chem Phys. 2017 Aug 9;19(31):20723-20734. doi: 10.1039/c7cp03144k.
Electron paramagnetic resonance (EPR) spectroscopy in combination with site-directed spin labeling is used to investigate the structure and dynamics of conformationally constrained spin labels in T4 lysozyme single crystals. Within a single crystal, the oriented ensemble of spin bearing moieties results in a strong angle dependence of the EPR spectra. A quantitative description of the EPR spectra requires the determination of the unit cell orientation with respect to the sample tube and the orientation of the spin bearing moieties within the crystal lattice. Angle dependent EPR spectra were analyzed by line shape simulations using the stochastic Liouville equation approach developed by Freed and co-workers and an effective Hamiltonian approach. The gain in spectral information obtained from the EPR spectra of single crystalline samples taken at different frequencies, namely the X-band and Q-band, allows us to discriminate between motional models describing the spectra of isotropic solutions similarly well. In addition, it is shown that the angle dependent single crystal spectra allow us to identify two spin label rotamers with very similar side chain dynamics. These results demonstrate the utility of single crystal EPR spectroscopy in combination with spectral line shape simulation techniques to extract valuable dynamic information not readily available from the analysis of isotropic systems. In addition, it will be shown that the loss of electron density in high resolution diffraction experiments at room temperature does not allow us to conclude that there is significant structural disorder in the system.
电子顺磁共振(EPR)光谱结合定点自旋标记用于研究T4溶菌酶单晶中构象受限自旋标记的结构和动力学。在单晶中,自旋承载部分的定向集合导致EPR光谱具有强烈的角度依赖性。对EPR光谱进行定量描述需要确定晶胞相对于样品管的取向以及晶格中自旋承载部分的取向。通过使用Freed及其同事开发的随机Liouville方程方法和有效哈密顿量方法进行线形模拟,分析了角度相关的EPR光谱。从不同频率(即X波段和Q波段)采集的单晶样品的EPR光谱中获得的光谱信息增益,使我们能够区分对各向同性溶液光谱描述同样良好的运动模型。此外,结果表明角度相关的单晶光谱使我们能够识别出具有非常相似侧链动力学的两种自旋标记旋转异构体。这些结果证明了单晶EPR光谱结合光谱线形模拟技术在提取从各向同性系统分析中不易获得的有价值动力学信息方面的实用性。此外,还将表明,室温下高分辨率衍射实验中电子密度损失并不允许我们得出系统中存在显著结构无序的结论。