Institute of Physical and Theoretical Chemistry, Rheinische Friedrich-Wilhelms-University Bonn, Wegelerstr. 12, 53115 Bonn, Germany.
Phys Chem Chem Phys. 2018 May 23;20(20):13858-13869. doi: 10.1039/c8cp01276h.
Electron paramagnetic resonance (EPR) based distance measurements in combination with site directed spin labeling is an important method for determining biomolecular structures and their conformational changes. Commonly used spin labels are nitroxides but trityl radicals are emerging as a new type of spin labels specifically for distance measurements. Here, a systematic evaluation is presented for the performance of different EPR pulse sequences for measuring inter-spin distances using trityl labels. The model systems used are two bistrityl and one tristrityl molecule. One bistrityl molecule has a long spin-spin separation and serves as a reference, the second one has a short inter-spin distance serving as a model case for strong and intermediate coupling and the third is a model for the influence of multi-spin effects. Experimental and theoretical approaches to cope with the effects are presented and evaluated.
基于电子顺磁共振(EPR)的距离测量与定点自旋标记相结合是确定生物分子结构及其构象变化的重要方法。常用的自旋标记物是氮氧自由基,但三苯甲基自由基作为一种新型的自旋标记物,特别是在距离测量方面正在崭露头角。在这里,我们对使用三苯甲基标记物测量自旋间距离的不同 EPR 脉冲序列的性能进行了系统评估。所使用的模型系统是两个双三苯甲基和一个三苯甲基分子。一个双三苯甲基分子具有较长的自旋-自旋间隔,用作参考,第二个分子具有较短的自旋-自旋间隔,用作强耦合和中等耦合的模型实例,第三个分子则是多自旋效应影响的模型。本文提出并评估了处理这些影响的实验和理论方法。