Endeward B, Marko A, Denysenkov V P, Sigurdsson S Th, Prisner T F
Institute of Physical and Theoretical Chemistry and Center of Biomolecular Magnetic Resonance, Goethe University Frankfurt am Main, Frankfurt am Main, Germany.
Department of Chemistry, Science Institute, University of Iceland, Reykjavık, Iceland.
Methods Enzymol. 2015;564:403-25. doi: 10.1016/bs.mie.2015.06.007. Epub 2015 Jul 2.
Pulsed electron paramagnetic resonance (EPR) spectroscopy has become an important tool for structural characterization of biomolecules allowing measurement of the distances between two paramagnetic spin labels attached to a biomolecule in the 2-8 nm range. In this chapter, we will focus on applications of this approach to investigate tertiary structure elements as well as conformational dynamics of nucleic acid molecules. Both aspects take advantage of using specific spin labels that are rigidly attached to the nucleobases, as they allow obtaining not only the distance but also the relative orientation between both nitroxide moieties with high accuracy. Thus, not only the distance but additionally the three Euler angles between both the nitroxide axis systems and the two polar angles of the interconnecting vector with respect to the nitroxide axis systems can be extracted from a single pair of spin labels. To extract all these parameters independently and unambiguously, a set of multifrequency/multifield pulsed EPR experiments have to be performed. We will describe the experimental procedure as well as newly developed spin labels, which are helpful to disentangle all these parameters, and tools which we have developed to analyze such data sets. The procedures and analyses will be illustrated by examples from our laboratory.
脉冲电子顺磁共振(EPR)光谱已成为生物分子结构表征的重要工具,可测量附着在生物分子上的两个顺磁自旋标记之间2-8纳米范围内的距离。在本章中,我们将重点介绍这种方法在研究核酸分子的三级结构元件以及构象动力学方面的应用。这两个方面都利用了与核碱基刚性连接的特定自旋标记,因为它们不仅能高精度地获得距离,还能获得两个氮氧化物部分之间的相对取向。因此,不仅可以从一对自旋标记中提取距离,还可以提取两个氮氧化物轴系统之间的三个欧拉角以及互连向量相对于氮氧化物轴系统的两个极角。为了独立且明确地提取所有这些参数,必须进行一组多频/多场脉冲EPR实验。我们将描述实验过程以及新开发的自旋标记(有助于解析所有这些参数),还有我们为分析此类数据集而开发的工具。这些程序和分析将通过我们实验室的实例进行说明。