Edwards Thomas E, Sigurdsson Snorri Th
University of Iceland, Science Institute, Dunhaga 3, Reykjavik, Iceland.
Nat Protoc. 2007;2(8):1954-62. doi: 10.1038/nprot.2007.273.
A protocol is described for the incorporation of nitroxide spin-labels into specific 2'-sites within nucleic acids. This labeling strategy facilitates the investigation of nucleic acid structure and dynamics using electron paramagnetic resonance (EPR) spectroscopy and macromolecular complex formation using paramagnetic relaxation enhancement NMR spectroscopy. A spin-labeling reagent, 4-isocyanato TEMPO, which can be prepared in one facile step or obtained commercially, is used for postsynthetic modification of site-specifically 2'-amino-modified nucleic acids. This spin-labeling protocol has been applied primarily to RNA, but is also applicable to DNA. Subsequently, EPR spectroscopic analysis of the spin-labeled nucleic acids allows for the measurements of distances, solvent accessibilities and conformation dynamics. Using the spin-labeling strategy described here, spin-labeled samples can be prepared in 2-4 d.
本文描述了一种将氮氧化物自旋标记掺入核酸特定2'-位点的方案。这种标记策略有助于利用电子顺磁共振(EPR)光谱研究核酸结构和动力学,以及利用顺磁弛豫增强核磁共振光谱研究大分子复合物的形成。一种自旋标记试剂4-异氰酸酯TEMPO,可通过一个简便步骤制备或从商业渠道获得,用于对位点特异性2'-氨基修饰的核酸进行合成后修饰。这种自旋标记方案主要应用于RNA,但也适用于DNA。随后,对自旋标记核酸的EPR光谱分析可用于测量距离、溶剂可及性和构象动力学。使用此处描述的自旋标记策略,可在2-4天内制备出自旋标记样品。