Livshits V A, Marsh D
Max-Planck-Institut für biophysikalische Chemie, Abt. Spektroskopie, 37077 Göttingen, Germany.
J Magn Reson. 2005 Aug;175(2):317-29. doi: 10.1016/j.jmr.2005.05.004.
The use of 90 degrees-out-of-phase first-harmonic absorption (V1'-) EPR to resolve the spectra from nitroxide spin labels with differing T1-relaxation times is described. Non-linear V1'-EPR spectra recorded under moderate saturation have sharper lines compared with the in-phase V1-EPR spectra, and amplitudes that preferentially enhance components with longer T1-relaxation. Discrimination between V1'-spectral components can be increased further by means of selective paramagnetic relaxation enhancement agents. Examples are given of biophysical applications to double labelling in single-component membranes and phase separation in two-component membranes, to lipid-peptide complexes, and to binding of spin-labelled reagents. It is concluded that optimal resolution in V1'-EPR spectroscopy is obtained at relatively low Zeeman modulation frequencies (20-30 kHz) and moderate saturation (H1 approximately 0.2-0.3 G).
本文描述了如何使用90度异相基波吸收(V1'-)电子顺磁共振(EPR)来解析具有不同T1弛豫时间的氮氧自旋标记的光谱。与同相V1-EPR光谱相比,在适度饱和条件下记录的非线性V1'-EPR光谱具有更尖锐的谱线,并且其幅度优先增强具有较长T1弛豫时间的成分。通过选择性顺磁弛豫增强剂可以进一步提高V1'-光谱成分之间的区分度。文中给出了生物物理应用的实例,包括在单组分膜中的双标记、双组分膜中的相分离、脂质-肽复合物以及自旋标记试剂的结合。得出的结论是,在相对较低的塞曼调制频率(20-30 kHz)和适度饱和(H1约为0.2-0.3 G)下可获得V1'-EPR光谱的最佳分辨率。