Song Likai, Liu Zhanglong, Kaur Pavanjeet, Esquiaqui Jackie M, Hunter Robert I, Hill Stephen, Smith Graham M, Fanucci Gail E
National High Magnetic Field Laboratory, Florida State University, Tallahassee, FL 32310, USA.
Department of Chemistry, University of Florida, PO Box 117200, Gainesville, FL 32611, USA.
J Magn Reson. 2016 Apr;265:188-96. doi: 10.1016/j.jmr.2016.02.007. Epub 2016 Feb 15.
High-field, high-frequency electron paramagnetic resonance (EPR) spectroscopy at W-(∼94 GHz) and D-band (∼140 GHz) is important for investigating the conformational dynamics of flexible biological macromolecules because this frequency range has increased spectral sensitivity to nitroxide motion over the 100 ps to 2 ns regime. However, low concentration sensitivity remains a roadblock for studying aqueous samples at high magnetic fields. Here, we examine the sensitivity of a non-resonant thin-layer cylindrical sample holder, coupled to a quasi-optical induction-mode W-band EPR spectrometer (HiPER), for continuous wave (CW) EPR analyses of: (i) the aqueous nitroxide standard, TEMPO; (ii) the unstructured to α-helical transition of a model IDP protein; and (iii) the base-stacking transition in a kink-turn motif of a large 232 nt RNA. For sample volumes of ∼50 μL, concentration sensitivities of 2-20 μM were achieved, representing a ∼10-fold enhancement compared to a cylindrical TE011 resonator on a commercial Bruker W-band spectrometer. These results therefore highlight the sensitivity of the thin-layer sample holders employed in HiPER for spin-labeling studies of biological macromolecules at high fields, where applications can extend to other systems that are facilitated by the modest sample volumes and ease of sample loading and geometry.
在W波段(约94 GHz)和D波段(约140 GHz)进行的高场、高频电子顺磁共振(EPR)光谱对于研究柔性生物大分子的构象动力学非常重要,因为该频率范围在100皮秒至2纳秒的时间尺度上对氮氧化物的运动具有更高的光谱灵敏度。然而,低浓度灵敏度仍然是在高磁场下研究水性样品的一个障碍。在这里,我们研究了一种非共振薄层圆柱形样品架与准光学感应模式W波段EPR光谱仪(HiPER)耦合后,用于连续波(CW)EPR分析的灵敏度,分析对象包括:(i)水性氮氧化物标准品TEMPO;(ii)一种模型内在无序蛋白从无结构状态到α螺旋状态的转变;(iii)一个232个核苷酸的大RNA的扭结环基序中的碱基堆积转变。对于约50微升的样品体积,实现了2 - 20微摩尔的浓度灵敏度,与商业布鲁克W波段光谱仪上的圆柱形TE011谐振器相比,提高了约10倍。因此,这些结果突出了HiPER中使用的薄层样品架在高场下对生物大分子进行自旋标记研究的灵敏度,其应用可以扩展到其他系统,这些系统得益于适度的样品体积以及易于样品加载和样品几何形状设置。