Taylor M G, Smith I C
Biochim Biophys Acta. 1983 Sep 7;733(2):256-63. doi: 10.1016/0005-2736(83)90530-8.
The electron spin resonance (ESR) spectrum of a nitroxide spin probe intercalated in a membrane is influenced by the amplitude of anisotropic motion of the nitroxide group and by the geometry of the oxazolidine ring of the nitroxide. In the analysis of the ESR spectra of nitroxide-labelled fatty acid probes, it is generally assumed that the five-membered oxazolidine ring system is oriented rigidly perpendicular to the long molecular axis of the probe. This assumption is tested in the present study, using 2H-NMR of specifically deuterium-labelled nitroxide spin probes. Evidence is presented that the nitroxide does not display the assumed geometry in membranes. The departure from this geometry depends on the position of the nitroxide label on the acyl chain, with a more pronounced departure for position 5 relative to position 12. These and previous data provide an explanation for the discrepancies between spin-probe ESR and 2H-NMR order parameters in membranes.
嵌入膜中的氮氧化物自旋探针的电子自旋共振(ESR)光谱受氮氧化物基团各向异性运动的幅度以及氮氧化物恶唑烷环的几何形状影响。在分析氮氧化物标记的脂肪酸探针的ESR光谱时,通常假定五元恶唑烷环系统严格垂直于探针的长分子轴定向。本研究使用特定氘标记的氮氧化物自旋探针的2H-NMR对这一假设进行了检验。有证据表明,氮氧化物在膜中并未呈现假定的几何形状。偏离这种几何形状取决于氮氧化物标记在酰基链上的位置,相对于12位,5位的偏离更为明显。这些数据以及之前的数据为膜中自旋探针ESR和2H-NMR序参量之间的差异提供了解释。