Shin Y K, Ewert U, Budil D E, Freed J H
Baker Laboratory of Chemistry, Cornell University, Ithaca, New York 14853.
Biophys J. 1991 Apr;59(4):950-7. doi: 10.1016/S0006-3495(91)82310-4.
The macroscopic and the microscopic diffusion coefficients of a phospholipid spin label (16-PC) in the model membrane 1-palmitoyl-2-oleoyl-sn-glycero-phosphatidylcholine have been measured simultaneously in the same sample utilizing the new technique of spectral-spatial electron spin resonance imaging. The macroscopic diffusion coefficient Dmacro for self-diffusion of 16-PC spin label is obtained from imaging the concentration profiles as a function of time, and it is (2.3 +/- 0.4) x 10(-8) cm2/s at 22 degrees C. The microscopic diffusion coefficient Dmicro for relative diffusion of the spin probes is obtained from the variation of the spectral line broadening with spin label concentration, which is due to spin-spin interactions. Dmicro is found to be substantially greater than Dmacro for the same sample at the same conditions, and is estimated to be at least (1.0 +/- 0.4) x 10(-7) cm2/s. Possible sources for their difference are briefly discussed in terms of the models used for Dmicro.
利用光谱 - 空间电子自旋共振成像新技术,在同一样品中同时测量了磷脂自旋标记物(16 - PC)在模型膜1 - 棕榈酰 - 2 - 油酰 - sn - 甘油 - 磷脂酰胆碱中的宏观和微观扩散系数。16 - PC自旋标记物自扩散的宏观扩散系数Dmacro是通过对浓度分布随时间的变化进行成像得到的,在22℃时为(2.3±0.4)×10⁻⁸ cm²/s。自旋探针相对扩散的微观扩散系数Dmicro是从谱线展宽随自旋标记物浓度的变化获得的,这是由于自旋 - 自旋相互作用引起的。发现在相同条件下,同一样品的Dmicro显著大于Dmacro,估计至少为(1.0±0.4)×10⁻⁷ cm²/s。根据用于Dmicro的模型简要讨论了它们差异的可能来源。