Gaffney B J, Marsh D
National High Magnetic Field Laboratory and Department of Biological Science, Florida State University, 1800 E. Paul Dirac Drive, Tallahassee, FL 32310, USA.
Proc Natl Acad Sci U S A. 1998 Oct 27;95(22):12940-3. doi: 10.1073/pnas.95.22.12940.
The EPR spectra of spin-labeled lipid chains in fully hydrated bilayer membranes of dimyristoyl phosphatidylcholine containing 40 mol % of cholesterol have been studied in the liquid-ordered phase at a microwave radiation frequency of 94 GHz. At such high field strengths, the spectra should be optimally sensitive to lateral chain ordering that is expected in the formation of in-plane domains. The high-field EPR spectra from random dispersions of the cholesterol-containing membranes display very little axial averaging of the nitroxide g-tensor anisotropy for lipids spin labeled toward the carboxyl end of the sn-2 chain (down to the 8-C atom). For these positions of labeling, anisotropic 14N-hyperfine splittings are resolved in the gzz and gyy regions of the nonaxial EPR spectra. For positions of labeling further down the lipid chain, toward the terminal methyl group, the axial averaging of the spectral features systematically increases and is complete at the 14-C atom position. Concomitantly, the time-averaged
在94GHz微波辐射频率下,对含有40摩尔%胆固醇的二肉豆蔻酰磷脂酰胆碱完全水合双层膜中自旋标记脂质链的电子顺磁共振(EPR)光谱进行了研究,该研究处于液晶相。在如此高的场强下,光谱对平面内畴形成过程中预期的侧链有序性应具有最佳灵敏度。来自含胆固醇膜随机分散体的高场EPR光谱显示,对于自旋标记在sn-2链羧基末端(直至8-C原子)的脂质,氮氧自由基g张量各向异性的轴向平均非常小。对于这些标记位置,在非轴向EPR光谱的gzz和gyy区域分辨出各向异性的14N超精细分裂。对于脂质链上更靠近末端甲基的标记位置,光谱特征的轴向平均系统性增加,并在14-C原子位置完全完成。同时,14N超精细张量的时间平均