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首页> 外文期刊>Journal of magnetic resonance >Spin-label saturation-recovery EPR at W-band: applications to eye lens lipid membranes.
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Spin-label saturation-recovery EPR at W-band: applications to eye lens lipid membranes.

机译:W波段自旋标记的饱和度恢复EPR:应用于眼脂膜。

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Saturation-recovery (SR) EPR at W-band (94 GHz) to obtain profiles of the membrane fluidity and profiles of the oxygen transport parameter is demonstrated for lens lipid membranes using phosphatidylcholine (n-PC), stearic acid (n-SASL), and cholesterol analog (ASL and CSL) spin labels, and compared with results obtained in parallel experiments at X-band (9.4 GHz). Membranes were derived from the total lipids extracted from 2-year-old porcine lens cortex and nucleus. Two findings are especially significant. First, measurements of the spin-lattice relaxation times T1 for n-PCs allowed T1 profiles across the membrane to be obtained. These profiles reflect local membrane properties differently than profiles of the order parameter. Profiles obtained at W-band are, however, shifted to longer T1 values compared to those obtained at X-band. Second, using cholesterol analog spin labels and relaxation agents (hydrophobic oxygen and water-soluble NiEDDA), the cholesterol bilayer domain was discriminated in membranes made from lipids of the lens nucleus. However, membranes made from cortical lipids show a single homogeneous environment. Profiles of the oxygen transport parameter obtained from W-band measurements are practically identical to those obtained from X-band measurements, and are very similar to those obtained earlier at X-band for membranes made of 2-year-old bovine cortical and nuclear lens lipids (M. Raguz, J. Widomska, J. Dillon, E.R. Gaillard, W.K. Subczynski, Biochim. Biophys. Acta 1788 (2009) 2380-2388). Results demonstrate that SR EPR at W-band has the potential to be a powerful tool for studying samples of small volume, ~30 nL, compared with the sample volume of ~3 μL at X-band.
机译:使用磷脂酰胆碱(n-PC),硬脂酸(n-SASL)在晶状体脂质膜上证明了W波段(94 GHz)的饱和恢复(SR)EPR以获取膜的流动性和氧传输参数的曲线,以及胆固醇类似物(ASL和CSL)自旋标记,并与在X波段(9.4 GHz)的并行实验中获得的结果进行了比较。膜是从2岁的猪晶状体皮层和细胞核中提取的总脂质衍生而来的。有两个发现特别重要。首先,对n-PC的自旋晶格弛豫时间T1的测量允许获得跨膜的T1轮廓。这些轮廓与顺序参数的轮廓不同地反映了局部膜的性能。但是,与在X波段获得的轮廓相比,在W波段获得的轮廓将移到更长的T1值。其次,使用胆固醇类似物自旋标记和松弛剂(疏水性氧气和水溶性NiEDDA),在由晶状体核脂质制成的膜中区分胆固醇双层结构域。然而,由皮质脂质制成的膜显示出单一的均质环境。从W波段测量获得的氧气传输参数曲线实际上与从X波段测量获得的参数相同,并且与先前在X波段获得的由2年龄牛皮层和核晶状体制成的膜的特性曲线非常相似。脂质(M.Raguz,J.Widomska,J.Dillon,ER Gaillard,WK Subczynski,Biochim.Biophys.Acta 1788(2009)2380-2388)。结果表明,与X波段的〜3μL样品相比,W波段的SR EPR有潜力成为研究小体积〜30 nL样品的有力工具。

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