首页> 外文OA文献 >Electron spin resonance and electron-spin-echo study of oriented multilayers of L alpha-dipalmitoylphosphatidylcholine water systems.
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Electron spin resonance and electron-spin-echo study of oriented multilayers of L alpha-dipalmitoylphosphatidylcholine water systems.

机译:电子自旋共振和电子自旋回波研究的Lα-dipalmitoylphosphatidylcholine胆碱水系统的多层结构。

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摘要

A detailed electron spin resonance (ESR) study of spin-labeled-oriented multilayers of L alpha-dipalmitoylphosphatidylcholine (DPPC) water systems for low water content (2-10% by weight) is reported with the purpose of characterizing the dynamical and structural properties of model membrane systems. Emphasis is placed on the value of combining such experiments with detailed simulations based on current slow-motional theories. Information is obtained regarding ordering and anisotropic rotational diffusion rates via ESR lineshape analysis over the entire motional range, from the fast motional region through the moderately slow and slow to the rigid limit. This includes the low-temperature gel phase, the liquid crystalline L alpha (1) phase and what appears to be a third high-temperature phase above the L alpha phase. Cholestane (CSL) and spin-labeled DPPC (5-PC, 8-PC, and 16-PC) have been used to probe different depths of the bilayer. While CSL and 5-PC both reflect the high ordering of the bilayer close to the lipid-water interface, CSL appears to be located close enough to the water for the nitroxide to be involved in hydrogen bonding with water molecules. 16-PC reflects the relatively low ordering near the tail of the hydrocarbon chain in the bilayer. Quantitative estimates of ordering and motion are obtained for these cases. The results from CSL indicate that close to the lipid-water interface the DPPC molecule is oriented approximately perpendicular to the bilayer in these low water-content systems. However, all three labeled lipid probes indicate that the hydrocarbon chain of DPPC may be bent away from the bilayer normal by as much as 30 degrees and this evidence is stronger at low temperatures. When cholesterol is added to the DPPC-water system at a concentration greater than or equal to 2.5 mol %, the ordering is greatly increased although the rotational diffusion rate remains almost unaffected in the gel phase. Electron spin echoes (ESE) are observed for the first time from oriented lipid-water multilayers. Results obtained from cw ESR lineshape analysis are correlated with data from ESE experiments, which give a more direct measurement of relaxation times. These results indicate that for detection of very slow motions (close to the rigid limit) ESE experiments are more sensitive to dynamics than continuous wave ESR for which inhomogeneous broadening becomes a major problem.
机译:报道了针对低水含量(2-10%重量)的Lα-二棕榈酰磷脂酰胆碱(DPPC)水系统自旋标记取向多层膜的详细电子自旋共振(ESR)研究,目的是表征动力学和结构性质膜系统模型。重点放在将此类实验与基于当前慢动作理论的详细模拟相结合的价值。通过ESR线形分析,可以从整个运动范围(从快速运动区域到中等缓慢和缓慢运动到刚性极限)获得有关有序旋转和各向异性旋转扩散速率的信息。这包括低温凝胶相,液晶L alpha(1)相以及在L alpha相之上的第三高温相。胆甾醇(CSL)和自旋标记的DPPC(5-PC,8-PC和16-PC)已用于探测双层的不同深度。虽然CSL和5-PC均反映了双层结构在脂质-水界面附近的高度有序性,但CSL似乎位于离水足够近的位置,以使氮氧化物参与与水分子的氢键结合。 16-PC反映了双层中烃链尾部附近相对较低的有序性。对于这些情况,获得了顺序和运动的定量估计。 CSL的结果表明,在这些低水含量的系统中,DPPC分子接近脂质-水界面,大致垂直于双层。但是,所有三个标记的脂质探针均表明DPPC的烃链可能会偏离双层法线多达30度,并且该证据在低温下更强。当胆固醇以大于或等于2.5mol%的浓度添加到DPPC-水系统中时,尽管旋转扩散速率在凝胶相中几乎不受影响,但是有序性大大增加。首次从取向脂质-水多层中观察到电子自旋回波(ESE)。从连续ESR线形分析获得的结果与ESE实验的数据相关,后者可以更直接地测量弛豫时间。这些结果表明,对于非常慢的运动(接近刚性极限)的检测,ESE实验比连续波ESR对动力学更敏感,因为连续波ESR的不均匀展宽成为主要问题。

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