傅里叶变换红外光谱作为探针研究脂质自组装的水合作用。2水结合与相变

Carsten Selle, Walter Pohle
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引用次数: 38

摘要

傅里叶变换红外光谱(FTIR)可以有效地探测磷脂膜的逐渐水化过程(参见本系列的第一部分)。脂质红外吸收带中观察到的水合作用引起的变化可能是由水分子的直接结合以及由此引起的脂质分子和组件的构象变化和相变的影响所引起的。在这篇文章中,试图将一些更有指示性的光谱结果归因于这些分子和超分子过程,以分离它们对相关光谱数据的个别贡献。这是通过考虑一系列合适的PLs,包括棕榈酰和油酰卵磷脂,DPPC, DOPC, POPC和OPPC,以及一个脑磷脂,DOPE来完成的。PCs和DOPE的选择意味着在室温和不同的水化程度下,包括层状凝胶和液晶以及某些非层状相在内的几种相态被覆盖。我们认为,通过解释pc的νC=O波段的水合相关波数移位,可以清楚地证明水结合和相变对ftir光谱数据的贡献。在l - α相中排列的脂质对羰基的影响比在凝胶相中更显著。许多光谱特征揭示了变暖触发的链熔化转变以及其他结构重排。详细讨论了这一点,并证明了FTIR方法对这类系统的研究具有优异的灵敏度。©1998 John Wiley &儿子,Inc。生物光谱学杂志,2004,31 (2):391 - 391
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fourier transform infrared spectroscopy as a probe for the study of the hydration of lipid self-assemblies. II. Water binding versus phase transitions

The gradual hydration of phospholipid films can be effectively probed by Fourier transform infrared (FTIR) spectroscopy (cf. part I of this series). The hydration-induced changes observed for lipid IR-absorption bands are probably composed of contributions arising from the effects of both the direct binding of water molecules and the thereby caused conformational changes and phase transitions in the lipid molecules and assemblies, respectively. In this article, an attempt is made to attribute some of the more indicative spectroscopic results to these molecular and supermolecular processes with a view to separating their individual contributions to the relevant spectroscopic data. This is done by considering a series of suitable PLs consisting of the palmitoyl and oleoyl lecithins, DPPC, DOPC, POPC, and OPPC, and one cephalin, DOPE. This choice of PCs and DOPE means that at room temperature and different degrees of hydration, several phase states including lamellar gel and liquid crystalline as well as certain nonlamellar phases are covered. The separation of the water-binding and phase-transition contributions to the FTIR-spectroscopic data, we believe, is clearly demonstrated by interpreting the hydration-dependent wavenumber shifts of the νC=O band of the PCs. Carbonyl groups are affected to a more significant degree for lipids arrayed in the Lα phase than in the gel phase. A number of spectral features reveal the lyotropically triggered chain-melting transition as well as other structural rearrangements of PCs. This is discussed in detail and demonstrates the excellent sensitivity of the FTIR methodology for the study of such systems. © 1998 John Wiley & Sons, Inc. Biospectroscopy 4: 281–294, 1998

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