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Pressure-induced correlation field splitting of vibrational modes: structural and dynamic properties in lipid bilayers and biomembranes.

机译:压力引起的振动模式相关场分裂:脂质双层和生物膜的结构和动力学性质。

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摘要

Correlation field splittings of the vibrational modes of methylene chains in lipid bilayers, isolated lipid molecules in perdeuterated lipid bilayers, crystalline lipid, and interdigitated lipid bilayers have been investigated by pressure-tuning Fourier-transform infrared spectroscopy. The correlation field splittings of these modes are originating from the vibrational coupling interactions between the fully extended methylene chains with different site symmetry along each bilayer leaflet. The interchain-interactions of the methylene chains with the same site symmetry only contribute to frequency shift of the vibrational modes. The magnitude of the correlation field splitting is a measure of the strength of the interchain-interactions, and the relative intensities of the correlation field component bands provide information concerning the relative orientation of the zig-zag planes of the interacting methylene chains. It has been demonstrated in the present work that the correlation field splitting of the CH2 bending and rocking modes commonly observed in the vibrational spectra of lipid bilayers is the result of the intermolecular interchain-interactions among the methylene chains of the neighboring molecules. The intramolecular interchain-interactions between the sn-1 and sn-2 methylene chains within each molecule are weak. The correlation field splitting resulting from the intramolecular interchain-interactions exhibits a much smaller magnitude than that from the intermolecular interchain-interactions and is observed only at very high pressure. Interdigitation of the opposing bilayer leaflets disturbs significantly the intermolecular interchain-interactions and results in dramatic changes in the pressure profiles of the correlation field component bands of both the CH2 bending and rocking modes. The relative intensities of the correlation field component bands of these modes and the magnitude of the splitting are also altered significantly. These results provide further evidence that the correlation field splitting of the CH2 bending and rocking modes in the vibrational spectra of lipid bilayers is due to the intermolecular interchain-interactions. The present work has also demonstrated that the correlation field splitting of the vibrational modes in lipid bilayers is mainly contributed by the intermolecular interchain-interactions among the nearest neighboring molecules and that the long-range correlation interactions beyond the second neighboring molecules are insignificant.
机译:已经通过压力调谐傅立叶变换红外光谱法研究了脂质双层中亚甲基链的振动模式,全氘化脂质双层中分离的脂质分子,结晶脂质和指状脂质双层的振动模式的相关场分裂。这些模式的相关场分裂源自沿每个双层小叶具有不同位点对称性的完全延伸的亚甲基链之间的振动耦合相互作用。具有相同位点对称性的亚甲基链的链间相互作用仅有助于振动模式的频移。相关场分裂的幅度是链间相互作用强度的量度,并且相关场分量带的相对强度提供了有关相互作用的亚甲基链之字形平面的相对取向的信息。在本工作中已经证明,在脂质双层的振动光谱中通常观察到的CH2弯曲和摇摆模式的相关场分裂是相邻分子的亚甲基链之间的分子间链间相互作用的结果。每个分子中的sn-1和sn-2亚甲基链之间的分子内链间相互作用较弱。分子内链间相互作用引起的相关场分裂显示出比分子间链间相互作用引起的相关场分裂小得多的幅度,并且仅在非常高的压力下观察到。相对的双层小叶的叉指间显着干扰了分子间链间相互作用,并导致CH2弯曲和摇摆模式的相关场分量带的压力分布发生显着变化。这些模式的相关场分量带的相对强度和分裂幅度也发生了显着变化。这些结果提供了进一步的证据,表明脂质双层的振动光谱中CH2弯曲和摇摆模式的相关场分裂是由于分子间链间相互作用引起的。目前的工作还表明,脂质双层中振动模式的相关场分裂主要是由最近的相邻分子之间的分子间链间相互作用引起的,并且第二个相邻分子之外的远距离相关相互作用微不足道。

著录项

  • 期刊名称 Biophysical Journal
  • 作者

    P T Wong;

  • 作者单位
  • 年(卷),期 1994(66),5
  • 年度 1994
  • 页码 1505–1514
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
  • 中图分类 生物物理学;
  • 关键词

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