首页> 外文期刊>Journal of physical chemistry letters >Structural Dynamics of Hydrated Phospholipid Surfaces Probed by Ultrafast 2D Spectroscopy of Phosphate Vibrations
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Structural Dynamics of Hydrated Phospholipid Surfaces Probed by Ultrafast 2D Spectroscopy of Phosphate Vibrations

机译:通过超快二维荧光光谱探测的水合磷脂表面的结构动力学。

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摘要

The properties of biomembranes depend in a decisive way on interactions of phospholipids with hydrating water molecules. To map structural dynamics of a phospholipid-water interface on the length and time scale of molecular motions, we introduce the phospholipid symmetric and asymmetric phosphate stretch vibrations as probes of interfacial hydrogen bonds and electrostatic interactions. The first two- dimensional infrared spectra of such modes and a line shape analysis by density matrix theory reveal two distinct structural dynamics components; the first 300 fs contribution is related to spatial fluctuations of charged phospholipid head groups with additional water contributions at high hydration levels; the second accounts for water-phosphate hydrogen bonds persisting longer than 10 ps. Our results reveal a relatively rigid hydration shell around phosphate groups, a behavior relevant for numerous biomolecular systems.
机译:生物膜的特性决定性地取决于磷脂与水合水分子的相互作用。为了在分子运动的长度和时间尺度上绘制磷脂-水界面的结构动力学,我们引入磷脂对称和不对称的磷酸盐拉伸振动作为界面氢键和静电相互作用的探针。这种模式的第一个二维红外光谱以及通过密度矩阵理论进行的线形分析揭示了两个截然不同的结构动力学成分。前300 fs的贡献与带电的磷脂头基的空间波动有关,在高水合水平下还有额外的水贡献;第二个原因是水-磷酸盐氢键持续时间超过10 ps。我们的结果揭示了围绕磷酸基团的相对刚性的水合壳,这与许多生物分子系统有关。

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