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首页> 外文期刊>Journal of physical chemistry letters >Water Hydrogen-Bonding Network Structure and Dynamics at Phospholipid Multibilayer Surface: Femtosecond Mid-IR Pump-Probe Spectroscopy
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Water Hydrogen-Bonding Network Structure and Dynamics at Phospholipid Multibilayer Surface: Femtosecond Mid-IR Pump-Probe Spectroscopy

机译:磷脂多层膜表面的水氢键网络结构和动力学:飞秒中红外泵浦探针光谱

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摘要

The water hydrogen-bonding network at a lipid bilayer surface is crucial to understanding membrane structures and its functional activities. With a phospholipid multibilayer mimicking a biological membrane, we study the temperature dependence of water hydrogen-bonding structure, distribution, and dynamics at a lipid multibilayer surface using femtosecond mid-IR pumpprobe spectroscopy. We observe two distinguished vibrational lifetime components. The fast component (0.6 ps) is associated with water interacting with a phosphate part, whereas the slow component (1.9 ps) is with bulk-like choline-associated water. With increasing temperature, the vibrational lifetime of phosphate-associated water remains constant though its relative fraction dramatically increases. The OD stretch vibrational lifetime of choline-bound water slows down in a sigmoidal fashion with respect to temperature, indicating a noticeable change of the water environment upon the phase transition. The water structure and dynamics are thus shown to be in quantitative correlation with the structural change of liquid multibilayer upon the gel-to-liquid crystal phase transition.
机译:脂质双层表面的水氢键网络对于理解膜结构及其功能活性至关重要。通过模拟生物膜的磷脂多层膜,我们使用飞秒中红外泵浦探针光谱技术研究了脂质多层膜表面水氢键结构,分布和动力学的温度依赖性。我们观察到两个杰出的振动寿命分量。快成分(0.6 ps)与水与磷酸盐部分相互作用,而慢成分(1.9 ps)与大块状胆碱相关水。随着温度升高,磷酸盐相关水的振动寿命保持恒定,尽管其相对分数急剧增加。结合胆碱的水的OD拉伸振动寿命相对于温度以S形曲线减慢,表明在相变时水环境的显着变化。因此表明水的结构和动力学与凝胶-液晶相变时液体多层膜的结构变化在数量上相关。

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