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Interfacial Water Structure Associated with Phospholipid Membranes Studied by Phase-Sensitive Vibrational Sum Frequency Generation Spectroscopy

机译:相敏感的振动和频率产生谱研究与磷脂膜相关的界面水结构

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摘要

Phase-sensitive vibrational sum frequency generation is employed to investigate the water structure at phospholipid/water interfaces. Interfacial water molecules are oriented preferentially by the electrostatic potential imposed by the phospholipids and have, on average, their dipole pointing toward the phospholipid tails for all phospholipids studied, dipalmitoyl phosphocholine (DPPC), dipalmitoyl phosphoethanolamine (DPPE), dipalmitoyl phosphate (DPPA), dipalmitoyl phosphoglycerol (DPPG), and dipalmitoyl phospho-l-serine (DPPS). Zwitterionic DPPC and DPPE reveal weaker water orienting capability relative to net negative DPPA, DPPG, and DPPS. Binding of calcium cations to the lipid phosphate group reduces ordering of the water molecules.
机译:利用相敏振动总和频率产生法研究磷脂/水界面的水结构。界面水分子优先通过磷脂施加的静电势进行定向,并且平均而言,对于所有研究的磷脂,二棕榈酰基磷酸胆碱(DPPC),二棕榈酰基磷酸乙醇胺(DPPE),二棕榈酰基磷酸酯(DPPA)的偶极指向磷脂尾巴,二棕榈酰磷酸甘油(DPPG)和二棕榈酰磷酸-1-丝氨酸(DPPS)。与净负DPPA,DPPG和DPPS相比,两性离子DPPC和DPPE的水定向能力较弱。钙阳离子与脂质磷酸基团的结合降低了水分子的有序性。

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