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在水溶液中磷酸胆碱头基的水合作用。

On the hydration of the phosphocholine headgroup in aqueous solution.

机构信息

Department of Pharmaceutical Sciences, King's College London, London SE1 9NH, United Kingdom.

出版信息

J Chem Phys. 2010 Oct 14;133(14):145103. doi: 10.1063/1.3488998.

Abstract

The hydration of the phosphocholine headgroup in 1,2-dipropionyl-sn-glycero-3-phosphocholine (C(3)-PC) in solution has been determined by using neutron diffraction enhanced with isotopic substitution in combination with computer simulation techniques. The atomic scale hydration structure around this head group shows that both the -N(CH(3))(3) and -CH(2) portions of the choline headgroup are strongly associated with water, through a unique hydrogen bonding regime, where specifically a hydrogen bond from the C-H group to water and a strong association between the water oxygen and N(+) atom in solution have both been observed. In addition, both PO(4) oxygens (P=O) and C=O oxygens are oversaturated when compared to bulk water in that the average number of hydrogen bonds from water to both X=O oxygens is about 2.5 for each group. That water binds strongly to the glycerol groups and is suggestive that water may bind to these groups when phosophotidylcholine is embedded in a membrane bilayer.

摘要

通过使用同位素取代增强的中子衍射与计算机模拟技术相结合,确定了 1,2-二丙酰基-sn-甘油-3-磷酸胆碱(C(3)-PC)中膦酰胆碱头基的水合作用。该头基周围的原子尺度水合结构表明,胆碱头基的-N(CH(3))(3)和-CH(2)部分都通过独特的氢键体系与水强烈相关,其中具体观察到来自 C-H 基团的氢键与水以及水氧和溶液中 N(+)原子之间的强缔合。此外,与体相水相比,PO(4)氧(P=O)和 C=O 氧都处于过饱和状态,因为来自水的氢键的平均数量对于每个基团的 X=O 氧约为 2.5。水与甘油基团强烈结合,表明当磷脂酰胆碱嵌入双层膜时,水可能与这些基团结合。

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