Institute of Pharmaceutical Science, King's College London, London SE1 9NH, United Kingdom.
J Chem Phys. 2011 Dec 14;135(22):225105. doi: 10.1063/1.3658382.
The solution structure of the phosphocholine (PC) head group in 1,2-dipropionyl-sn-glycero-3-phosphocholine (C(3)-PC) in 30 mol. % dimethylsulfoxide (DMSO)-water solutions has been determined by using neutron diffraction enhanced with isotopic substitution in combination with computer simulation techniques. By investigating the atomic scale hydration structure around the PC head group, a unique description of the displacement of water molecules by DMSO molecules is detailed around various locations of the head group. Specifically, DMSO molecules were found to be the most prevalent around the onium portion of the head group, with the dipoles of the DMSO molecules being aligned where the negatively charged oxygen can interact strongly with the positively charged lipid group. The phosphate group is also partially dehydrated by the presence of the DMSO molecules. However, around this group the bulkier positive end of the DMSO dipole is interacting with negatively charged groups of the lipid head group, the DMSO layer shows no obvious ordering as it cannot form hydrogen bonds with the oxygen atoms in the PO(4) group such as water molecules can. Interestingly, DMSO-water contacts have also increased in the presence of the lipid molecule relative to DMSO-water contacts observed in pure DMSO/water solutions at similar concentrations.
采用中子衍射增强与同位素取代相结合的方法以及计算机模拟技术,测定了 30mol%二甲基亚砜(DMSO)-水溶剂中 1,2-二丙酰基-sn-甘油-3-磷酸胆碱(C(3)-PC)中磷酸胆碱(PC)头基的溶液结构。通过研究 PC 头基周围的原子尺度水合结构,详细描述了在头基的各个位置处 DMSO 分子取代水分子的独特情况。具体而言,发现 DMSO 分子最常存在于头基的正离子部分周围,DMSO 分子的偶极子与带负电荷的氧原子可以强烈相互作用的位置对齐,从而带正电荷的脂质基团。磷酸基团也因 DMSO 分子的存在而部分脱水。但是,在这个基团周围,DMSO 偶极子的较大正端与脂质头基的带负电荷的基团相互作用,DMSO 层没有明显的有序排列,因为它不能像水分子那样与 PO(4)基团中的氧原子形成氢键。有趣的是,与在纯 DMSO/水溶液中在类似浓度下观察到的 DMSO-水接触相比,在存在脂质分子的情况下,DMSO-水接触也增加了。