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头部基团介导的水插入 DPPC 双层:分子动力学研究。

Headgroup mediated water insertion into the DPPC bilayer: a molecular dynamics study.

机构信息

Physical Chemistry Division, National Chemical Laboratory, Pune, India.

出版信息

J Phys Chem B. 2011 Mar 31;115(12):3155-63. doi: 10.1021/jp1090203. Epub 2011 Mar 8.

Abstract

Molecular dynamics simulation was performed on the 1,2-dipalmitoyl-sn-phosphocholine (DPPC) bilayer-water system using the GROMOS96 53a6 united atom force field. The transferability of force field was tested by reproducing the area per lipid within 3% accuracy from the experimental value. The simulation shows that water can penetrate much deeper inside the bilayer almost up to the starting point of the aliphatic chain. There is significant evidence from experiments that water goes deep in the DPPC bilayer, but it has not been reported from theoretical work. The mechanism of insertion of water deep inside the lipid bilayer is still not clear. In this report, for the first time, the mechanism of water insertion deep into the bilayer has been proposed. Water transport occurs by the headgroup and its first solvation shell. The trimethyl ammonium (NMe(3)) group (headgroup of DPPC) has two stable conformations at the bilayer-water interface, one outside the bilayer and another inside it. The NMe(3) group has a large clustering of water around it and takes the water molecules inside the bilayer with it during its entry into the bilayer. The water molecules penetrate into the bilayer with the help of the NMe(3) group present at the headgroup of DPPC and eventually form hydrogen bonds with carbonyl oxygen present deep inside the bilayer. Structural characteristics at the bilayer-water interface region are also reported.

摘要

采用 GROMOS96 53a6 均方根原子力场对 1,2-二棕榈酰-sn-磷酸胆碱(DPPC)双层-水体系进行了分子动力学模拟。通过再现脂质面积,将力场的可转移性测试至与实验值的误差在 3%以内。模拟表明,水可以穿透双层,几乎到达脂链的起始点。有实验证据表明水在 DPPC 双层中渗透很深,但这在理论工作中尚未得到报道。水插入脂质双层内部的机制仍不清楚。在本报告中,首次提出了水插入双层内部的机制。水的传输是通过头部基团及其第一溶剂化壳进行的。三甲铵(NMe(3))基团(DPPC 的头部基团)在双层-水界面处有两种稳定构象,一种在双层之外,另一种在双层之内。NMe(3)基团周围有大量的水分子聚集,并在进入双层时将水分子带入双层内。水分子在 DPPC 头部基团存在的 NMe(3)基团的帮助下穿透双层,并最终与双层内部深处的羰基氧形成氢键。还报告了双层-水界面区域的结构特征。

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