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二油酰磷脂酰胆碱/二油酰磷脂酰甘油混合双层膜的分子动力学模拟

Molecular dynamics simulations of a mixed DOPC/DOPG bilayer.

作者信息

Balali-Mood K, Harroun T A, Bradshaw J P

机构信息

Preclinical Veterinary Sciences, R(D)SVS, College of Medicine and Veterinary Medicine, University of Edinburgh, Summerhall, Edinburgh EH9 1QH, UK.

出版信息

Eur Phys J E Soft Matter. 2003 Nov;12 Suppl 1:S135-40. doi: 10.1140/epjed/e2003-01-031-3. Epub 2003 Nov 5.

Abstract

We have constructed a mixed dioleoylphosphatidylcholine (DOPC) and dioleoylphosphatidylglycerol bilayer (DOPG) bilayer utilizing MD simulations. The aim was to develop an explicit molecular model of biological membranes as a complementary technique to neutron diffraction studies that are well established within the group. A monolayer was constructed by taking a previously customized PDB file of each molecule and arranging them in a seven rows of ten molecules and duplicated and rotated to form a bilayer. The 140-molecule bilayer contained 98 DOPC molecules and 42 DOPG molecules, in a 7:3 ratio in favour of DOPC. Sodium counter ions were placed near the phosphate moiety of DOPG to counteract the negative charge of DOPG. This was representative of the lipid ratio in a sample used for neutron diffraction. The MD package GROMACS was used for confining the bilayer in a triclinic box, adding Simple Polar Charge water molecules, energy minimization (EM). The bilayer/solvent system was subjected to EM using the steepest descent method to nullify bad contacts and reduce the potential energy of the system. Subsequent MD simulation using an initial NVT (constant number of particles, volume and temperature) for a 20 ps MD run followed by a NPT (constant number of particles, pressure and temperature) was performed. Structural parameters including volume of lipid, area of lipid, order parameter of the fatty acyl carbons and electron density profiles generated by the MD simulation were verified with values obtained from experimental data of DOPC, as there are no comparable experimental data available for the mixed bilayer.

摘要

我们利用分子动力学(MD)模拟构建了一个由二油酰磷脂酰胆碱(DOPC)和二油酰磷脂酰甘油双层(DOPG)组成的混合双层。目的是开发一种生物膜的显式分子模型,作为该研究小组内已成熟的中子衍射研究的补充技术。通过获取每个分子先前定制的PDB文件,并将它们排列成七行,每行十个分子,然后复制并旋转以形成双层,从而构建了一个单层。这个由140个分子组成的双层包含98个DOPC分子和42个DOPG分子,比例为7:3,有利于DOPC。钠离子抗衡离子被放置在DOPG的磷酸基团附近,以抵消DOPG的负电荷。这代表了用于中子衍射的样品中的脂质比例。MD软件包GROMACS用于将双层限制在三斜晶系盒子中,添加简单极化电荷水分子,进行能量最小化(EM)。双层/溶剂系统使用最速下降法进行EM,以消除不良接触并降低系统的势能。随后进行MD模拟,先进行20 ps的初始NVT(恒定粒子数、体积和温度)运行,然后进行NPT(恒定粒子数、压力和温度)运行。通过MD模拟生成的结构参数,包括脂质体积、脂质面积、脂肪酰基碳的序参数和电子密度分布,与从DOPC实验数据获得的值进行了验证,因为没有可用于混合双层的可比实验数据。

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