Khalid Syma, Bond Peter J, Holyoake John, Hawtin Robert W, Sansom Mark S P
School of Chemistry, University of Southampton, Southampton, UK.
J R Soc Interface. 2008 Dec 6;5 Suppl 3(Suppl 3):S241-50. doi: 10.1098/rsif.2008.0239.focus.
DNA-lipid complexes are of biomedical importance as delivery vectors for gene therapy. To gain insight into the interactions of DNA with zwitterionic and cationic (dimyristoyltrimethylammonium propane (DMTAP)) lipids, we have used coarse-grained molecular dynamics simulations to study the self-assembly of DPPC and DPPC/DMTAP lipid bilayers in the presence of a DNA dodecamer. We observed the spontaneous formation of lipid bilayers from initial systems containing randomly placed lipids, water-counterions and DNA. In both the DPPC and DPPC/DMTAP simulations, the DNA molecule is located at the water-lipid headgroup interface, lying approximately parallel to the plane of the bilayer. We have also calculated the potential of mean force for transferring a DNA dodecamer through a DPPC/DMTAP bilayer. A high energetic barrier to DNA insertion into the hydrophobic core of the bilayer is observed. The DNA adopts a transmembrane orientation only in this region. Local bilayer deformation in the vicinity of the DNA molecule is observed, largely as a result of the DNA-DMTAP headgroup attraction.
DNA-脂质复合物作为基因治疗的递送载体具有重要的生物医学意义。为了深入了解DNA与两性离子和阳离子(二肉豆蔻酰三甲基铵丙烷(DMTAP))脂质之间的相互作用,我们使用粗粒度分子动力学模拟来研究在DNA十二聚体存在下二棕榈酰磷脂酰胆碱(DPPC)和DPPC/DMTAP脂质双层的自组装。我们观察到从包含随机放置的脂质、水-抗衡离子和DNA的初始系统中自发形成脂质双层。在DPPC和DPPC/DMTAP模拟中,DNA分子位于水-脂质头部基团界面,大致平行于双层平面。我们还计算了将DNA十二聚体穿过DPPC/DMTAP双层转移的平均力势。观察到DNA插入双层疏水核心存在高能量屏障。DNA仅在该区域采取跨膜取向。观察到DNA分子附近的局部双层变形,这主要是由于DNA-DMTAP头部基团吸引力所致。