Department of Biomedical Engineering, Faculty of Engineering, University of Ghana, Legon, Ghana,
J Membr Biol. 2014 Mar;247(3):231-8. doi: 10.1007/s00232-013-9627-7. Epub 2014 Jan 9.
The purpose of these studies is to determine the intermolecular distances that define the location, orientation, and conformation of 2-AG in palmitoyl-oleoyl-phosphatidylcholine (POPC) lipid bilayers using rotational-echo double-resonance (REDOR) NMR. All five protons on the glycerol backbone of 2-AG were replaced with ²H and the distance between the deuterons and naturally occurring ³¹P on the POPC lipid headgroup determined with REDOR. To determine the distance from each deuteron to the phosphorus, the POPC headgroup was arranged in a hexagonal array. The 2-AG intercalates between the lipid molecules and the ²H labels, resulting in an average distance of z directly above or below the center of the parallelogram of the four phosphorus atoms P₁, P₂, P₃, and P₄. For different z values, the ²H-³¹P inter-nuclear distances were 7.6-9.1 Å (²H-³¹P₁ and ²H-³¹P₃₁) and 4.4-6.7 Å (²H-³¹P₂ and ²H-³¹P₄). Each result involved the calculations and summation of 893,101 terms. Based on the curve-fitting parameters, the calculations with z = 0 fits the data the best, which means these methylene ²H atoms are at the same level as the phosphate group of the POPC lipid bilayer. Molecular dynamic simulation data suggested that the ²H atoms at the glycerol backbone of 2-AG are involved in an extended H-bonding network with the phosphorus atoms after 10-ns simulation.
这些研究的目的是使用旋转回波双共振(REDOR)NMR 确定 2-AG 在棕榈酰-油酰-磷脂酰胆碱(POPC)脂质双层中的位置、取向和构象所定义的分子间距离。2-AG 甘油骨架上的所有五个质子都被 ²H 取代,并用 REDOR 确定 POPC 脂质头部基团上的氘原子和天然存在的 ³¹P 之间的距离。为了确定每个氘原子到磷的距离,将 POPC 头部基团排列成六边形阵列。2-AG 插入脂质分子之间, ²H 标签,导致 z 直接在四个磷原子 P₁、P₂、P₃ 和 P₄ 的平行四边形的中心上方或下方的平均距离。对于不同的 z 值,²H-³¹P 核间距离为 7.6-9.1 Å(²H-³¹P₁ 和 ²H-³¹P₃₁)和 4.4-6.7 Å(²H-³¹P₂ 和 ²H-³¹P₄)。每个结果都涉及 893,101 项的计算和求和。基于曲线拟合参数,z = 0 的计算最符合数据,这意味着这些亚甲基 ²H 原子与 POPC 脂质双层的磷酸基团处于同一水平。分子动力学模拟数据表明,在经过 10-ns 模拟后,2-AG 甘油骨架上的 ²H 原子与磷原子参与了扩展的氢键网络。