Wiener M C, King G I, White S H
Department of Physiology and Biophysics, University of California, Irvine 92717.
Biophys J. 1991 Sep;60(3):568-76. doi: 10.1016/S0006-3495(91)82086-0.
We described in two previous papers a method for the joint refinement of the structure of fluid bilayers using neutron and x-ray diffraction data (Wiener, M. C., and S. H. White 1991a, b. Biophys. J. 59: 162-173 and 174-185). An essential part of the method is the appropriate scaling of the diffraction data. Here we describe the scaling of the neutron data and the determination of the transbilayer distribution of double bonds in liquid-crystalline (L alpha phase) phospholipid bilayers of 1,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC). The distribution was determined by neutron diffraction of oriented multilayers (66% RH) of DOPC specifically deuterated at the 9- and 10-position of both acyl chains. The double-bond distribution is described accurately by a pair of Gaussian functions each located at a position Zcc = 7.88 +/- 0.09 A from the bilayer center with 1/e-halfwidths of Acc = 4.29 +/- 0.16 A. Previously, we determined the transbilayer distribution of bromine atoms in a specifically halogenated lipid, 1-oleoyl-2-9,10-dibromostearoyl-sn-glycero-3-phosphocholine (OBPC), and showed it to be an isomorphous replacement for DOPC (Wiener, M. C., and S. H. White, 1991c. Biochemistry. In press). A comparison of the double-bond and bromine profiles indicates that the positions of the centers of the deuterated double bond and the brominated methylene Gaussian distributions are equal within experimental error and that each label undergoes similar average thermal motions with respect to the bilayer normal. The observation that the average position of a label on both acyl chains (the deuterated double bonds) is similar to the average position of a label on the 2-chain alone (the brominated methylenes) indicates that the maximum separation along the bilayer normal between the double bonds of the acyl chains is 1 A or less. The fully-resolved transbilayer water distribution, previously determined at lower resolution (Jacobs, R. E., and S. H. White. 1989. Biochemistry. 28:3421-3437), was obtained from the analysis of neutron diffraction data of DOPC hydrated with a D20/H20 mixture. The water distribution is described accurately by a pair of Gaussian functions each located at a position Zw = 22.51 +/- 0.77 A from the bilayer center with 1/e-half widths of Aw = 4.63 +/- 0.48A. We present the relative absolute neutron and x-ray structure factors of DOPC at 66% RH that will be used to solve the complete structure of DOPC which will be presented in a later paper of this series.
我们在之前的两篇论文中描述了一种利用中子和X射线衍射数据对流体双层结构进行联合精修的方法(Wiener, M. C., and S. H. White 1991a, b. Biophys. J. 59: 162 - 173和174 - 185)。该方法的一个重要部分是对衍射数据进行适当的标度。在此,我们描述了中子数据的标度以及1,2 - 二油酰 - sn - 甘油 - 3 - 磷酸胆碱(DOPC)的液晶(Lα相)磷脂双层中双键的跨双层分布的测定。通过对在两条酰基链的9位和10位进行特异性氘代的DOPC取向多层膜(66%相对湿度)进行中子衍射来确定该分布。双键分布可以用一对高斯函数准确描述,每个高斯函数位于距双层中心Zcc = 7.88 ± 0.09 Å处,1/e半高宽为Acc = 4.29 ± 0.16 Å。此前,我们确定了一种特异性卤化脂质1 - 油酰 - 2 - 9,10 - 二溴硬脂酰 - sn - 甘油 - 3 - 磷酸胆碱(OBPC)中溴原子的跨双层分布,并表明它是DOPC的同晶置换(Wiener, M. C., and S. H. White, 1991c. Biochemistry. 即将发表)。双键和溴分布曲线的比较表明,氘代双键中心和溴化亚甲基高斯分布的中心位置在实验误差范围内相等,并且每个标记相对于双层法线经历相似的平均热运动。两条酰基链上标记(氘代双键)的平均位置与仅在2链上标记(溴化亚甲基)的平均位置相似这一观察结果表明,酰基链双键沿双层法线的最大间距为1 Å或更小。之前在较低分辨率下确定的完全解析的跨双层水分布(Jacobs, R. E., and S. H. White. 1989. Biochemistry. 28:3421 - 3437)是通过对用D20/H20混合物水合的DOPC的中子衍射数据进行分析得到的。水分布可以用一对高斯函数准确描述,每个高斯函数位于距双层中心Zw = 22.51 ± 0.77 Å处,1/e半高宽为Aw = 4.63 ± 0.48 Å。我们给出了66%相对湿度下DOPC的相对绝对中子和X射线结构因子,这些因子将用于解析DOPC的完整结构,完整结构将在本系列的后续论文中给出。