Oldfield E, Meadows M, Rice D, Jacobs R
Biochemistry. 1978 Jul 11;17(14):2727-40. doi: 10.1021/bi00607a006.
Deuterium nuclear magnetic resonance spectra of dimyristoylphosphatidylcholines specifically labeled in positions 2', 3', 4', 6', 8', 10', 12', and 14', of the 2 chain, of an N-deuteriomethylphosphatidylcholine, and of cholesterol-3alpha-d1, have been obtained by the Fourier transform method at 5.46 and 3.52 T on two "home-built" widebore superconducting magnet spectrometers, as a function of temperature and composition. Data on the specifically deuterium-labeled cholesterol molecule (in nonsonicated membrane systems) permits an estimate of the most probable angle of tilt of the sterol in the membrane, and evaluation of the order parameter (Salpha) describing rigid body motions in the bilayer. Segmental order parameters derived from the data presented allow calculation of individual chain segment projections onto the director axis and, consequently, estimation of effective chain length. It is shown that mathematical models which include chain tilt as well as those which neglect this type of rigid body motion give essentially identical results when applied to the dimyristoylphosphatidylcholine and dimyristoylphosphatidylcholine-cholesterol bilayer systems (in excess water, between 23 and 60 degrees C). Results of calculations of chain length and membrane thickness of a dimyristoylphosphatidylcholine-30 mol % cholesterol membrane system at 23 degrees C give excellent agreement when compared with recent high-resolution neutron diffraction data obtained on specifically deuterium labeled lecithin-cholesterol systems. No evidence for formation of lecithin-cholesterol complexes having lifetimes of approximately 30 ms has been found. Below the pure-lipid gel-liquid crystal phase transition temperature Tc but in the presence of cholesterol, we have obtained further evidence for 1-chain/2-chain nonequivalence. At 10 degrees C, the 2' segment of the 2 chain, but not the 2' segment of the 1 chain or the 3', 6', or 12' segments of the 2 chain, is broadened almost beyond detection. These results are in agreement with similar effects reported recently for the dipalmitoylphosphatidylcholine-cholesterol system and may indicate a bent configuration for the 2 chain, in the lecithin-cholesterol system. Further cooling below Tc results in loss of the 1-chain 2'-position signal intensity plus 2-chain 3', 6', and 12' signals simultaneously. The increase in length of the 2 chain of dimyristoylphosphatidylcholine upon addition of 30 mol % cholesterol of 23 degrees C is about 2.3 A. Addition of cholesterol to a choline-labeled lecithin results in complex behavior of the head group deuterium quadrupole splitting as a function of temperature, and cholesterol mole fraction. Above approximately 20 mol % cholesterol, the main effect is a decrease in quadrupole splitting as cholesterol content increases, the opposite effect to that observed with hydrocarbon chains.
利用傅里叶变换方法,在两台“自制”宽口径超导磁体光谱仪上,于5.46和3.52特斯拉的磁场强度下,获取了在2链的2'、3'、4'、6'、8'、10'、12'和14'位置、N - 氘代甲基磷脂酰胆碱以及胆固醇 - 3α - d1处进行特异性标记的二肉豆蔻酰磷脂酰胆碱的氘核磁共振谱,这些谱图是温度和组成的函数。关于特异性氘标记胆固醇分子(在非超声处理的膜系统中)的数据,能够估算膜中甾醇最可能的倾斜角度,并评估描述双层中刚体运动的序参数(Sα)。从所呈现的数据得出的链段序参数,允许计算各个链段在指向矢轴上的投影,进而估算有效链长。结果表明,当应用于二肉豆蔻酰磷脂酰胆碱和二肉豆蔻酰磷脂酰胆碱 - 胆固醇双层系统(在过量水中,温度在23至60摄氏度之间)时,包含链倾斜的数学模型以及忽略此类刚体运动的数学模型给出的结果基本相同。在23摄氏度下,对二肉豆蔻酰磷脂酰胆碱 - 30摩尔%胆固醇膜系统的链长和膜厚度的计算结果,与近期在特异性氘标记的卵磷脂 - 胆固醇系统上获得的高分辨率中子衍射数据相比,吻合度极高。未发现有寿命约为30毫秒的卵磷脂 - 胆固醇复合物形成的证据。在低于纯脂质凝胶 - 液晶相转变温度Tc但存在胆固醇的情况下,我们获得了关于1链/2链不等效性的进一步证据。在10摄氏度时,2链的2'段变宽,几乎无法检测到,而1链的2'段以及2链的3'、6'或12'段则没有这种情况。这些结果与最近报道的二棕榈酰磷脂酰胆碱 - 胆固醇系统的类似效应一致,可能表明在卵磷脂 - 胆固醇系统中2链呈弯曲构型。进一步冷却至Tc以下会导致1链2'位信号强度以及2链3'、6'和12'信号同时消失。在23摄氏度下,向二肉豆蔻酰磷脂酰胆碱中添加30摩尔%胆固醇后,2链长度增加约2.3埃。向胆碱标记的卵磷脂中添加胆固醇会导致头基团氘四极分裂随温度和胆固醇摩尔分数呈现复杂行为。在胆固醇含量约高于20摩尔%时,主要影响是随着胆固醇含量增加四极分裂减小,这与在烃链中观察到的效应相反。