Pearson L T, Chan S I, Lewis B A, Engelman D M
Biophys J. 1983 Aug;43(2):167-74. doi: 10.1016/S0006-3495(83)84337-9.
The pair distribution functions have been measured from freeze-fracture pictures of bacteriorhodopsin and rhodopsin recombinants with diacyl phosphatidylcholines (PC) of various hydrocarbon chain lengths. Pictures were used of samples that had been frozen from above the phase transition temperature of the lipid. Measured functions were compared with those calculated from two model interparticle potential energy functions, (a) a hard-disk repulsion only, and (b) a hard-disk repulsion plus electrostatic repulsion for a point charge buried in the membrane. The measured functions for bacteriorhodopsin di 12:0 PC, di 14:0 PC, and di 16:0 PC recombinants can be simulated using an interparticle hard-disk repulsion only. Bleached rhodopsin di 12:0 PC and di 18:1 trans-PC recombinants, and dark-adapted rhodopsin di 10:0 PC recombinants yield functions that are better simulated by assuming an additional repulsive interaction. The measured functions resemble those calculated using the hard-disk plus electrostatic repulsion model. The picture of dark-adapted rhodopsin in di 18:1 trans-PC frozen from 20 degrees C shows partial aggregation that is apparent in the measured pair distribution function. This attractive interaction persists even at 37 degrees C, where the measured function shows deviations from the hard-disk repulsive model, indicative of an attractive interparticle interaction. Implications of these results are discussed in terms of protein-lipid interactions.
已从细菌视紫红质和视紫红质重组体与各种烃链长度的二酰基磷脂酰胆碱(PC)的冷冻蚀刻图片中测量了对分布函数。使用的图片是从高于脂质相变温度冷冻的样品的图片。将测量的函数与从两个模型粒子间势能函数计算的函数进行比较,(a)仅硬磁盘排斥,以及(b)对于埋在膜中的点电荷的硬磁盘排斥加静电排斥。细菌视紫红质二12:0 PC、二14:0 PC和二16:0 PC重组体的测量函数仅使用粒子间硬磁盘排斥即可模拟。漂白的视紫红质二12:0 PC和二18:1反式PC重组体,以及暗适应的视紫红质二10:0 PC重组体产生的函数,通过假设额外的排斥相互作用能得到更好的模拟。测量的函数类似于使用硬磁盘加静电排斥模型计算的函数。从20摄氏度冷冻的二18:1反式PC中暗适应视紫红质的图片显示出在测量的对分布函数中明显的部分聚集。即使在37摄氏度时,这种吸引相互作用仍然存在,此时测量的函数显示出与硬磁盘排斥模型的偏差,表明存在粒子间吸引相互作用。将根据蛋白质 - 脂质相互作用讨论这些结果的意义。