Edholm O, Berger O, Jähnig F
Max-Planck-Institut für Biologie, Abteilung Membranbiochemie, Tübingen, Germany.
J Mol Biol. 1995 Jun 30;250(1):94-111. doi: 10.1006/jmbi.1995.0361.
Molecular dynamics simulations on bacteriorhodopsin were performed starting from the model structure described by Henderson et al. The simulations were gradually improved by first treating a monomer in vacuum and then adding further monomers, lipids, and water to finally simulate a unit cell of the hexagonal lattice of the purple membrane containing a trimer and lipids and water on both sides. During all simulations, the protein structure moved away from the model structure to reach a root-mean-square (r.m.s.) deviation of 2 to 3 A. In the simulations with the trimer, the structures of the three monomers differed by about the same amount and averaging over them led to an average structure with a considerably smaller r.m.s. deviation. The best average structure obtained had an r.m.s. deviation from the model structure of 1.3 A. Fluctuations of the protein, the lipids, and water were analyzed in detail. As expected, the membrane-spanning helices of the protein fluctuate less than the peripheral loops. Unexpected, however, was the finding that the fluctuations of the protein are asymmetric with respect to the midplane of the membrane. The fluctuations of the loops and the ends of the helices on the inner side of the membrane are much stronger than on the outer side. This asymmetry is also reflected by the fluctuations for the lipids, the lipids of the inner leaflet fluctuating more strongly than those of the outer leaflet. The asymmetry was observed only in the presence of water on both sides of the membrane. On the average, nine water molecules were found inside the protein, most of them undergoing exchange with external water.
基于亨德森等人描述的模型结构对细菌视紫红质进行了分子动力学模拟。模拟过程逐步改进,首先在真空中处理单体,然后添加更多单体、脂质和水,最终模拟包含三聚体以及两侧脂质和水的紫色膜六边形晶格的一个晶胞。在所有模拟过程中,蛋白质结构偏离模型结构,均方根(r.m.s.)偏差达到2至3埃。在三聚体模拟中,三个单体的结构差异大致相同,对它们进行平均得到的平均结构的均方根偏差显著更小。获得的最佳平均结构与模型结构的均方根偏差为1.3埃。详细分析了蛋白质、脂质和水的波动情况。正如预期的那样,蛋白质的跨膜螺旋波动比外周环小。然而,出乎意料的是,发现蛋白质的波动相对于膜的中平面是不对称的。膜内侧环和螺旋末端的波动比外侧强烈得多。这种不对称性在脂质波动中也有体现,内侧小叶的脂质波动比外侧小叶的脂质波动更强。仅在膜两侧都有水的情况下观察到这种不对称性。平均而言,在蛋白质内部发现了九个水分子,其中大多数与外部水进行交换。