Yeates T O, Komiya H, Rees D C, Allen J P, Feher G
Proc Natl Acad Sci U S A. 1987 Sep;84(18):6438-42. doi: 10.1073/pnas.84.18.6438.
The energetics of membrane-protein interactions are analyzed with the three-dimensional model of the photosynthetic reaction center (RC) from Rhodobacter sphaeroides. The position of the RC in the membrane and the thickness of the membrane were obtained by minimizing the hydrophobic energy with the energy function of Eisenberg and McLachlan. The 2-fold symmetry axis that relates the L and M subunits is, within the accuracy of 5 degrees, parallel to the normal of the membrane. The thickness of the membrane is estimated to be 40-45 A. Residues that are exposed to the membrane are relatively poorly conserved in the sequences of homologous RC proteins. The surface area of the RC is comparable to the surface areas of water-soluble proteins of similar molecular weight. The volumes of interior atoms in the RC are also similar to those of water-soluble proteins, indicating the same compact packing for both types of proteins. The electrostatic potential of the cofactors was calculated. The results show an asymmetry in the potential between the two possible pathways of electron transfer, with the A branch being preferred electrostatically.
利用球形红细菌光合反应中心(RC)的三维模型分析了膜蛋白相互作用的能量学。通过使用艾森伯格和麦克拉克伦的能量函数使疏水能量最小化,获得了RC在膜中的位置和膜的厚度。连接L和M亚基的二重对称轴在5度的精度范围内与膜的法线平行。膜的厚度估计为40 - 45埃。暴露于膜的残基在同源RC蛋白序列中相对保守性较差。RC的表面积与类似分子量的水溶性蛋白的表面积相当。RC内部原子的体积也与水溶性蛋白的体积相似,表明这两种类型的蛋白具有相同的紧密堆积。计算了辅因子的静电势。结果表明,在电子转移的两条可能途径之间的电势存在不对称性,其中A分支在静电方面更受青睐。