Pearson L T, Edelman J, Chan S I
Biophys J. 1984 May;45(5):863-71. doi: 10.1016/S0006-3495(84)84232-0.
An expression is derived for the lipid-mediated intermolecular interaction between protein molecules embedded in a lipid bilayer. It is assumed that protein particles are accommodated by the bilayer, but they distort the lipids in some manner from their equilibrium protein-free configuration. We treat this situation by expanding the free energy density in the plane of the membrane as a Taylor series in some arbitrary parameter and its gradient. Minimization of the total membrane energy for a given particle configuration yields the interparticle interaction energy for that configuration. A test of the model is provided by measurement of the protein-protein pair distribution function from freeze-fracture micrographs of partially aggregated membranes. The measured functions can be simulated by adjustment of two parameters (a) a lipid correlation length that characterizes the distance over which a distortion of the bilayers is transmitted laterally through the bilayer, and (b) a term quantifying the energy of the protein-lipid interaction at the protein-lipid boundary. Correlation lengths obtained by fitting the calculated particle distribution functions to the data are found to be several nanometers. Protein-lipid interaction energies are of the order of a few kT.
推导出了嵌入脂质双层中的蛋白质分子间脂质介导的分子间相互作用的表达式。假设蛋白质颗粒被双层容纳,但它们以某种方式使脂质偏离其无蛋白质时的平衡构型。我们通过将膜平面内的自由能密度展开为某个任意参数及其梯度的泰勒级数来处理这种情况。对于给定的颗粒构型,使总膜能量最小化可得到该构型下的颗粒间相互作用能。通过测量部分聚集膜的冷冻断裂显微照片中的蛋白质 - 蛋白质对分布函数来对该模型进行检验。通过调整两个参数(a)一个脂质相关长度,它表征双层的畸变在双层中横向传播的距离,以及(b)一个量化蛋白质 - 脂质边界处蛋白质 - 脂质相互作用能量的项,可以模拟测量得到的函数。通过将计算出的颗粒分布函数拟合到数据而获得的相关长度为几纳米。蛋白质 - 脂质相互作用能约为几个kT。