Jost P C, Griffith O H, Capaldi R A, Vanderkooi G
Proc Natl Acad Sci U S A. 1973 Feb;70(2):480-4. doi: 10.1073/pnas.70.2.480.
Cytochrome oxidase (EC 1.9.3.1) isolated from beef-heart mitochondria with an appropriate phospholipid content forms vesicular structures. Lipid-protein interactions in this model membrane system were studied with the lipid spin label, 16-doxylstearic acid. As the phospholipid/protein ratio is varied, two spectral components are observed. At low phospholipid/protein ratios (</=0.19 mg of phospholipid per mg of protein) the lipid spin label is highly immobilized. At higher phospholipid content an additional component characteristic of fluid lipid bilayers is evident. By summation of digitalized spectra and subsequent integration it was shown that all composite spectra could be approximated by assuming only two components are present, and that the amount of phospholipid bound to the protein is independent of the extent of the fluid bilayer region. The experimentally determined amount of phospholipid for maximum occupancy of protein-bound sites is about 0.2 mg of phospholipid per 1.0 mg of protein. Calculations show that this ratio is consistent with a single layer of phospholipid surrounding the protein complex. The data are interpreted as evidence for a boundary of immobilized lipid between the hydrophobic protein and adjacent fluid bilayer regions in this membrane model system.
从牛心线粒体中分离出的具有适当磷脂含量的细胞色素氧化酶(EC 1.9.3.1)形成囊泡结构。利用脂质自旋标记物16 - 脱氧硬脂酸研究了该模型膜系统中的脂 - 蛋白相互作用。随着磷脂/蛋白比例的变化,观察到两个光谱成分。在低磷脂/蛋白比例(≤0.19毫克磷脂/毫克蛋白)时,脂质自旋标记物高度固定。在较高的磷脂含量下,流体脂质双层的另一个特征成分很明显。通过数字化光谱的求和及随后的积分表明,所有复合光谱都可以通过假设仅存在两个成分来近似,并且与蛋白质结合的磷脂量与流体双层区域的范围无关。实验确定的蛋白质结合位点最大占据量时的磷脂量约为每1.0毫克蛋白质0.2毫克磷脂。计算表明,该比例与围绕蛋白质复合物的单层磷脂一致。这些数据被解释为在该膜模型系统中疏水蛋白质与相邻流体双层区域之间存在固定脂质边界的证据。