Department of Chemistry, Olson Laboratories, Newark College of Arts and Sciences, Rutgers University, Newark, New Jersey 07102.
Proc Natl Acad Sci U S A. 1980 May;77(5):2362-6. doi: 10.1073/pnas.77.5.2362.
Raman spectra have been recorded as a function of temperature for lipid-protein complexes of glycophorin isolated from erythrocyte membranes reconstituted with dipalmitoylphosphatidylcholine (DPPC) and its chain perdeuterated analogue ([(2)H(62)]DPPC). The conformation of the phospholipid hydrocarbon chains in the vicinity of protein is drastically altered from that in pure lipid dispersions. Analysis of the chain C-(2)H stretching vibrations for complexes of [(2)H(62)]-DPPC-glycophorin shows that at lipid:protein mole ratios of 125:1, a broad melting event occurs that is not observable by calorimetric techniques. The midpoint occurs at temperatures about 15 degrees C below that of the gel/liquid crystal phase transition for [(2)H(62)]DPPC in multilamellar dispersions. The same number of gauche rotamers form in the phospholipid hydrocarbon chains during the melting process as in the phase transition of the unperturbed molecule. Analysis of the C-H stretching region of the Raman spectrum in DPPC-glycophorin complexes indicates that lateral interactions between phospholipid chains in the complex are reduced so that interchain vibrational coupling is minimized. The observed differences between the Raman melting curves and the calorimetric endothermic transitions arise because different populations of phospholipid molecules are sampled in the two experiments. The advantages of Raman spectroscopy for the study of lipid-protein interaction are demonstrated in the current work. Implications for the structure of the lipid in the immediate vicinity of membrane protein are discussed.
拉曼光谱已被记录为糖蛋白的脂质-蛋白质复合物随温度变化的函数,该复合物由红细胞膜中分离出来,并用二棕榈酰磷脂酰胆碱(DPPC)及其链全氘代类似物[(2)H(62)] DPPC 重建。在蛋白质附近,磷脂烃链的构象从纯脂质分散体中发生了剧烈变化。对[(2)H(62)] DPPC-糖蛋白复合物的链 C-(2)H 伸缩振动的分析表明,在脂质:蛋白质摩尔比为 125:1 时,发生了宽熔融事件,而通过量热技术无法观察到该事件。中点出现在温度比[(2)H(62)] DPPC 在多层分散体中的凝胶/液晶相转变温度低约 15 摄氏度。在磷脂烃链中形成相同数量的 gauche 旋转异构体,与未受干扰分子的相变过程中相同。对 DPPC-糖蛋白复合物中 C-H 伸缩区的拉曼光谱分析表明,复合物中磷脂链之间的横向相互作用降低,从而最小化了链间振动耦合。在这两种实验中,所采样的磷脂分子的不同群体导致观察到的拉曼熔融曲线和量热吸热转变之间存在差异。当前的工作证明了拉曼光谱在研究脂质-蛋白质相互作用方面的优势。讨论了对膜蛋白附近脂质结构的影响。