O'Brien D F, Zumbulyadis N, Michaels F M, Ott R A
Proc Natl Acad Sci U S A. 1977 Dec;74(12):5222-6. doi: 10.1073/pnas.74.12.5222.
Purified rhodopsin was incorporated into phospholipid bilayers of egg phosphatidylcholine to give recombinant membrane vesicles, which were examined by proton and phosphorus nuclear magnetic resonance spectroscopy. Increased rhodopsin content in the membranes appears to progressively inhibit the molecular motions of the methyl, methylene, and phosphate groups of the phospholipid molecules. This indicates that regions of the rhodopsin molecule interact in a manner that affects the phospholipids from the aqueous interface to the bilayer midline. In the dark, the recombinant vesicles were sealed to europium, manganese, or cobalt ions. Light exposure allowed rapid equilibration of Mn2+ and Co2+, and somewhat slower equilibration of Eu3+ across the membrane. Light changed the membrane permeability, and the gradient in chemical potential resulted in a net ion movement across the rhodopsin:phospholipid recombinant membrane. The results suggest rhodopsin is a transmembrane protein.
将纯化的视紫红质整合到鸡蛋磷脂酰胆碱的磷脂双层中,制成重组膜囊泡,并用质子和磷核磁共振光谱对其进行检测。膜中视紫红质含量的增加似乎会逐渐抑制磷脂分子中甲基、亚甲基和磷酸基团的分子运动。这表明视紫红质分子的区域以一种影响从水相界面到双层中线的磷脂的方式相互作用。在黑暗中,重组囊泡与铕、锰或钴离子密封在一起。光照使锰离子和钴离子迅速达到平衡,而铕离子跨膜的平衡则稍慢一些。光照改变了膜的通透性,化学势梯度导致离子通过视紫红质:磷脂重组膜进行净移动。结果表明视紫红质是一种跨膜蛋白。