Binks B P, Chatenay D, Nicot C, Urbach W, Waks M
Laboratoire de Spectroscopie Hertzienne, Paris, France.
Biophys J. 1989 May;55(5):949-55. doi: 10.1016/S0006-3495(89)82893-0.
The Folch-Pi proteolipid is the most abundant structural protein from the central nervous system myelin. This protein-lipid complex, normally insoluble in water, requires only a small amount of water for solubilization in reverse micelles of sodium bis (2-ethylhexyl) sulfosuccinate (AOT) in isooctane. The characterization of the proteolipid-free and proteolipid-containing micelles was undertaken by light scattering and fluorescence recovery after fringe pattern photobleaching (FRAPP) experiments. Quasi elastic light scattering (QELS) was carried out at a high (200 mM) AOT concentration, at low water-to-surfactant mole ratio (Wo = 7) and at increasing protein occupancy. Two apparent hydrodynamic radii, differing tenfold in size, were obtained from correlation functions. The smaller one (RaH = 5.2 nm) remains constant and corresponds to that measured for protein-free micelles. The larger one increases linearly with protein concentration. In contrast, FRAPP measurements of self-diffusion coefficients were found unaffected by the proteolipid concentration. Accordingly, they have been performed at constant protein/surfactant mole ratios. The equivalent RH, extrapolated to zero AOT concentration for protein-free reverse micelles (2.9 nm) and in the presence of the proteolipid (4.6 nm), do not reveal the mode of organization previously suggested by QELS measurements. The complex picture emerging from this work represents a first step in the characterization of an integral membrane protein in reverse micelles.
福尔奇-皮蛋白脂质是中枢神经系统髓鞘中含量最丰富的结构蛋白。这种蛋白质-脂质复合物通常不溶于水,在异辛烷中的双(2-乙基己基)磺基琥珀酸钠(AOT)反胶束中仅需少量水即可溶解。通过光散射和条纹图案光漂白后的荧光恢复(FRAPP)实验对不含蛋白脂质和含蛋白脂质的胶束进行了表征。在高浓度(200 mM)的AOT、低水与表面活性剂摩尔比(Wo = 7)以及增加蛋白质占有率的条件下进行了准弹性光散射(QELS)实验。从相关函数中获得了两个表观流体动力学半径,大小相差十倍。较小的一个(RaH = 5.2 nm)保持不变,与不含蛋白质的胶束所测得的半径相对应。较大的一个随蛋白质浓度线性增加。相比之下,发现自扩散系数的FRAPP测量不受蛋白脂质浓度的影响。因此,它们是在恒定的蛋白质/表面活性剂摩尔比下进行的。对于不含蛋白质的反胶束(2.9 nm)和存在蛋白脂质时(4.6 nm),外推到零AOT浓度的等效RH并未揭示先前QELS测量所暗示的组织模式。这项工作中出现的复杂情况代表了对反胶束中整合膜蛋白进行表征的第一步。