Wise G E
Anat Rec. 1982 Mar;202(3):317-24. doi: 10.1002/ar.1092020303.
Inside-out (I.O.) vesicles isolated from human erythrocyte ghosts induced to endocytose have been used for biochemical studies to determine localization of molecules within the membrane. It was the purpose of this study to examine such vesicles by freeze-etch electron microscopy to determine the architecture of the peripheral proteins on the protoplasmic surface. Examination of the I.O. vesicles while still in the interior of the ghosts showed that a globular material was randomly distributed on the outer surface (protoplasmic surface of the original plasma membrane) of the I.O. vesicles. The random distribution of the globular material becomes altered, however, if the I.O. vesicles are isolated from the ghosts by shearing and centrifugation. Freeze-etching of these isolated I.O. vesicles revealed that the globular material was now clustered on the protoplasmic surface (PS), as were the intramembranous particles (IMPs) in the extracellular face. Thus, the lateral mobility of the IMPs is dependent upon the distribution of molecules at the protoplasmic surface of the membrane. Moreover, this change in distribution of the globular material at the surface is not due to a partial loss of major membrane proteins, because SDS-polyacrylamide gel electrophoresis revealed that equal amounts of the major proteins were present in nonisolated vesicles as compared to isolated vesicles. Although isolated I.O. vesicles have been used extensively to demonstrate that glycoproteins span the membrane, these results suggest that one should cautiously interpret data obtained from such isolated vesicles in view of the fact that there is an alteration of the distribution and perhaps configuration of molecules at the PS following isolation of I.O. vesicles.
从诱导内吞的人红细胞血影中分离出的外翻(I.O.)囊泡已用于生化研究,以确定分子在膜内的定位。本研究的目的是通过冷冻蚀刻电子显微镜检查此类囊泡,以确定原生质表面外周蛋白的结构。在I.O.囊泡仍处于血影内部时进行检查,发现一种球状物质随机分布在I.O.囊泡的外表面(原始质膜的原生质表面)。然而,如果通过剪切和离心从血影中分离出I.O.囊泡,球状物质的随机分布就会改变。对这些分离出的I.O.囊泡进行冷冻蚀刻显示,球状物质现在聚集在原生质表面(PS),细胞外表面的膜内颗粒(IMP)也是如此。因此,IMP的侧向流动性取决于膜原生质表面分子的分布。此外,表面球状物质分布的这种变化不是由于主要膜蛋白的部分丢失,因为SDS聚丙烯酰胺凝胶电泳显示,与分离出的囊泡相比,未分离的囊泡中存在等量的主要蛋白质。尽管分离出的I.O.囊泡已被广泛用于证明糖蛋白跨膜,但这些结果表明,鉴于I.O.囊泡分离后PS处分子的分布甚至构型发生了改变,人们应该谨慎解释从此类分离出的囊泡中获得的数据。